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product
Femto / Picoammeter, 0.01fA, Battery
B2983B
The B2983B Femto/Picoammeter is the world’s only graphical picoammeter that allows you to confidently measure small currents with 0.01 fA (0.01 x 10-15 A) resolution. In addition, battery operation eliminates AC line noise from your critical measurements. It possesses a 4.3” color LCD with a graphical user interface that provides trend chart and histogram data in addition to numeric information. These front-panel capabilities enable you to capture transient behavior and to perform quick statistical analyses without a PC. The available Setup Integrity Checker software option allows you to compare the noise levels of different cabling and fixturing arrangements to help isolate external noise sources.
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Handheld Digital Multimeter, 4.5 Digit, Water and Dust Resistant
U1272A
Feature sets that meet traditional industrial requirements and improve productivity and safety Improved accuracy and resolution to meet traditional industrial requirements (30,000 counts resolution with 0.6% for ACV accuracy)Intelligent features to improve productivity and safety (LPF, ZLOW, Smart )Better grip Both visual and audible continuity indication in noisy environments Easy access to fuse for simplified maintenance Easy connectivity to PC and internal memory (up to 10,000) for data logging Large rotary switch and buttons that are easy to operate Dust and water resistant casing (IP 54 compliant)Compatible with U1177A/U1117A IR-Bluetooth adapter for remote monitoring & datalogging Altitude: 3000 meters
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Logic Analyzer
GoLogicXL-36
Logic analyzers and oscilloscopes offering fast sample rates and large memory depths are required to debug and test modern electronics. The GoLogicXL captures a very large window of bus activity using sample depths up to 1 billion samples. 4 GHz sampling rates expose the finest details in your signals. 1 GHz Transitional sampling provides the optimum method to capture fast data bursts separated by seconds, minutes, or even hours of bus inactivity. The GoLogicXL State analysis can also synchronize with single-data-rate 300 MHz SDR clocks, and double-date-rate 250 MHz DDR clocks (500 MHz effective).
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Logic Analyzer
GoLogicXL-72
Logic analyzers and oscilloscopes offering fast sample rates and large memory depths are required to debug and test modern electronics. The GoLogicXL captures a very large window of bus activity using sample depths up to 1 billion samples. 4 GHz sampling rates expose the finest details in your signals. 1 GHz Transitional sampling provides the optimum method to capture fast data bursts separated by seconds, minutes, or even hours of bus inactivity. The GoLogicXL State analysis can also synchronize with single-data-rate 300 MHz SDR clocks, and double-date-rate 250 MHz DDR clocks (500 MHz effective).
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Compute Express Link (CXL)
Compute Express Link (CXL) is a new high-speed CPU-to-Device and CPU-to-Memory interconnect designed to accelerate next-generation data center performance. CXL technology maintains memory coherency between the CPU memory space and memory on attached devices, which allows resource sharing for higher performance, reduced software stack complexity, and lower overall system cost. This permits users to simply focus on target workloads as opposed to the redundant memory management hardware in their accelerators. CXL is based on a PCI Express 5.0 Physical layer with speeds up to 32GT/s. Teledyne LeCroy provides protocol analysis test equipment to support development and debug of CXL based devices.
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TOV Test System
Shanghai Guantu Technology Co., Ltd.
1. Safety protection: traffic light indication status, emergency stop and interlocking of the test product door2. Equipped with a computer, set the TOV power supply parameters through the software interface, and automatically test3. Equipped with alarm function, equipped with emergency brake switch, equipped with safety cover and door switch4. The computer interface displays real-time voltage and current data5. Automatically draw voltage and current waveforms, and can save the waveforms as BMP format pictures, which is convenient for editing experiment reports.6. Automatically record test time, test current, test voltage, etc., and save the recorded data to files7. Installation method: cabinet installation.
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Digital I/O with Per Channel Timing, Programmable Logic Levels and PMU PXI Card
GX5296
The GX5296 offers the most performance and features of any 3U PXI dynamic digital I/O board on the market today. The 32-channel, GX5296 offers timing per pin, multiple time sets, data formatting, and an advanced sequencer – providing users with the capability emulate and test complex digital busses for system, board or device test applications. Offering 1 ns edge placement resolution per pin and a PMU per pin, the GX5296 has the ability to perform both DC and AC parametric testing. Each digital channel can be individually programmed for a drive hi, drive lo, sense hi, sense lo, and load value (with commutation voltage level).
