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Automatic Calibration Module
ACM2509
ACM2509 is an automatic calibration module that can be used with all CMT Vector Network Analyzers operating in frequency range up to 9 GHz. It is a fully automatic USB-controlled and powered electronic calibration module. Minimizing the number of steps required by technicians reduces the risk of human error and expedites the calibration process. Automating the calibration routine also reduces wear and tear on the analyzer and RF cables. To perform full two-port calibration, each end of the ACM need only be connected to the analyzer once, as opposed to seven connections with a traditional calibration. The ACM also contains a factory characterized 20dB in-line attenuator which acts as a simulated device under test (DUT). The confidence check feature loads the factory stored DUT into memory so proper calibration can be verified.
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Automatic Calibration Module
ACM2520
ACM2520 is an automatic calibration module that can be used with all CMT Vector Network Analyzers operating in frequency range up to 20 GHz. It is a fully automatic USB-controlled and powered electronic calibration module. Minimizing the number of steps required by technicians reduces the risk of human error and expedites the calibration process. Automating the calibration routine also reduces wear and tear on the analyzer and RF cables. To perform full 2-port calibration, each end of the ACM need only be connected to the analyzer once, as opposed to 18 connections with a traditional calibration. The ACM also contains a factory characterized 20dB in-line attenuator which acts as a simulated device under test (DUT). The confidence check feature loads the factory stored DUT into memory so proper calibration can be verified.
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PXI-8513, 1‑Port, Software-Selectable PXI CAN Interface Module
780688-01
1‑Port, Software-Selectable PXI CAN Interface Module—The PXI‑8513 is a software-selectable Controller Area Network (CAN) interface for developing applications with the NI‑XNET driver. NI‑XNET Software‑Selectable CAN Interfaces offer the best flexibility for CAN development with onboard transceivers for High-Speed/Flexible Data‑rate, Low-Speed/Fault Tolerant Single Wire CAN as well as any external transceiver. The PXI‑8513 excels in applications requiring real-time, high-speed manipulation of hundreds of CAN frames and signals, such as hardware‑in‑the‑loop simulation, rapid control prototyping, bus monitoring, automation control, and more. The NI‑XNET device-driven DMA engine enables the onboard processor to move CAN frames and signals between the interface and the user program without CPU interrupts.
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PXI-8513 , 2-Port, Software-Selectable PXI CAN Interface Module
780688-02
2-Port, Software-Selectable PXI CAN Interface Module—The PXI‑8513 is a software-selectable Controller Area Network (CAN) interface for developing applications with the NI‑XNET driver. NI‑XNET Software‑Selectable CAN Interfaces offer the best flexibility for CAN development with onboard transceivers for High-Speed/Flexible Data‑rate, Low-Speed/Fault Tolerant Single Wire CAN as well as any external transceiver. The PXI‑8513 excels in applications requiring real-time, high-speed manipulation of hundreds of CAN frames and signals, such as hardware‑in‑the‑loop simulation, rapid control prototyping, bus monitoring, automation control, and more. The NI‑XNET device-driven DMA engine enables the onboard processor to move CAN frames and signals between the interface and the user program without CPU interrupts.
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PXIe-5672, 2.7 GHz, 20 MHz Bandwidth Digital Upconverter Included, PXI Vector Signal Generator
779900-03
2.7 GHz, 20 MHz Bandwidth Digital Upconverter Included, PXI Vector Signal Generator —The PXIe‑5672 features quadrature digital upconversion, which reduces waveform download and signal generation time. It is a general-purpose vector signal generator that can generate standard modulation formats such as AM, FM, PM, ASK, FSK, MSK, GMSK, PSK, QPSK, PAM, and QAM. The PXIe‑5672 delivers a highly flexible and powerful solution for scientific research, consumer electronics, communications, aerospace/defense, and semiconductor test applications as well as emerging areas including software defined radio, radio frequency identification (RFID), and wireless sensor networks. For specific communications standards, you can use various software add-ons to generate modulated signals according to standards such as WCDMA, DVB‑H, and ZigBee.
