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- TEAM SOLUTIONS, INC.
product
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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PCI, IEEE 488 GPIB Instrument Control Device for Linux
778686-01
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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802.11a,b,g Dual RF Shielded Test Enclosure
JRE 0814-2R-A
Containing all the capability of the larger JRE enclosures, the rack mounted 0814-2R-A is ideal for testing IEEE 802.11 a,b,g devices such as; WLAN, VoIP, access points and other RF devices. Two independent 0814 series enclosures are mounted in one 19 inch rack. Two shielded vents provide excellent cooling and optional fan(s) are available for those hot products. Tough 'honeycomb' vents maintain shielding effectiveness throughout the frequency range. Featuring rugged welded aluminum construction, you can be assured of its tight RF shielding effectiveness.
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Load Cell Transmitter
MODEL SST-LV
The SST-LV is a Plug & Play Smart TEDS IEEE 1451.4 compliant Transmitter. Just plug in a TEDS compatible Load Cell or Torque Sensor and the SST-LV will automatically self-calibrate. When used with a non-TEDS Load Cell or Torque Sensor, the SST-LV Transmitter is easily programmed using a PC with an RS232 port and Instrument Setup (IS) software, which provides a graphical user interface. The SST-LV may be powered from 12-30 Vac or 10-48 Vdc. The SST-HV Has an Isolated transducer excitation output that is selectable between 5Vdc or 10Vdc. There are Dual solid state relays and an Isolated 4-20 mA, 0-20 mA or 0-10V analog output. There are three Isolated serial data transmitter output ( RS232 , Half-duplex RS485, full-duplex RS485 ) and three serial protocols that are software selectable (Modbus RTU, Modbus ASCII and Custom ASCII). Isolation to 250V rms is provided for power, signal input, analog output, relay outputs, and communications. Isolation adds safety and avoids possible ground loops. The transducer excitation output is isolated to 50V from signal ground.
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AFDX ® / ARINC 664 Test And Simulation PXI Module
PXI-C664
*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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1000 BASE-T1 Ethernet
MECS-6110
- 1x Intel® Xeon® D-2100 family processor- 4x DDR4-2666 1DPC RDIMM ECC REG up to 256GB- 2x 2.5” SATA bays and 2x M.2 M Key interfaces- 420mm depth 1U 19” rackmount form factor- Built-in Intel® QAT support- TPM 1.2/2.0 modul- 2x IEEE 1588 v2 1PPS/TOD RJ-45 port and 4x 1PPS SMA input/output Specifications- Verified for Intel® Select Solution for uCPE on CentOS
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Ethernet
The UNH-IOL has been providing Ethernet testing services since its inception in 1988. We have a strong and wide-reaching industry reputation and participate in many industry organizations including the IEEE, the Ethernet Alliance, and the OpenAlliance. We were honored to receive the IEEE-SA Corporate Member of the year award in 2013 for "unwavering contributions to interoperability testing of IEEE standards".
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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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Reference Transmitter
81492A
Keysight's 81492A Reference Transmitter is designed to offer excellent eye quality for NRZ and PAM4 signals at baud-rates up to 56 Gbaud and can serve as universal single-mode E/O converter. In addition to the internal lasers at 1310 & 1550 nm, an external optical input for usage with tunable laser sources is available. It is fully integrated into Keysight’s Optical Receiver Stress Test solutions to address test requirements of IEEE 802.3 10,40,100 and 400GBASE optical standards.
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2-port/4-port GigE PCI Express Card
AX92322
The AX92322 is a GigE compliant PCI Express card supporting two or four independent Gigabit Ethernet ports. It features PCI Express x4 interface and has four powerful independent Intel® Ethernet Controller i210-AT. The GigE frame grabber card supports 9.5KB Jumbo Frame and IEEE 1588 to enable faster and more accurate throughput of data. The AX92322 is built for machine vision and surveillance applications in industrial IoT field. This PCI Express frame grabber card is designed to help customers develop and deploy machine vision and surveillance applications which will greatly benefit through reduce the cost and simplify system integration. Moreover, the AX92322 has a wide operating temperature of 0˚C to 70°C, making it suitable to be used in most server environments. The advanced GigE frame grabber runs on Windows® 7, Windows® 10 and Linux.
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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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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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Software
SSI-TRES
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.
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IEC 61850-3/ IEEE 1613
IEC 61850 substation controllers and IEEE 1613 controllers are suitable for substation automation, T&D automation, and grid integration markets.
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Power Management Analyzer Suites
While most PSE ports are part of multi-port PSE, behaviors of such systems of PSE ports are beyond the scope of IEEE 802.3 specifications. Sifos offers two fully automated analyzer suites that uniquely characterize PSE port administration and power management behaviors including PD admittance policies, PSE capacity management, LLDP policies, and powering stability. Each of these suites are built upon Live PD Emulation, a feature that enables each test port to independently and continuously emulate user-described PD’s.
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X2 GPIB Cable,Double-Shielded,Shielded Plug/Receptacles,0.5 m
763061-005
24-Pin Male/Female GPIB to 24-Pin Male/Female GPIB, Stackable, Double-Shielded GPIB Cable - The 24M/F-24M/F X2 Cable, sometimes referred to as an X2 cable, connects your system to GPIB devices or interfaces for instrument control. The 24M/F-24M/F X2 Cable has 24-pin IEEE 488 male and female connectors, and the cable is double shielded with shielded plug/receptacles. The 24M/F-24M/F X2 Cable is also offered in different lengths.
