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Battery Extra Load Units
BXL Series
BXL is an extra load unit designed to be used with DV Power’s BLU series battery testers. However, this unit is a universal add-on device. Because of that, it is compatible, as an additional load, with any other discharge/capacity tester in the market.In case when discharge current exceeds the capacity of a single BLU device, BXL can increase the discharge capacity. There are no limitations on the number of extra load units that can be connected in parallel to the main battery tester.A system of BLU and BXL instruments enables performing the capacity test in an accurate, user-friendly way. Also, all instruments are in accordance with battery testing standards: IEEE 450-2010, IEEE 1188-2005, IEEE 1106-2015, IEC 60896-11/22, and other relevant standards.These units can be used on any type of battery string, such as lead-acid, Li-Ion, Ni-Cd, etc. They test battery strings with voltages in the range of 5,25 – 500 V DC. On the other hand, current up to 250 A can be discharged through the BXL internal structure.The instrument simulates a constant resistance load during the discharge test. Several resistances can be set for different battery nominal voltage levels. This makes BXL extremely flexible in selecting its load capabilities.
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Dual-Channel, Tri-Port Per Channel, for Extended Cabling up to 20 Meters
FW1
The FW1 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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GPIB-RS485/RS422 GPIB Instrument Control Device - Taiwan 110VAC
779733-11
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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Burden Set – Current
BSC-102
The industry has recognized the actual load (burden) on CTs is lower than the standard ANSI burdens allow. So a new IEEE Specification (IEEE C57.13.6) accommodates that fact by introducing two new burdens and two new accuracy classes. This new specification address “High Accuracy”CTs.
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5 Slot VME64x Portable Tower Development Platform; Type 32 Tower Chassis
32V05OP146N3VGBX
Elma Type 32V family of enclosures provide a lightweight, tower platform for packaging portable VITA System applications. Designed to VITA & IEEE . Systems can be configured with or without rear I/O card cage.
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V-Band Low Noise Amplifier 50 to 75 GHz, 35 dB Gain, 5 dB NF
SBL- 5037533550-1515-E1
50 to 75 GHz, 35 dB Gain, 5 dB Noise Figure V Band Low Noise Amplifier for IEEE 802.11.ad WiGig. Model SBL-5037533550-1515-E1 is a low noise amplifier with a typical small signal gain of 35 dB and a nominal noise figure of 5 dB across the frequency range of 50 to 75 GHz. The DC power requirement for the amplifier is +8 VDC/150 mA. The mechanical configuration offers an in-line structure with WR-15 waveguides and UG-385/U flanges.
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PD Conformance Test Suite for 802.3at & 802.3bt
Sifos Technologies offers the ultimate simplicity in testing a PD’s conformance to IEEE 802.3 Standards with Pass/ Fail reporting in the PD Conformance Test Suite available for purchase with the PDA-600 Family of Instruments.
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6 Slot 4U CompactPCI 19" Rackmount Development Platform
39C06AD648Y4HCCX
The Type 39C is an advanced generation of CompactPCI chassis for PICMG 2.0, 2.16, 2.17, and EXP.0 applications. IEEE 1101.10/11, 6U x 160mm CPCI cards from the front and 6U x 80mm I/O cards from the rear.
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VPX/open VPX 5 Slot 6U
VPX technology enables nearly unlimited flexibility when it comes to interconnections between the slots.OpenVPX (ANSI/VITA 65 Standard) addresses this by specifying a set of standard profiles of interconnections. Comtel Backplanes are equipped with Air-/-Plane technology. It extends the life of the existing VPX connector system (MultiGig RT2) and enables unprecedented signal integrity performance which complies with IEEE 802.3bj 100Gb/s standard (4 Ethernet channels via fat pipe).
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PCI, IEEE 488 GPIB Instrument Control Device for Windows, Low Profile
783007-01
The PCI‑GPIB is a plug‑and‑play IEEE 488 interface for PCs and workstations with PCI expansion slots. The PCI‑GPIB can sustain data transfer rates of more than 1.5 MB/s using the IEEE 488.1 three‑wire interlocked handshake. It also implements the high-speed IEEE 488.1 noninterlocked handshake (HS488) for benchmarked data transfers at more than 7.7 MB/s. The onboard bus master DMA controller means that there are no microprocessor interruptions in data transfer.
