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Product
Special / Customer Spec. Crates
6U VME64x 6023 JLAB Crates
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For the Thomas Jefferson National Accelerator Facility (JLAB) in Virginia (USA), a special version of the VME 6023 crate series with front to rear air-cooling was developed. “JLAB style” VME crates are available with standard VME/VME64 backplane and mechanics as well as with VME64x or VXS (see VXS section) backplane and IEEE 1101.10 compatible mechanics, (enhanced EMC and ESD shielding).
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Product
JTAG based Test & Flash Programming Services
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We offer EMS companies and design houses services and solutions in manufacturing testing with bias towards JTAG (IEEE 1149.x Boundary Scan) and functional test: System-level DFT rule checking for production testing and inspection. Test strategy development and optimization for test cost reduction. JTAG, functional, and emulation-based test development and deployment. Product testing and troubleshooting services. Ultra fast in-system programming solutions (Flash, EEPROM).
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Product
Bench Top Test Set
WesTest-3000/BTTS
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WesTest Engineering Corporation
*PXI Based*Test Requirement Driven*Core Capability Consistency*Software Standards- ATML, IEEE
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Product
GPIB-RS232, GPIB-RS232, Instrument Control Device - North America 240VAC
779732-05
GPIB Controller
The GPIB‑RS232 is an IEEE 488 controller device for computers with an RS232 port. You can use this device to integrate an instrument into your system using GPIB. This device transforms a computer with an RS232 serial port into a talker, listener, or controller on the GPIB bus. It can also interface RS232 instruments and peripherals to the GPIB bus. It can implement the physical and electrical specifications of the IEEE 488 and RS232 standards, as well as interpret and execute high-level commands from the serial port, including RS232‑to‑GPIB and GPIB‑to‑RS232 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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Product
PXI GPIB Instrument Control Module
Module
PXI GPIB Instrument Control Modules feature IEEE 488 controllers for PXI systems. You can choose an option that supports Gigabit Ethernet transfer speeds. PXI GPIB Instrument Control Modules include a license for the industry standard NI-488.2 driver software enabling reliable connections to third-party instruments with GPIB.
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Product
GPIB-RS232, Serial, RS232 GPIB Instrument Control Device - Universal Euro 240VAC
779732-04
GPIB Controller
The GPIB‑RS232 is an IEEE 488 controller device for computers with an RS232 port. You can use this device to integrate an instrument into your system using GPIB. This device transforms a computer with an RS232 serial port into a talker, listener, or controller on the GPIB bus. It can also interface RS232 instruments and peripherals to the GPIB bus. It can implement the physical and electrical specifications of the IEEE 488 and RS232 standards, as well as interpret and execute high-level commands from the serial port, including RS232‑to‑GPIB and GPIB‑to‑RS232 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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Product
Sensor Database Implementing Imc Plug & Measure Technology
imc SENSORS
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imc SENSORS is a ready-to-go, universal database application for administering and editing sensor information. Along with values for smart sensors defined in IEEE P 1451.4 (TEDS), selections of additional sensor properties can be freely entered. These can be set, edited and viewed in freely configurable tabular views, e.g., the sensor's technical data information, as well as its calibration values.
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Product
Regenerative Grid Simulator
61800 series
Simulator
Market demand for Distributed Resource (DR) products such as PV inverters and wind energy systems is steadily growing as the world strives for clean renewable energy sources. This demand has created a need for rigorous regulation testing to standards such IEEE 1547 / IEC 61000-3-15 / IEC 62116 ensuring proper and safe operation of on-grid products. It has become critical to manufacturers to conduct these tests to prove compliance and to relieve product liability concerns. Chroma’s new 61800 family of Grid Simulators has been designed to fulfill these test requirements by providing a full 4 quadrant, fully regenerative, grid simulator with advanced features for compliance, safety and product verification testing.
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Product
cDAQ-9191, 1‑Slot, Ethernet and 802.11 Wi‑Fi CompactDAQ Chassis
781497-01
Chassis
1‑Slot, Ethernet and 802.11 Wi‑Fi CompactDAQ Chassis - The cDAQ‑9191 is a Wi‑Fi chassis designed for small, remote, or distributed sensor measurement systems. The chassis controls the timing, synchronization, and data transfer between C Series I/O modules and an external host. You can use this chassis with a combination of modules to create a mix of analog I/O, digital I/O, and counter/timer measurements. You can send data from the cDAQ‑9191 to a host PC over Ethernet or IEEE 802.11 Wi‑Fi. The chassis also has four 32‑bit general‑purpose counters/timers built in. You can access these counters through an installed, hardware‑timed digital C Series module for applications that involve quadrature encoders, PWM, event counting, pulse train generation, and period or frequency measurement.
