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A/D Converters
quantization of an analog signal into a digital signal.
- TEAM SOLUTIONS, INC.
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Resolver-to-Digital Converter
MSX-RDC-17
The resolver-to-digital converter MSX-RDC-17 is a device for supplying and acquiring a resolver. It converts the position value given by the resolver into a digital incremental output signal. The resolution of the incremental encoder output can be defined using the switch on the front side of the MSX-RDC-17.
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Bench top DC Power Supply
R4K-80 Series
R4K-80 series is higher performance and next generation model of existing RK-80 series DC variable power supply, which has been receiving good reputation for its innovative compact size and variable range feature. 4-digit meter and high resolution D/A, A/D converters are added newly for more precise setting and reading. Needless to say, the innovative compact size, variable range feature and high operability are remaining same as conventional RK-80. R4K-80 series is the best suitable DC power supply for a variety of applications from laboratory experiment to line productions.
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PXIe-4310, 16-Bit, 8-Channel, 400 kS/s/ch, Ch-Ch Isolated PXI Analog Input Module
784813-01
16-Bit, 8-Channel, 400 kS/s/ch, Ch-Ch Isolated PXI Analog Input Module—The PXIe-4310 is a channel-to-channel isolated, filtered analog input module for higher voltage measurements. The module offers the ability to select an analog filter per channel to provide extra filtering performance. You also can operate up to four different input ranges per terminal block and triggering configurations concurrently to ensure you measure every sensor as needed. The module has an A/D converter per channel to enable a simultaneous sample rate at the maximum sample rate across the input range. The included NI-DAQmx driver simplifies hardware configuration and measurement.
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A/D & D/A Converter Combinations
Analog Devices’ comprehensive portfolio of integrated monitoring and control components combine ADCs, DACs, temperature sensors, GPIOs, and current sensing technologies in a wide range of configurations. ADI integrated solutions save space over discrete implementations and simplify operations and provide the configurability your system requires. These products are ideal for general system monitoring of peripherals like power supplies or system voltages and currents. Used in wireless base stations, optical transceivers, transponders, and industrial systems such as building control, these converters offer versatility and flexibility.
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16-Channel VME Multi-Range Digitizer
V490
The V490 includes 16 independent acquisition channels, each with a programmable-gain differential amplifier, analog anti-aliasing filter, 16-bit analog-to-digital converter, and digital post-processing. With a dedicated A/D converter per channel, the V490 provides true simultaneous sampling, which can be extended across multiple V490s or triggered from an external TTL signal.
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2ch ADC, 2ch DAC
RFM-ADAFF22
Sundance Multiprocessor Technology Ltd.
The RFM-ADAFF22 is a two channel Analog to Digital and two channel Digital to Analog mixed converter FMC which complies with VITA 57.1-2010. Each AD channel provides AC coupled single-end analog input and 16-bit single-ended output with 20-105MHz sampling speed based on ADI AD9650. Each DA channel provides 16-bit single-ended input and one DC coupled differential analog output with 1 – 500MHz sampling speed based on Maxim MAX5888A.
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PXIe-7846, Kintex-7 160T FPGA, 500 kS/s PXI Multifunction Reconfigurable I/O Module
784143-01
Kintex-7 160T FPGA, 500 kS/s PXI Multifunction Reconfigurable I/O Module—The PXIe‑7846 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 PXIe‑7846 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. The PXIe‑7846 also includes peer-to-peer streaming for direct data transfer to other PXI Express modules.
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PCIe-Mini
PCIe-Mini-AD8200
8 Channels 16-bit A/D converter Simultaneously Sampled• Fast throughput rate: 200 KSPS for all 8 channels• 8 Channels SE or 4 PSEUDO Differentials• Single-ended or 4 differential channels• True bipolar analog input ranges: ±10 V, ±5 V, selection applies to all Channels• Analog Input Clamp Protection• 1MΩ Analog Input Impedance• Programmable 2nd Order Anti-alias Analog Filter• Over-sampling capability with digital filter• 8Kx16 SRAM• PCIexpress compliant
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Input / Output Modules
*Competitive cost-per-channel*24-bit A/D converters; 16-bit exported*ICP, Strain Gauge, Frequency, String Pot, Thermocouple*Portable, rugged, stand-alone operation*Open-source command set for third-party software applications
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4-CH 16-Bit 80 MS/s PCI Express Digitizer
PCIe-9834
ADLINK's new PCIe-9834 high-speed PCI Express digitizer, featuring four simultaneously sampled 80 MS/s input channels with 16-bit resolution, 40 MHz bandwidth, and up to 1 GB DDR3 onboard memory. Each of the four input channels supports up to 80MS/s sampling, with 16-bit resolution A/D converter. This allows simultaneous recording of signals on all channels with no interchannel phase delay. The extremely large onboard memory enables long recording times even at the highest sampling rates. Each connection pair (lane) can achieve burst connection speeds of 250MB/s. The PCIe-9834, based on x4 lane slot PCI Express technology, provides a clear advantage in that direct connection of each slot allows full transfer bandwidth for each individual card.