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SAE AS5643 Mil-FireWire PXI Express Test & Simulation Instrument
HSSUB-6120
Avionics Interface Technologies
Highest density capability available in an AS5643 3U PXI Express, single slot instrument - Four (4) FireWire nodes, each with three (3) ports - Apps provide high-level (AS5643) and low-level (1394) access, while accommodating end-user customization - S100, S200, S400, S800 transfer rates - Support all Nodes operating concurrently at 800 Mbps - Independent transformer coupling for each port - Eight (8) standard PXI backplane triggers - Industry standard Texas Instruments IEEE 1394b Chipset - ANSI C (typical), C++/C#/LabVIEW
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Powerline Analyzer
SHARK 100-S
Amperis introduces one of its most advanced Sub-Meters. This high performance product is designed to measure the use of electrical energy with an accurate degree of billing and send that information by the most advanced means of communication. The unit supports RS485, Ethernet RJ45 or IEEE 802.11 Wi-Fi ethernet. This allows it to be installed anywhere in the building or construction and communicate with the Cetral Backup Software easily, quickly and automatically.
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GPIB-ENET/1000, Ethernet GPIB Instrument Control Device - Korea 220VAC
781630-09
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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Low Speed Protocol Decode/Trigger Software (I2C, SPI, RS232, I2S, JTAG)
D9010LSSP
This bundle includes powerful decoding and triggering for the following serial bus standards: I²C, SPI, Quad SPI, eSPI (including Quad eSPI), RS232/UART, Manchester, I²S, SVID, and JTAG (IEEE 1149.1). It is compatible with S-Series, V-Series, Z-Series, EXR-Series, MXR-Series, UXR-Series, 9000 Series, and 90000 Series Infiniium oscilloscopes. For detailed information on the decode and trigger settings, please refer to the datasheet.
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GPIB-USB-HS, USB, IEEE 488 GPIB Instrument Control Device
778927-01
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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Receiver Conformance Test Application for IEEE 802.3bm
M8091BMCA
IEEE 802.3bm Receiver Test Application for 25GAUI-1 Chip-to-Module, Chip-to-Chip, Cable and Backplane.
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Wi-Fi Solution for IoT Devices
SX-NEWAH
Powered by NRC7292 System-on-Chip from Newracom, SX-NEWAH is industry’s first IEEE 802.11ah Wi-Fi module that operates in the Sub 1GHz license-exempt band. It provides a much greater range over 2.4GHz and 5GHz Wi-Fi technologies and a much higher data rate than propriety Low-Power Wide-Area (LPWA) technologies such as LoRa and Sigfox.
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GPIB-RS232, GPIB-RS232, Instrument Control Device - North America 240VAC
779732-05
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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TSEP Chronos 2.1
Technische Software Entwicklung Plazotta
TSEP Chronos is our implementation of the IEEE 1588-2019 standard. It’s made for a variety of platforms and it can be individually ported to various devices.
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ACP Portable Electrical Current Transformer Test,CT/PT Analyzer
Chongqing Assen Power Equipment Co., Ltd
ACP portable Current transformer analyzer is mainly used for field or lab testing, it can finish the measurements (M) and protection (P) class CT, PT and TYP class CT. Adopt 7 inch touch TFT LCD, self-equipped mini type printer supporting field printing; supporting to use USB flash disk to dump data. The CT PT Analyzer is the most complete and easy-to-use testing system for protection and metering CTs according to IEEE and IEC standards.
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Boundary-Scan Controllers
Boundary-scan test and programming applications are only as dependable as the hardware they run on. JTAG Technologies has the industry’s most reliable IEEE 1149.x high speed and performance JTAG controllers, JTAG interfaces and more. To reliably execute your test and programming applications you can choose from a range of different controllers with different performance capabilities and form factors. For use in design, production and manufacturing and service.
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Boundary Scan Compliance Tester
QT900
Qmax Test Technologies Pvt. Ltd.
QT900 Qscan Test system is designed to provide test solution for both Boundary Scan compliance devices and Non Boundary Scan devices. The System provided with Digital IO’s capable of driving and receiving via JTAG IEEE 1149 standard interface and synchronous to JTAG pins. Both Digital and JTAG test are carried out synchronously. Use of virtual test pin and Edge connector eliminates the need of expensive test fixture strategy.
