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Installation Safety Testers
PeakTech Prüf- und Messtechnik GmbH
This innovative combination meter for testing electrical installations according to VDE 0100 convinces by its technical performance in the high-end range.With the large 3.5 "TFT color display all important safety checks as the RCD-, Voltage-, Loop-, Low-Ohm, Earth resistance and Insulation tests for annual safety-checks and newly installed systems can safely be carried out by the responsible electrical engineer.Since this new development was designed only according to the latest standards, the required measuring values can be even more convenient stored with an App (iOS / Android) via Bluetooth on the mobile phone, saved to an SD card or, when work is completed, from the internal data memory via USB connection to a PC.
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Function Modules
NAI offers over 70 smart, field-proven function modules covering a wide variety of I/O, Measurement and Simulation, Communications, Ethernet switch and SBC functions. With Off-the-shelf development and quick integration speed, NAI's function modules provide the ability to reconfigure and respond to changing design specifications reducing NRE charges and offering obsolescence protection all with unmatched flexibility with countless hardware & software combinations. Each smart function module has dedicated FPGAs on-board with memory map-based configurability, programmable PID loop support and health monitoring via Built-In-Test. A single API provides programmability across all leading to a more I/O-intensive, distributed, smart and total cost-effective mission system.
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FPGA PXI High-Performance Digital I/O Card
GX3700
The GX3700 is a user configurable, FPGA-based, 3U PXI card which offers 160 digital I/O signals which can be configured for single-ended or differential interfaces. The card employs the Altera Stratix III FPGA, which can support SerDes data rates up to 1.2 Gb/s, digital I/O clock rates of 700 MHz, and features 47,500 logic elements and 2.1 kb of memory. The GX3700 is supplied with an integral expansion board providing access to the FPGA’s 160 I/Os. Alternatively, users can design their own custom expansion cards for specific applications - eliminating the need for additional external boards which are cumbersome and physically difficult to integrate into a test system. The design of the FPGA is done by using Altera’s free Quartus II Web Edition tool set. Once the user has compiled the FPGA design, the configuration file can be loaded into the FPGA directly or via an on-board EEPROM.
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Aircraft Escape Spares/Repairs
As the OEM of all of our products, both end items and support equipment, Teledyne can support all repair needs for end users. Turn-around times are typically less than 90 days with units being returned fully tested to their specific program requirements. All repairs are performed using new materials and components. Once the repair has been received, and purchase order issued, a Test and Evaluation report is sent to the end user fully describing our findings and the proposed repair.Following live ejections, Teledyne will download and prepare a post ejection report for any of our ejection seat sequencers AT NO COST to the end user. This report will document the data stored in the flash memory of the unit. The data will be a representation of what the sequencer recorded. However, Teledyne is unable to give any opinions or technical advice on the operation of the seat system.
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FPGA PXIe High-Performance Digital I/O Card
GX3700e
The GX3700e is a user configurable, FPGA–based, 3U PXI Express card offering 160 digital I/O signals which can be configured for single-ended or differential interfaces. The card employs the Altera Stratix III FPGA, which can support SerDes data rates up to 1.2 Gb/s, digital I/O clock rates of 700 MHz, and features over 45,000 logic elements and 1.836 Kb of memory. The GX3700e is supplied with an integral expansion board providing access to the FPGA’s 160 I/Os. Alternatively, users can design their own custom expansion cards for specific applications - eliminating the need for additional external boards which are cumbersome and physically difficult to integrate into a test system. The design of the FPGA is done by using Altera’s free Quartus II Web Edition tool set. Once the user has compiled the FPGA design, the configuration file can be loaded directly into the FPGA or via an on-board EEPROM.
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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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FPGA PXI High-Performance Digital I/O Card
GX3702
The GX3702 is a user configurable, FPGA-based, 3U PXI card which offers 160 digital I/O signals which can be configured for single-ended or differential interfaces. The card employs the Altera Stratix III FPGA, which can support SerDes data rates up to 1.2 Gb/s, digital I/O clock rates of 700 MHz, and features over 45,000 logic elements and 1.836 Kb of memory. The GX3702 is supplied with an integral expansion board providing access to the FPGA's 160 I/Os and is pin for pin compatible with the NI PXI 7813R and 7811R FPGA cards . Alternatively, users can design their own custom expansion cards for specific applications - eliminating the need for additional external boards which are cumbersome and physically difficult to integrate into a test system. The design of the FPGA is done by using Altera's free Quartus II Web Edition tool set. Once the user has compiled the FPGA design, the configuration file can be loaded into the FPGA directly or via an on-board EEPROM.
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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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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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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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Leeb Hardness Tester
THL500
It is the highest brightness display in China showing all functions and parameters, easy read Largest screen Oled screen and operate,also can save lots of energy .the largest screen of Leeb hardness tester in China. Two hardness scale dual-display in the screen. Measuring direction in 360 and add the auto measure direction to make test easy and precision. Add four new hardness scales, HRA, HB for D impact device of alloy tool steel; HV for cast aluminum alloy. Add New user material function, to meet the need of user can test the special material. Test at any angle, even upside down. Wide measuring range. It can measure the hardness of all metallic materials. Direct display of hardness scales HRB, HRC, HV, HB, HS, HL and three types of strength values immediately. Seven impact devices are available for special application. Automatically identify the type of impact devices. Large capacity memory could store 600 groups (Relative to average times321 ) information including single measured value, mean value, testing data, impact direction, impact times, material and hardness scale etc. Upper and lower limit can be preset. It will alarm automatically when the result value exceeding the limit. Battery information indicates the rest capacity of the battery and the charge status. User calibration function. USB port with the PC humanity multi-functions data proceeding software. Original imported high speed thermal printer support the immediate printing function. It can save data permanently. Li rechargeable battery as the power source. Charge circuit integrated inside the instrument. Continuous working period of no less than 200 hours (EL off and no printing). Auto power off to save energy. Excellent after-sale service system for high quality products---3 years guarantee and all life maintenance. Easy to buy and comfortable to use.
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Leeb Hardness Tester
HT6561
Product synopsis1.1 Typical Applications* Die cavity of molds* Inspection of bearing and other mass produced parts on aproduction line* Failure analysis of pressure vessel, steam generator andother equipment* Inspection of installed machinery, permanent parts ofassembled systems and heavy work pieces.* Testing surface of a small hollow space* Material identification in the warehouse of metallic materials* Rapid testing in large range and multi-measuring areas forlarge-scale work piece1.2 Testing Features* Palm size for narrow space.* Test at any angle, even upside down.* Direct display of hardness scales HRB, HRC, HV, HB, HS,HL.* Large memory could store 250 groups including singlemeasured value, impact direction, material and hardnessscale etc.* User recalibration function allowed.* Can communicate with PC computer for statistics andprinting by the optional cable.* Manual or automatic shut down.* Low battery indication.1.3 Technical SpecificationsDisplay: 12.5mm LCD with back lightAccuracy: Display error ±0.8% at LD=900Measuring range: 200-900LConversion: HL-HRC-HRB-HB-HV-HSDMaterials: 9 different common materialsWith RS232C interfaceMemory: 250 data can be stored and re-readableImpact device: D Will handle the majority of hardness testingapplications. Weight: 75gPower supply: 2x1.5V AAA size batteryDimension: 146×65×36mmWeight: 130g (not including batteries)Working temperature: - 10℃~+50℃Storage temperature:- 30℃~+