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USB-8502, 2-Port, High-Speed/FD, USB CAN Interface Device
784662-01
1- or 2-Port, High-Speed/FD, USB CAN Interface Device—The USB-8502 is a high-speed controller area network (CAN) interface for developing applications with the NI‑XNET driver. The USB‑8502 is powered over the USB bus and does not require external power. It excels in applications requiring real-time, high-speed manipulation of hundreds of CAN frames and signals such as bus monitoring, automation control, and more. The NI‑XNET device‑driven DMA engine enables the onboard processor to move CAN frames and signals between the interface and the user program without CPU interrupts, minimizing message latency and freeing host processor time for processing complex applications. The USB‑8502 is available with a three‑pin COMBICON synchronization connector for triggering and synchronizing the internal hardware timebase with other devices.
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USB-8502, 1-Port, High-Speed/FD, USB CAN Interface Device
784661-01
1- or 2-Port, High-Speed/FD, USB CAN Interface Device—The USB-8502 is a high-speed controller area network (CAN) interface for developing applications with the NI‑XNET driver. The USB‑8502 is powered over the USB bus and does not require external power. It excels in applications requiring real-time, high-speed manipulation of hundreds of CAN frames and signals such as bus monitoring, automation control, and more. The NI‑XNET device‑driven DMA engine enables the onboard processor to move CAN frames and signals between the interface and the user program without CPU interrupts, minimizing message latency and freeing host processor time for processing complex applications. The USB‑8502 is available with a three‑pin COMBICON synchronization connector for triggering and synchronizing the internal hardware timebase with other devices.
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Intel® Xeon® E3 Quad-Core 10 Gigabit Ethernet AdvancedTCA® Processor Blade
aTCA-9300
The ADLINK aTCA-9300 is a high performance AdvancedTCAR (ATCA) processor blade featuring dual 4-core IntelR XeonR processor E3 1275V2 /1225V2, IntelR C216 Chipset, four channel memory up to 32 GB of DDR3 memory and 300 W power supply subsystem. Versatile connectivity includes dual 10GbE Fabric Interfaces, dual GbE Base Interfaces, quad front panel GbE egress ports, front panel dual COM and USB 2.0 ports and front panel VGA connector. An onboard SATA connector supports CFast up to 32 GB and the optional RTM (aTCA-R6270/R6280) supports an 8-channel mini-SAS port, dual 10GbE SFP+ ports, dual USB ports and dual hot-swappable SATA bays providing additional network throughput and storage capacities.
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PXIe-5672, 2.7 GHz, 20 MHz Bandwidth Digital Upconverter Included, PXI Vector Signal Generator
779900-01
2.7 GHz, 20 MHz Bandwidth Digital Upconverter Included, PXI Vector Signal Generator —The PXIe‑5672 features quadrature digital upconversion, which reduces waveform download and signal generation time. It is a general-purpose vector signal generator that can generate standard modulation formats such as AM, FM, PM, ASK, FSK, MSK, GMSK, PSK, QPSK, PAM, and QAM. The PXIe‑5672 delivers a highly flexible and powerful solution for scientific research, consumer electronics, communications, aerospace/defense, and semiconductor test applications as well as emerging areas including software defined radio, radio frequency identification (RFID), and wireless sensor networks. For specific communications standards, you can use various software add-ons to generate modulated signals according to standards such as WCDMA, DVB‑H, and ZigBee.
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USB-8506, 1-Port, USB LIN Interface Device
784663-01
1- or 2-Port, USB LIN Interface Device—The USB‑8506 is a Local Interconnect Network (LIN) interface for developing applications with the NI‑XNET driver. The USB‑8506 is powered over the USB bus and does not require external power. The USB‑8506 excels in applications requiring logging or manipulation of hundreds of LIN frames and signals, such as in-vehicle data logging, bus monitoring, automation control, and more. The NI‑XNET device-driven DMA engine enables the onboard processor to move LIN frames and signals between the interface and the user program without CPU interrupts, minimize message latency, and free host processor time. The USB‑8506 is available with a three‑pin COMBICON synchronization connector for triggering and synchronizing the internal hardware timebase with other devices.