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Product
Non-steady-state probe for thermal conductivity measurement
TP02
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Hukseflux Thermal Sensors B.V.
TP02 is a probe that offers the possibility to perform a practical and fast measurement of the thermal conductivity (or thermal resistivity) of the medium in which it is inserted at the highest accuracy level. It works in compliance with the ASTM D 5334-00, D 5930-97 and IEEE 442-1981 standards. The standard TP02 probe has proven suitability in soils, thermal backfill materials, sediments, foodstuff, powders, sludges, paints, glues and various other materials. The Non-Steady-State Probe (NSSP) measurement method (also known as transient line source, thermal needle, hot needle, heat pulse- and hot wire technique) has the fundamental advantages that it is fast and absolute while the sample size is not critical. Hukseflux is specialised in NSSP design. Special models have been developed for in-situ field experiments. For permanent installation in soils, a dedicated model, TP01, is available. TP02 has been designed and tested in collaboration with the Applied Physics Group of Wageningen University.
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Product
PCI Express, IEEE 488 GPIB Instrument Control Device for Windows, Low Profile
780575-01
Controller
The PCIe‑GPIB is an IEEE 488 controller device for computers with PCI Express slots. You can use this device to integrate an instrument into your system using GPIB. The PCIe‑GPIB achieves maximum IEEE 488.2 transfer rates. With an onboard bus master DMA controller, there is no microprocessor interruption in data transfers. The device includes a license for the NI‑488.2 driver software, providing maximum reliability for connecting to third-party instruments with GPIB. The PCIe‑GPIB includes a low-profile bracket option as well as a kit that includes the NI‑488.2 driver for Linux®. Regardless of which PCIe‑GPIB you purchase, the device is compatible with Windows, Linux®, and Mac OS X. Linux® is the registered trademark of Linus Torvalds in the U.S. and other countries.
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Product
GPIB-ENET/1000, Ethernet GPIB Instrument Control Device - Taiwan 110VAC
781630-11
GPIB Controller
The GPIB‑ENET/1000 is an IEEE 488 controller device for computers with an Ethernet port. You can use this device to share a single GPIB system among many networked users or to control several test systems from a single networked host. The GPIB‑ENET/1000 features a password-protected web interface for easy configuration. It can also control IEEE 488 devices from anywhere on an Ethernet‑based (LAN) TCP/IP network (Gigabit, 100BASE‑TX, 10BASE‑T). Each device interfaces to and shares up to 14 GPIB devices from several network hosts, and you can control up to 100 GPIB‑ENET/1000 interfaces with a single computer. 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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Product
AFDX ® / ARINC 664 Test And Simulation PXI Module
PXI-C664
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*Supports IEEE 802.3 10/100/1000 Mbit / s full duplex Ethernet connections*Uses SFPs to support both electrical and optical interfaces*Half-size PCI / PCI-X modules*Simulates multiple AFDX® / ARINC 664 end systems*Stard Ethernet processes simultaneous to AFDX® / ARINC 664*Up to 128 output VLs and 512 input VLs*Upper layer protocol handling (ARINC 653, UDP, IP) managed onboard*DMA for high data rate applicationsWindows XP / 7, Linux, and LabVIEW Real Time Drivers & APIs (others on request)*Easy to use tool for configuring AFDX® / ARINC 664 end systems (XML based)
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Product
4DI/4DO 2.4G WiFi IoT Wireless I/O
WISE-4050
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Supports IEEE 802.11 a/b/g/n (2.4GHz)Supported protocols: Modbus/TCP, TCP/IP, UDP, DHCP, HTTPs, MQTTStores 10,000+ data points locally with SNTP/RTC time sync and WDT auto connection recoverySupports RESTful web API in JSON format for IoT integrationWith UDP-based AES-128 encrypted wireless P2P, abnormal inputs can automatically trigger up to 16 WISE modules in the field
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Product
GPIB-ENET/1000 , Ethernet GPIB Instrument Control Device - United States 120VAC
781630-01
GPIB Controller
The GPIB‑ENET/1000 is an IEEE 488 controller device for computers with an Ethernet port. You can use this device to share a single GPIB system among many networked users or to control several test systems from a single networked host. The GPIB‑ENET/1000 features a password-protected web interface for easy configuration. It can also control IEEE 488 devices from anywhere on an Ethernet‑based (LAN) TCP/IP network (Gigabit, 100BASE‑TX, 10BASE‑T). Each device interfaces to and shares up to 14 GPIB devices from several network hosts, and you can control up to 100 GPIB‑ENET/1000 interfaces with a single computer. 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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Product
TTEDevelopment System A664 For VxWorks 653
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The TTEDevelopment System A664 supporting the ARINC 653 interface is an out-of-the box starter kit for integrating TTEthernet’s deterministic network technology with the time and space partitioned real-time operating system VxWorks 653. The easy-to-use and ready-to-run solution includes hardware and software as well as a Distributed IMA demo application showing deterministic communication among the different real-time operation system partitions. The system supports up to 1 Gbit/s speed, enables event-driven Ethernet (IEEE 802.3) as well as rate-constrained (ARINC 664 part 7) and hard real-time (Time-Triggered Ethernet SAE AS6802) communication on the same network with the option to synchronize IMA modules using the fault-tolerant TTEthernet network time base.
