#: locale=en
## Action
### URL
LinkBehaviour_38F155E5_3A8C_73BE_41BC_7A4CE6C1392B.source = https://a4-design.com/en/vr-tours/
LinkBehaviour_A402FEA5_9F3E_E09F_41C6_66B1330EB184.source = https://a4-design.com/en/vr-tours/
LinkBehaviour_AC31F5AB_929E_150A_41D7_3F0F4539CACA.source = https://vlabs.eri.sci.eg/#/
LinkBehaviour_AC271D0F_929E_150A_41D7_073485CEE716.source = https://vlabs.eri.sci.eg/#/
LinkBehaviour_D3BFDD4A_929A_150B_41E0_252DC12CD219.source = https://vlabs.eri.sci.eg/#/
LinkBehaviour_D3804B28_928A_3D36_41D4_CD75DBF36CBC.source = https://vlabs.eri.sci.eg/#/
LinkBehaviour_D39D82DD_928A_2F0F_41D5_64F9E2EA48DB.source = https://vlabs.eri.sci.eg/#/
LinkBehaviour_D3A8DEA9_9297_F736_41D6_7363B5517502.source = https://vlabs.eri.sci.eg/#/
LinkBehaviour_D39A1DE3_9296_753A_41B8_E77BA35F0BA3.source = https://vlabs.eri.sci.eg/#/
LinkBehaviour_D3AB20E9_928E_2B36_41DD_1C8A206ADE15.source = https://vlabs.eri.sci.eg/#/
LinkBehaviour_D39C0F35_929A_151F_41E1_35A1B85B8F46.source = https://vlabs.eri.sci.eg/#/
LinkBehaviour_AC688874_929A_1B1E_41DB_221D7156FEF3.source = https://vlabs.eri.sci.eg/#/
LinkBehaviour_D39E8707_9296_16FB_41DB_D51F93C83F3B.source = https://vlabs.eri.sci.eg/#/
LinkBehaviour_816ACBEB_9297_FD0A_41DC_A75705E2F054.source = https://vlabs.eri.sci.eg/#/
LinkBehaviour_8120F59B_928E_150A_41E1_9C31634BBCF7.source = https://vlabs.eri.sci.eg/#/
LinkBehaviour_818AF4D7_929A_EB1A_41D3_01612D33B50D.source = https://vlabs.eri.sci.eg/#/
LinkBehaviour_A84BDA55_937A_1F18_41D1_46C315EEB1BB.source = https://vlabs.eri.sci.eg/#/
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LinkBehaviour_A8F67C95_939D_FB1E_41D2_B40A39B0D57E.source = https://vlabs.eri.sci.eg/#/
LinkBehaviour_A8FCA645_939A_377F_417F_5F189F807805.source = https://vlabs.eri.sci.eg/#/
LinkBehaviour_AF2BDFEA_939A_3535_41E0_DEA06A8D70B9.source = https://vlabs.eri.sci.eg/#/
LinkBehaviour_AF38F29B_9396_2F0A_41D4_BBF30612A99E.source = https://vlabs.eri.sci.eg/#/
LinkBehaviour_A8B081D7_9396_6D1A_41D6_B26370BADE00.source = https://vlabs.eri.sci.eg/#/
LinkBehaviour_AF26AEB3_9396_F71A_41C0_41F48C93B83A.source = https://vlabs.eri.sci.eg/#/
LinkBehaviour_814EA74A_9F22_E194_41DD_9981A8531FFE.source = https://vlabs.eri.sci.eg/#/
LinkBehaviour_8120405D_9F23_9FAF_41BA_76BC7FFEB4A0.source = https://vlabs.eri.sci.eg/#/
LinkBehaviour_D3FD1A9C_928A_1F0D_41D8_E701B352031A.source = https://vlabs.eri.sci.eg/#/
LinkBehaviour_D3F13680_928A_17F5_41D3_A995677AE175.source = https://vlabs.eri.sci.eg/#/
LinkBehaviour_AC6931F1_9296_ED16_41D6_BE080B2BAF52.source = https://vlabs.eri.sci.eg/#/
LinkBehaviour_AC78D1C1_928D_ED76_41DE_F3105B7FDD4F.source = https://vlabs.eri.sci.eg/#/
LinkBehaviour_D3F5E8CA_928E_1B75_41D8_B94261710CAE.source = https://vlabs.eri.sci.eg/#/
LinkBehaviour_ACF0CA1D_938A_3F0E_41C1_555E750E2634.source = https://vlabs.eri.sci.eg/#/
LinkBehaviour_D288926C_937D_EF0E_41AE_F219751C6303.source = https://vlabs.eri.sci.eg/#/
WebFrame_22F9EEFF_0C1A_2293_4165_411D4444EFEA.url = https://www.google.com/maps/embed?pb=!1m18!1m12!1m3!1d3450.728905797455!2d31.380945299999997!3d30.1305699!2m3!1f0!2f0!3f0!3m2!1i1024!2i768!4f13.1!3m3!1m2!1s0x145816e6032f2be9%3A0x324ae1eec9802809!2sElectronics%20Research%20Institute%20(ERI)!5e0!3m2!1sen!2seg!4v1723240600740!5m2!1sen!2seg
WebFrame_22F9EEFF_0C1A_2293_4165_411D4444EFEA_mobile.url = https://www.google.com/maps/embed?pb=!1m18!1m12!1m3!1d3450.728905797455!2d31.380945299999997!3d30.1305699!2m3!1f0!2f0!3f0!3m2!1i1024!2i768!4f13.1!3m3!1m2!1s0x145816e6032f2be9%3A0x324ae1eec9802809!2sElectronics%20Research%20Institute%20(ERI)!5e0!3m2!1sen!2seg!4v1723240600740!5m2!1sen!2seg
## Hotspot
### Text
HotspotPanoramaOverlayTextImage_C472C064_3A8D_D0BE_41BB_758F85A02263.text = Electro Kids Nursery
HotspotPanoramaOverlayTextImage_39B3049F_3A8D_D18A_41C9_884B446A878C.text = Product Gallery
## Media
### 360 Video
### Audio
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panorama_7B5C2F2B_6A0A_CBB9_41B2_05CCDE9F9EB1.label = طباعة الافلام
panorama_BC57AFA1_ADB5_A069_41D7_C07D0E28E0D6.label = معمل الواقع الافتراضي المعزز
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htmlText_2CB99797_3694_7F9A_41A2_B9FF2815D0A5.html =
Portable Logic Analyzer -16800
This logic analyzers can help in debugging, validation, and optimization of digital systems by measuring precise timing relationships using 4 GHz (250 ps) timing zoom with 64 K depth.
It can also monitor and correlate multiple buses with split analyzer capability, which provides single and multibus support
Due to the importance of this device, engineers and researchers in design centers can use this device to measure and discover design errors related to precise timings.
htmlText_21ECB289_3674_5189_41AD_13F92514A4AC.html = Portable Logic Analyzer -16800
This logic analyzers can help in debugging, validation, and optimization of digital systems by measuring precise timing relationships using 4 GHz (250 ps) timing zoom with 64 K depth.
It can also monitor and correlate multiple buses with split analyzer capability, which provides single and multibus support
Due to the importance of this device, engineers and researchers in design centers can use this device to measure and discover design errors related to precise timings.
htmlText_C3A9E88B_E096_93F3_41D3_EA033473574C.html = A virtual guide installed inside the pavilion provides a welcome message to visitors and provides visitors with information about the Opet Festival documented on the walls of the Luxor Temple
htmlText_1A83B494_34CC_5C93_41B9_E5C8B707FCA5.html =
The CNC machine is high precision, high quality Computer Controlled Drilling machine with automatic tool change.
This machine uses for drilling, cutting, and milling for the PCB boards manufacturing
htmlText_DBA5B28D_3B8B_D189_41C5_EC70A14E4446.html =
The saw is used to cut different types of materials such as wood, fiberglass reinforced plastic, foam, rubber, leather or cork. It can cut wood up to 50 mm, plastic up to 30 mm, and non-ferrous metals up to 10 mm. The slim saw arm is made of die-cast aluminum for an unobstructed view from above. Air blower with adjustable air nozzle. Sturdy table made of die-cast aluminum (360 x 180 mm), can tilt at 45 degrees for angled cutting. Base made of cast steel for stability and vibration-free operation. Includes 5 coarse saw blades and 5 fine saw blades
htmlText_32B0730D_335C_D550_41B5_8943F46AE43E.html =
Vector Signal Analyzer N9010A 10 Hz to 44 GHz
High-precision device designed for spectrum analyzer measurement applications up to 40 GHz.
