XYCOM XVME-564 Analog Input Module
Product Details Introduction
XYCOM XVME-564 Analog Input Module Product Features
XYCOM XVME-564 is a high-performance VMEbus industrial analog input module, with 16 bit high-resolution, multi-channel flexible configuration, and high-speed acquisition capability as its core, suitable for high-precision industrial measurement and control scenarios.
Adopting 16 bit A/D conversion, the acquisition accuracy reaches 0.003% FSR, far higher than the same series of 12 bit modules, meeting the requirements of precision signal acquisition.
Supports 64 single ended/32 differential/64 pseudo differential inputs, and can be flexibly switched according to on-site wiring and anti-interference requirements.
Provide 5 acquisition modes: random channel, sequential channel, single channel, external trigger, automatic scanning, automatic scanning can cover 8/16/32/64 channels.
The voltage range covers 0-5V, 0-10V, ± 5V, ± 10V, and single/bipolar signals can be directly connected.
Single channel software programmable gain, optional 1/2/4/5/8/10/20/40/50/100 times, suitable for weak and strong amplitude signals.
In single channel mode, the maximum throughput is 100kHz, and the acquisition and conversion time is only 10 μ s, which meets the requirements of high-speed dynamic signal acquisition.
Optoelectronic isolation between channels and systems enhances the anti-interference ability and operational stability of industrial sites.
Compatible with XVME-560 pins, it can be switched to 12 bit mode through jumpers to achieve smooth system upgrades.
Supports VMEbus standard interrupts and programmable interrupt timers, facilitating real-time system response to collection events.
Industrial grade wide temperature operation (-40 ℃ to+85 ℃), suitable for harsh industrial environments.
Standard VME-64 board size, low-power design, compatible with mainstream VMEbus control systems, easy to install and expand.
Built in signal conditioning circuit, can be directly connected to industrial sensors, reducing peripheral circuit design.
Support DMA data transfer, reduce CPU usage, and improve overall system data processing efficiency.
The dual guarantee of factory calibration and on-site software calibration ensures stable and reliable accuracy for long-term use.
Suitable for high-precision scenarios such as industrial process control, equipment status monitoring, automated testing, and data acquisition systems.
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| PMB33F-20100-00 | DSPC172H 57310001-MP | 6DD2920-0AJ0 |
| PMB33F-10216-03 | PIB-701 700007672 | 6DD2920-0AQ0 |
| PMB33F-10216-02 | CP451-51 | 6DD2920-0AR1 |
| PMB33F-10216-01 | PRAXIS 98.6.049.800 | RF616 3BSE010997R1 |
| PMB33F-10216-00 | DLM02 | TU515 1SAP212200R0001 |