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ADC
quantization of an analog signal into a digital signal.
See Also: Analog-to-Digital Converters, FPGA, Transducers
- TEAM SOLUTIONS, INC.
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16-bit, 400KHz, 4 Isolated Analog Differential Inputs, Simultaneous Sampling
APCI-3003
With the new fast A/D converter board APCI-3003, the user can achieve high data transfer rates by a simultaneous conversion of 4 channels at once. The board has 4 differential input channels. Each channel has its own A/D converter. The transfer rate can be set in a flexible way from 100 kHz for each channel, when 16 channels are set, to 400 kHz for each channel, when 4 channels are set. All 4 channels are optically separated from each other up to 500 V.
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PCI Data Acquisition Boards
ADDA12-100DMA Series - Dual 12-bit A/D + Dual 14-bit D/A, 25 Ms/s
Model ADDA12-100DMA has two simultaneously sampling 12-bit A/D converters, two 14-bit D/A converters, five vectored TTL inputs and two vectored TTL outputs, and is able to transfer data directly into the computer system's memory at 100 MB/s in systems with 64-bit PCI slots or 80 MB/s in 32-bit slots.
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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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Diving Technology Test Systems
Ingenieurbüro Dr. Hillger Ultrasonic-Techniques
The imaging ultrasonic testing systems of the USPC 30XX series are optimized for testing a wide variety of materials and provide high-resolution findings in the form of A, B, C, D and F images. The hardware consists of an industrial PC, in which a motor controller and an ADC card are installed, as well as a HILL-SCAN pulser/receiver unit. An overview of the available systems is given in Table 1.
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PMC w/ 16x/8x ADC, 8x/4x DAC & 14x Digital I/O
TPMC532
The TPMC532 provides 16 or 8 channels of simultaneous sampling true differential bipolar 16-bit analog input, 8 or 4 channels of simultaneous update single-ended unipolar/bipolar 16-bit analog output and 14 channels of tri-state 5V-tolerant TTL digital input/output.
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6ch ADC, 2ch DAC – High-Pin-Count
RFM-ADAFF62
Sundance Multiprocessor Technology Ltd.
The RFM-ADAFF62 is a six 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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16 Channel Charge Integrating ADC
CQ16
The CQ16 is a 16-channel 12bit, fast converting charge-integrating ADC for CAMAC. To provide compatibility to older CAMAC ADC’s it can be switched into an 11-bit mode. All data read-out is provided either via CAMAC commands or through the fast FERA bus on the front of the module.
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8-bit Digitizers
ADC6000
Guzik AXIe ADC 6000 Series Digital Acquisition and Processing Modules combine high-speed waveform digitizer with built-in digital signal processing hardware, which enables mixed-domain signal capture and analysis with high-speed data transfer link to a computer. The ADC 6000 Modules come in a space-saving display-less 1U 19” AXIe modular form factor.
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Transmitter (Export Only)
SMB
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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Digital MultiMeter
12061
Chroma Systems Solutions, Inc.
The 12061 6½ Digital Multimeter has assorted settings for resolution, integration time and ranges that allow users to optimize the configuration of measurement speed, resolution and accuracy when in individual measurement test modes. The 12061 has built-in a high speed, low interference A/D converter with a maximum speed of 2000 rdgs/s, making it the best solution for high speed measurement.
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Source Signature Recorder
*GPS accuracy for time break collection and source equipment locations.*32-bit, high speed, ADC chip for lower noise and increased accuracy for signatures.*Operates independently of crew, including observer and shooter or operators.*Can be used with any Vibrator Control System.*Great for monitoring rental equipment and operators.*Provides accurate start times that can be used with any nodal recording system.
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16 A/D Channels (±25 mA); 16-bit SAR per channel
ADG
Module ADG features 16 channels with up to 16-bit SAR A/D converters, simultaneous sampling. The maximum programmable, expected full-scale range input for the ADG module is -FS to +FS or 0 to FS; 25, 12.5 mA respectively. The A/D converters have programmable sample rates of up to 200 kHz.
