Showing results: 286 - 300 of 453 items found.
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50-297-022 -
Pickering Interfaces Ltd.
The 50-297 provides a simple solution for applications requiring accurate simulation of resistive sensors. The 50-297 is available in a variety of resistance ranges and resolution capabilities that meet the needs of most functional test systems. It is particularly well suited to applications such as the testing of engine controllers where resistive sensors provide information on parameters such as temperature.
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50-297-023 -
Pickering Interfaces Ltd.
The 50-297 provides a simple solution for applications requiring accurate simulation of resistive sensors. The 50-297 is available in a variety of resistance ranges and resolution capabilities that meet the needs of most functional test systems. It is particularly well suited to applications such as the testing of engine controllers where resistive sensors provide information on parameters such as temperature.
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50-297-050 -
Pickering Interfaces Ltd.
The 50-297 provides a simple solution for applications requiring accurate simulation of resistive sensors. The 50-297 is available in a variety of resistance ranges and resolution capabilities that meet the needs of most functional test systems. It is particularly well suited to applications such as the testing of engine controllers where resistive sensors provide information on parameters such as temperature.
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50-297-051 -
Pickering Interfaces Ltd.
The 50-297 provides a simple solution for applications requiring accurate simulation of resistive sensors. The 50-297 is available in a variety of resistance ranges and resolution capabilities that meet the needs of most functional test systems. It is particularly well suited to applications such as the testing of engine controllers where resistive sensors provide information on parameters such as temperature.
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50-297-052 -
Pickering Interfaces Ltd.
The 50-297 provides a simple solution for applications requiring accurate simulation of resistive sensors. The 50-297 is available in a variety of resistance ranges and resolution capabilities that meet the needs of most functional test systems. It is particularly well suited to applications such as the testing of engine controllers where resistive sensors provide information on parameters such as temperature.
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50-297-054 -
Pickering Interfaces Ltd.
The 50-297 provides a simple solution for applications requiring accurate simulation of resistive sensors. The 50-297 is available in a variety of resistance ranges and resolution capabilities that meet the needs of most functional test systems. It is particularly well suited to applications such as the testing of engine controllers where resistive sensors provide information on parameters such as temperature.
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50-297-043 -
Pickering Interfaces Ltd.
The 50-297 provides a simple solution for applications requiring accurate simulation of resistive sensors. The 50-297 is available in a variety of resistance ranges and resolution capabilities that meet the needs of most functional test systems. It is particularly well suited to applications such as the testing of engine controllers where resistive sensors provide information on parameters such as temperature.
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50-297-053 -
Pickering Interfaces Ltd.
The 50-297 provides a simple solution for applications requiring accurate simulation of resistive sensors. The 50-297 is available in a variety of resistance ranges and resolution capabilities that meet the needs of most functional test systems. It is particularly well suited to applications such as the testing of engine controllers where resistive sensors provide information on parameters such as temperature.
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50-297-133 -
Pickering Interfaces Ltd.
The 50-297 provides a simple solution for applications requiring accurate simulation of resistive sensors. The 50-297 is available in a variety of resistance ranges and resolution capabilities that meet the needs of most functional test systems. It is particularly well suited to applications such as the testing of engine controllers where resistive sensors provide information on parameters such as temperature.
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Crystal instruments
Designed and manufactured by Crystal Instruments, the Spider-101i controller is a key element of the Sentek Dynamics THV Series AGREE (Department of Defense Advisor Group on Reliability of Electronic Equipment) chambers. These chambers provide combined temperature, humidity, and vibration testing in addition to environmental and reliability testing for a wide variety of aerospace, automotive, medical, commercial, and independent test lab applications. Temperature, humidity, and vibration are controlled with high accuracy and are synchronized to simulate the actual physical environment products experience in the field.
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GTD-81 -
Kingrun Instrument Co., Ltd.
GTD-81 Insulation Oil Dissipation Factor and Resistivity Measuring System DTL, is designed and manufactured based on international standards. It is used for measuring dielectric dissipation factor and DC resistivity of insulating oil and other insulating liquids. The instrument is characterized by integrated structure, and integrates test cell, temperature controller, temperature sensor, dielectric loss test bridge, AC test power, standard capacitor, high resistance meter, DC high voltage source and other major components.
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XMC-1760-NIC-CC -
Avionics Interface Technologies
Dual Channel configurations supporting NC/NC, NC/NT, or NT/NT - 75 Ohm single ended copper or 150 Ohm differential - Eight (8) opto-isolated discrete I/O lines - Rear I/O through the P16 connector - Conduction-cooling and/or conformal coating available - x4 PCIe interface to NIC interfaces, with DMA controller for data movement - Designed for extended temperature operations - ANSI Application interface supporting C development - Device driver support: Windows, Linux, & VxWorks (others on request)
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GT -
Sunpower Inc.
The GT Cooler was brought to commercialization in 2005. The GT has been used successfully in applications such as High Temperature Superconductivity (HTS) filters, high altitude balloons, refrigeration, germanium detectors, IR detectors, radio telescopes, laser diode cooling, and research among others. We believe the customer will agree that the CryoTel® GT is the smallest 16W @77K cooler available at an attractive price point with a Mean Time to Failure of over 200,000 hours. The GT currently utilizes the Generation 2 controller.
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SIA-118 Series -
SESSCO Technologies, Inc.
Whether you are testing at room, cold or hot temperatures, our tri-temp test handlers are suited for a wide range of applications, from the basic to the most stringent and demanding test requirements. The SIA-118 series offers an open platform for packages from 3 x 3 mm up to 100 x 50 mm at a temperature range from -55 °C to +125 °C and optional full temperature range from -60 °C to +175 °C. Offering easy and flexible configuration, this tri-temperature handler supports both Kelvin and PTB contactors for SOIC, QSOP, SSOP, QFN, TO, MEMS and other custom packages. It is ideally suited for Engineering, Qualification Lot, and small-to-medium production run with easy migration to full production capability. This is a popular model for custom applications with very low NRE. Powered by a cutting-edge 80 ns/step all integrated controller and modular programming design for easy customization.
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Model 3648 -
Jinan Testing Equipment IE Corporation
These extensometers use a high temperature capacitive sensor in combination with an innovative design to achieve high accuracy strain measurements in low measuring ranges not possible with other high temperature extensometers. They mount on a slide bracket (included) that can attach to the load frame of your test system; optional load frame mounting brackets are available. The overall design reduces any influence from common lab environment vibrations.The standard temperature version (to 1200℃) is supplied with high purity alumina rods. The high temperature option is furnished with alpha grade silicon carbide rods. Rods are made to order to the length required for your furnace. These units are made to order in many different gauge lengths and measuring ranges.The extensometer comes with a signal conditioner. The output is an analog DC voltage, factory calibrated with the extensometer to 0 to ±10 VDC typically. They are readily interfaced with most existing test controllers, and may be directly connected to data acquisition systems and chart recorders. Bringing the signal into a spare DC input channel (or external input) on the test controller allows the extensometer to be used for strain controlled tests like low cycle fatigue.