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PXIe-5672, 2.7 GHz, 20 MHz Bandwidth Digital Upconverter Included, PXI Vector Signal Generator
779900-02
2.7 GHz, 20 MHz Bandwidth Digital Upconverter Included, PXI Vector Signal Generator —The PXIe‑5672 features quadrature digital upconversion, which reduces waveform download and signal generation time. It is a general-purpose vector signal generator that can generate standard modulation formats such as AM, FM, PM, ASK, FSK, MSK, GMSK, PSK, QPSK, PAM, and QAM. The PXIe‑5672 delivers a highly flexible and powerful solution for scientific research, consumer electronics, communications, aerospace/defense, and semiconductor test applications as well as emerging areas including software defined radio, radio frequency identification (RFID), and wireless sensor networks. For specific communications standards, you can use various software add-ons to generate modulated signals according to standards such as WCDMA, DVB‑H, and ZigBee.
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PXI-2559, 2.5 GHz, 75 Ω, Dual-Terminated SPDT PXI RF Relay Module
778572-59
2.5 GHz, 75 Ω, Dual-Terminated SPDT PXI RF Relay Module - The PXI‑2559 is a general-purpose switch module featuring two independently terminated single‑pole double‑throw (SPDT) relays. You can use it to add flexibility to your video switch network or to maintain uniform signal paths across multiple channels when building high-channel-count multiplexers. The PXI‑2559 termination resistors minimize reflections on open channels and protect your source or device under test from damage. The module also features excellent insertion loss, voltage standing wave ratio (VSWR), and isolation parameters to minimize signal degradation. You can use its onboard relay count tracking feature to predict relay lifetime and reduce unexpected system downtime.
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USB-8506 , LIN Interface Device
784664-01
1- or 2-Port, USB LIN Interface Device—The USB‑8506 is a Local Interconnect Network (LIN) interface for developing applications with the NI‑XNET driver. The USB‑8506 is powered over the USB bus and does not require external power. The USB‑8506 excels in applications requiring logging or manipulation of hundreds of LIN frames and signals, such as in-vehicle data logging, bus monitoring, automation control, and more. The NI‑XNET device-driven DMA engine enables the onboard processor to move LIN frames and signals between the interface and the user program without CPU interrupts, minimize message latency, and free host processor time. The USB‑8506 is available with a three‑pin COMBICON synchronization connector for triggering and synchronizing the internal hardware timebase with other devices.
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Trace-Level UV Fluorescence SO2 Analyzer
Model T100U
Teledyne Advanced Pollution Instrumentation
The Model T100U Trace-level SO2 analyzer has been developed specifically to address the challenges of low level monitoring as required, for example, in the US NCore network. It uses the proven UV fluorescence principle, and is designed to allow ultra-sensitive SO2 measurements while still meeting the requirements for use as a US EPA compliance analyzer.The analyzer uses both the light and dark phases of the pulsed UV light source to continuously detect and correct for electronic noise, giving exceptionally stable and sensitive performance. A separate UV detector allows the instrument to continuously correct for variations in lamp intensity. Exceptional stability is achieved with the use of an optical shutter to compensate for PMT drift, and a reference detector to correct for changes in UV lamp intensity. A hydrocarbon "kicker" and advanced optical design combine to prevent inaccuracies due to interferents.
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Optical Wavelength Meter
Optoplex Optical wavelength meter (OWM) uses proprietary thin-film interference filter in conjunction with Fabry-Perot cavity technology combined with a micro-actuator and high-speed electronics. Its working principle is schematically shown below. By comparison with Optical channel monitor / Optical performance monitor, the proprietary wavelength reference unit is introduced to ensure high precision wavelength measurements. Optoplex Optical wavelength meter is the only DWDM wavelength meter capable of measuring wavelengths of multi-lasers in DWDM networks over C-band and L-band wavelength range with a high accuracy better than that the wavelength locker can provide. For example, the device can simultaneously report 80 wavelength values of 80 channels at 50 GHz channel spacing with the wavelength accuracy ± 2 GHz. DPRAM, RS-232, or USB interfaces are available and OWM can be customized to meet specific requirements.