Analysis bandwidth 25 MHz.
htmlText_C5DE984D_334C_D3D0_41C4_D4859D9E464B.html =
Vector Signal Generator E8267D 100 kHz to 44 GHz
High-performance integrated microwave vector signal generator covers frequencies from 100 kHz to 44 GHz for design and manufacturing in aerospace defense, satellite communications, and wireless broadband.
htmlText_D3BEEB3B_3B8C_3088_41A8_86B28D06C87E.html = Also in the famous Proxxon manual and automatic lathe.
Its function is to process steel, copper, aluminum and plastic for faceting, turning, straight turning and thread cutting. And with a wide range of system accessories, you can also mill and drill.
The automatic machine performs the same work as the Brookson precision lathe, but it operates on a computer. The axis is operated by two powerful stepper motors and recycled ball spindles.
htmlText_6FCC682D_2DBD_4336_41A4_46BBB4B4A6EE.html = Attached to the laboratory is a room dedicated to the manufacture of millimeter wave circuits, which contains a manufacturing machine that operates with laser advanced technology that allows the possibility of manufacturing with an accuracy of up to 50 micrometers for the metal track and 20 micrometers for the clearance between tracks. The machine can also manufacture on various insulating substrates such as Rogers, FR4, and other materials, for manufacturing millimeter-wave circuits or electromagnetic wave circuits in genera
htmlText_002C049C_2CBD_4316_41B1_9088BDD78641.html = Computer disassembling for obtaining precious metals such as: metal, copper, and gold
htmlText_DCB494D3_3B8C_719A_4190_755AEB4B89A9.html = It is a grinding and polishing tool for various materials. The polishing set has a steel wire brush for removing rust and cleaning steel and non-ferrous metals. And a copper wire brush for polishing non-ferrous metals and precious metals. The wool brush is used on dyed surfaces, and the suede and cotton brush provides a high gloss finish on non-ferrous metals and precious metals. The speed of the tool can be controlled through an electronic controller from 8 to 24 m/s.
htmlText_DF6635A5_3BFC_33BE_41C9_99812DD8738F.html = Laser marking machine is a machine that permanently marks the surface of media, making the product unique and different. Media that can be marked as in metal (metal) such as iron, stainless steel, titanium, aluminium, copper, copper, galvanized, etc. It can also be used on plastic, wood, paper, acrylic, leather, glass, ceramic, stone, etc.
htmlText_4712DF2B_3674_508A_41C8_FA3E5D85D28D.html = Multi-function laser welding machine Applicable materials: stainless steel, galvanized sheet, light steel sheet, etc.
htmlText_06145D89_2CBD_5DFE_41A2_DB3F3F93B283.html = Practical areas for training on computer dismantling, diagnosing their faults, and performing maintenance on them
htmlText_05C39E5D_2CA4_DF16_41BE_879DA6FDBDA7.html = Practical areas for training on computer dismantling, diagnosing their faults, and performing maintenance on them
htmlText_6C6F3190_2DDB_45ED_4199_6236212AC1F5.html = The laboratory also has a probe station device for measuring system-on-chip integrated system circuits designed on electronic chips. Attached to the station, a set of sensors to measure and evaluate the performance of circuits with high accuracy
htmlText_809AE4D9_9EEE_60B7_41E2_D86CFB4C6E85.html = The laboratory has a number of advanced measuring devices that operate with high techniques and advanced technology, such as the Vector Network Analyzer device, which measures millimeter wave circuits over the frequency range from 10 MHz to 110 GHz. This device can measure all scattering parameters with very high accuracy and very quickly. The device is used to measure different circuits in multiple applications, such as measuring antenna variables, calculating radiation patterns, measuring radio transmission and reception circuits, evaluating the performance of all types of radar systems, and other electronic applications with advanced technology.
htmlText_D26CD4AB_3BFC_518A_41CB_6D32B7DD7731.html = The third part is in the laboratory here, I work on all materials except metal and wood, such as acrylic, plastic, glass, leather, and many other materials. The device used in these works is a laser cutting machine, and this device works with very, very precise capabilities and details.
Laser cutting and engraving on wood, cardboard and plastic parts. With lasers, you can create detailed 3D models, home models, presentations, competitions, and functional models.
htmlText_0664213D_2CA4_C516_41AD_F83AD37312D0.html = The training hall inside the e-waste lab
htmlText_635EF9D9_2DEB_C51E_4195_0503B2F260CD.html = The various measurements are carried out inside an electromagnetic anechoic chamber to ensure the accuracy of the measurement and to ensure that there is no interference from any existing electromagnetic sources such as mobile phones, Wi-Fi, and other sources of electromagnetic radiation present in the surroundings
htmlText_6DE4FB53_367C_509A_4192_53AF884E9F2C.html = Vacuum Coating Machine
Used in metal deposition on Alumina, quartz, and glass substrates by evaporation.
The evaporated metals include gold, copper and chrome, etc….
htmlText_556D256F_36B4_508A_41A5_62B368D06292.html = We also have two devices that specialize in plastic works only, such as PLA, ABS, and many others, which are a 3D printer of the raise3D type and a Form lab.
A 3D printer that works with high accuracy and requires files with the GCODE extension that works on different types of plastic materials. The second type is three-dimensional printing with high accuracy, in which the material formed is liquid.
htmlText_46D7B428_2FDC_C33E_41C1_34465DFA3ABC.html = complete training module for PLC S7 1200 programmed controller
htmlText_41FF72DA_2FDD_4712_41C4_60E37C5E9501.html = complete training module for PLC S7 1500 programmed controller
htmlText_32AA9126_334C_5550_41AB_8DB97EB3EEC8.html = Oscilloscope Lecroy Model Wavepro 725Zi, 2.5 GHz
LeCroy 4-channel digital oscilloscope.
Measures voltage or current signals over time in an electronic circuit or component to display amplitude, frequency, rise time, etc. Applications include troubleshooting in mobile base station and in radar system and other similar applications, production testing, and design.
htmlText_2A34567B_30DC_FFB1_41C4_85105254438C.html = The virtual trip to Karnak Temple (Kemetverse):
A virtual tour to the most luxurious Egyptian temples in virtual reality through Samsung gear glasses.
htmlText_3DE03027_2BE5_4332_41C4_DECCD0A57AC5.html = Wideband Radio Communication Test Equipment (CMW).
The Wideband Radio Communication Test Equipment is a device used to test and evaluate the performance of radio communications over a wide range. This device is utilized in various fields such as wireless communications, local networks, and military communications. Its function is to provide a means to measure and analyze the quality of wireless communication.
A variety of operations and standards are employed to assess the quality and performance of radio communications, including signal strength, noise level, signal distortion, bandwidth capacity, and signal delay. The Wideband Radio Communication Test Equipment assists in analyzing and diagnosing problems in wireless communications and enhancing the performance of wireless networks. It is considered an essential tool for engineers and technicians working in the field of radio communications to ensure the quality and stability of wireless communications.
The device consists of two main parts:
Isolated chamber with isolation ranging from -90dB to 90dB, used to examine device standards (GSM, Bluetooth, CDMA, etc.), whether laptops or mobile phones. Inside this chamber, there is a wideband radio antenna device with high isolation.
