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Common Core
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ARINC 429 Bus Interfaces
AIM’s > ARINC 429 test, simulation, monitoring and analysis modules use our field proven Common Core hardware design giving you the best performance, best feature set and highest functional integration on the market. The use of SoC (System on Chip) based core designs with multiple processors for real time bus protocol and application support, massive memory and IRIG-B time code encoder/decoder functions are standard. The latest versions also support avionics discrete I/O.
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ARINC818 Cards
> ARINC818 is a specification which has become an Industry standard for the transmission of uncompressed digital video. This commercial standard uses Fibre Channel as a point-to-point communication link for low latency with the ARINC818 defining the packetized protocol for transmission of the digital video information. It is highly flexible and can be used for a variety of onboard display systems in both commercial and military applications. AIM’s ARINC818 cards use our field proven Common Core hardware design giving the best performance, best feature set and highest functional integration on the market. The use of SoC (System on Chip) based core designs with one dual core RISC processor per port, massive DDR3 memory and IRIG-B time encoder/decoder functions are standard. The ARINC818 modules are available in PCIe formats.The new ultra high performance intelligent 4-lane PCIe 2.0 interface modules offer 2 ports with full function test, simulation, monitoring and analyzer functions for ARINC818 interfaces. The dual core processor provides onboard processing and data transfer capabilities for the most demanding applications including ARINC818 support done on board level. Large and high data throughput DDR3 RAM is accessible for the onboard processor as is a high performance FPGA implementing the customized ARINC818 Interfaces enabling the board to analyze incoming data in real time. Each module provides 2 ARINC818 compliant ports. SFP cages make it suitable for different media types as optical or electrical network technologies. Each module is delivered with a Board Support Package (BSP) containing the onboard driver software, a full Application Programming Interface (API) and detailed getting started and programming guides. Powerful PBA.pro databus test and analysis software is optionally available for all our ARINC818 cards.
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STANAG3910/EFEX Modules
AIM’s STANAG3910/EFEX test, simulation, monitoring and analysis modules use our field proven Common Core hardware design giving you the best performance, best feature set and highest functional integration on the market. The use of SoC (System on Chip) based core designs with multiple processors for real time bus protocol and application support, massive memory and IRIG-B time code encoder/decoder functions are standard. The latest versions also support avionics discrete I/O. Configurations with dual redundant concurrent HS/LS Bus Controller (BC), Multiple Remote Terminals, and Chronological/Mailbox Bus Monitor operation with full HS/LS protocol error injection/detection, multi-level triggering, advanced capture/filtering and real time bus recording, time stamping and physical bus replay ensure your bus integrity. Support for EFAbus Direct Digital Links (DDL), Fibre Optic DDL (FODDL) and EFAbus Express extensions (Mixed Mode and Dual Mode operation) are available. To support the French ‘Rafale’ aircraft, modules are available with an Electrical Front End. Single Function variants support cost effective solutions. Each module is delivered with a Board Support Package (BSP) containing the onboard driver software, a full Application Programming Interface (API) and detailed getting started and programming guides. Powerful PBA.pro databus test and analysis software is optionally available for all our STANAG3910 modules.
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AFDX®/ARINC664P7 Modules
AIM’s AFDX®/ARINC664P7 test, simulation, monitoring and analysis modules use our field proven Common Core hardware design giving you the best performance, best feature set and highest functional integration on the market. The use of SoC (System on Chip) based core designs with multiple processors for real time bus protocol and application support, massive memory and IRIG-B time code encoder/decoder functions are standard. Versions are available to support the Boeing specific ARINC664P7 extensions.
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CCD/CPA Level 1 Card Testing
EMVeriCard
EMVeriCard is an EMVCo qualified tool to test contact smart cards. The tool helps to enhance global interoperability of smart cards and prepare for certification testing for Level 1 electrical and protocol requirements according to EMVCo Common Core Definition (CCD) test plan.
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Automotive Electronics Functional Test Systems
Keysight Technologies’ TS-5000 Family of Automotive Electronics Functional Test Systems helps automotive electronics manufacturers get their products to market faster by accelerating test system deployment. It utilizes common architecture and core instrumentations to offer maximum flexibility to keep pace with the dynamic changes in the automotive electronic industry.
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Fibre Channel Modules
AIM’s Fibre Channel test, simulation and analysis modules use our field proven Common Core hardware design giving you the best performance, best feature set and highest functional integration on the market. The use of SoC (System on Chip) based core designs with one dual core RISC processor per port, massive and scalable DDR3 memory and IRIG-B time encoder/decoder functions are standard. The new ultra high performance intelligent 4-lane PCIe 2.0 interface modules offer 2 ports with full function test, simulation, monitoring and analyzer functions for Fibre Channel networks. The dual core processor provides onboard processing and data transfer capabilities for the most demanding Fibre Channel applications including upper layer protocol support done on board level. Large and high data throughput DDR3 RAM is accessible for the onboard processor as is a high performance FPGA implementing the customized Fibre Channel interfaces enabling the board to analyze incoming and modify outgoing data in real time. Each module provides 2 Fibre Channel compliant full duplex ports, implementing the full link level services. SFP cages make it suitable for different media types as optical or electrical network technologies. Ports operate either in Traffic Simulator or Analyzer/Monitor mode with support for port related Frame Statistics. Sophisticated packet capturing mechanism and monitoring features are complimented with powerful triggering and filtering capabilities.
