ATE Development
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ATE Development
Aero Engineering Support Group
ATE Development Aero Engineering Support specializes in designs and manufacturing of a wide variety of Automatic Test Equipment (ATE) of support for military avionics, commercial avionics, industrial sector, etc. AESG is committed to providing industry leading equipment that are designed to be scalable and expandable ATE capable of providing reliable functional test solutions for any electronic assembly or Circuit Card Assembly. New from Aero Engineering Support is the A2500 system, providing:
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ATE Development Services
Automated Testing Engineering and Automated Test Equipment (ATE) provide a faster, more efficient way to test your product. With the help of LabVIEW and Modular Instruments, our engineers create test and measurement systems for all areas of product design and manufacturing.Whether you are in early stage R&D prototype testing, and design validation, or providing a solution for quality control and life testing our engineers can work with you to design fully customized automated Test Systems using entirely off-the-shelf products to ensure you deliver quality product on time.
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Generic RF ATE Test
The Generic RF ATE is developed to test the Radar and Radar Subsystems. The ATE is primarily built using an instrumentation control, precision RF routing systems and rack mounted test instruments. Generic RF ATE system enables measurement of parameters of Radar equipment such as Local Oscillators, Waveform Generators, Up and Down Converters, Analog Receivers, Array Group Receiver Units, TR Modules. The ATE is configured to test the Radars upto 18GHz frequency range.
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Custom ATE Solutions
ATEC Matrix Corporation can be your one-stop provider of complete turn-key ATE Systems. With over 15 years in ATE Design, Development and implementation we have the expertise and experience to work with you efficiently to provide whatever level of solution your program requires.
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NI TestStand Development Services
Simplicity AI have a high degree of ATE software development expertise using NI TestStand, in industry areas such as aerospace, defense and telecoms. With Certified TestStand Architects and Certified TestStand Developers on the engineering team, and holding National Instruments Alliance Partner status, Simplicity AI have the knowledge and experience to deliver advanced test software solutions.
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Power Module Tester
The Power Module Checkout ATE is developed for testing DC-DC Power modules typically utilized in India's space program. The DC-DC converters are exhaustively tested for all design parameters including supply voltage range, line and load regulation, efficiency, ripple, noise, transient response and so on. Special power sources and loading mechanisms are deployed to enable testing of various types of power modules.
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VXI Video Processor System
65VP1
NAI’s 65VP1 is a Video Processor System (VPS) on a VXI board. Capable of highly accurate video stimulus and measurements, this state-of-the-art instrument is the culmination of over three generations of Automatic Test Equipment (ATE) development programs. It provides increased functional density, and it reduces power consumption, size, and cost of the overall system. The 65VP1 is ideally suited for defense and commercial ATE programs, including television applications.
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I-Pi SMARC Development Kit based on MediaTek® Genio 1200 platform
I-Pi SMARC 1200
The I-Pi SMARC 1200 is a SMARC-based, AI and graphics-centric solution development kit powered by MediaTek® Genio 1200 (Octa-core Arm Cortex-A78 x4 + A55 x4) processor with a 5-core Arm Mali-G57 GPU for advanced 3D graphics and an integrated APU (AI Processor Unit) system delivering up to 5 TOPS.
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3U VPX Development Kit
This development kit enables efficient 3U VPX backplane design and software verification.- 3U VPX architecture- One CPU blade, one GPU blade (optional), SOSA-aligned- 1TB NVMe pre-installed in CPU blade- Rear transition module(s) included- Test Frame with backplane pre-installed
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I-Pi SMARC Development Kit Based On Intel® 6th Gen Atom® X6425E Quad-Core SoC
I-Pi SMARC Elkhart Lake
The I-Pi SMARC Elkhart Lake is a SMARC-based edge solution development kit powered by Intel Atom x6425E quad-core SoC with integrated Intel UHD graphics and comprehensive high speed interfaces. Development-focused, this kit also supports the latest version of the Intel® Distribution of OpenVINO™ toolkit, which features more deep-learning models, higher inferencing performance, and fewer code changes, making developing ever simpler.
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COM-HPC Server Type Size E Reference Development Platform based on Ampere® Altra® SoC
Ampere Altra Developer Platform
Backed by a broad Arm® ecosystem with an Ampere® Altra® SoC at its core, using the Arm® Neoverse™ N1 platform, the Ampere Altra Developer Platform provides premium performance from a cloud-to-edge infrastructure, keeps an extremely low thermal envelope, lower TCO, and significantly lower power consumption than x86 designs. It supports the open source EDKII as bootloader with UEFI, so customers can just download a stock AArch64 (arm64) ISO such as Ubuntu and install it through booting a live ISO directly on the target. The same convenience we have become used to by using x86 / amd64 target systems.