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USB-7846, Kintex-7 160T FPGA, 500 kS/s Multifunction Reconfigurable I/O Device
783201-01
Kintex-7 160T FPGA, 500 kS/s Multifunction Reconfigurable I/O Device - The USB‑7846 features a user-programmable FPGA for high-performance onboard processing and direct control over I/O signals for 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 USB‑7846 features a dedicated A/D converter 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 DAQ hardware.
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12 A/D Channels (±1.25 to ±10.0 VDC FSR); 24-bit Sigma-Delta
AD1
Module AD1 features 12 channels with up to 24-bit Sigma-Delta A/D converters for each individual channel. The maximum programmable, expected full-scale range input for the AD1 module is ±1.25 to ±10 VDC and ±12.5 to ±100 VDC respectively. The A/D converters have programmable sample rates of up to 256 kHz.
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Multi Channel A/D Converters
Analog Devices multiplexed channel precision A/D converters include one ADC and span 8-bit to 24-bit resolutions and throughputs from kSPS to 10 MSPS, while offering industry-leading performance in noise, linearity, and dynamic range. ADI offers a quick and easily deployed multichannel solution suited to your application’s diverse needs in speed, power, and size. Engineered to accommodate single-ended, differential, and pseudo differential inputs, our multiplexed converters offer the feature set needed for next-generation end systems.
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Analog-to-Digital Converter (A/D) and Counter-Timer Card
AD8-16 (ADA-8)
Model AD8-16 (alternate part number ADA-8) is an economical, multiplexed, eight-bit Analog-to-Digital Converter (A/D) and Counter-Timer card for ISA-bus computers. It accepts up to eight differential or 16 single-ended analog inputs (jumper configured). AD8-16 requires a full-size expansion slot. All connections are made through a standard 50-pin connector. Base I/O address selection is via dip switch.Analog inputs are multiplexed, amplified, held by a sample and hold amplifier, and then digitized by an eight-bit A/D converter. Amplifier gain is selected by software and can differ from channel to channel.
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A/D Converters, Multi-function Instrumentation
Measurement instrumentation includes counter / timers, DMMs, digitizers, and RF power analyzers. These products are offered in PXI, PCI and ISA bus formats.
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Domino Melody
One 10-bit 40 MHz A/D converter with one 8- or 10-bit LUT32-bit 33 MHz PCI bus, standard and low profile bracketsD³ technology for extremely low synchronization jitterSupport for mega-pixel progressive-scan and interlaced cameras, asynchronous reset and exposure controlTrigger, strobe and general purpose I/O lines
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PXIe 8 Bit High Speed Digitizer - 2.5 GS/s on 1 Channel, 1.25 GS/s on 2 Channels, 1.5 GHz Bandwidth
M4X.2223-X4
The 9 models of the M4x.22xx-x4 Express series are designed for the high speed data acquisition. Each of the input channels has its own A/D converter and its own programmable input amplifier. This allows the recording of signals simultaneously on all channels without any phase delay between them. The extremely large on-board memory allows long time recording even with the highest sampling rates.
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PXIe-4305, 24-Bit, 32-Channel, 51.2 kS/s, 42 V, PXI Analog Input Module
783868-01
24-Bit, 32-Channel, 51.2 kS/s, 42 V, PXI Analog Input Module—The PXIe‑4305 is a filtered analog input module for higher voltage measurements. The module offers the ability to select a digital filter per channel to provide extra filtering performance. You also can operate up to four different sample rates and triggering configurations concurrently to ensure you measure every sensor as needed. The module has an A/D converter per channel to enable a simultaneous sample rate at the maximum sample rate across the input range. The included NI‑DAQmx driver simplifies hardware configuration and measurement.
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PCIe 8 Bit High Speed Digitizer - 5 GS/s on 1 Channel, 2.5 GS/s on 2 Channels, 1.5 GHz Bandwidth
M4I.2233-X8
The 9 models of the M4i.22xx-x8 Express series are designed for the high speed data acquisition. Each of the input channels has its own A/D converter and its own programmable input amplifier. This allows the recording of signals simultaneously on all channels without any phase delay between them. The extremely large on-board memory allows long time recording even with the highest sampling rates.
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16 A/D Channels (±100 VDC); 16-bit SAR per channel
ADF
Module ADF features 16 channels with up to 16-bit SAR A/D converters, simultaneous sampling. The maximum programmable, expected full-scale range input for the ADF module is -FS to +FS or 0 to FS; 100.00, 50.00, 25.0, 12.5 or 6.25 volts. The A/D converters have programmable sample rates of up to 200 kHz.
