Features:
- (8), (16), or (32) Differential Input Channels
- Input Impedance of 1 M Ohm on Each Leg
- ADC Resolution of 24-Bits
- Maximum Output Rate of 108 kHz/ch
- Internal or External Sample Clock
- 4 MB Swing Buffer
The Radstone-610 Series PCI Data Acquisition Boards offer (32) differential input channels, onboard
programmable anti-aliasing and gain, 24-bit Sigma-Delta ADCs, simultaneous sampling at
rates of up to 108 kHz/channel, and over 90 dB signal-to-noise ratio, including harmonics,
crosstalk, and spurs.
These features make the-610 an ideal choice for complex
data acquisition applications such as sonar, vibration analysis,
digital audio and precision test and measurement. As many as
thirty-two-610 boards can be operated synchronously to
ensure simultaneous sampling over (1024) channels.
The ICS-610A-32A Radstone 32-Channel, 108 kHz/ch. Data Acquisition Board may still be available for purchase and support from Artisan Technology Group beyond End-Of-Life (EOL) by the manufacturer (OEM).
Functions
Performs high-speed analog-to-digital conversion for 32 simultaneous input channels at 108 kHz per channel, designed for real-time data acquisition in embedded computing systems. Interfaces with host processors via a high-throughput bus architecture, facilitating synchronized multi-channel signal sampling, conditioning, and digitization for applications such as vibration analysis, instrumentation, and systems monitoring. Supports integration with signal processing and data storage modules in ruggedized hardware platforms for defense, aerospace, and industrial environments.
Platforms
The ICS-610A-32A is a VMEbus-compatible data acquisition board. It's designed for integration within VMEbus chassis, utilizing the VMEbus backplane for power and communication. The board features a 32-channel analog input architecture, supporting up to 108 kHz per channel sampling rates. Analog signals are received via front panel connectors and digitized. Data transfer is handled by the VMEbus interface.
Applications
A 32-channel data acquisition board capable of simultaneous sampling up to 108 kHz per channel, featuring high-resolution analog-to-digital conversion for precise signal capture. Designed for demanding applications requiring multi-channel synchronized data collection, it incorporates anti-aliasing filters, programmable gain amplifiers, and multiple triggering options. The board supports continuous streaming of high-speed data across a high-bandwidth interface with onboard memory buffering. Typically used in acoustic monitoring, vibration analysis, sonar systems, radar signal processing, scientific instrumentation, aerospace testing, defense electronic systems, and industrial process monitoring where high channel count and synchronization are critical.
Accessories
Requires compatible ICS or Abaco Systems backplane or chassis for operation. Connectors include a 68-pin VHDCI connector for analog inputs supporting 32 channels up to 108 kHz sampling rate each, a 50-pin SCSI connector for digital I/O, and a 15-pin HD D-sub for trigger and timing signals. Interfaces include multi-channel analog input with simultaneous sampling ADCs, digital I/O for control, and trigger inputs for synchronization. Optional accessory cables: 68-pin VHDCI to individual BNC connectors for signal interfacing, timing and trigger cables for synchronization with external equipment.
Interfaces
Front panel connections include four 68-pin VHDCI connectors for analog input, a 25-pin D-Sub connector for digital I/O, and a 9-pin micro-D connector for control signals. The board also features a VMEbus interface for data communication within a VME chassis environment.
Specifications
High-density data acquisition board featuring 32 simultaneous input channels with sampling rates up to 108 kHz per channel. Designed for integration into embedded computing platforms using industry-standard data acquisition hardware interfaces. Supports analog signal conditioning and digitization for real-time capture and processing. Interfaces via high-speed backplane connectors enabling synchronization with external timing and control systems. Applicable in aerospace, defense, and industrial monitoring applications requiring high precision, multi-channel signal acquisition and analysis.
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