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PXIe-6738, 16-Bit, 32-Channel, 1 MS/s PXIe Analog Output Module
783800-01
16-Bit, 32-Channel, 1 MS/s PXIe Analog Output Module—The PXIe‑6738 is a high-density analog output module. The device is ideal for applications such as stimulus-response tests and open-loop simulations at high densities. You can achieve the maximum sample rate if using up to eight channels, where each channel is on a separate bank. The PXIe‑6738 also includes 10 digital I/O lines, four counter/timers, digital triggering, and advanced timing to meet a wide range of application requirements. Its digital triggering and PXI Express synchronization capabilities allow it to be coupled with additional data acquisition, motion, and vision products to create highly custom measurement solutions to test innovative designs.
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PXI-7841, Virtex-5 LX30 FPGA, 200 kS/s PXI Multifunction Reconfigurable I/O Module
780337-01
Virtex-5 LX30 FPGA, 200 kS/s PXI Multifunction Reconfigurable I/O Module—The PXI‑7841 features a user-programmable FPGA for high-performance onboard processing and direct control over I/O signals to ensure complete flexibility of system timing and synchronization. You can customize these devices with the LabVIEW FPGA Module to develop applications requiring precise timing and control such as hardware‑in‑the‑loop testing, custom protocol communication, sensor simulation, and high-speed control. The PXI‑7841 features a dedicated A/D converter (ADC) per channel for independent timing and triggering. This design offers specialized functionality such as multirate sampling and individual channel triggering, which are outside the capabilities of typical data acquisition hardware.
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cRIO-9803, Up to 480 GB SSD Expansion Module for CompactRIO
786677-01
Up to 480 GB SSD Expansion Module for CompactRIO - The cRIO-9803 provides a bus-powered USB SATA bridge to a full-length mSATA solid-state drive (SSD). This module uses a USB Type C connector with integrated cable retention. It also works with devices that feature other types of USB connectors, such as CompactRIO Single-Board Controllers, Industrial Controllers, and PXI Controllers. The cRIO-9803 is available in 64 GB SLC for high endurance in rugged environments, in 480 GB MLC for high-capacity data storage, and for use with a customer-supplied SSD. Additionally, the cRIO-9803 features the same rugged shock and vibration ratings as other CompactRIO modules and can be mechanically connected to a controller for integration using mounting accessories.
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PXIe-6739 , 16-Bit, 64-Channel, 1 MS/s PXI Analog Output Module
783801-01
16-Bit, 64-Channel, 1 MS/s PXI Analog Output Module—The PXIe‑6739 is a high-density analog output module. The device is ideal for applications such as stimulus-response tests and open-loop simulations at high densities. You can achieve the maximum sample rate if using up to 16 channels, where each channel is on a separate bank. The PXIe‑6739 also includes 20 digital I/O lines, four counter/timers, digital triggering, and advanced timing to meet a wide range of application requirements. Its digital triggering and PXI Express synchronization capabilities allow it to be coupled with additional data acquisition, motion, and vision products to create highly custom measurement solutions to test innovative designs.
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cRIO-9803, Up to 480 GB SSD Expansion Module for CompactRIO
785921-01
Up to 480 GB SSD Expansion Module for CompactRIO - The cRIO-9803 provides a bus-powered USB SATA bridge to a full-length mSATA solid-state drive (SSD). This module uses a USB Type C connector with integrated cable retention. It also works with devices that feature other types of … USB connectors, such as CompactRIO Single-Board Controllers, Industrial Controllers, and PXI Controllers. The cRIO-9803 is available in 64 GB SLC for high endurance in rugged environments, in 480 GB MLC for high-capacity data storage, and for use with a customer-supplied SSD. Additionally, the cRIO-9803 features the same rugged shock and vibration ratings as other CompactRIO modules and can be mechanically connected to a controller for integration using mounting accessories.