Signal generator for generating wireless signals for various mobile networks.
htmlText_75B4FECF_378C_3189_41C5_F2A33A970559.html = 67 GHz vector network analyzer
The R&S®ZVA110 provides a frequency range from 10 MHz to
67 GHz. It is based upon the R&S®ZVA67 2-port VNA, and
includes all system components for seamless continuous sweep
(models 03 and 13)
Benefits and key features
High measurement throughput: Short measurement times due to
fast synthesizers, wide IF bandwidths and high dynamic range
Easy and error-free calibration: Versatile calibration techniques
for test fixtures as well as for coaxial and on-wafer applications
❙Automatic calibration with calibration unit
Quick and reliable measurements on multiports and balanced
components: Virtual and true differential mode for linear and
nonlinear tests of differential components
Linear and nonlinear amplifier and mixer measurements:
Simultaneous measurement of noise figure and S-parameters
Wide power sweep range for small and large signal analysis in
one sweep: Second internal source for fast hot S22 , IMD and mixer
measurements
Phase and group delay measurements of the conversion loss on
mixers and converters with and without LO access
htmlText_DF58DCF6_334C_4CB0_4180_A85A1CB9C444.html = 81180B 4.6 GSa/s Arbitrary Waveform Generator 2 GHz IQ modulation bandwidth
arbitrary waveform generator provides 4.6 GSa/s, 2 GHz IQ modulation bandwidth, and 12-bit vertical resolution. It has three output paths, DC-coupled direct DAC output with 1 GHz bandwidth, DC-coupled 2 V amplifier with >600 MHz analog bandwidth, or AC-coupled 10 dBm amplifier with 1.5 GHz analog bandwidth.
htmlText_3888B548_3A9C_30F7_41B2_2BDBA4F6EBA9.html =
A programmable audio and visual alarm device to protect internal combustion engines of cars from temperatures exceeding the safe limit.
This device measures the temperature of car engines, which causes cars to suddenly stop in vital places such as tunnels and bridges when they exceed safety limits.
- The device measures the temperature of the engine alloy and is programmed by capturing the safe thermal fingerprint with the push of a button.
- If the alloy temperature exceeds the safe value, a clear audio alert and an intermittent light are issued to alert the driver to stop the engine before damage occurs.
htmlText_00D36C70_369D_F096_41C1_A524323E8561.html = A Ground Penetrating Radar (GPR) can be used for
Utility designation
Concrete inspection
Mining and geology
Environmental assessment
Archaeology
Forensics
Purpose and applications:
Utility detection: The GPR system can detect underground utilities such as pipelines, cables, and wires. It helps identify the location and depth of buried utilities, allowing excavation work to be conducted safely and accurately.
Geology and environmental studies: The GPR system can help investigate geological and environmental features such as bedrock, soil layers, and groundwater tables. It can also detect voids, sinkholes, and other subsurface anomalies that may pose risks to infrastructure.
Archaeology and forensic investigations: The GPR system can aid in archaeology and forensic investigations by detecting buried artifacts or remains without disturbing the surrounding soil.
Civil engineering applications: The GPR system can be used in civil engineering projects to assess the structural integrity of concrete structures, such as bridges, dams, and buildings, by detecting cracks and voids.
Pavement analysis: GPR can be used to assess the condition of pavement by detecting subsurface layers and defects.
Mining and mineral exploration: GPR can be used to explore for minerals and ores by detecting changes in subsurface composition and structure.
Agriculture and soil studies: GPR can be used to assess soil properties such as water content and density, and to detect soil layers and structures.
Ground Penetrating Radar (GPR) Benefits and key features
Antenna Options 400 MHz, 300/800 DF, 350 HS.
Max Depth 0-12 m (0-40 ft).
Weight 27.2-34 kg (60-75 lbs) (cart dependent).
Storage Capacity 32 GB.
Underground utility detection
Environmental remediation
Damage prevention
Archaeology
Forensics
Road inspection
htmlText_2A00FCE4_3144_CCD0_41C7_ED5F83FC12BE.html = A group of computers, laptops, and mobile phones to display and implement various applications
1- Mobiles Samsung Note8
2- Tablet Dell location
3- Laptop Lenovo
4- MSI laptop
5- Samsung Smart Screen
htmlText_95FB4576_3994_309A_41BD_6B6A0F7A3632.html = A portable device for directed heating to eliminate the red palm weevil inside palm trunks
The project outcome is a lightweight, cost-effective device with a novel horn antenna design that allows the microwave to be focused at a small spot at the site of a palm weevil infestation. The device emits high-energy electromagnetic waves directly into part of the infected palm stem. The final product of the project can be used easily and safely even when the user is not a professional or expert and the device is equipped with a metal shield to protect the user from the electromagnetic waves emitted. The basic components of the device are a high-power electromagnetic wave generator, a horn antenna specially designed to focus radiation, a high-power transformer, and a metal shield. Within a few minutes or even seconds, all weevil entities present at the treatment site within the palm trunk will be killed.
htmlText_38881C09_3A9B_F076_41B7_0459675E1EAF.html = A prototype of a lithium electric battery (18650) used in new and renewable energy applications
The 18650 Li-ion battery is a compact cylindrical rechargeable battery known for its high energy density and long cycle life. It powers a wide range of devices, from laptops and power tools to electric vehicles and portable electronics, due to its reliability and versatility
htmlText_3888DBF5_3A9C_779E_41BC_78012BC7B802.html = A vital signs monitoring sensor for healthcare applications and measuring the water level in the human lung
This project aims to produce a prototype of a wearable device to analyze the human vital signs of an athlete or patient. Vital signs include pulse, electrocardiogram (ECG), breathing and blood pressure.
This device uses smart textiles, especially textile materials, for electromagnetic measurements.
This system consists of two innovative wearable antennas, which are the basic pillars of the device.
htmlText_388868CE_3A9C_518A_41C2_6D87170E3C70.html = A3D Printer
A 3D printing machine with dimensions up to 50*50*50 c, as well as a 3D scanning machine for large figures that reach the size of a normal human, in addition to making spare parts Extruder Filament for the 3D printing machine to solve the problem of wasted materials and Countering the high prices of imported raw materials by recycling these raw materials.
htmlText_74887DF5_335C_4CB1_41C9_07D09D5A0BA5.html = Agilent N3916AL Chromatic Dispersion (CD) Analyzer/OTDR Test Engine
Agilent N3900AL is a portable network tester, a lightweight, rugged test platform for the installation, commissioning, and maintenance of optical fiber networks.
Agilent N3900AL has powerful built-in measurement algorithms to provide the user with fiber type, fiber loss ratio, and chromatic dispersion information.
Agilent N3900AL has a wavelength range from 1450 nm to 1650 nm.
Agilent N3900AL's maximum safe input power can reach +30 dBm.
Agilent N3900AL requires access to only one fiber end.
htmlText_32C2189F_333C_5370_41AA_086FA7FE17F2.html = Anechoic EM Test Chamber
A chamber or room designed to completely absorb reflections of sound or electromagnetic waves.
To make measurements of antennas, reflection coefficient, and electromagnetic attenuation.
htmlText_745C9196_3794_539A_41BB_2A057E1FC096.html = Arbitrary Waveform Generator
The roles of arbitrary waveform generators can vary depending on the
specific industry and application. Here are some common jobs or
applications where arbitrary waveform generators are used:
1. Testing and Measurement.
2. Research and Development.
3. Communications and Signal Processing.
4. Acoustic and Audio Testing.
5. System Integration and Automation.
6. Education and Training.
htmlText_72D4490B_3794_508A_41C3_22FA9A0FBE7B.html = DAK for thin layers
The Dielectric Assessment Kit (DAK) for Thin Layers allows the
characterization of the dielectric properties of solid and semi-solid
materials with limited thickness (0.1 – 10 mm) that are available in sheet
form, and of liquid samples. The process is fully automated using the
probe beam mounted on the base unit.
htmlText_740E9C3E_3344_33B0_41BB_AF99EA8C6DCC.html = ED-WDM (OptoSci) system
Composed of:
The Electronics Rack is designed to house the lasers, power meters, photoreceivers, and TEC controllers along with a variable optical attenuator and 50:50 coupler.
Optics Rack is intended to house a range of passive components modules such as couplers, WDMs, an isolator, a circulator, and fiber Bragg gratings.
Agilent 33210A Function / Arbitrary waveform generator up to 10 MHz.
PRBS generator is a pseudo-random bit stream generator (1 to 40Mbits/s), with additional outputs for a clock at the data bit rate and an impulse signal.
Agilent DSo1014A oscilloscope up to 100 MHz,2 GSa/s, 4 analog channels.
