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Automated ICT System
With world-famous in-circuit test technologies and innovations around automated inline handlers, Keysight automated inline ICT solutions are versatile and flexible and provide you:
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2-Module ICT System, I317x Series 6
E9902G
Keysight's family of i3070 Series 6 In-Circuit Test (ICT) systems are built on a proven technology foundation, and they improve test efficiency with time-tested software, hardware, and programmability. I3070 Series 6 ICT tester supports a wide range of printed circuit board assembly (PCBA) sizes for applications including IoT and 5G, as well as automotive and energy. The i3070 features a unique design that delivers the shortest signal path between measurement circuitry and devices under test to minimize undesired effects from parasitic capacitance, improve immunity to crosstalk, and eliminate stray signal coupling effects, delivering consistent and repeatable measurements. The Series 6 is fully backward compatible with previous systems and makes highly repeatable measurements.
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In-line High-Density ICT System Series 7i
E9988GL
The E9988GL Keysight i3070 Series 7i Inline High-Density In-Circuit Test (ICT) system brings industry-leading ICT technologies into your automated manufacturing line, saving resources and optimizing your automated test strategy.
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4-Module ICT System, I307x Series 6
E9903G
Test efficiency, test system stability, and seamless equipment integration. Keysight’s i3070 Series 6 family provides those improvements built upon a proven technology foundation. With time-tested software, hardware, and programmability, the Series 6 are fully backward compatible with previous systems, and they make highly repeatable measurements.
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Standalone Bench Test System for FCT, ICT, ISP and Boundary Scan
LEON Bench
The LEONBench test system is a flexible and scalable test system that features an excellent signal integrity and a high-quality fixture interface. This is achieved by combining a cableless connection from ABex modules to Virginia panel interface connectors. The system is optimized for high pin count test applications. Furthermore, it can be equipped with vacuum and pneumatic. Support for multi-level contact fixtures enables separate contact levels for FCT and ICT. The Konrad ITA (Interchangeable Test Adapter) frame allows various fixture houses all over the world to build custom fixtures for the LEONBench. Up to 15U additional rack space allows adding a bunch of high-performance measurement devices from various manufactures. An integrated power distribution unit takes care about power on and off sequencing.As part of the LEON Family, LEONBench is based on the ABex platform which directly incorporates Konrad analog bus technology and PXI/PXIe in one chassis.
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Inline test system for FCT, ICT, ISP and Boundary Scan for Automated Operation
LEON InLine
High production volume often requires inline solutions with fully automated product Handling – the LEONlnline is a complete Inline Board Test Solutions for printed circuit boards. It integrates a flexible and scalable test system that features an excellent signal integrity and a high-quality fixture interface. This is achieved by combining a cableless connection from ABex modules to Virginia panel interface connectors.
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Manual Test System for ICT & ISP with Integrated ABex and up to 426 Test Points
LEON Fixture
The LEONFixture is the ideal ICT and ISP solution for small and cost sensitive applications. This manually operated test system combines optimal ergonomics with high performance, durability and precision, ensuring your investment over the long term. The LEONFixture features a test system integrated in a manual base fixture. The system is designed to be used with an Ingun ATS MA13 insert which could be customized by a lot of fixture houses all over the world.As part of the LEON Family, LEONFixture is based on the ABex platform which directly incorporates Konrad analog bus technology and PXI/PXIe in one chassis.
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Compact & Flexible Test Systems for FCT,ICT, ISP and Boundary Scan Designed for Easy Integration
LEON Rack
The LEONRack test system is a flexible test system that could be installed in automation or handling solutions. It is highly flexible and available in three different chassis sizes from low pin count to high pin count test systems. As part of the LEON Family, LEONRack is based on the ABex platform which directly incorporates Konrad analog bus technology and PXI/PXIe in one chassis.
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USB2.0 Module With 2 CAN Bus Nodes ARINC825 Compliant For Testing & Simulation of Avionic ARINC825/CAN Bus Systems
APU825-2
USB2.0 module with 2 CAN bus nodes ARINC825 compliant for testing and simulation of Avionic ARINC825/CAN bus systems.
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AIM System Solutions
AIM can provide a wide range of customized solutions:*Special-to Type Test Equipment (STTE)*High Level Bus Analysers (HLBA)*Data Acquisition Recording & Simulation Systems*Aircraft Ground Equipment (AGE)*MIL-STD-1760 Weapon Test Sets*Fibre optic MIL-STD-1553 Stub/ARINC429 Link Extension System (FoMIS/FoL)
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6U VPX Direct RF Processing System
VP460
The VP460 is designed to enable customers to begin development of their next generation systems using revolutionary new processor technology. It is in alignment with the SOSA™ Technical Standard to provide the interoperability required by the US Air Force, Army and Navy.