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COM-HPC Server Type Ice Lake-D Starter Kit
The COM-HPC Server Type Starter Kit consists of a COM-HPC Server Type module, memory, and thermal solution of your choice with an extended ATX size COM-HPC Server Type reference carrier board, as well as necessary cabling. It allows you to quickly emulate the functionality of your end product for software development and hardware verification. Carrier board design files (schematics, mechanical drawings), COM-HPC module drivers, BSP, and user manual are also offered to aid you in designing your own custom carrier board.
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I-Pi SMARC Development Kit based on NXP® i.MX 8M Plus Quad Arm® Cortex-A53 Processor
I-Pi SMARC IMX8M Plus
The I-Pi SMARC IMX8M Plus is a SMARC-based smart solution development kit powered by NXP i.MX8M Plus (Quad-core Arm Cortex-A53) processor with a Neural Processing Unit (NPU) at up to 2.3 TOPS.This is the first SMARC R2.1 development kit focused on machine learning, vision, advanced multimedia, and industrial IoT with high reliability. As such, it supports dual image processors and two camera inputs for an effective Vision System, as well as applications beyond, including smart homes, building cities, and industry 4.0.
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COM-HPC Server Type Development Kit based on Ampere® Altra® SoC
Ampere Altra Dev Kit
Ampere Altra Dev Kit consists of a COM-HPC Server Base carrier paired with a COM-HPC Server Type Size E module and heatsink with fan. The module features Ampere® Altra® SoC (Arm Neoverse N1-based architecture) harnessing 32/64/96/128 Arm v8.2 64-bit cores for up to 1.7/2.2/2.8/2.6 GHz and providing support for up to 768GB DDR4 memory, offering unprecedented performance and power per watt with exceptional scalability.
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I-Pi SMARC IoT Development Kit Based On Intel® 7th Gen Atom® X7433RE Quad-Core SoC
I-Pi SMARC Amston Lake
The I-Pi SMARC Amston Lake is a SMARC-based edge solution devkit powered by power-efficient Intel Atom x7433RE quad-core SoC with integrated Intel UHD graphics with 32 EUs, deep learning inference capabilities, industrial grade durability and comprehensive high-speed interfaces.
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Automation Product Software Development Kit
APS SDK
APS means “Automation Product Software”. APS library provides users a uniform interface to access all of ADLINK products which support it. It can cover many automation fields especially in machine automation. The most important component in machine automation is motion control. APS library was first born with motion control which co-working components such as system platform management, field bus communication function, general digital input/output, general analog input/output and various counter/timer supports are all built-in components in APS. The APS library will be an all-in-one solution in automation field of ADLINK products.
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COM Express Type 10 Starter Kit Plus
COM Express Type 10 Starter Kit Plus
The COM Express Type 10 nanoX Starter Kit Plus consists of a COM Express Type 10 core module reference carrier board that provides two PCIe Mini Card slots, 2 RJ-45 LAN ports, 2x USB 3.0, 2x USB 2.0, 1x USB client, 2x DB-9 COM, 1x SD card socket, and Mic/Linein/ Line-out. ADLINK also provides additional development tools including a verified 10.1" LVDS panel (optional), power supply, thermal solution and cabling accessories.
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I-Pi SMARC Development Kit Based On NXP® I.MX 95 Six-Core Arm® Cortex-A55, M7 & M33
I-Pi SMARC IMX95
The ADLINK LEC-IMX95 is a powerful and versatile SMARC module that delivers high-performance computing, graphics, machine learning, and vision capabilities for IoT and industrial applications. It is based on the NXP i.MX95 processor, which integrates six Arm Cortex-A55 cores, one Arm Cortex-M7 core, one Arm Cortex-M33 core, an Arm Mali GPU, an ISP, and an eIQ Neutron NPU that can run at up to 2 TOPS.
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Development System
PCIe490
The PCIe490 Expansion Chassis enables users to scale application workstations with up to eight additional PCIe boards per chassis and up to 63 total slots with chassis daisy chaining. It was designed to accommodate the Abaco Systems PC820 and PC821 with Xilinx Ultrascale technology and multiple FMC+ interfaces.