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PXI-7953, Virtex-5 LX50 FPGA, 750 kS/s PXI Multifunction Reconfigurable I/O Module
780340-01
Virtex-5 LX50 FPGA, 750 kS/s PXI Multifunction Reconfigurable I/O Module—The PXI‑7852 features a user-programmable FPGA for high-performance onboard processing and direct control over I/O signals to ensure complete flexibility of system timing and synchronization. You can customize these devices with the LabVIEW FPGA Module to develop applications requiring precise timing and control such as hardware‑in‑the‑loop testing, custom protocol communication, sensor simulation, and high-speed control. The PXI‑7852 features a dedicated A/D converter (ADC) per channel for independent timing and triggering. This design offers specialized functionality such as multirate sampling and individual channel triggering, which are outside the capabilities of typical data acquisition hardware.
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PXI-7853, Virtex-5 LX85 FPGA, 750 kS/s PXI Multifunction Reconfigurable I/O Module
780341-01
Virtex-5 LX85 FPGA, 750 kS/s PXI Multifunction Reconfigurable I/O Module—The PXI‑7853 features a user-programmable FPGA for high-performance onboard processing and direct control over I/O signals to ensure complete flexibility of system timing and synchronization. You can customize these devices with the LabVIEW FPGA Module to develop applications requiring precise timing and control such as hardware‑in‑the‑loop testing, custom protocol communication, sensor simulation, and high-speed control. The PXI‑7853 features a dedicated A/D converter (ADC) per channel for independent timing and triggering. This design offers specialized functionality such as multirate sampling and individual channel triggering, which are outside the capabilities of typical data acquisition hardware.
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PXI-7842, Virtex-5 LX50 FPGA, 200 kS/s PXI Multifunction Reconfigurable I/O Module
780338-01
Virtex-5 LX50 FPGA, 200 kS/s PXI Multifunction Reconfigurable I/O Module—The PXI‑7842 features a user-programmable FPGA for high-performance onboard processing and direct control over I/O signals to ensure complete flexibility of system timing and synchronization. You can customize these devices with the LabVIEW FPGA Module to develop applications requiring precise timing and control such as hardware‑in‑the‑loop testing, custom protocol communication, sensor simulation, and high-speed control. The PXI‑7842 features a dedicated A/D converter (ADC) per channel for independent timing and triggering. This design offers specialized functionality such as multirate sampling and individual channel triggering, which are outside the capabilities of typical data acquisition hardware.
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cDAQ-9181, 1‑Slot, Ethernet CompactDAQ Chassis
781496-01
1‑Slot, Ethernet CompactDAQ Chassis - The cDAQ‑9181 is a CompactDAQ Ethernet chassis designed for small, 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 C Series I/O modules to create a mix of analog I/O, digital I/O, and counter/timer measurements. The chassis also has four 32‑bit general‑purpose counters/timers. 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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VeriStand
VeriStand helps you get your hardware-in-the-loop or test cell control and monitoring system up and running quickly. With a wide range of out-of-the-box functionality that includes configurable data acquisition and logging, test sequencing, and simulation model integration, VeriStand reduces the time needed to test your products. You can also use a variety of software tools to add custom functionality to VeriStand, which makes it flexible enough to adapt to even the most complex applications. Choosing VeriStand gives you the confidence that your test system will perform reliably while providing the flexibility you need to meet your real-time test requirements.
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cDAQ-9174, 4‑Slot, USB CompactDAQ Chassis
781157-01
4‑Slot, USB CompactDAQ Chassis - The cDAQ‑9174 is a CompactDAQ USB chassis designed for small, portable sensor measurement systems. The chassis provides the plug‑and‑play simplicity of USB to sensor and electrical measurements. It also 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 C Series I/O modules to create a mix of analog I/O, digital I/O, and counter/timer measurements. The cDAQ‑9174 also has four 32‑bit general-purpose counters/timers. With multiple timing engines, you can run seven hardware-timed operations simultaneously, with three independent rates for analog input.