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Ultra Low Power Radios
IoT
IEEE 802.11b/g/n-compliant Wi-Fi Radio (2.4 GHz)Ultra-low-power hostless Wi-Fi IoT Module features QCA4010 RadioSingle Stream System (1x1), 20 MHzIntegrated RF front end and PCB trace antennaHostless IoT application development platform with large internal memoryUART AT command set for optional external MCU hostAllJoyn supportWi-Fi Protected Setup SupportIPv4 / iPv6, TCP and UDP Protocol Supported on Chip, Offloading the Host ControllerIdeal for cost effective Internet of Things (IoT) Applications
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4U CompactPCI® Enclosure with cPCI Power Supply (non-CT Bus)
MIC-3042
The MIC-3042 is a 4U enclosure designed for standard cPCI power supplies. It is equipped with a cPCI 500 W redundant 2 1 power supply with hot-swap support. The system has 8 slots for CompactPCI boards and 6 slots for IEEE 1101.11 rear I/O transition boards. The MIC-3042 comes with a built-in high quality backplane that supports 64-bit / 66 MHz PCI cards.
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IEEE 1641 Test Executive
SigBase
SigBase runtime software supports the simulation, automatic test resource allocation and execution of 1641 test strategies.
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GPIB-ENET/1000, Ethernet GPIB Instrument Control Device - China 220VAC
781630-10
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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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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Type X2 double-shielded GPIB cable, 16 m
763061-16
24-Pin Male/Female GPIB to 24-Pin Male/Female GPIB, Stackable, Double-Shielded GPIB Cable - The 24M/F-24M/F X2 Cable, sometimes referred to as an X2 cable, connects your system to GPIB devices or interfaces for instrument control. The 24M/F-24M/F X2 Cable has 24-pin IEEE 488 male and female connectors, and the cable is double shielded with shielded plug/receptacles. The 24M/F-24M/F X2 Cable is also offered in different lengths.
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ARINC 664 Part 7 16 port Lab Switch
SWT-664-16
Avionics Interface Technologies
Supports IEEE 802.3 10/100/1000 Mbit/s Full-Duplex Ethernet links - Sixteen (16) port non-blocking switch - Crossbar design, with 32 Gbps total transmit and receive bandwidth - Each port can operational at 10/100/1000 Mbps line rates - SFP interface supports RJ45 copper and optical connections - Traffic policing and filtering - 4096 Virtual Links configurable - BAG ranges of 0.5ms to 1600ms - Out of band access through Ethernet or serial port - Switch and port statistics available via snmp - Supports on-board storage of multiple configuration files
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Powered VME Crates
VME is a high speed and high performance bus system with powerful interrupt management and multiprocessor capability. It was created by combining VERSAbus electrical specifications (1979) with the Eurocard format resulting in the VMEbus Revision A - 1981 specification. The VMEbus specification has since then been refined through revisons B (1982), C, C.1, IEC 821 & IEC297 and IEEE 1014-1987.
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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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Programmable Power Supplies
GENESYS+™ Rack DC Power Systems
The GENESYS+™ High Power Programmable Rack DC Power System platform provides advanced features in a light-weight portable high power density profile with a comprehensive set of built-in user-friendly interfaces that include a multi-functional front panel, LAN (LXI 1.5), USB (2.0), RS-232/RS-485 and Isolated Analog (5V/10V) along with several optional digital communication interfaces (IEEE, EtherCAT or Modbus-TCP).
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PSE Conformance Test Suites
Whether testing single port injectors or 48 port PSE’s, Sifos offers the ultimate solution to assess PSE conformance to all applicable IEEE specifications. With the click of a button, fully automated testing and reporting delivers comprehensive and informative results including difficult-to-spot intermittent conformance behaviors. Available to PSA-3000 and PSA-3402 PSE test instruments.
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ARINC 664 Part 7 Test & Simulation Interface for PCI
PCI-C664-V2
Avionics Interface Technologies
Supports IEEE 802.3 10/100/1000 Mbit/s Full-Duplex Ethernet links - Utilizes SFPs to support both copper and optical interfacesSimulates multiple ARINC 664 End Systems - VL traffic shaping and input VL redundancy management - Supports up to 4K Output VLs and 4K Input VLs - Supports up to 16K Sampling & Queuing output message ports and up to 16K input Sampling & Queuing message ports - ARINC 653, UDP, IP protocols managed onboard - IRIG-B time code encoder/decoder - Automatic message sequencing & periodic data generated onboardError Injection including Runt Frames, Short IFG, and Invalid MAC FCS - Device driver support: Windows, Linux, LabVIEW Real-Time (others on request) - Compatible with AIT’s Flight Simulyzer GUI Bus Analyzer Software
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Sensor Database Implementing Imc Plug & Measure Technology
imc SENSORS
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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Develop - Simulate - Validate JTAG / IJTAG based IP
NEBULA
You, your vendors and your customers being able to use one common interface to control and observe on-chip IP, resources and instruments. The figure below shows an example IC. The new IEEE 1149.1-2013 standard supports an init-data register for configuring the analog paramaters of I/O as well as controlling on-chip PLLs. The standard further extends this by defining in BSDL user test data registers or 'scan chains'. These registers enable the ability of generic software to control and observe mission mode IP and instruments simply by describing the register interface in BSDL.
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PCI Express, Analyzer Software Included, IEEE 488 GPIB Instrument Control Device for Windows - Onboard GBIP Analyzer
780935-01
The PCIe‑GPIB+ combines an IEEE 488 controller and an analyzer on one device for computers with PCIe slots. You can use this device to integrate an instrument into your system using GPIB as well as to troubleshoot and solve GPIB hardware and software problems. 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.