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GPIB Interface Card
PI-31000
The Pulse Instruments PI-31000 IEEE Interface Card is a standard GPIB Interface card offered by National Instruments. This interface card is used in applications where the PI-2005 Pattern Generator or other instruments are controlled from a remote system CPU, or it can be used as the system controller when the CompactPCI CPU is the system computer.
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PXI-6683, TCXO, GPS, IRIG-B, IEEE 1588 PXI Synchronization Module
782109-01
TCXO, GPS, IRIG-B, IEEE 1588 PXI Synchronization Module - The PXI‑6683 timing and synchronization modules synchronize PXI and PXI Express systems using GPS, IEEE 1588, and IRIG‑B to perform synchronous events. The PXI‑6683 can generate events and clock signals at specified … synchronized future times and timestamp input events with the synchronized system time. The PXI‑6683 features an onboard temperature-compensated crystal oscillator (TCXO) that can be disciplined to GPS, IEEE 1588, and IRIG‑B for long-term stability. You also can use the PXI‑6683 to route clock signals and triggers with low skew within a PXI chassis or between multiple chassis, providing you a method for synchronizing multiple devices in a PXI system.
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TTEEnd System A664 Pro
The TTEEnd System A664 Pro board brings the full power of Deterministic Ethernet communication technology to aerospace certifiable hardware. The TTEEnd System A664 Pro card supports three standard traffic classes: Ethernet (IEEE 802.3), rate-constrained (ARINC 664 part 7) and time-triggered (SAE AS6802) traffic in parallel on one physical infrastructure. It offers redundancy management, as well as an IP/UDP profiled communication layer fully implemented in hardware. The card is designed for safety-critical applications and fully complies with DAL A levels of RTCA DO-254 and DO-178C.
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IEEE-488 GPIB Device Interface IC (Chip) for the PCI-Bus
GPIB-72120
The i72120 GPIB-Chip is the ideal solution to implement a IEEE488.2 GPIB interface for next generation PCI based instruments. The GPIB-ASIC is designed to meet all of the functional requirements for talker and listener (TL) devices as specified by the IEEE Standards 488.1-1987 and 488.2-1987. Connected between the PCI bus and the GPIB, this GPIB-IC provides high-level management of the GPIB to unburden the processor and to simplify both hardware and software design. The i72120 is fully compatible with the PCI specification and requires only the addition of bus driver/receiver components to implement a talker/listener GPIB interface.
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Battery Capacity Testers|Discharge Testers
DV Power offers a wide range of battery capacity testers to meet specific customer needs. All of them are portable, powerful and most of all universal. Any battery string, such as lead-acid, lithium-ion, nickel-cadmium based and others, with voltages in the range of 0,9 – 800 V DC can be tested in an accurate, user-friendly way.The capacity test is carried out following the battery testing standards: IEEE 450-2010, IEEE 1188-2005, IEEE 1106-2015, IEC 60896-11/22, and other relevant standards.BLU battery testers enable setting the discharge current up to 350 A, with 0,1 A resolution. If higher currents are required, several units can be connected in parallel, or BXL additional load units can be used. Discharge parameters can be monitored in real-time during the capacity test. Overall battery voltage, current, elapsed test time and capacity will be presented during the entire test on a touch screen display.
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Battery Data Logger
BDL-3927
Kongter Test & Measurement Co., Limited
BDL-3927 is updated Battery Data Logger to meet IEEE measurement standards for battery voltage, string voltage, current and ambient temperature. It is customized from 12V to 700V for different battery systems. And it has easy expansion for all battery systems. With wifi communication, you could easily view complete data and generate test report in the PC software.
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Software
DPM-3
Was developed to read and edit Plug and Play Smart Sensors that are compliant to the IEEE 1451.4 Standard. TEDS, or transducer Electronic Data Sheet, is a set of electronic data in a standardized format defined within the IEEE 1451.4 standard. This data specifies what type of sensor is present, describes its interface, and gives technical information such as sensitivity, bridge type , excitation, etc. This information is stored in an EEPROM chip attached to the sensor. By having this chip, the sensor can identify and describe itself to the network and or Smart Load Cell Meter (DPM-3), thereby easing automatic system configuration.





