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PXI-7851, Virtex-5 LX30 FPGA, 750 kS/s PXI Multifunction Reconfigurable I/O Module
780339-01
Virtex-5 LX30 FPGA, 750 kS/s PXI Multifunction Reconfigurable I/O Module—The PXI‑7851 features a user-programmable FPGA for high-performance onboard processing and direct control over I/O signals to ensure complete flexibility of system timing and synchronization. You can customize these devices with the LabVIEW FPGA Module to develop applications requiring precise timing and control such as hardware‑in‑the‑loop testing, custom protocol communication, sensor simulation, and high-speed control. The PXI‑7851 features a dedicated A/D converter (ADC) per channel for independent timing and triggering. This design offers specialized functionality such as multirate sampling and individual channel triggering, which are outside the capabilities of typical data acquisition hardware.
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cRIO-9803, Up to 480 GB SSD Expansion Module for CompactRIO
785920-01
Up to 480 GB SSD Expansion Module for CompactRIO - The cRIO-9803 provides a bus-powered USB SATA bridge to a full-length mSATA solid-state drive (SSD). This module uses a USB Type C connector with integrated cable retention. It also works with devices that feature other types of USB connectors, such as CompactRIO Single-Board Controllers, Industrial Controllers, and PXI Controllers. The cRIO-9803 is available in 64 GB SLC for high endurance in rugged environments, in 480 GB MLC for high-capacity data storage, and for use with a customer-supplied SSD. Additionally, the cRIO-9803 features the same rugged shock and vibration ratings as other CompactRIO modules and can be mechanically connected to a controller for integration using mounting accessories.
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PXI-7854, Virtex-5 LX110 FPGA, 750 kS/s PXI Multifunction Reconfigurable I/O Module
780342-01
Virtex-5 LX110 FPGA, 750 kS/s PXI Multifunction Reconfigurable I/O Module—The PXI‑7854 features a user-programmable FPGA for high-performance onboard processing and direct control over I/O signals to ensure complete flexibility of system timing and synchronization. You can customize these devices with the LabVIEW FPGA Module to develop applications requiring precise timing and control such as hardware‑in‑the‑loop testing, custom protocol communication, sensor simulation, and high-speed control. The PXI‑7854 features a dedicated A/D converter (ADC) per channel for independent timing and triggering. This design offers specialized functionality such as multirate sampling and individual channel triggering, which are outside the capabilities of typical data acquisition hardware.
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cDAQ-9181, 1‑Slot, Ethernet CompactDAQ Chassis
782052-01
1‑Slot, Ethernet CompactDAQ Chassis - The cDAQ‑9181 is a CompactDAQ Ethernet chassis designed for small, 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 C Series I/O modules to create a mix of analog I/O, digital I/O, and counter/timer measurements. The chassis also has four 32‑bit general‑purpose counters/timers. 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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PXIe-5451, 145 MHz, 16-Bit, 512 MB, PXI Waveform Generator
781204-02
PXIe, 145 MHz, 16-Bit, 512 MB, PXI Waveform Generator—The PXIe‑5451 is a 145 MHz, dual‐channel arbitrary waveform generator capable of generating user-definied waveforms, standard functions, and I/Q communications signals. It is an ideal instrument for including in systems for testing devices with I/Q inputs, or as the baseband component of an RF vector signal generator as wells as time-domain signals like envelope tracking. The PXIe‑5451 also features onboard signal processing (OSP) functions that include pulse shaping and interpolation filters, gain and offset control, and a numerically controlled oscillator (NCO) for frequency shifting. The PXIe‑5451 also features advanced synchronization and data streaming capabilities.
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PXIe-5451, 145 MHz, 16-Bit, 128 MB, PXI Waveform Generator
781204-01
PXIe, 145 MHz, 16-Bit, 128 MB, PXI Waveform Generator—The PXIe‑5451 is a 145 MHz, dual‐channel arbitrary waveform generator capable of generating user-definied waveforms, standard functions, and I/Q communications signals. It is an ideal instrument for including in systems for testing devices with I/Q inputs, or as the baseband component of an RF vector signal generator as wells as time-domain signals like envelope tracking. The PXIe‑5451 also features onboard signal processing (OSP) functions that include pulse shaping and interpolation filters, gain and offset control, and a numerically controlled oscillator (NCO) for frequency shifting. The PXIe‑5451 also features advanced synchronization and data streaming capabilities.