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Transmitter (Export Only)
SMDB
The input section features the unique servo bias input circuitry with a standard TA5M type jack for use with electret lavaliere mics, dynamic mics, or line level signals. A DSP-controlled analog audio limiter is employed before the A-D converter. The limiter has a range of more than 30 dB for excellent overload protection and a dual release envelope that makes the limiter acoustically transparent while maintaining low distortion. The limiter recovers quickly from brief transients, with no audible side effects, and also recovers slowly from sustained high levels to keep audio distortion low while preserving short term dynamics.
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Programmable Multifrequency Clock Synthesizer - PCIe x8
Model 7891
Simultaneous synthesis of up to 5 different clocks, Eight SMC clock outputs, Ideal for A/D and D/A converter clock sources
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Analog Input Products
Analog input boards are useful for measuring variably changing conditions in the real world. When we want to measure these variably changing conditions, we need analog inputs to convert these changing real world conditions to changing electrical quantities. For example, monitoring the temperature inside a wood kiln, or the water pressure on the output of a pump, or the heart rate of a medical patient. In each of these cases, you can use one of our analog input devices to convert the electrical data from a sensor or transducer into binary data that can then be used by your computer. The device that converts this data is known as an analog to digital converter (abbreviated ADC, A/D, or A to D). An analog input is a measurable electrical signal with a defined range. The analog input changes continuously in a definable manner in relation to the measured property. This data is very useful for process monitoring, process control, or simple monitoring / data collection and acquisition. ACCES' analog input boards amplify and multiplex input signals from thermocouples, strain gauges, accelerometers, photo sensors, flowmeters, RTDs, thermistors, voltage sources, millivolt sources, and current sources, just to name a few.
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PCI Data Acquisition Boards
AD8CH12B-100DMA Series - Single low-spur 8-bit, 100 MS/s
Model AD8CH12-100DMA has eight simultaneous-sampling 12-bit A/D converters, and can continuously acquire and transfer hundreds of megabytes or even gigabytes of A/D data directly into host system memory at up to 100 MB/s, via 64 or 32 bit PCIbus DMA. It can acquire and transfer eight 8-bit A/D channels at up to 12.5 MSPS each (100MB/sec aggregate), or eight 12-bit A/D channels at up to 6.25 MSPS each, or four 8-bit channels at up to 25 MSPS each, or four 12-bit channels at up to 12.5 MSPS each.
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Clamp Meter, Auto, True RMS, 400 A AC, 600 V AC, 600 V DC, 28 mm Jaw Opening Max.
72-7222
This model is a 2,000 count stable, safe and reliable digital clamp multimeter. It is designed with large-scale integrated circuits and A/D converter as the core as well as the overload protection and novel structure, which make them a superb tool of electricians.
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Dual Channel Digital Receiver
MS 1740
Dual Channel Digital Receiver is a complete high−frequency dual−channel A/D converter capable of sampling rates up to 210 MHz. It accepts two front panel analog inputs and delivers digital output samples over four FPDP (Front Panel Data Port) connectors utilizing FPDP standards. The Dual Channel Digital Receiver features two 12−bit Analog Devices AD9430 A/D Converters, and two user−configurable Xilinx® Virtex−IV Series FPGAs. It also features a VME A64/D64 slave interface for setting up operating modes and selectable A/D range, and optionally provides 32−bit access from the VMEbus to the FPGAs. It is an ideal system as a high−speed data acquisition front end for real time recording and digital signal processing systems.
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RH850 Family (Automotive only)
RH850/E2x
RH850/E2x microcontrollers are ideal for powertrain applications, have high operation processing performance for realizing new combustion systems for fuel-efficient engines, and built-in hardware for knock control such as a successive approximation A/D converter, delta-sigma A/D converter, cyclic A/D converter, Digital Filter Engine (DFE), and Advanced Timer Unit (ATU-V), and engine control such as fuel injection control.
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Precision Analog Anti-Alias Low-Pass Filter Board
GSAF-10
The GSAF-10 Gold Series are analog low-pass filter boards that offer the performance required to maintain the maximum accuracy of high-precision 16- and 18-bit A/D converters.
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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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Transforming Analog Circuit Breaker Testers
MAC-21
The MAC-21 uses proven microprocessor and A/D converter technology to provide real-time waveform analysis. This ensures accurate true-RMS readings of current pulses, even with DC offset and distortion, which are typical in primary injection testing. Intelligent threshold algorithms provide accurate trip time measurement. Integration of measurement and control functions allow advanced features such as preset on times, auto ranging, and optional printer or computer interface.
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High Speed PCI Data Acquisition Processors
DAP 5400a
The DAP 5400a model, a board optimized for simultaneous sampling at extreme speeds, has eight A/D converters that sample simultaneously with 14-bit resolution at 1.25M samples per second each, for a total throughput of 10M samples per second. Or for higher speeds per channel, each board can sample each of 4 channels at 2M samples per second.