GBS-1074 oscilloscope up to 70 MHz,1 GS/s, 4-channel Digital Storage Oscilloscope.
htmlText_18F54F95_2CA7_BD16_41BB_F597A3D1DE2F.html = ERSA IR/PL 550 Rework System for Soldering & De-soldering Surface Mounted ICs
This machine is used for soldering and de-soldering the surface mount ICs using the Infra-Red technology. The machine has a camera so that we can zoom in or out on the IC to be soldered or de-soldered. The welding process is monitored by an infrared sensor that is not in contact with the electronic board and gives optimal control of the process during soldering or de-soldering of the ICs on the electronic board
htmlText_3888FAFE_3A9C_3188_41C3_670C2F42DBB9.html = Eagle-shaped ribbon antenna
A single antenna was designed and fabricated on a chip of resistive material with a resistivity of 2.2, a thickness of 1.5748 mm, and a loss factor of 0.001.
htmlText_BF207405_398C_507E_41C8_008873F388D1.html = Educational lab PLC
The bag is an integrated laboratory for training in the use of programmed logic controllers to control industrial processes.
htmlText_59D1ABFF_367C_378A_41C9_E7B00D3F9515.html = Fiber laser welding
is a welding process that uses a laser beam as a heat source. As non-contact tools, fiber lasers are low maintenance and provide fast welding speeds. The laser beam is very precise and has a low heat input, which reduces damage to the material.
htmlText_2E62707D_3697_D08E_41B2_2701CEF08ABB.html = Film Thickness Measurement Instruments (F20EXR)
The F20EXR is a general-purpose film thickness measurement instrument that allows for measuring thickness, refractive index, reflectance, and transmittance.
Beneficiaries of the F20EXR include medical entities, industrial entities (such as mobile phones, glasses, LCD screens, paints, and varnishes), universities, laboratories, and research and development laboratories.
The F20EXR is characterized by the following technical specifications: It can measure on flat or curved surfaces, as well as with a spot size down to 20 micro-meters and wavelengths from 380 to 1700 nanometers.
htmlText_2FCD9EAA_368B_F18A_41BA_10BD2AAADF3A.html = Film Thickness Measurement Instruments (F20EXR)
The F20EXR is a general-purpose film thickness measurement instrument that allows for measuring thickness, refractive index, reflectance, and transmittance.
Beneficiaries of the F20EXR include medical entities, industrial entities (such as mobile phones, glasses, LCD screens, paints, and varnishes), universities, laboratories, and research and development laboratories.
The F20EXR is characterized by the following technical specifications: It can measure on flat or curved surfaces, as well as with a spot size down to 20 micro-meters and wavelengths from 380 to 1700 nanometers.
htmlText_06715521_30C4_DD50_41B2_9179984B2132.html = HIL Controller and Data Acquisition Interface
An interface platform to interconnect the simulator in real time with other devices. It has many digital and analog inputs and outputs ports for electronic control of motors and various electrical devices.
htmlText_21D34F50_33D4_6D93_41C6_3AE1C8E0536E.html = High Energy ball milling
is a mechanical process that is frequently used for producing nanocrystalline metals or alloys in powder form within the shortest amount of time.
faster and finer grinding than any other ball mill
speed of 2000 min-1 allow for ultra-fast pulverization of the sample
water cooling permits continuous operation without cool down breaks
temperature-controlled grinding
narrow particle size distribution thanks to special jar design which improves mixing of the sample
htmlText_023EF548_36B4_30F6_4193_BBCA3FC53B70.html = IV Curve Tracer
Used for outdoor testing and measuring the efficiency of PV panels and short circuit current, open circuit voltage and the power.
htmlText_3889201B_3A9D_D08A_41BF_42AD71B68B4C.html = LED headlights
Floodlights based on LED technology that operate without a driver with different capacities ranging from one watt to 800 watts and different sizes from 1 cm * 1 cm to 100 cm * 100 cm, in addition to long bulbs up to 48 m.
These floodlights give a high luminous value. For example, a 50cm x 50cm floodlight with a power of 200 watts gives more than 20,000 lux and more.
This is a technology that leads to a reduction in electricity consumption of up to 80% of the value of normal consumption, with a virtual operating period of up to 15 years.
htmlText_8ACF4510_3994_5096_41C4_8E89D78CF55F.html = Local system of smart meters (electricity ,Gas and water)
A smart electricity meter equipped with remote control via Internet of Things technology.
- The first system to use energy harvesting technology through a special charging circuit to charge the operating battery.
This increases the lifespan of the battery from several months to years.
The first system to use a wireless communication unit without the need for an external antenna or special infrastructure.
htmlText_8912C223_3994_D0B8_41BA_B7EE794E2499.html = Mobile Micro-Sensor System for Detection of Diseases in Biological Samples
A portable device used to quickly detect the presence of bacteria or viruses in biological samples. It works with the resonant cavity technology of precise electromagnetic waves.
htmlText_75700B08_335C_3550_41C3_48D2E03C3871.html = Optical Spectrum Analyzer Q8384
Q8384 is a precision instrument designed to measure and display the distribution of power of an optical source over a specified wavelength span from 600 to 1700 nm.
Input signal up to +23 dBm.
htmlText_2E7CCE9C_33BC_EC93_41A2_1DB33AAF658D.html = Plasma Enhanced Chemical Vapor deposition (PECVD)
PECVD is utilized for depositing thin films of materials onto surfaces, enabling precise control over film thickness, uniformity, and composition. The plasma is employed to enhance the chemical reactions during the deposition process, allowing for precise control over film properties.
PECVD is utilized in the manufacturing of solar cells, facilitating the deposition of thin layers in photovoltaic devices, enhancing their efficiency.
PECVD finds applications in Micro-Electro-Mechanical Systems (MEMS) and microelectronics for creating intricate structures and layers, contributing to the miniaturization and functionality of devices.
htmlText_E9A62737_3344_3DB0_41B4_B958A2FE4732.html = Portable Analyzer N9918A
Spectrum analyzer and network analyzer. It offers two built-in ports with a maximum frequency of 26.5 GHz (K-band) and 1 dBm output power.
htmlText_20F9A0F1_33F4_5495_41C6_ED7201B13D3F.html = Potentiostat VSp300
A potentiostat measures and monitors electrical responses on the electrode surface, allowing for accurate examination and understanding of electrochemical events. The VSP Potentiostat can precisely determine and modulate the applied voltage, resulting in controlled and precise experimental conditions for studying electrochemical processes. It is also capable of precisely controlling electrical voltage while conducting electrochemical tests..
htmlText_BF98B6DC_398C_718E_41C3_B601376F7FB7.html = Producing solar cells and connecting them to the electrical grid
Manufacturing solar cells and panels - the first laboratory specialized in this field in the Arab region to manufacture solar cells. - They are assembled to produce solar panels, as the laboratory becomes a regional center for technology transfer - Training in manufacturing silicon solar cells and qualifying technical workers.
htmlText_2B9F474A_30DC_3DD0_41C0_53203161E052.html = Samsung Gear VR oculus virtual reality glasses
A virtual reality headset with many features and specifications
• 5.7-inch AMOLED screen with a resolution of 2560 x 1440 pixels.
• Wide field of view of 101 degrees.
• Advanced motion sensors ensure high accuracy in tracking head and body movement.
• Ergonomic design: The glasses feature a lightweight and adjustable design, making them comfortable for long-term use.
• Ease of use: The glasses feature an easy-to-use user interface, making them suitable for beginners.
Virtual reality glasses with many features and specifications, including:
• 5.7-inch AMOLED display with a resolution of 2560 x 1440 pixels.
• A wide field of view of 101 degrees.
• Advanced motion sensors that ensure high accuracy in tracking head and body movement.
• Comfortable design: The glasses are lightweight and adjustable, making them comfortable to use for long periods.