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±6 kV ANSI/ESDA/JEDEC HBM Test System
HBM-TS10-A
High Power Pulse Instruments GmbH
*±6 kV Human-Body-Model (HBM) tester according ANSI/ESDA/JEDEC JS-001 standard with C = 100 pF, R = 1.5 kΩ discharge network*Wafer, package and system level HBM testing*True HBM: the classical discharge network of the HBM-S1-A according the standard ensures compliant waveforms for all load conditions*No trailing pulses*Integrated 10 kΩ charge removal resistor*Integrated DUT HBM current sensor for real time transient current monitoring with 1V/A output sensitivity into 50 Ω digital oscilloscope input*Integrated DUT HBM voltage sensor for real time transient voltage monitoring with 1/200V/V output sensitivity into 50 Ω digital oscilloscope input*Integrated overvoltage protection of the DUT voltage sensor, DUTcurrentsensor and DC test interface for efficient overload protection of the digital oscilloscope and SMU during high voltage HBM testing*Integrated DC test DUT switch with automatic switch control*Integrated 50 Ω precision hardware trigger output for high speed digital oscilloscopes*Fast HBM measurements, typically 0.5s per pulse including one-point DC measurement between pulses*Eficient sofware for system control and waveform data management (fully compatible with TLP measurement data)*The sofware can control automatic probers for fast measurements of complete wafers*Compact size 145 mm x 82.5 mm x 44 mm of the integrated HBM pulse generator probehead*System controller size 483 mm x 487 mm x 133 mm*High performance and high quality components*Optionally available hardware upgrades to all HPPI fully integrated HBM/HMM/TLP/VF-TLP test systems TLP-3010C, 4010C, 8010A, and 8010C
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SDC-C Series Microwave Downconverter
SDC-C
SDC-C Series Microwave downconverter is a broadband frequency converter that is dedicated for satellite communication. It has a high performance, high reliability and an octave covered by RF signal. Its frequency step is precise and accurate to 1Hz with a variety of IF and signal bandwidth choices. SDC-C series is equipped with functions like self-testing and combination alarm which is suitable for long-time uninterrupted use, guaranteed safety and reliability.SDC-C series microwave downconverter is mainly designed for satellite communication system, signal monitoring system, and electronic countermeasure system with an excellent phase noise, clutter suppression, and in-band flatness data. It is able to provide a transparent RF transmission channel to all videos or data communications. All programming commands can be set through a local panel or through network remotely. SDC-C series microwave downconverter has a standard 2U size.Applications: T&M Systems / Satellite Communications / MIMO
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SUC-C Series Microwave Upconverter
SUC-C
SUC-C Series Microwave Upconverter is a broadband frequency converter that is dedicated for satellite communication. It has a high performance, high reliability and an octave covered by RF signal. Its frequency step is precise and accurate to 1Hz with a variety of IF and signal bandwidth choices. SUC-C series is equipped with functions like self-testing and combination alarm which is suitable for long-time uninterrupted use, guaranteed safety and reliability.SUC-C series microwave upconverter is mainly designed for satellite communication system, signal monitoring system, and electronic countermeasure system with an excellent phase noise, clutter suppression, and in-band flatness data. It is able to provide a transparent RF transmission channel to all videos or data communications. All programming commands can be set through a local panel or through network remotely. SUC-C series microwave upconverter has a standard 2U size.Applications: T&M Systems / Satellite Communications / MIMO
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EOC Master
EOCM-7102
Hangzhou Softel Optic Co., Ltd.
EOCM-7102 is the outdoor EOC Master of the EOC (Ethernet Over Coaxial) solution. It is in compliant with HomePlug AV standard. The EOCM-7102 have two EOC module. It provide two TV input, two com output and two 10/100/1000M auto-negotiation uplink ports. It offers the high-speed data service to the customer based on the coaxial cable network. The EOC module in the EOCM-7102 is based the Qualcomm AR7410 chipset solution, with high anti jamming capability OFDM technology. The 7.5-65Mhz low frequency band is used for EOC signals. Built in high isolation filter as CATV RF and EOC signal mixer, the EOC signal and CATV signal in 87~862Mhz can running on one cable without interference. The EOC Master can provide high speed data service. The PHY Layer speed is 600Mbps, the MAC Layer throughput is up to 320Mpbs.
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Multiprotocol Transceivers
Analog Devices’ RS-232/RS-485 multiprotocol transceivers are the only parts in the market that allow protocol switching and allow for switching between half-/full-duplex operation and switching on/off termination resistors, both of which minimize physical user intervention when reconfiguring networks. Features include 3.3 V to 5 V operation, up to ±26 kV ESD, a logic supply pin, and small LFCSP packages. As large-scale computing applications typically require more protocols than the RS-232 and RS-485 protocols found in everyday applications, we support legacy protocols. These include V.28 (RS-232), V.35, RS-449, RS-530, RS-530-A, V.36, or X.21. Software-selectable protocol, cable termination, and data terminal equipment (DTE) or data communications equipment (DCE) configurations all provide convenient flexibility.