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PXIe-5451, 145 MHz, 16-Bit, 2 GB PXI Waveform Generator
781204-03
PXIe, 145 MHz, 16-Bit, 2 GB PXI Waveform Generator—The PXIe‑5451 is a 145 MHz, dual‐channel arbitrary waveform generator capable of generating user-definied waveforms, standard functions, and I/Q communications signals. It is an ideal instrument for including in systems for testing devices with I/Q inputs, or as the baseband component of an RF vector signal generator as wells as time-domain signals like envelope tracking. The PXIe‑5451 also features onboard signal processing (OSP) functions that include pulse shaping and interpolation filters, gain and offset control, and a numerically controlled oscillator (NCO) for frequency shifting. The PXIe‑5451 also features advanced synchronization and data streaming capabilities.
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VLSI Test Systems
50/100 MHz clock rate50/100 Mbps data rate1024 I/O pins (Max :1280 I/O pins)Up to 1024 sites Parallel testing32/64 M pattern memoryVarious VI sourceFlexible HW-architecture (Interchangeable I/O, VI, ADDA,)Real parallel trim/match functionTime & frequency measurement unit (TFMU)High-speed time measurement unit (HSTMU)AD/DA test optionSCAN test option (max 1G M/chain)ALPG test option for embedded memorySTDF tools supportTest program/pattern converter(J750, D10, V50, E320, SC312, V7, TRI-6020, ITS9K)User friendly windows 7 environmentCRAFT C/C++ programming languageSW (Software) same as 3380P & 3360P
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Optical Channel Monitor
Optoplex Optical channel monitor (OCM) uses proprietary thin-film interference filter technology combined with a micro-actuator and high-speed electronics. Optical channel monitor is used to measure critical information data on optical transmission signals in DWDM networks for monitoring signal dynamics, determining system functionality, identifying performance change, and providing feedback for controling network elements so as to optimize operational performance. In particular, Optoplex Optical channel monitor can automatically scan the C-, L- or C+L-band wavelength range and precisely measure channel wavelength, power, and optical signal-to-noise ratio (OSNR). See the following schematic diagram for OCM working principle.
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ARM Elevator Board
MS 1517
- Works with 2 wires, supplied with landing displays and communication with "CAN" processor- Provides field-proven perfomance, lifetime support commitment.- Remote communication with modem and suitable software enables user to download the system history from remote location- Monitor and control elevators inn real time-across campus or country.- Group Control Available upto 64floors and 6 cars.- Displays car and hall calls, waiting times and Data Log Information on a color screen.- Stores information during the working day.- Self learning call allocation, allows system to read day by day call history and respond to the unexpected travel patterns from previous experience
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Digital ICP® - USB Signal Conditioner
The Digital ICP®-USB Signal Conditioner, Model 485B39, offers plug-and-play connectivity for your measurements. Model 485B39 from The Modal Shop, a wholly owned subsidiary of PCB Piezotronics, is a pocket-sized, dual-channel ICP to USB digital signal conditioner. The unit provides any ICP sensor – accelerometers, microphones, impact hammers, laser tachometers, and more – with a digital USB output. It is truly plug-and-play, with no drivers required. Digital ICP features two BNC inputs and a 24-bit USB digital signal output, allowing a direct connection from the sensor to any PC, tablet, or smartphone device for easy data collection, analysis, and sharing on-the-go.
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Industrial ATX Motherboard with 6th/7th Gen Intel® Core™ i7/i5/i3 Processor (Code name: Skylake/Kabylake)
IMB-M43H
IMB-M43H is an ATX motherboard supporting the Desktop 6th/7th Generation Intel Core i7/i5/i3 Processors with Intel H110 Chipset, providing the most cost-competitive solution anywhere in embedded computing and fulfilling the specific needs of all users requiring 5 PCI add-on cards. With high-speed data transfer interfaces such as PCIe 3.0/2.0, USB 3.0, and SATA 6 Gb/s (SATA III), dual-channel DDR4 memory up to 32 GB in two DIMM slots for industrial automation applications, the ADLINK IMB-M43H carries significant competitive advantage in the market. This leading, rugged I/O design enhances user experience with robust device compatibility, durable connectivity, and extreme environment readiness.