• Ease of use: The glasses have a user-friendly interface, making them suitable for beginners.
htmlText_810B61AF_982C_EA53_41C1_965BCE75044A.html = Security System using Electromagnetic Waves for Museums
The system consists of two antennas for transmission and reception, a wave generator in the precise frequency range, and a spectrum analyzer, in addition to a GSM system and alarm devices.
htmlText_88793ECC_3994_318E_41B3_881EB2E13D2F.html = Smart Stick for blind people
It is an electronic talking stick that is designed to assist blind people. A model of the stick was designed as an output from a project entitled "Design and Development of an Optical Device for Blind People
htmlText_F7719332_333C_D5B0_41B2_6808218B52B5.html = Spectrum Analyzer in the frequency range from 9 kHz to 13.5 GHz
The spectrum analyzer is used in various applications such as wireless communications, radio frequency testing and industrial applications. This device provides detailed and accurate spectrum analysis to estimate the strength, frequency and interference of electromagnetic signals. This device is a powerful and reliable tool for engineers and technicians in the field of communications and electromagnetic wave testing
htmlText_2EDB276E_33CC_5D8F_41C1_172401100971.html = Spin coating
Spin coating is among the most common coating techniques available today, and is often used to apply thin films to surfaces. There are several advantages of using this technique, most notably the speed and ease of creating films for surfaces through spinning techniques. This is also a versatile technique, giving users a variety of options for the thickness of the coating. Essentially, this technique applies a thin film to a surface by coating the surface and spinning it at a high-speed, flinging most of the coating to the side, creating the thin film.
Application this technique is used for synthetic thin films with nanoscale thickness for metals, nanomaterials, and semiconductors.
htmlText_2F4BB817_33B4_539D_4191_A209D18E4910.html = Sputtering Machine
The magnetron-sputtering machine is a versatile thin film deposition tool widely employed in various industries for its efficiency and precision. it facilitates the precise deposition of thin films on silicon wafers, contributing to the production of electronic components.
The magnetron-sputtering machine has versatile applications across various industries. Widely employed in semiconductor manufacturing, it facilitates the precise deposition of thin films on silicon wafers, contributing to the production of electronic components.
In additions, Sputtering machines utilized also in the field of renewable energy, specifically solar cell production, sputtering machine plays a crucial role by depositing layers with tailored optical and electrical properties, optimizing the efficiency of photovoltaic devices.
htmlText_0E4906E1_368C_71B6_41A8_0EC17943F88D.html = Tektronix Digital Oscilloscope: DPO 71254C
A digital waveform is a device that can measure and analyze the waveform of a digitally input radio frequency signal in the time domain. Researchers use digital waveforms to analyze radio frequency signals in the time domain to study waveform characteristics such as the width and magnitude of the radio frequency signal. The Tektronix DPO 71254C Digital Time Domain Oscilloscope Model
has the following specifications:
It can measure through four input ports with simultaneous performance and each port has an input impedance of 50 ohms of the SMA type.
It can measure radio frequency signals with a bandwidth of up to 33 GHz and a waveform height response in the time domain at a speed of up to 9 nanoseconds.
Sampling rate: Up to 50 giga-sample/second.
htmlText_2A2CBB15_30CC_5570_41A9_751F9F99015E.html = The Virtual Museum of Karnak Statues:
Using three-dimensional models of statues that were designed using a library of images photographed by the project team on the ground. The virtual museum is displayed through HTC Vive glasses using virtual reality technology or Microsoft HoloLens 2 glasses using augmented reality technology, where The player grabs the statue and checks it from all different directions
htmlText_00432BC2_3694_F7FA_41B2_D5A4E2C08299.html = The gain measurement
Antenna Anechoic Chamber Measurement Facility
Antenna Gain
Antenna efficiency
Radiation pattern) E- plane & H- Plane Radiation Pattern (
Directivity.
Beamwidth.
Cross-polar discrimination.
Side lobe levels.
htmlText_3F3AE2CB_2BFB_4772_41C1_6B496D7C9400.html = The primary device for measuring the absorption rate.
The device for measuring the specific absorption rate of the human body is a single unit used to measure the specific absorption rate of the human body for electromagnetic radiation. The device consists of several parts:
Signal Generator: In the device for measuring the specific absorption rate, it generates the microwave signal. The generator produces microradiation used in the measurement to feed the radiation source.
Receiving Unit: Placed on the body to measure the radiation absorbed by the biological tissues, it consists of three parts (Left head, Right head, Flat).
Display Screen: Used to display the computed data when measuring the specific absorption rate.
These are the main components of the device for measuring the specific absorption rate of the human body. This device is used in fields such as nuclear medicine and scientific research to measure and evaluate the performance of biological tissues and processes in the human body.
It is important to note that the SAR value depends on several factors, including the quality and quantity of the radiation and the frequency used, the distance of the device from the body, the exposure time, and the characteristics of the tissues exposed to the radiation.
htmlText_DCE6C904_3B8C_507F_4192_F1337576227C.html = The second part is for wooden models, meaning those made from wood or plywood. In this part, we have a diverse and unique collection of tools and tools that we use to produce models in a professional manner, such as a saw, whether electric or manual, a drill, a sander, and many others.
The device is used to plan and thicken wood. The device is made of cast aluminum components to bear the load, with milled seats to bear safeties and spindles.
htmlText_0694B476_30C5_D3B0_41C5_38E08B32EFA4.html = Third: Measurement Tools, Power Supplies, and Inverters
These devices are used to measure voltage, current, power, frequency, illumination, temperature, and vibration. Also, they can be used in power quality and signal analysis
htmlText_09C19E5D_30DF_CFF0_41C4_1D785D09A52B.html = Third: Measurement Tools, Power Supplies, and Inverters
These devices are used to measure voltage, current, power, frequency, illumination, temperature, and vibration. Also, they can be used in power quality and signal analysis
htmlText_09D43156_30CC_35F0_41B9_A69E677F4E22.html = Third: Measurement Tools, Power Supplies, and Inverters
These devices are used to measure voltage, current, power, frequency, illumination, temperature, and vibration. Also, they can be used in power quality and signal analysis
htmlText_093E265C_30CF_DFF0_41C1_346567937123.html = Third: Measurement Tools, Power Supplies, and Inverters
These devices are used to measure voltage, current, power, frequency, illumination, temperature, and vibration. Also, they can be used in power quality and signal analysis
htmlText_1EB5A13B_34D4_D595_41C0_E9206DC658F4.html = Through hole plating machine
The through hole plating is considered first chemical process in the “Wet Process” stages. This process deposits copper on the drilled insulating wall of the printed circuit board after using the CNC machine. This stage is very important to ensure the connection of electrical paths in the double and multi-layers PCB board.
htmlText_B074731A_398C_308A_41B4_0457FC4FA814.html = Towards the Fabrication of a 20 kW grid-tied
The project is about providing a consulting service to the British University in Egypt that includes designing and programming a signal processor, a solar energy control program connected to the electrical grid with a capacity of 20 kilowatts, in addition to following up on measurements and treatments of digital and various signals outside the organization and collecting them after that. The project falls under the second axis of the Advanced Plan 2030 (new and renewable energy) and aims to produce specialized knowledge and assist in the transfer and localization of technology to contribute to comprehensive economic development. It provides economic returns for the institute in terms of activating advanced laboratory operations. It also helps in creating a stimulating and supportive environment for excellence in the third field. Only scientific applications come at the core of the idea of electronics research.
htmlText_8B3E72F5_3994_519E_41B9_FBCC105C1287.html = Tut interactive educational tools group project
The basic purpose of the project
• Producing a set of educational tools used in learning various science disciplines inspired by the King Tut Collection to raise awareness at the local and international levels of the excellence of the Pharaonic civilization in the arts and sciences, which directly affects education as well as has an impact on tourism promotion.
• Introducing the greatness of Egyptian civilization in science and innovation through an educational and entertaining product for all family members at the local and international levels.
Project Description
The Tut Project comes as the first time to present the King Tut Collection in an interactive way that integrates the educational use of technology and the use of the senses to obtain an effective and influential educational experience. The educational experience is designed in a flexible manner and is not a controlled learning experience, and the learning experience in Tut has adopted the style of play and exploration to obtain learning. The project is based on the idea of using heritage as a basic educational resource to enhance science learning, where practical training takes place in many science disciplines: chemistry, physics, biology, astronomy, and engineering. Toolkits are intended to be used together or individually. The kits are portable and can be used in museums, visitor centers, schools, cultural centers and homes, and some are designed as working models sold in gift shops. Each kit includes more than one hands-on training, a technology application and a printed booklet of multiple educational resources within the same kit in which the highest levels of safety are taken into consideration for child users.
