Showing results: 31 - 45 of 159 items found.
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PCIe-9834 -
ADLINK Technology Inc.
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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PCIe-9814 -
ADLINK Technology Inc.
The ADLINK PCIe-9814 is a PCI Express digitizer providing speedy, high quality data acquisition. Each of the four input channels supports up to 80MS/s sampling, with 12-bit resolution A/D converter. This allows simultaneous recording of signals on all channels with no inter channel phase delay. The extremely large on-board memory enables long recording times even at the highest sampling rates.Unlike parallel PCI buses, PCI Express slots utilize serial point-to-point connection. Each connection pair (lane) can achieve burst connection speeds of 250MB/s. The PCIe-9814, 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. The ADLINK PCIe-9814 x4 digitizer can be used in any standard PCI Express slot, x4, x8, or x16.
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PCIe-9852 -
ADLINK Technology Inc.
The ADLINK PCIe-9852 is a 2-CH 14-bit 200 MS/s digitizer for high frequency and wide dynamic range signals with an input frequency up to 90 MHz. The 90 MHz bandwidth analog input with 50Ω impedance is designed to receive ±0.2 V, ±2 V, or ±10 V high speed signals. With a PCI Express bus interface and ample onboard acquisition memory up to 1 GB, the PCIe-9852 easily manages simultaneous 2-CH data streaming. With high speed and high linearity 14-bit A/D converters and high stable onboard reference, the PCIe-9852 provides both high accuracy and high dynamic performance, making it ideal for applications requiring high-speed data acquisition, such as optical fiber and LIDAR testing, and video signal analysis.
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PCI-9816/9846 -
ADLINK Technology Inc.
The ADLINK PCI-9816/9846 are 10MS/s, 40MS/s sampling 16-bit 4-CH digitizers designed for digitizing high frequency and wide dynamic range signals with an input frequency up to 20 MHz. The analog input range can be programmed via software to ±1 V or ±0.2 V and ±5 V or ±1 V. With a deep onboard acquisition memory up to 512 MB, the PCI-9816/PCI-9846 are not limited by the data transfer rate of the PCI bus to enable the recording of waveforms for extended periods of time.
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PXIe-9834 -
ADLINK Technology Inc.
The ADLINK PXIe-9834 PXI Express digitizer provides high speed, high quality data acquisition with four input channels supporting up to 80MS/s sampling and 16-bit data resolution. This allows simultaneous recording of signals on all channels with no interchannel phase delay.The PXIe-9834 features external digital trigger input and triggers from the PXIe system timing slot and reference clock from the PXIe chassis, making it easy to achieve high simultaneous channel count recording of 8, 12, 16 and 20 channels. The PXIe-9834 is also equipped with 1GB of onboard memory for data buffering before transferring back to system memory. The PCI Express x4 Gen1 data bus is has enough bandwidth for direct streaming of ADC data back to system, if necessary.
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GaGe
The GaGe Razor Express16XX CompuScope PCIe digitizer board features 16-bit resolution with sampling rates up to 200 MS/s with true Effective Number of Bits (ENOB) of 11.7-bits with 10 MHz input.
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GaGe
The GaGe Octave Express 84XX CompuScope PCIe digitizer card features 16-bit resolution with sampling rates up to 25 MS/s with true Effective Number of Bits (ENOB) of 12-bits with 10 MHz input.
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GaGe
The GaGe Razor Express16XX CompuScope PCIe digitizer board features 16-bit resolution with sampling rates up to 200 MS/s with true Effective Number of Bits (ENOB) of 11.7-bits with 10 MHz input.
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GaGe
The GaGe Octave Express 83XX CompuScope PCIe digitizer card features 14-bit resolution with sampling rates up to 125 MS/s with true Effective Number of Bits (ENOB) of 11.1-bits with 10 MHz input.
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GaGe
The GaGe Razor 12X2 Express CompuScope PCIe digitizer board features 12-bit resolution with sampling rates up to 200 MS/s with true Effective Number of Bits (ENOB) of 9.6-bits with 10 MHz input.
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GaGe
The GaGe Cobra Express CompuScope PCIe digitizer board features 8-bit resolution with sampling rates up to 2.0 GS/s with true Effective Number of Bits (ENOB) of 7.4-bits with 10 MHz input.
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ADQ14 -
Teledyne SP Devices
ADQ14 is a 14-bit digitizer family with 1, 2, or 4 channels and 0.5, 1, or 2 GSPS sampling rate. It is also available with either AC or DC coupling (ADQ14AC and ADQ14DC) and comes in six different form factors. This simplifies integration and enables cost-efficient system-level design.
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GX2482 -
Marvin Test Solutions, Inc.
The GX2482 series are a high performance, dual differential channel, 16-bit digitizer offering high dynamic range and excellent SFDR. The module’s differential inputs, coupled with its low distortion makes it an ideal instrument for analyzing high performance or low level analog signals. Each channel offers 3 selectable low pass filters, a 16 bit, 180 MS/s ADC, and 64 M words of memory for each channel.
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FMC168 -
Abaco Systems Inc
The FMC168 is a digitizer FMC featuring eight ADC channels with 16-bit resolution and 250Msps sampling rate per channel.With a flexible clock generation and distribution scheme, the FMC168 allows control of sampling frequency and analog input gain through serial communication with a carrier card.
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PXD7113 -
VX Instruments GmbH
Digitize high resolution waveforms with the fully isolated PXD series Digitizers. Minimize interference and measure "in-circuit". Measurement errors are reduced by a high input impedance.