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AIM Interface Modules
AIM’s innovative, unique and successful ‘Common Core’ hardware design set new standards for onboard intelligence and performance when introduced to the market in 1998. Since then, further generations and evolutions of the Common Core approach have been introduced, offering improved performance, higher channel density, lower power consumption, the migration to smaller form factors as well as the support of new avionics bus and network communication standards.
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PANAVIA Modules
AIM’s PANAVIA test, simulation, monitoring and analysis modules use our field proven Common Core hardware design giving you the best performance, best feature set and highest functional integration on the market. The use of SoC (System on Chip) based core design with one processor for real time bus protocol support, massive memory and IRIG-B time code encoder/decoder functions are standard. AIM delivers versions of our modules with extended temperature range and conformal coating. With 8 Tx and 8 Rx channels per module, functions include autonomous transmit sequencing, continuous clock and data transmissions, host controlled double buffering, programmable interrupts, data selection on specific tag identifier, selectable triggers on data and/or tags with full protocol error injection/detection, real time bus recording and time stamping to ensure your bus integrity. Each module is delivered with a Board Support Package (BSP) comaptible to the legacy PCI and cPCI hardware modules.
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Test Software
ATI
The ATI Test System Software and its utilities are built on a core of mature, object-oriented software components that have been thoroughly field tested and refined over many years. All of ATI's systems share a common core functionality and an easy to use program interface. Our highly skilled software and engineering experts are able to integrate nearly any OEM test or embedded systems equipment into the test system's design whether it's standard or proprietary.
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Common Rail Tester
TCR-4
TCR-4 tester is intended to diagnose the Common Rail injection systems. It is used to read values from the high pressure sensor and to control two control pressure valves at a time.
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Common Rail Injector Test Bench
Nanyang NanTai Experimental Equipment Co.,ltd
It adopts advanced frequency conversion technology and digital technology with automatic and manualdouble control for the rotation speed, temperature and count.Equipped with displacement sensor, it can test different kinds of mechanical fuel
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Common API Software
RVL+
Curtiss-Wright Defense Solutions
RVL+ is the common API platform that supports Curtiss-Wright Defense Solutions radar and video product line. To aid in the system integration and application generation process, RVL+ provides a common application programming interface (API) to users.
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Radar Core Chips
Macom Technology Solutions Holdings Inc.
Multifunction GaAs and Silicon MCM designed for communication radar and weather applications. MACOM Core Chips deliver a complete transmit/receive function with phase and amplitude control.
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Drum Core Inductors
Drum core inductors are so named as the conductor (round magnet wire) is wound directly onto the ferrite core which is shaped like a drum or spool. The wire is then connected to the core, a plastic base or metal lead frame to form the surface mount termination. Drum core inductors come in unshielded (high saturation current but potentially more EMI) and shielded constructions (lower saturation current but closed magnetic path for lower EMI). The shielded constructions use either a second ferrite core or a magnetic resin epoxy to create the magnetic shield.
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Pulser / Sampler Core
Furaxa has researched, developed, and characterized a novel monolithic arrayable pulse and sample aperture generation technology. Recent results include demonstration of sub-10ps pulse/aperture generation at repetition rates up to 3 Billion Pulses/Samples Per Second (BPPS) with jitter that is estimated at sub-10fs. Further, simulations in a number of InP DHBT processes exhibit sub-3ps 20BPPS performance. The IP is process-independent, and has been achieved in CMOS SOI, InP HBT, SiGe and GaAs so far. Please contact us regarding your specific foundry and technical requirements: The company currently licenses the sampler/pulser technology for use by application and market, and is interested in discussing how the technology can enable our partners' applications. A short list of characterized Pulser/Sampler Cores is given below.
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Metal Cored PCB
Teledyne Labtech is at the forefront of complex metal-cored PCB design and manufacture. The PCB use a thin metal core <2 mm, which acts as isolation between the RF/Microwave circuit and the Analogue/Digital circuitry and creates an excellent thermal path.The major advantages are reduced size and no need for complex microwave feed-thru's. The ability to laser cut pockets allows the designer engineer to mount the high power MMIC directly on to the metal core.
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Air Core Smoothing Reactors
Smoothing Reactors are serially connected reactors inserted in DC systems to reduce harmonic currents and transient over currents and/or current ripples in DC systems.
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Core Loss Testers
S30 and S30S Series
Stacks built with punched laminations can have a lot of quality issues. Even though the lamination material is tested in sheet format before any process, that alone is not sufficient to guarantee good quality stators. Wear and tear of the punch, bad welding, bad insulating coating in annealing add to the magnetic losses in the stator. It is always advisable to test the stator core in it's final format before winding to ensure good quality throughout the production batch.
