The Abaco Systems / VMIC VMIVME-1182-001 is a 64-channel optically isolated digital input module for VME systems. It detects changes of state (COS) on each input and time-tags events for Sequence-of-Events (SOE) acquisition, analysis, and monitoring in industrial control and data acquisition applications.
– Technical Specifications
Channel Configuration
• 64 digital inputs with optical isolation
• 1,500 VDC or 1,100 VRMS channel-to-channel and channel-to-VMEbus isolation
• Input voltage range: 5 to 60 VDC, 110 to 240 VAC, 5 VDC, 4 VAC, 5 to 250 VDC, or 4 to 240 VAC
• Measurement resolution: 1.0 ms
• Time-tag capability: relative timer value up to 65,535 ms
Change-of-State Detection & Pulse Counting
• Software-controlled COS detection per channel (disabled, rising edge, falling edge, or any edge)
• Count registers per channel; up to 65,535 pulses per channel
• Programmable debounce: 1.25 ms to 1.024 s (software-controlled per channel)
• Minimum detectable pulse time: 2.0 ms
• Minimum period for continuous input signal (both edges): 4.0 ms
Sequence-of-Events (SOE) Monitoring
• Onboard SOE buffer with time-tagged COS data
• Dual-buffer architecture for simultaneous processing and loading
VMEbus Interface
• VME 6U form factor
• A24 and A16 address space support (jumper-selected)
• Base address set by jumpers A23–A14; 8 Kword address space
• Address modifier bits: nonprivileged, supervisory, or either (jumper-selected)
• Programmable interrupts on any software-selectable level
• Single-byte vector placed on bus during acknowledge (ROAK); interrupt cleared on acknowledge
– Key Features
• Front-panel opto-isolated inputs for voltage or contact sensing
• Channel 32 configurable as wetting voltage source for all channels
• ANSI/IEEE STD C37.90.1-1989 surge protection compliance (with companion suppression panel, e.g., VMIVME-3459)
– Physical & Environmental
• Operating temperature: 0 to 50 °C (full ratings); derated to half power at 70 °C
• VME 6U single-height module
– Typical Applications
Power systems monitoring, substation automation, industrial process control, and event-driven data logging where high-speed state transition detection and timing accuracy are critical.



















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