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Measurement
Encoder
Encoder is used for measuring the relative position (displacement), displacement velocity and direction by means of optical angular or linear displacement sensors (encoders) connected to the ADC input channels.
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PXI Express Board Virtex-5 DVI Transceiver
SMT739
Sundance Multiprocessor Technology Ltd.
The SMT700 is one of the first of a new range of Sundance cards that includes a direct connection to SLB (Sundance Local Bus) compatible mezzanine card, without the need for a Sundance TIM. This enables a variety of cards to be added to a system, for example extra Ethernet ports, video in/out, High speed ADC / DAC etc. Data from these extra cards (along with data from the SMT700’s own inputs – up to 1Gb/s Ethernet, 2.5Gb/s optical links, and RSL links) can be processed via the Virtex 5, or by another linked card or module.
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Analog Multiplexer Board
104-AIM-32
The 104-AIM-32 is an analog signal multiplexer conforming to the PC/104 standard. The card will multiplex and condition 16 differential or 32 single-ended analog signals before passing them to an analog-to-digital converter card like the 104-AIO12-8. A system may comprise one to seven of these cards in tandem with one 104-AIO12-8 A/D converter board. The 104-AIM-32 card may be used as part of a large data acquisition system. The 104-AIM-32A Kit consists of one 104-AIM-32 and one 12-bit 8-input A/D board.
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64 Channel 100 KHz 16 Bit ADC Module
DP-VXI-1101
DP-VXI-1101, the 16-bit, intelligent, 100KHz A / D converter module can be widely used in data acquisition applications requiring high speed scanning with 16-bit resolution and high accuracy of 0.01% of reading.The module occupies one slot in the VXI 'C' size mainframe.DP-VXI-1101 module uses 8 channel signal conditioner plug on modules(SCP) for accommodating various input signals. Eight such SCP modules can be plugged onto the main board to accommodate a maximum of 64 channels per A / D converter module.
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SigmaDSP Audio Processors
SigmaDSP® processors are fully programmable, single chip audio DSPs that are easily configurable through the SigmaStudio™ graphical development tool, and are ideal for automotive and portable audio products. SigmaDSP chips are available with integrated sample rate converters, A/D converters, D/A converters, and output amplifiers.
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2-Channel DAQ Module
FMC150
Sundance Multiprocessor Technology Ltd.
The FMC150 is a dual channel ADC and dual channel DAC FMC daughter card. The card provides two 14-bit A/D channels and two 16-bit D/A channels which can be clocked by an internal clock source (optionally locked to an external reference) or an externally supplied sample clock. In addition there is one trigger input for customized sampling control. The FMC150 daughter card is mechanically and electrically compliant to the FMC standard (ANSI/VITA 57.1).
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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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PCI Express UltraScale+ FPGA Carrier Board With FMC+ Site, X16 PCIe Gen 4
PG4+
The PG4+ continues DEG’s commitment to delivering high performance processing solutions for mission critical applications requiring the latest in AMD UltraScale+ FPGA computing power. The PG4+ is a PCI Express, standard form factor, FPGA processor board designed to meet the needs of challenging, embedded high-performance digital signal processing applications. The AMD UltraScale+ VU37P or VU47P delivers superior processing capabilities and supports operations such as: FFTs, FIR filters, fixed-point and repetitive processing tasks. The PG4+ FPGA node processes input from the FMC HPC + (Vita 57.4) site, allowing for maximum application configurability and performance when coupled with DEG’s market leading ADC and DAC FMC modules that operate up to 12 GSPS.
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FMC-HPC ADC Board
FMC123
Sundance Multiprocessor Technology Ltd.