The project consists of a set of interactive educational tools that attract all family members and are easy to carry:
• The Little Princes Story Introduction & Timeline
• Learn astronomy with King Tut
• King Tut Secrets Hours board game
• King Tut's inventions
A collection of interactive exhibits
The total number of educational exhibits that were worked on is 10 educational products
1- The timeline is displayed
2- King Tut’s boat puzzle
3- The president’s model
4- Interactive booklet using A.R. technology
5- Emdot game:
6- Drill on fire or lighter
7- King Tut’s caskets and coffins
8- Bronze trumpet
9- An interactive book (pop-up) about the story of the discovery of King Tut’s tomb
htmlText_292C9428_344C_33B4_41C6_376351AD4F14.html = Ultrasonic Power Sonicator
Ultrasonic Power Sonicator used to dissolve different compounds and in improving homogeneity in various solutions. nanomaterials like metal oxides, nanoclays or carbon nanotubes which tend to be agglomerated when mixed into a liquid. Also, it can be used in sonochemistry synthesis of nano size compounds.
htmlText_B9E6DCA9_ADBD_A066_41E3_E55063FAEE23.html = Vive Pro VR system full kit
HTC Vive Pro's full suite of VR apps that enhance visual immersion in VR with:
• 3.5-inch dual AMOLED screen.
• Frequency 90 Hz.
• Overall resolution of 2880 x 1600 (1440 x 1600 per eye).
• Wide-range tracking capability using SteamVR Base stations and adapters up to 5m x 5m.
Professional-grade VR headset for Virtual Reality application with specifications:
- High Resolution Dual AMOLED 3.5" diagonal screens 1440 x 1600 pixels per eye
(2880 x 1600 pixels combined).
- SteamVR Base Stations support Large-Scale Tracked Areas up to 5m x 5m.
- Hi-Res Certified headphones.
htmlText_2FC35E99_3694_5196_41B1_5352F22028B2.html = Xilinx Evaluation Kits
Xilinx Evaluation kits help designers create customized digital designs using programmable logic blocks.
Xilinx kits are suitable for prototyping systems that require massive data flow and packet processing such as 400+ Gbps systems, large-scale emulation and high performance computing
The available kits can be used to design and simulate digital microsystems and train students and graduates on the modern foundations of digital design that are aligned with the requirements of the labor market in the field of microelectronics.
htmlText_2E662FBD_368C_6F8E_41C2_266BC22CEFF3.html = Xilinx Evaluation Kits
Xilinx Evaluation kits help designers create customized digital designs using programmable logic blocks.
Xilinx kits are suitable for prototyping systems that require massive data flow and packet processing such as 400+ Gbps systems, large-scale emulation and high performance computing
The available kits can be used to design and simulate digital microsystems and train students and graduates on the modern foundations of digital design that are aligned with the requirements of the labor market in the field of microelectronics.
htmlText_1A148340_34FC_55F3_41C8_A36C48980991.html =
ScanCad Inspection
A system for inspection of the bare printed circuit boards in some of the various manufacturing stages also and stencil inspection. It is used to detect errors before production, preventing costly rework, scrap and delays.
Provides detailed reporting data. Inspects features as small as 10 um or 0.5 mil on products up to A2 size.
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The pivotal role of the Electronics Research Institute in supporting the national industry and employing technology to meet societal challenges - Prof. Dr. / Sherine Abdel Qader Moharam, President of the Electronics Research Institute and Chairman of the Board of Directors
The sustainable development strategy "Egypt Vision 2030" represents a promising future vision in the comprehensive development process and in reviving Egypt's pioneering role regionally. It also represents a road map for all research centers and institutes to confront the challenges that Egypt is experiencing in its local, regional and global dimensions and to find the best ways to deal with them in a way that enables the Egyptian state to move to the ranks of advanced countries and achieve the desired development goals for Egyptian society. The Electronics Research Institute is one of the distinguished institutions that can strongly participate in achieving this strategy, as the institute is one of the most important integrated and specialized applied research institutes in Egypt in the field of electronics, communications and information technology. It has many specialized research departments and central laboratories equipped with the latest devices and technologies at the national level to meet the requirements of developing and advancing the electronics industry in Egypt and to support semi-industrial applied projects carried out by the institute in the field of electronics and information technology, as well as providing advice to the industry, production and services sectors and conducting specialized feasibility studies. The institute also translates the sustainable development strategy into well-studied and integrated executive mechanisms to support scientific research and technological development and stimulate national energies for creativity and innovation and drive the wheel of entrepreneurship to enter the advanced technical fields that distinguish the Fourth Industrial Revolution such as the Internet of Things, artificial intelligence, cybersecurity and big data analysis, self-driving cars and 3D printers. In addition to the integration of different technologies and deepening the integration between digital and service fields, and the penetration of technology in many modern fields such as nanotechnology and biotechnology, research and manufacturing of integrated circuits, microsensors and microelectromechanical components of all types and scopes of work have become urgent national needs, in addition to the emergence of the pivotal role of information and communications technology in the process of economic development and progress. In this context, it is worth noting that the institute has seventeen initiatives that it aims to implement, which are: rationalizing water consumption and developing groundwater, maximizing Egypt's position on the international tourism map and preserving heritage through digital technologies, improving the quality of the agricultural process, deepening the manufacture of microelectronics, developing health services, developing education, maximizing the application of robot technology, developing new and renewable energy sources, preserving the environment and identifying sources of pollution, space and national security, deepening artificial intelligence applications, operating means of transportation with an electrical source, expanding wireless communications applications, deepening cloud computing applications and big data, deepening audio and image processing applications, deepening local manufacturing and spreading the idea of technological incubators to encourage entrepreneurship in the field of electronics manufacturing, all of which aim to serve national projects, including factory automation and increasing their production capacity, data security and digital processing, detecting water sources and determining the percentage of pollution in them, detecting viruses, smart home/factory projects and precision agriculture, applications to reduce congestion and traffic accidents, saving energy consumption and smart meters and energy-saving street lighting. The institute also aims to invest in establishing a clean room to raise the capabilities of the industry Electronics and to meet the needs of the local market, compete with imported products in order to replace imports, increase exports and direct the Egyptian economy towards a science and knowledge-based economy. His Excellency the President of the Republic paid great attention to the clean room and recommended the rapid completion of buildings, constructions and actual operation to put Egypt on the global map of electronics, communications and digital technology services. The interest in developing the microelectronics industry in Egypt is one of the main pillars of supporting the national economy due to its contribution to the local design and manufacture of electronics and microsensors and their development to compete with global products, and opening new regional and international markets for the Egyptian product. In addition to providing many permanent and temporary job opportunities for young people and supporting the establishment of start-up companies in the field of system design and implementation of electronics, microsensors and integrated circuits, in addition to linking research and industrial bodies in order to enhance the ability to transform theoretical scientific research into industrial products. The state has paid special attention to supporting the scientific research process in order to exploit scientific research and research outputs by issuing the Science, Technology and Innovation Incentives Law No. 23 of 2018 and its executive regulations issued pursuant to Prime Ministerial Resolution No. 1186 of 2019. The law gave the right to higher education and scientific research bodies to exploit scientific research and research outputs, either individually or in partnership with others, to provide self-resources for them and to develop industry and serve civil society for the purpose of creating or developing a product in order to raise quality, reduce costs or improve performance, or for the purpose of creating or developing a mechanism or developing the use of information technology applications for existing or new services. The law has shown the ways to achieve this either by establishing science and technology valleys or technology incubators or establishing companies, whether alone or in partnership with others, with the aim of benefiting from research outputs. The Electronics Research Institute was honored to be the first research body to benefit from the application of the law.
Science, Technology and Innovation Incentives and its Executive Regulations, where the Minister of Higher Education and Scientific Research issued Decision No. 6 dated January 20, 2021 approving the establishment of the Science and Technology City for Electronics Research and Industry affiliated to the Electronics Research Institute, which will advance the development of the electronics industry in Egypt, which is one of the main pillars of the advancement of the national economy due to its contribution to providing many job opportunities for young people and supporting the establishment of companies specialized in the field of designing systems and micro-electromechanical systems and integrated circuits that are used in many important industries, including the manufacture of sensors and Internet of Things systems. The truth is that the Electronics Research Institute is now racing against time through hard and diligent work to apply the concept of correct scientific research that has a positive impact on solving societal problems and an economic return on the individual and the state. In order to achieve this, the institute is preparing strong specialized research groups that produce knowledge, are capable of innovation, and push the national economy forward with what they achieve in terms of sustainable development and technological solutions to address societal challenges, raise the efficiency of national industry and move towards the Arab and African region.