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Computing VITA System
CRS 48.5
The CRS 48.5 is a complete, integrated, pre-tested, ready-to-run HPEC rugged subsystem enabling faster development/deployment at lower cost and risk using the most advanced VITA 48.5 compliant air-flowthrough cooling to allow the integration of up to eight quad core Intel® Core™ i7 processing nodes.
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Data Processing System
CRS-D8I-3VF1
The CRS-D8I-3VF1 VPX system’s I/O flexibility is capable of meeting a large number of configurations. It is designed to support Abaco Systems’ Intel 3rd generation Core i7 3U SBCs, Gigabit Ethernet switch, video compression card, CUDA-based graphics cards and a MIL-STD-1553/ARINC429 multi-protocol card.
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COTS Systems
Pre-integrated to save you time and money, pre-validated systems proved an optimum computing platform for mission applications.
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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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FMV Compression System
daq8580
The Daq8580 is designed to address the challenges of processing, transporting and storing full motion video through video encoding, and can interface with a wide variety of analog and digital I/O and process standard video formats up to 1080p30 as well as computer resolutions up to 1600x1200.
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Mezzanine System
5033
ECM P/N 5033 provides eight channels of RS485 / RS422 I/O. The 110 ohm termination for each channel is enabled or disabled in software. Disabling termination saves power by eliminating unneeded or redundant termination. Speeds of up to 20 Mega bits per second are possible, but this design also features a 250K bits per second slower edge rate mode. The 250K bit mode is valuable when EMI is more of a concern and throughput is not important. All channels power up as inputs with the outputs disabled.
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Mezzanine System
3556
The 3556 provides two removable Micro SD flash memory sites, and fourteen bits of general purpose digital I/O. The Micro SD sites are each capable of Gigabytes of storage. A retention mechanism holds the Micro SD card securely in place preventing movement due to vibration or shock.
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Mezzanine System
5174
The 5174 provides two major functions, serving as a precision Voltage Controlled oscillator board and a variable frequency source board. These features can be use together or independently. As a variable frequency source, the 5174 provides a high-resolution variable clock source that is based upon a reference clock supplied by the ECM carrier.
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Mezzanine System
5362
ECM P/N 5362 provides eight channels of LVDS I/O with fixed 100 ohm termination. Speeds are up to 200M bits per second. All channels power up as inputs. Software can then enable outputs on a channel by channel basis.
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Mezzanine System
5188
ECM P/N 5188 provides an AD8109 crosspoint switch for analog or digital signals with 250MHz of Bandwidth. For single ended applications 8 inputs can be connected up to 8 outputs in any configuration.
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Mezzanine System
5676
The Abaco SystemsP/N 5676 ECM module provides eight channels of 16 bit voltage measurement in the 0 to 2.5V volt range. For each channel the common mode voltage range is -100 volts to +100 volts.
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Mezzanine System
5181
ECM P/N 5181 uses TI TLV320AIC23 high resolution audio codecs to provide two channels of Audio input and two channels of Audio output. Each input channel consists of two inputs a left and a right, and each output channel consists of two outputs left and right. The outputs are muteable.
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VPX Processing System
CRS-D4I-3VB1
4-slot, SWaP-reduced, rugged VPX Intel base plate cooled data processing system that can be applied across various applications including civilian and military unmanned vehicles, manned commercial and military aircraft, helicopters, over- and underwater research vessels, ground vehicles, and locomotives.
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Mezzanine System
5235
The 5235 ECM provides 16 bits of simple digital I/O. The digital I/O is connected directly to the digital I/O on the carrier card. Inputs are clamped to about 3V by FET buffer ICs, and are 5V tolerant.
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Mezzanine System
5181 MMS ECM
ECM P/N 5181 uses TI TLV320AIC23 high resolution audio codecs to provide two channels of Audio input and two channels of Audio output. Each input channel consists of two inputs a left and a right, and each output channel consists of two outputs left and right. The outputs are muteable.
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VPX Development System
VPX370 3U
The VPX370 is a second generation VPX development platform that delivers, performance, flexibility, and scalability all in a compact 3U VPX form factor.
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Mezzanine System
3560
ECM P/N 3560 provides four independent I2C channels. For ease of development a PCA9564 interface IC converts parallel data to I2C serial communication. Additionally an LTC1694 I2C accelerator IC decreases the rise time of the passively pulled up I2C bus allowing for greater capacitive loading or higher bus speeds. Each channel is comprised of SCL, SDA and two Grounds.