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Hydrographic Grade Deepwater Singebeam Echosounder
DESO 5DS
The DESO 5DS is a hydrographic grade deepwater singlebeam echosounder designed for reliable high performance in deep ocean surveys. It utilizes very high power transceiver electronics to survey the oceans down to 10km depth.The raw data record is stored in proprietary format by Teledyne’s own software and can be acquired, replayed, and analyzed similar to thermal paper records. Depth data is continuously generated on serial and network interfaces and can be recorded by hydrographic software.The DESO 5DS is based on our latest singlebeam sonar technology, designed as a precise and reliable survey tool for the survey from shallow waters to full ocean depth.The DESO 5DS utilizes the most robust automatic control and bottom detection algorithms available — providing you with precise depth information and brilliant water column profile even under the most challenging conditions.
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Transmission Line Probes
Transmission line probes are a special type of passive probe designed for use at very high frequencies. They replace the high impedance probe cable found in a traditional passive probe with a precision transmission line, with a characteristic impedance that matches the oscilloscope input (50 Ohm). This greatly reduces the input capacitance to a fraction of a picofarad, minimizing the loading of high frequency signals. A matching network at the tip increases the DC input resistance. While they have lower DC input resistance than a traditional passive probe (usually 500 Ohm) to 1kOhm), the input impedance of these probes remains nearly constant over their entire frequency range. A traditional /10 passive probe will have a 10 MOhm) input impedance at DC, however this impedance drops rapidly with frequency, passing below the input impedance of a transmission line probe at less than 100 MHz.
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256-Element Active Antenna Innovator’s Kit
AWA-0142
The AWA-0142 is an active array for 5G wireless applications developed using planar antenna technology resulting in a very low profile, lightweight unit. The surface mount assembled antenna board is based on Anokiwave’s AWMF-0135 Silicon Quad Core IC and demonstrates the performance achievable using low power silicon integration and efficient antenna layout and design. Using the AWMF-0135, the antenna provides +60dBmi (1000 W) of EIRP. The electronic 2D beam steering is achieved using analog RF beam forming, with independent phase and gain control in both Tx and Rx operating modes. The AWA-0142 antenna leads the way in showing how 5G coverage can be rolled out by network operators using the mmW bands, with low power footprint and high energy efficiency, while meeting key operating specifications for data rate, latency, coverage, and reliability.
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5G 256-Element Active Antenna Innovator’s Kit
AWA-0134
The AWA-0134 is an active array for 5G wireless applications developed using planar antenna technology resulting in a very low profile, lightweight unit. The surface mount assembled antenna board is based on Anokiwave’s AWMF-0108 Silicon Quad Core IC and demonstrates the performance achievable using low power silicon integration and efficient antenna layout and design. Using the AWMF-0108, the antenna provides +60dBmi (1000 W) of EIRP. The electronic 2D beam steering is achieved using analog RF beam forming, with independent phase and gain control in both Tx and Rx operating modes. The AWA-0134 antenna leads the way in showing how 5G coverage can be rolled out by network operators using the mmW bands, with low power footprint and high energy efficiency, while meeting key operating specifications for data rate, latency, coverage, and reliability.
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Multi-Wavelength Planar Lightwave Circuit Splitter (PLC Splitter)
PLC-1 × 口口口
Hangzhou Huatai Optic Tech. Co., Ltd.
Huatai Planar Optical Waveguide Optical Splitter (PLC Splitter) is an integration waveguide optical power distribution device that based on quartz substrate, featured with small size, wide working wavelength range, high reliability and excellent uniformity of optical split, etc. It is especially suitable for connecting local unit with terminal unit in passive optical network (EPON, BPON, GPON, etc.) to achieve optical signal splitting. The main design divide optical signal in optical communication system into multi-way output. The component that we manufactured is with high stability to light source and temperature. And diversified packages can meet customers’ different requirements in application. According to the various requirements, our PLC splitter is with various types: bare fiber type, miniature type, fan-out type, module type, tray type, plug-in type , Blade package type, rack-mounted type, etc.
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Multi-Wavelength Planar Lightwave Circuit Splitter (PLC Splitter)
PLC-2 × 口口口
Hangzhou Huatai Optic Tech. Co., Ltd.