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I-Pi SMARC Development Kit based on Qualcomm® Robotics RB5 Platform
I-Pi SMARC RB5
The I-Pi SMARC RB5 is a SMARC-based AIoT and robotics development kit harnessing ADLINK LEC-RB5, powered by the Qualcomm® QRB5165 SoC with Qualcomm® Kyro™ 585 octa-core CPU (8x Arm Cortex-A77), and Qualcomm® AI Engine.
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Development Platform
NFC/WLC
CISC is offering various technology elements to support the design of NFC-based WLC (wireless charging). These pre-tested hardware modules including various antenna sizes, firmware, and software support customers to quickly have available solutions for their requirements. Customization helps in particular for very challenging application requirements. Customers benefit from very fast time to market for WLC solutions.
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Development Kit
The VP430 is 3U VPX RF processing system featuring the transformational Xilinx® Zynq® Ultrascale+™ RF system-on-chip technology (RFSoC). The ZU27DR device used on the VP430 includes eight integrated analog-to-digital converters at 4GSPS, eight digital-to-analog converters at 6.4 GSPS, a user-programmable FPGA fabric, and multi-core Zynq ARM® processing subsystem.
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Development Platform
LaunchPad™
Begin rapid prototyping applications in minutes with our microcontroller-based LaunchPad kits, Sitara™-processor-powered BeagleBoards and SimpleLink™ wireless connectivity SensorTags. The Sidekick line of kits from Seeedstudio offer customers a quick way to evaluate custom circuits with many of the popular microcontroller development kits available on the market.
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Rugged COM-HPC Server Type Size E Reference Development Platform Based On Ampere® Altra® SoC
Ampere Altra Developer Rugged
The rugged 4U rackmount server platform provides a cloud-native environment for embedded edge development. It can host the SOAFEE (Scalable Open Architecture for Embedded Edge) providing a cloud-native environment for embedded edge development and is compatible with Autoware Foundation's Autoware Open AD Kit. It supports the open source EDKII as bootloader with UEFI, so customers can just download a stock AArch64 (arm64) ISO such as Ubuntu and install it through booting a live ISO directly on the target. The same convenience we have become used to by using x86 / amd64 target systems.
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Custom Development
Specially developed power supplies require extensive industry knowledge. If, despite the wide range of COTS products, we do not have a suitable power supply for your application in the standard range, we will be happy to develop power supply solutions with our experienced engineering for your need. The development work can include both electronic and mechanical constructions, as well as programming.
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Custom Sensor Development
X4M03 | X4M06
Kickstart your sensor product development with the XeThru development platform, and quickly develop a prototype using certified radar sensors and your programming language of choice, be it MATLAB, Python or C++. All embedded functionality for your radar sensor project is included; access to parametric control of the XeThru X4 UWB radar SoC, the back-end data processing it demands, and communcation stacks that connects to the host software running on Windows, Mac, Linus and embedded targets.
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Development System
FE-C450
* Emulates Dallas Semiconductors DS89C450 * 62K Code Memory * Real-Time Emulation * Frequency up to fmax at 5V * Windows Debugger For C/C++ And Assembler * 44-PLCC Emulation Header * Target Board and Programmer Included * RS-232 or USB Interface * 64K C/ASM and 8K C++ Included
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Microprocessor Development System
DS-48
# Real-Time and Transparent In-Circuit Emulator# Supports Philips Telecom Derivatives# Adaptable to 8051 Derivatives# Emulates 1.5V to 6V Microcontrollers# Maximum Frequency of 40MHz# 8K of Internal Memory# DOS and MS-Windows Debuggers# 32K Trace Memory and Logic Analyzer "on the Fly"# 8K Hardware and Conditional Breakpoints
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Electrical Development & Redesign
Your product description goes hereARC’s electrical engineering team has the leg up when it comes to developing or redesigning to your specific requirements.All the way from prototyping to cable design to integration, our talented team of clever engineers can deveop a prototype quickly and get your project off on the right foot. Whether it is a new solution or if you are redesigning an obsolescent FPGA system, our team can provide quickly and effectively while still keeping your budget in mind.
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Anite Development Toolset
Benefit from a comprehensive suite of tools that support all phases of wireless terminal development, from pre-silicon protocol module development through to systems integration and verificationGain easy access to parameters at lower layers to re-create tests in the very early stages of chipset and device developmentAccess an extensive LTE/LTE-Advanced technology roadmap including early 5G specificationsRemain in control of test designs through accessing Layer 1 and Layer 2 using Application Programming Interfaces (APIs)Benefit from a high level of flexibility and control in terms of test creation





