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Product
Time Code Generators
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Masterclock's time code generators provide a source of very stable time code and accurate time and date information. The GPS500 extracts timing reference from GPS satellite signals and generate time code synchronized to within less than 10 microseconds of UTC (Universal Coordinated Time). It can output IRIG-B with and without IEEE 1344 date encoding, SMPTE/EBU, NMEA 0183, Kinemetrics/Truetime, and 1PPS.
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Product
4DI/4Relay 2.4G WiFi IoT Wireless I/O
WISE-4060
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Supports IEEE 802.11 a/b/g/n (2.4GHz)Supported protocols: Modbus/TCP, TCP/IP, UDP, DHCP, HTTPs, MQTTStores 10,000+ data points locally with SNTP/RTC time sync and WDT auto connection recoverySupports RESTful web API in JSON format for IoT integrationWith UDP-based AES-128 encrypted wireless P2P, abnormal inputs can automatically trigger up to 16 WISE modules in the field
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Product
GPIB-RS232, Instrument Control Device - Japan 100VAC
779732-07
GPIB Controller
The GPIB‑RS232 is an IEEE 488 controller device for computers with an RS232 port. You can use this device to integrate an instrument into your system using GPIB. This device transforms a computer with an RS232 serial port into a talker, listener, or controller on the GPIB bus. It can also interface RS232 instruments and peripherals to the GPIB bus. It can implement the physical and electrical specifications of the IEEE 488 and RS232 standards, as well as interpret and execute high-level commands from the serial port, including RS232‑to‑GPIB and GPIB‑to‑RS232 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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Product
2-CH PCI ExpressR IEEE 1394b Frame Grabber
PCIe-FIW62
Interface Card
The PCIe-FIW62 is an IEEE 1394b (FireWire 800) interface card which provides two high-speed FireWire 800 ports with data transfer rates up to 800 Mb/s on a PCI ExpressR x1 lane. The PCIe-FIW62 provides two direct-connect IEEE 1394b bilingual connectors with a screw-lock mechanism. These screw-lock connectors provide a reliable connection between the PCIe-FIW62 and up to two IEEE 1394b cameras. A 4-pin ATX power connector on the PCIe-FIW62 supports IEEE 1394b cameras that draw power directly from the frame grabber. Each port has a green LED on the front panel that will illuminate when the PCIe-FIW62 is connected to a IEEE 1394b camera for convenient identification of channel connection status.
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Product
Manufacturing Test Station
Scan Executive
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The Scan ExecutiveTM Manufacturing Test Station is used to apply the same IEEE 1149.1 tests that were developed and used in the lab in a high-volume manufacturing environment without requiring additional development.
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Product
Dual-Channel, Tri-port per channel, for extended cabling up to 4.5 meters
FW2
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The FW2 provides IEEE 1394 (Firewire) high-speed serial communications. The module is provided with a direct PCIe interface to the local (on-board) processor, or, an external host processor for board platforms that support external PCIe connectivity. These module(s) are not supported with the classic memory register-based NAIBrd Software Support Kit (SSK) API libraries. These communication function modules support device control and management via standard native OS (Linux) FireWire device driver.