Huatai Planar optical waveguide optical splitter (PLC Splitter) is an integration waveguide optical power distribution device that based on quartz substrate, featured with small size, wide working wavelength range, high reliability and excellent uniformity of optical split, etc. It is especially suitable for connecting local unit with terminal unit in passive optical network (EPON, BPON, GPON, etc.) to achieve optical signal splitting. The main design divide optical signal in optical communication system into multi-way output. The component that we manufactured is with high stability to light source and temperature. And diversified packages can meet customers’ different requirements in application. According to the various requirements, our PLC splitter is with various types: bare fiber type,miniature type, fan-out type,module type, tray type, plug-in type , Blade package type, rack-mounted type, etc.
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EV &Recharging Testing
PONOVO has long-term follow-up technology in China and abroad. Based on its own mature intelligent power detection equipment, and according to its own advantages in the field of new energy, PONOVO could be able to provide users with professional new energy test system solutions. In the field of electric vehicle technology, the electric vehicle charging facility detection platform based on the Internet cloud platform was introduced. This platform is one of the few domestic testing platforms that can automatically test the charging piles for network inspection, project acceptance, and factory testing. The platform has the advantages of automatic testing, low usage threshold, and high integration. It is widely used in the detection of relevant charging facilities in more than 20 provinces and cities in China, effectively meets the inspection of electric vehicle charging stations, and provides powerful technical support for the site acceptance test of charging stations.
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2-port Battery Portable Passive Intermodulation Analyzer - iXA Series
iXA
The Kaelus iXA Series Passive Intermodulation (PIM) analyzer is a dual-port, battery powered PIM Test Analyzer. It supports multiple test scenarios such as testing at the top of the tower, the base of the tower, rooftop, in-building for DAS systems and external PIM Finding.No other PIM tester has ever been integrated to this level! The iXA includes a network of electronic switches to change from one-port to two-port measurement seamlessly. In addition, with integrated Range-to-Fault (RTF) on each port, the user can first troubleshoot the system for internal PIM. Then, without reconnection, the user can progress with the external PIM process, making the entire process much more efficient.With integrated RTF on each port, the user can collect four times more range-to-fault data than the standard 1-port PIM Finder solution. Thus, the user can easily locate and swiftly eliminate the strongest PIM source.
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Fanless Embedded System With LGA1150 Socket Intel® Core™ I7/i5/i3 & Celeron® Processor, Intel® Q87, 2 HDMI/VGA/DisplayPort, 4 GbE LANs, 6 USB 3.0, Wide Range DC-in And PCIe Mini Card
eBOX670-883-FL
The eBOX670-883-FL supports the LGA1150 socket type for 4th generation Intel® Core™ i7/i5/i3 and Celeron® processors (formally codename: Haswell) with Intel® Q87 Express chipset. Under this rich support system, the eBOX670-883-FL allows wide operating temperature ranging from -40°C to +55°C for the most endurable operation. The outstanding embedded controller comes with four 10/100/1000 Ethernet ports, Jumbo Frame (9.5K), PXE Remote Boot, Teaming, and wake-on-LAN (WOL) function to highly enhance its network connection speed. Additionally, the eBOX670-883-FL supports up to three independent hi-resolution displays or a 4K display. Undoubtedly, this rugged fanless embedded computer is the best solution for any industrial field, including host computers, cloud computing servers, multimedia applications, and automation systems.
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Ethernet Gateway
ICS's Model 9065 Ethernet Gateway is an Ethernet to GPIB Controller that connects easily to your computer's Ethernet port, company network or to the Internet to control GPIB instruments. The Model 9065 is VXI-11 compliant, does not require special drivers and is compatible with the following systems: LINUX, UNIX, SunOS, MAC OS X, HP-UX, IBM-AIX and Windows 2K or later Windows systems. ICS's 9065 uses VXI-11 RPC calls for secure communication with virtually any computer. Eliminates the need for special drivers. Easily programmed on a PC by making VISA calls or on a MAC/UNIX/LINUX computer with RPC calls. See our extensive Application Notes or download our VXI-11 Tutorial and the VXI-11 Specification for more information about the VXI-11 Standard. ICS Electronics is the premier VXI-11 device supplier with 100% VXI-11 compliance in every product.