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The pivotal role of the Electronics Research Institute in supporting the national industry and employing technology to meet societal challenges - Prof. Dr. / Sherine Abdel Qader Moharam, President of the Electronics Research Institute and Chairman of the Board of Directors
The sustainable development strategy "Egypt Vision 2030" represents a promising future vision in the comprehensive development process and in reviving Egypt's pioneering role regionally. It also represents a road map for all research centers and institutes to confront the challenges that Egypt is experiencing in its local, regional and global dimensions and to find the best ways to deal with them in a way that enables the Egyptian state to move to the ranks of advanced countries and achieve the desired development goals for Egyptian society. The Electronics Research Institute is one of the distinguished institutions that can strongly participate in achieving this strategy, as the institute is one of the most important integrated and specialized applied research institutes in Egypt in the field of electronics, communications and information technology. It has many specialized research departments and central laboratories equipped with the latest devices and technologies at the national level to meet the requirements of developing and advancing the electronics industry in Egypt and to support semi-industrial applied projects carried out by the institute in the field of electronics and information technology, as well as providing advice to the industry, production and services sectors and conducting specialized feasibility studies. The institute also translates the sustainable development strategy into well-studied and integrated executive mechanisms to support scientific research and technological development and stimulate national energies for creativity and innovation and drive the wheel of entrepreneurship to enter the advanced technical fields that distinguish the Fourth Industrial Revolution such as the Internet of Things, artificial intelligence, cybersecurity and big data analysis, self-driving cars and 3D printers. In addition to the integration of different technologies and deepening the integration between digital and service fields, and the penetration of technology in many modern fields such as nanotechnology and biotechnology, research and manufacturing of integrated circuits, microsensors and microelectromechanical components of all types and scopes of work have become urgent national needs, in addition to the emergence of the pivotal role of information and communications technology in the process of economic development and progress. In this context, it is worth noting that the institute has seventeen initiatives that it aims to implement, which are: rationalizing water consumption and developing groundwater, maximizing Egypt's position on the international tourism map and preserving heritage through digital technologies, improving the quality of the agricultural process, deepening the manufacture of microelectronics, developing health services, developing education, maximizing the application of robot technology, developing new and renewable energy sources, preserving the environment and identifying sources of pollution, space and national security, deepening artificial intelligence applications, operating means of transportation with an electrical source, expanding wireless communications applications, deepening cloud computing applications and big data, deepening audio and image processing applications, deepening local manufacturing and spreading the idea of technological incubators to encourage entrepreneurship in the field of electronics manufacturing, all of which aim to serve national projects, including factory automation and increasing their production capacity, data security and digital processing, detecting water sources and determining the percentage of pollution in them, detecting viruses, smart home/factory projects and precision agriculture, applications to reduce congestion and traffic accidents, saving energy consumption and smart meters and energy-saving street lighting. The institute also aims to invest in establishing a clean room to raise the capabilities of the industry Electronics and to meet the needs of the local market, compete with imported products in order to replace imports, increase exports and direct the Egyptian economy towards a science and knowledge-based economy. His Excellency the President of the Republic paid great attention to the clean room and recommended the rapid completion of buildings, constructions and actual operation to put Egypt on the global map of electronics, communications and digital technology services. The interest in developing the microelectronics industry in Egypt is one of the main pillars of supporting the national economy due to its contribution to the local design and manufacture of electronics and microsensors and their development to compete with global products, and opening new regional and international markets for the Egyptian product. In addition to providing many permanent and temporary job opportunities for young people and supporting the establishment of start-up companies in the field of system design and implementation of electronics, microsensors and integrated circuits, in addition to linking research and industrial bodies in order to enhance the ability to transform theoretical scientific research into industrial products. The state has paid special attention to supporting the scientific research process in order to exploit scientific research and research outputs by issuing the Science, Technology and Innovation Incentives Law No. 23 of 2018 and its executive regulations issued pursuant to Prime Ministerial Resolution No. 1186 of 2019. The law gave the right to higher education and scientific research bodies to exploit scientific research and research outputs, either individually or in partnership with others, to provide self-resources for them and to develop industry and serve civil society for the purpose of creating or developing a product in order to raise quality, reduce costs or improve performance, or for the purpose of creating or developing a mechanism or developing the use of information technology applications for existing or new services. The law has shown the ways to achieve this either by establishing science and technology valleys or technology incubators or establishing companies, whether alone or in partnership with others, with the aim of benefiting from research outputs. The Electronics Research Institute was honored to be the first research body to benefit from the application of the law.
Science, Technology and Innovation Incentives and its Executive Regulations, where the Minister of Higher Education and Scientific Research issued Decision No. 6 dated January 20, 2021 approving the establishment of the Science and Technology City for Electronics Research and Industry affiliated to the Electronics Research Institute, which will advance the development of the electronics industry in Egypt, which is one of the main pillars of the advancement of the national economy due to its contribution to providing many job opportunities for young people and supporting the establishment of companies specialized in the field of designing systems and micro-electromechanical systems and integrated circuits that are used in many important industries, including the manufacture of sensors and Internet of Things systems. The truth is that the Electronics Research Institute is now racing against time through hard and diligent work to apply the concept of correct scientific research that has a positive impact on solving societal problems and an economic return on the individual and the state. In order to achieve this, the institute is preparing strong specialized research groups that produce knowledge, are capable of innovation, and push the national economy forward with what they achieve in terms of sustainable development and technological solutions to address societal challenges, raise the efficiency of national industry and move towards the Arab and African region.