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Multi-Sensor Core Logger
The Geotek Multi-Sensor Core Logger (MSCL) systems enable a suite of geophysical measurements to be obtained rapidly, accurately and automatically on sediment or rock cores. The rugged nature of the equipment makes it suitable for use in either an onshore laboratory/repository environment or onboard survey and drilling vessels. All of Geotek’s core loggers accept core between 50 mm and 150 mm in diameter and up to 1.55 m in length. Geological cores and materials come in a variety of sizes therefore the MSCL and X-ray CT systems are designed for a full range of core material in a variety of liner compositions. To accommodate varying customers’ requirements (both operational and scientific), we provide a range of different core loggers and X-ray CT systems:
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Common Metallic Pendulum Impact Testing Machine
JB-(C/D)
Jinan Testing Equipment IE Corporation
KB- (C/D) common type metallic pendulum impact testing system is the basic model for impact tester. The metallic pendulum impact tester is used to determine the impact resistance of metal materials under dynamic load and capable of doing a large number of impact tests continuously. The display method for the models is different, respectively there are analog dial display, touch screen digital display and computer display. For the later two models, it can display the impact power, impact toughness, and pendulum rotation angle. All the testing reports can be printed out. The metallic pendulum impact testing system is the essential quality control equipment for metal material manufacturers and QC departments, as well as the necessary instrument of research institutes for new material research.
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60 V Common Mode Differential Probes
The 60 V Common Mode Differential Probes are the ideal probes for lower voltage GaN power conversion measurement with the highest accuracy, best CMRR, and lowest noise.
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LV Iron Core Harmonic Filters
Nonlinear loads such as power electronics based equipment and electric furnaces are sources of harmonic currents leading to harmonic distortion, which is one of the most important parameters for defining the power quality. Most of the commercial loads such as personal computers, photocopy machines, power supplies, and compact fluorescent lamps; and industrial loads such as AC and DC motor drives inject harmonic currents into the network that they are connected to.
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Air Core Inductors
Osborne designs our Air Core Inductors to realize their advantage of high linearity. We also work with our clients to identify and mitigate any potential disturbances that could result from electromagnetic fields created. The air core design approach is known to create strong electromagneticfields. Osborne develops electromagnetic circuit models, if necessary, to ensure that our clients build effective and reliable circuits.
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Connector Core Tuner Machine
Anfkom International Co.,Limited
Fiber optic connector active link connection loss caused mainly by the following aspects:1.Fiber core2.Horizontal mismatch3.Vertical mismatch4.Axial mismatch
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Diagnostic Cores
VersaCore™
The diagnostic cores are uniquely designed in the VC20 format. Using the customizable PCB, components can be added to create a "golden core" to quickly troubleshoot your system Test SMUs, Test Motherboard, Test Pogo pins, Test Relay matrix.
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Thermal Camera Cores
Tenum® 640
With a 10 μm pixel pitch and <30 mK NETD sensitivity, the Tenum 640 represents the latest evolution in low SWaP long-wave infrared technology. Tenum® 640 precisely balances ultra-small pixel structure with ultra-sensitive microbolometer performance at a remarkable cost advantage. The 10-micron pixel pitch Vanadium Oxide (VOx) technology behind Leonardo DRS’ Tenum® 640 is the most advanced uncooled infrared sensor design available to Original Equipment Manufacturers (OEMs) today.
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Air Core Shunt Reactors
Shunt Reactors act as absorbers of reactive power to increase energy efficiency of the power system. Shunt Reactors are inductors that are used in order to compensate capacitive reactive power generated by long and lightly loaded transmission lines as well as underground cables, thus allowing the flow of more active power through the system and avoiding over voltages. The shunt reactors provide inductive compensation.
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Ultra-compact, Uncooled Thermal Imaging Core
Dione 1280 CAM Series
The Dione 1280 CAM series is based on the Dione 1280 OEM thermal imaging core with 1280 x 1024 pixels and 12 μm pixel pitch. The NETD is less than 40 mK (available upon request) or 50 mK. The maximum frame rate is 60 Hz.The camera cores are optimized for low SWaP (Size, Weight and Power). The Dione 1280 CAM is both lightweight and small. It utilizes Xenics image enhancement for advanced image processing while keeping power consumption low.Dione 1280 CAM is a LWIR uncooled thermal imaging SWAP module with housing supporting M34/M45 lens (optional).The ultra-compact Dione 1280 CAM series find application in safety and security systems, as well as in industrial thermal imaging systems.
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Ultra-compact, Uncooled Thermal Imaging Core
Dione S 640 CAM Series
The Dione S 640 CAM series is based on an uncooled 12 μm pitch microbolometer detector with a 640 × 480 resolution and NETD of less than 40 mK (available upon request) and 50 mK. The camera cores are optimized for low SWaP (Size, Weight and Power). The Dione S 640 CAM is lightweight and small with mechanical shutter. It utilizes Xenics image enhancement for advanced image processing while keeping power consumption low.All Dione S 640 versions have the same SAMTEC ST5 connector and are GenICam compliant. Dione S 640 CAM is a LWIR uncooled thermal imaging SWAP module with housing supporting M24/M34 lens (optional).The ultra-compact Dione S 640 CAM series find application in safety and security systems, as well as in industrial thermal imaging systems.