Features
The following brief overview of principal features illustrates the flexibility and
performance that is available with the VMIVME-3113A Board:
• 64 differential or single-ended inputs
• Powers up in AUTOSCANNING MODE - no software initialization required
• Continually digitizes all input channels and stores the results in a dedicated
channel dual-port register (AUTOSCANNING MODE)
• Six operating modes
— AUTOSCANNING MODE *
— RANDOM POLL MODE
— RANDOM INTERRUPT MODE
— SCANNING POLL MODE
— SCANNING INTERRUPT MODE
— AUTOSCANNING MODE with BIT
* Only for gain = 1 and a minimum of 16 channels.
• VMEbus interrupts may be programmed to interrupt upon completion of a
single A/D conversion, or upon completion of a 16 through 64-channel scan
(see “Analog-to-Digital (ADC) Control and Timing” on page 26)
• User-programmable interval timer supports scanning of all channels at periodic intervals
• Jumper-programmable gains of 1, 10, 100, 200 and 500
• Selectable A/D ranges of 0 to +10V, ±5V and ±10V
• Low-level and high-level inputs: ±10mV to ±10V
• Optional low pass filter
• Overvoltage protected inputs
• 5 x 106
Ω input impedance differential and 2x106
Ω input impedance
single-ended
• 33 kHz conversion rate at GAIN<500 (23kHz for GAIN = 500)
• Selectable output code: binary, offset binary, two's complement with sign extension
• Front panel Fail LED is under program control and may be used for any purpose
• Board ID register
Introduction
The VMIVME-3113A 64-Channel Scanning, 12-bit Analog-to-Digital Converter (ADC) is one of the highest
density/lowest cost per channel boards in the industry.
In addition, it contains many features found only on more expensive products.
The AUTOSCANNING MODE, which is automatically entered on power up, performs Analog-to-Digital (A/D) conversions
on all inputs and stores them in a dedicated channel dual-port register.
This allows the user to operate the board without any programming.
The user simply reads the data from the dual-port registers which always contain the latest converted data for that particular channel.
There are five other ADC operating modes which allow greater flexibility in controlling the ADC operation.
The VMIVME-3113A Board is useful for many applications which require a large number of differential inputs to be converted to digital form.
Overvoltage protected inputs, input filters, programmable timers and jumper-programmable gain features
lend the board to such applications as factory automation and instrumentation, process control,
laboratory instrumentation and general data acquisition systems.
A Built-in-Test (BIT) mode permits verification of the input multiplexer and A/D converter.
Discrete wire connectors require a housing with a retaining bar. We recommend the Harting housing.
Its order number is 09 03 096 0501. This housing latches the discrete wire cable to the board connector and provides strain relief.
Input/Output Organization: 16 output ports, 8-bit wide, 128 total outputs.
Addressable to any address within Short-Circuit Monitor and/or Short-Circuit Non-Privileged or Short-Circuit Monitor and/or Short-Circuit Non-Privileged or Short-Circuit Non-Privileged.
Standard Monitor and/or Standard Unprivileged I/O mapping.
Addressing Scheme: 32 bytes, individually addressable on 8. 16. or 32-bit boundaries. The board ID register is located at the board's base address.
The Control and Status Register (CSR) is stacked on top of the ID register. 16 output bytes are located above the CSR. 20 jumpers identify the board's base address.
Another jumper is used for the standard or short address.
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