Showing results: 1561 - 1575 of 2292 items found.
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Kokusai Co., Ltd.
In Addition, The System Configuration Requires At Least 3 Main Units, A Control Panel, And A Controller, And Does Not Require Hydraulic Units Or Blowers. The Exciter Can Perform Standard Tests And Performance Tests Required For Automobile Seats Based On An Electric Servomotor Type Multi-Axis Vibration Tester.
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Parker Hannifin Corp.
Parker offers an array of diagnostic and test solutions for measuring hydraulic and pneumatic data and for troubleshooting operational problems. These include analog and digital flow and pressure meters and viscometers as well as associated devices such as sensors, vacuum and pressure controllers, quick couplings, and test point connectors.
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786848-01 -
NI
The CC5002X, or Hioki 3275, is a clamp-on current probe that offers a wide DC to 2 MHz bandwidth and 500 A of continuous input. It is ideal for capturing transient current signals from switching power supplies, inverters, and motor controllers. The probe requires an external power supply.
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786849-01 -
NI
The CC15010X, or Hioki 3274, is a clamp-on current probe that offers a wide DC to 10 MHz bandwidth and 150 A of continuous input. It is ideal for capturing transient current signals from switching power supplies, inverters, and motor controllers. The probe requires an external power supply.
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PXI XJLink2 -
XJTAG Ltd.
The PXI XJLink2 module allows the integration of XJTAG into PXI-based test systems. PXI XJLink2 has one JTAG controller that can be connected to up to 4 JTAG chains, which are configurable for pinout and voltage. It is easily integrated with LabVIEWTM with a full set of Virtual Instruments (VIs) included.
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XJTAG Ltd.
The XJLink2-CFM is an advanced multi-TAP JTAG controller that fits into one of four Custom Function Module (CFM) locations on a Teradyne Multi-Function Application Board. It offers convenient, integrated access to XJTAG’s powerful test and programming tools from Teradyne’s TestStation™ In-Circuit Test Systems.
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ViTec Co. Ltd
The software package developed in the MS Visual C ++ environment has an attractive and an intuitive graphical interface. It provides for work with several groups of equipment controllers, provides advanced analysis and control capabilities (building equipment management, passenger traffic analysis, recording and playback of diagnostic information).
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TR5001 SII QDI SERIES -
Equip-Test Kft.
• Flexible Multi-Core Parallel / Merged-Core Tester• Serial Test Controller with up to 8 ports on any pin• Light - Curtain Protected Press - Down Platform• PXI Ready• Built-in Self Diagnostics and Auto-Calibration function• High-Accuracy Measurement• Flow - based Easy Program Development
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785561-01 -
NI
The CC3050X, or Hioki 3273-50, is a clamp-on current probe that offers a wide DC to 50 MHz bandwidth and 30 Arms of continuous input. It is ideal for capturing transient current signals from switching power supplies, inverters, and motor … controllers. The probe requires an external power supply.
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786846-01 -
NI
The CC0550X, or Hioki CT6700, is a clamp-on current probe that offers a wide DC to 50 MHz bandwidth and 5 Arms of continuous input. It is ideal for capturing transient current signals from switching power supplies, inverters, and motor … controllers. The probe requires an external power supply.
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786847-01 -
NI
The CC05120X, or Hioki CT6701, is a clamp-on current probe that offers a wide DC to 120 MHz bandwidth and 5 Arms of continuous input. It is ideal for capturing transient current signals from switching power supplies, inverters, and motor controllers. The probe requires an external power supply.
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785562-01 -
NI
The CC30100X, or Hioki 3276, is a clamp-on current probe that offers a wide DC to 100 MHz bandwidth and 30 Arms of continuous input. It is ideal for capturing transient current signals from switching power supplies, inverters, and motor controllers. The probe requires an external power supply.
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779733-12 -
NI
The GPIB‑RS485 is an IEEE 488 controller device for PCs with RS485 or RS422 ports. You can use this device to integrate an instrument into your system using GPIB. This device transforms a computer with an RS485 or RS422 serial port into a talker, listener, or controller on the GPIB bus. It can also interface RS485 and RS422 instruments and peripherals to the GPIB bus. It can implement the physical and electrical specifications of the IEEE 488, RS485, and RS422 standards, as well as interpret and execute high-level commands from the serial port, including serial‑to‑GPIB, and GPIB‑to‑serial protocol conversions. This device is IEEE 488.2 compatible. The device includes a license for the NI‑488.2 driver software, providing maximum reliability for connecting to third-party instruments with GPIB.
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779733-11 -
NI
The GPIB‑RS485 is an IEEE 488 controller device for PCs with RS485 or RS422 ports. You can use this device to integrate an instrument into your system using GPIB. This device transforms a computer with an RS485 or RS422 serial port into a talker, listener, or controller on the GPIB bus. It can also interface RS485 and RS422 instruments and peripherals to the GPIB bus. It can implement the physical and electrical specifications of the IEEE 488, RS485, and RS422 standards, as well as interpret and execute high-level commands from the serial port, including serial‑to‑GPIB, and GPIB‑to‑serial protocol conversions. This device is IEEE 488.2 compatible. The device includes a license for the NI‑488.2 driver software, providing maximum reliability for connecting to third-party instruments with GPIB.
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Orbit Controls AG
Orbit Controls counters and timers are designed for connection to practically all industrial sensors and pulse sources . They can be used as process monitors to display the process variable to be measured or as process controllers for control and monitoring tasks. The devices display and process pulses and frequencies, as well as quadrature signals from incremental and absolute encoded rotary encoders. In addition to information on the display, the devices also generate data and analog outputs and monitor preselected limit values. The process parameters are entered via the keyboard so that the display is calibrated in the required units and the output signals, serial interfaces and limit values are optimized.