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The pivotal role of the Electronics Research Institute in supporting the national industry and employing technology to meet societal challenges - Prof. Dr.Sherine Abd El-Kader Moharram chairman of the Electronics Research Institute,Chairman of Board of Directors
The sustainable development strategy "Egypt Vision 2030" represents a promising future vision in the process of comprehensive development and in reviving Egypt's leading role regionally. Moving to the ranks of developed countries and achieving the desired development goals of the Egyptian society. The Electronics Research Institute is one of the distinguished institutions that can participate strongly in achieving this strategy. The Institute is one of the most important integrated and specialized applied research institutes in Egypt in the field of electronics, communications and information technology. It has many specialized research departments and central laboratories equipped with the latest devices and technologies at the national level. To meet the requirements of the development and development of the electronics industry in Egypt and to support the semi-industrial applied projects carried out by the Institute in the field of electronics and information technology, as well as providing advice to the sectors of industry, production and services and the work of specialized feasibility studies,The institute also translates the sustainable development strategy into well-thought-out and integrated implementation mechanisms to support scientific research and technological development, stimulate national energies for creativity and innovation, and push the wheel of entrepreneurship to break into the advanced technical fields of the Fourth Industrial Revolution such as the Internet of Things, artificial intelligence, cybersecurity and big data analysis, and autonomous cars. and 3D printers. This is in addition to integrating different technologies, deepening integration between digital and service fields, and accessing technology in many modern fields such as nanoparticle technology, biotechnology,Also, the research and manufacture of integrated circuits, micro-sensors and micro-electromechanical components of all kinds and scope of work have become urgent national needs, in addition to the emergence of the pivotal role of information and communication technology in the process of development and economic development.In this context, it is worth noting that the institute has seventeen initiatives aimed at implementing them: rationalizing water consumption and developing groundwater, maximizing Egypt's position on the international tourism map, preserving heritage through digital technologies, improving the quality of the agricultural process, deepening the manufacture of microelectronics, and developing health services. Developing education, maximizing the application of robot technology, developing new and renewable energy sources, preserving the environment and determining pollution sources, space and national security, deepening artificial intelligence applications, operating transportation with an electric source,Expansion of wireless communications applications, deepening cloud computing applications and big data, deepening voice and image processing applications, deepening local manufacturing and spreading the idea of technological incubators to encourage entrepreneurship in the electronics industry, all of which aim to serve national projects, including factory automation and increasing their production capacity, data security and processing Digital, detecting water sources and determining the percentage of pollution in them, detecting viruses, smart home/factory projects and precision agriculture, applications to reduce congestion and traffic accidents, saving energy consumption, smart meters and energy-saving street lighting.The institute also aims to invest in the establishment of a clean room to raise the capabilities of the electronics industry and to meet the needs of the local market, and to compete with the imported product in order to replace imports, increase exports, and direct the Egyptian economy towards an economy based on science and knowledge. His Excellency the President of the Republic paid great attention to the clean room and recommended the speedy completion of buildings and construction and the actual operation of putting Egypt on the global map for electronics, communications and digital technology services. The interest in developing the microelectronics industry in Egypt is one of the main pillars to support the national economy due to its contribution to the design and local manufacture of electronics and microsensors.and developing them to compete with global products, and to open new regional and international markets to the Egyptian product. In addition to providing many permanent and temporary job opportunities for young people and supporting the establishment of start-up companies in the field of systems design and implementation of electronics, micro-sensors and integrated circuits, this is in addition to linking research and industrial bodies in order to enhance the ability to transform theoretical scientific research into industrial products.The state has paid special attention to supporting the scientific research process in order to exploit scientific research and research outputs by issuing the Science, Technology and Innovation Incentives Law No. 23 of 2018 and its executive regulations issued pursuant to Prime Minister Decision No. 1186 of 2019. The law gave the higher education and scientific research bodies the right to exploit research Scientific and research outputs, whether singly or jointly with others, to provide self-resources for them, to develop industry and serve civil society, for the purpose of creating or developing a product in order to raise quality, reduce cost, or improve performance, or for the purpose of creating or developing a mechanism or developing a use of information technology applications for existing or developed services .The law clarifies ways to achieve this either through the establishment of science and technology valleys or technology incubators or the establishment of companies, whether alone or jointly with others in order to benefit from the research outputs, and the Electronics Research Institute was honored by being the first research body to benefit from the application of the Science and Technology Incentives Law The Minister of Higher Education and Scientific Research issued Decree No. 6 on January 20, 2021 approving the establishment of the Science and Technology City for Electronics Research and Industry affiliated with the Electronics Research Institute, which will advance the development of the electronics industry in Egypt, which is one of the main pillars for the advancement of the national economy due to the It contributes by providing many job opportunities for young people and supporting the establishment of specialized companies In the field of designing systems, micro-electromechanical systems and integrated circuits that are used in many important industries, including the manufacture of sensors and Internet of things systems.The truth is that the Electronics Research Institute is now racing against time through hard and diligent work to implement the concept of correct scientific research that has a positive impact towards solving societal problems and an economic return on the individual and the state. In order to achieve this, the Institute is preparing strong specialized research groups that produce knowledge, are able to innovate, and push the national economy forward with its sustainable development and technological solutions to address the challenges to societal challenges, raising the efficiency of the national industry, and heading towards the Arab and African region.
HTMLText_1E18423C_57F1_802D_41C4_458DB7F892AC_mobile.html =
The pivotal role of the Electronics Research Institute in supporting the national industry and employing technology to meet societal challenges - Prof. Dr.Sherine Abd El-Kader Moharram chairman of the Electronics Research Institute,Chairman of Board of Directors
The sustainable development strategy "Egypt Vision 2030" represents a promising future vision in the process of comprehensive development and in reviving Egypt's leading role regionally. Moving to the ranks of developed countries and achieving the desired development goals of the Egyptian society. The Electronics Research Institute is one of the distinguished institutions that can participate strongly in achieving this strategy. The Institute is one of the most important integrated and specialized applied research institutes in Egypt in the field of electronics, communications and information technology. It has many specialized research departments and central laboratories equipped with the latest devices and technologies at the national level. To meet the requirements of the development and development of the electronics industry in Egypt and to support the semi-industrial applied projects carried out by the Institute in the field of electronics and information technology, as well as providing advice to the sectors of industry, production and services and the work of specialized feasibility studies,The institute also translates the sustainable development strategy into well-thought-out and integrated implementation mechanisms to support scientific research and technological development, stimulate national energies for creativity and innovation, and push the wheel of entrepreneurship to break into the advanced technical fields of the Fourth Industrial Revolution such as the Internet of Things, artificial intelligence, cybersecurity and big data analysis, and autonomous cars. and 3D printers. This is in addition to integrating different technologies, deepening integration between digital and service fields, and accessing technology in many modern fields such as nanoparticle technology, biotechnology,Also, the research and manufacture of integrated circuits, micro-sensors and micro-electromechanical components of all kinds and scope of work have become urgent national needs, in addition to the emergence of the pivotal role of information and communication technology in the process of development and economic development.In this context, it is worth noting that the institute has seventeen initiatives aimed at implementing them: rationalizing water consumption and developing groundwater, maximizing Egypt's position on the international tourism map, preserving heritage through digital technologies, improving the quality of the agricultural process, deepening the manufacture of microelectronics, and developing health services. Developing education, maximizing the application of robot technology, developing new and renewable energy sources, preserving the environment and determining pollution sources, space and national security, deepening artificial intelligence applications, operating transportation with an electric source,Expansion of wireless communications applications, deepening cloud computing applications and big data, deepening voice and image processing applications, deepening local manufacturing and spreading the idea of technological incubators to encourage entrepreneurship in the electronics industry, all of which aim to serve national projects, including factory automation and increasing their production capacity, data security and processing Digital, detecting water sources and determining the percentage of pollution in them, detecting viruses, smart home/factory projects and precision agriculture, applications to reduce congestion and traffic accidents, saving energy consumption, smart meters and energy-saving street lighting.The institute also aims to invest in the establishment of a clean room to raise the capabilities of the electronics industry and to meet the needs of the local market, and to compete with the imported product in order to replace imports, increase exports, and direct the Egyptian economy towards an economy based on science and knowledge. His Excellency the President of the Republic paid great attention to the clean room and recommended the speedy completion of buildings and construction and the actual operation of putting Egypt on the global map for electronics, communications and digital technology services. The interest in developing the microelectronics industry in Egypt is one of the main pillars to support the national economy due to its contribution to the design and local manufacture of electronics and microsensors.and developing them to compete with global products, and to open new regional and international markets to the Egyptian product. In addition to providing many permanent and temporary job opportunities for young people and supporting the establishment of start-up companies in the field of systems design and implementation of electronics, micro-sensors and integrated circuits, this is in addition to linking research and industrial bodies in order to enhance the ability to transform theoretical scientific research into industrial products.The state has paid special attention to supporting the scientific research process in order to exploit scientific research and research outputs by issuing the Science, Technology and Innovation Incentives Law No. 23 of 2018 and its executive regulations issued pursuant to Prime Minister Decision No. 1186 of 2019. The law gave the higher education and scientific research bodies the right to exploit research Scientific and research outputs, whether singly or jointly with others, to provide self-resources for them, to develop industry and serve civil society, for the purpose of creating or developing a product in order to raise quality, reduce cost, or improve performance, or for the purpose of creating or developing a mechanism or developing a use of information technology applications for existing or developed services .The law clarifies ways to achieve this either through the establishment of science and technology valleys or technology incubators or the establishment of companies, whether alone or jointly with others in order to benefit from the research outputs, and the Electronics Research Institute was honored by being the first research body to benefit from the application of the Science and Technology Incentives Law The Minister of Higher Education and Scientific Research issued Decree No. 6 on January 20, 2021 approving the establishment of the Science and Technology City for Electronics Research and Industry affiliated with the Electronics Research Institute, which will advance the development of the electronics industry in Egypt, which is one of the main pillars for the advancement of the national economy due to the It contributes by providing many job opportunities for young people and supporting the establishment of specialized companies In the field of designing systems, micro-electromechanical systems and integrated circuits that are used in many important industries, including the manufacture of sensors and Internet of things systems.The truth is that the Electronics Research Institute is now racing against time through hard and diligent work to implement the concept of correct scientific research that has a positive impact towards solving societal problems and an economic return on the individual and the state. In order to achieve this, the Institute is preparing strong specialized research groups that produce knowledge, are able to innovate, and push the national economy forward with its sustainable development and technological solutions to address the challenges to societal challenges, raising the efficiency of the national industry, and heading towards the Arab and African region.
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