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Product
Power System Recorder with CDR , PMU and IEC 61850 station bus protocol
TESLA 4000
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ERLPhase Power Technologies Ltd
The new TESLA 4000 is an intelligent, state of the art, user-friendly multi-timeframe dynamic power system recorder with advanced Phasor Measurement Unit (PMU) and Continuous Disturbance Recording (CDR) capabilities. Wide area swing recording accomodates system performance analysis in minutes Meets NERC continuous disturbance recording standards with non-volatile on board flash memory No mechanical moving parts – flash drive eliminates most common mode of failure in recorders. Each flash drive holds 1000 records. IEEE C37.118-2005 SynchroPhasor Standard
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Product
4AI/2DO 2.4G WiFi IoT Wireless I/O
WISE-4012
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Supports IEEE 802.11 a/b/g/n (2.4GHz)Supported protocols: Modbus/TCP, TCP/IP, UDP, DHCP, HTTPs, MQTTStores 10,000+ data points locally with SNTP/RTC time sync and WDT auto connection recoverySupports RESTful web API in JSON format for IoT integrationWith UDP-based AES-128 encrypted wireless P2P, abnormal inputs can automatically trigger up to 16 WISE modules in the field
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Product
LXI Function Card Carriers
ProDAQ 6100 Series
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Ethernet-based LXI is changing the way engineers and scientists perform test and measurement and data acquisition. As more and more PCs ship without expansion slots, customers are faced with the problem of replacing their test and measurement and data acquisition equipment. Bustec believes in the power of distributed systems and the use of IEEE standards.
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Product
GPIB-USB-HS, USB, IEEE 488 GPIB Instrument Control Device
778927-01
GPIB Controller
USB, IEEE 488 GPIB Instrument Control Device - The GPIB‑USB‑HS is an IEEE 488 controller device for computers with USB slots. The GPIB‑USB‑HS achieves maximum IEEE 488.2 performance. With no GPIB cable required for instrument connection, you can use the Hi‑Speed USB port to control up to 14 programmable GPIB instruments. This device is completely 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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Product
GPIB General Purpose Interface Bus
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The design of the GPIB control card is fully compatible with the IEEE 488.1 and IEEE 488.2 standards, using the PCI interface, supporting the Plug & Play specification, and supporting Windows 95/98/Me /NT4.0/ 2000 /XP/7 Operating system, driver function library includes Windows development software tools such as Visual C++, Borland C++ Builder, Labwindows, Visual Basic, Delphi and Labview. This GPIB-supported library provides an NI-like command control syntax format, which is convenient for users to develop and transfer applications smoothly. This interface card also provides a conversational window GPIB interface program, which is convenient for users to directly control the instrument without writing a program.
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Product
GPIB-ENET/1000, Ethernet GPIB Instrument Control Device
781630-07
GPIB Controller
Ethernet GPIB Instrument Control Device - The GPIB‑ENET/1000 is an IEEE 488 controller device for computers with an Ethernet port. You can use this device to share a single GPIB system among many networked users or to control several test systems from a single networked host. The GPIB‑ENET/1000 features a password-protected web interface for easy configuration. It can also control IEEE 488 devices from anywhere on an Ethernet‑based (LAN) TCP/IP network (Gigabit, 100BASE‑TX, 10BASE‑T). Each device interfaces to and shares up to 14 GPIB devices from several network hosts, and you can control up to 100 GPIB‑ENET/1000 interfaces with a single computer. 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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Product
Bluetooth® Testing
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Bluetooth® technology is a global wireless standard which allows convenient and secure connectivity over short distances for many devices, such as computers, laptops, cell phones, cameras, networks and medical equipment.The technology uses short-wavelength UHF radio waves to exchange data between two devices and is based on the IEEE 802.15.1 Wireless Networking Standard.In order to ensure reliability, quality and safety, TÜV Rheinland provides high-quality Bluetooth® testing services to qualify and list Bluetooth® hardware and software components and products. Our experts have the knowledge to assist you in all of your Bluetooth® testing and certification requirements, guaranteeing you reliable and secure Bluetooth® devices.
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Product
Machine Vision Computer with Built in I/O
Neousys Nuvis
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Nuvis-5306RT , Nuvis-534RT, Nuvis-7306RT contain interfaces for connecting to all necessary devices: LED lighting controller, camera trigger, encoder input, PWM output and digital I / O lines.- Intel® 7th Gen Core ™ i7 / i5 65W / 35W, up to 32GB DDR4- Built-in I / O- 4-CH CC / CV backlight controller- 4-CH trigger camera- 1-CH quadrature encoder input- 8-CH isolated DI and 8-CH isolated DO- Built-in camera interfaces- 4-CH IEEE 802.3at Gigabit PoE + ports- 4-CH USB 3.1 Gen1 ports- NVIDIA 75W GPU Support





