The FMC123 provides four 16-bit A/D channels up to 1Gsps. The design is based on Texas Instruments’ ADS54J60 Analog-to-Digital converter. The sample clock can be supplied externally through a coaxial connection or supplied by an internal clock source (optionally locked to an external reference) for multi-channel synchronization. An external trigger input is available for timing synchronization. The FMC123 is mechanically and electrically compliant to the FMC standard (ANSI/VITA 57.1).
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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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Clamp Meter, Auto, True RMS, 400 A AC, 600 V AC, 600 V DC, 28 mm Jaw Opening Max.
72-7226 CAL DU
The 72-7226 CAL DU from Tenma is a digital clamp meter. This stable, safe and reliable digital clamp multimeter is designed with large scale integrated circuits and A/D converter as the core as well as overload protection and novel structure which make them a superb tool for electricians. It measures AC/DC voltage, AC/DC current, frequency, duty cycle, resistance, diodes and continuity and also includes data hold, sleep mode and relative mode features. The resistance measurement range from 400 ohm/4kohm/40Kohm/400Kohm/4Mohm/40Mohm (±(1%+2)), frequency measurement range from 10Hz to 10MHz (±(0.1%+3) accuracy). It is 3 3/4 digit digital clamp meter with precise operation, fashionable structure and highly reliable measuring instrument. The meter uses large scale of integrated circuit with double integrated A/D converter as its core and has full range overload protection. It complies with IEC61010, pollution degree 2, overvoltage category (CAT II 600V, CAT III 300V) and double insulation.
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Delta-Sigma A/D Converters
Renesas offers several delta-sigma and sigma-delta analog-to-digital converters for high resolution measurement applications.
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High-Speed A/D Converters
Renesas offers the world's lowest power, high-performance analog-to-digital data converters (ADCs).
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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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USB-7855, Kintex-7 70T FPGA, 1 MS/s Multifunction Reconfigurable I/O Device
782915-01
Kintex-7 70T FPGA, 1 MS/s Multifunction Reconfigurable I/O Device - The USB‑7855 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‑7855 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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Signal Processor Board
MS 1532
- Frequency coverage from 5 kHz to 30 MHz in 1-Hz steps- High dynamic range: +30 dBm 3rd-order intercept typical- Digital filtering provides 58 IFBWs from 56 Hz to 8.0 kHz with exceptional shape factors- AM, Synchronous AM, FM, CW, USB, LSB & ISB detection modes standard- Tunable notch filter- Fast, flexible scanning with 100 memory channels- Large readable LED displays & user-friendly controls- Noise blanking & pass band tuning- Internal switchable preamplifier & attenuator- Operator-selectable RS-232, RS-485, or- RS-422 remote control- Viretx 5 FPGA based design (Two virtex for image processing)- LPC2468 ARM 7 Processor based design- MIL1553B and RS485 Interface- Two High speed 14 bit ADC (125MSPS) for I & Q Sampling- Direct sampling 2-30MHz- Audio CODEC- Conduction Cooled Board
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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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NI-5772, 1.6 GS/s, 12-Bit, 2.27 GHz Bandwidth, 2-Channel Digitizer Adapter Module for FlexRIO
782097-01
The NI‑5772 is a digitizer adapter module that, when combined with a PXI FPGA Module or Controller for FlexRIO, creates a high-speed digitizer that can simultaneously sample two channels at 800 MS/s or sample one channel at 1.6 GS/s with over 2 GHz of analog bandwidth. You can use the NI‑5772 to do real-time processing and streaming of analog data with high-performance A/D converters. The Digitizer Adapter Module for FlexRIO is ideal for applications that require in-line data processing, high data streaming rates, and deployed high-performance solutions.
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2 Channel 1GSPS 8 Bit ADC Card in FMC
FM582
Sundance Multiprocessor Technology Ltd.
The offset adjustment does not clip the signal at the highest range (+/- 5V). That is why the “max input signal amplitude” has been specified as 10V, even though the selection of signal ranges only goes up to 5V. This way, a +10V pulse with -5V offset could still be digitised without clipping.