Analogue IO for AcroPack Modules

These Acromag Analogue IO modules perform high-speed and high-resolution A/D and D/A conversion. . The AcroPack® product line updates Acromag popular Industry Pack I/O modules with a PCIe interface format.

This tech-refresh design offers a compact size, low-cost I/O, the same functionality and memory map of the existing Industry Pack modules and a rugged form factor.

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Analogue IO for AcroPack Modules

These Acromag Analogue IO modules perform high-speed and high-resolution A/D and D/A conversion.  There are several different models available.  More importantly, see the options below.

AP200 Series
AcroPack Analogue Voltage Output
ModelAP220: 12-bit DAC ModuleAP225: 12-bit DAC ModuleAP226: 12-bit DAC Module
Imageanalogue ioanalogue ioanalogue io
Description• 16 channels voltage outputs
• Wide temperature range
• PCIe bus interface

The AP220 outputs analog voltage signals to drive up to 16 devices. When used with a carrier that holds two AcroPack AP modules, up to 32 voltage outputs can be obtained from a single card cage slot.
• 16 channels voltage outputs
• Wide temperature range
• PCIe bus interface

The AP225 outputs analog voltage signals to drive up to 16 devices. When used with a carrier that holds two AcroPack AP modules, up to 32 voltage outputs can be obtained from a single card cage slot. The AP225 is ideal for waveform generation application that require high speed capabilities.
• 8 Channels Voltage Output
• Isolated Analog Voltage Output
• PCIe bus interface

The AP226 outputs analog voltage signals to drive up to 8 devices. When used with a carrier that holds four AcroPack modules, up to 32 voltage outputs can be obtained from a single card cage slot
ModelAP231: 16-bit DAC ModuleAP235: 16-bit DAC Voltage Waveform OutputAP236: 16-bit DAC Module
Imageanalogue ioanalogue ioanalogue io
Description• 16 channel voltage output
• Wide temperature range
• PCIe bus interface

The AP231 outputs analog voltage signals to drive up to 16 devices. When used with a carrier that holds two AcroPack® modules, up to 32 voltage outputs can be obtained from a single card cage slot.

Each output channel has its own 16-bit D/A converter (DAC). Individual DACs are faster, and they eliminate glitches typically caused by the re-acquisition process of sample and holds found on multiplexed output boards.

The AP231 supports 6 independent software selectable output ranges plus capabilities to monitor the status of each output.

Individual channels also have double-buffered data latches. You can select to update each output when it is written to, or to update all outputs simultaneously. Simultaneous outputs better simulate linear movements in motion processes.
• 16 Channels Voltage Output
• 16-bit DAC
• PCIe bus interface

The AP235 outputs analog voltage signals to drive up to 16 devices. When used with a carrier that holds two AcroPack AP modules, up to 32 voltage outputs can be obtained from a single card cage slot. The AP235 is ideal for waveform generation application that require high speed capabilities.
• 8 Channels Voltage Output
• Isolated Analog Voltage Output
• PCIe bus interface

The AP236 outputs analog voltage signals to drive up to 8 devices. When used with a carrier that holds four AcroPack modules, up to 32 voltage outputs can be obtained from a single card cage slot.

Each output channel has its own 16-bit D/A converter (DAC). Individual DACs are faster, and they eliminate glitches typically caused by the re-acquisition process of sample and holds found on multiplexed output boards.

Each output channel has its own 16-bit D/A converter (DAC). Individual DACs are faster, and they eliminate glitches typically caused by the re-acquisition process of sample and holds found on multiplexed output boards.

Individual channels also have double-buffered data latches. You can select to update each output when it is written to, or to update all outputs simultaneously. Simultaneous outputs better simulate linear movements in motion processes.

The AP236 supports 6 independent software selectable output ranges plus capabilities to monitor the status of each output.
AP300 Series
AcroPack High Density Analogue Input
ModelAP323: 16-bit ADC High Density Analogue Input Module AP341: 14-bit High Density ADC with Simultaneous Multi Channel ConversionAP342: 14-bit High Density Isolated ADC with Simultaneous Multi Channel Conversion
Imageanalogue ioanalogue ioanalogue io
Description• 20 Differential or 40 Single-Ended Channels
• Wide temperature range
• PCIe bus interface

The AP323E-LF AcroPack model monitors 20 differential or 40 single-ended input channels. When used with a carrier that holds four AP modules, up to 160 inputs can be obtained from a single card cage slot.
• 16 differential inputs with ±10V DC input range
• 8µs conversion time (125kHz) for 8-ch. bank
• FIFO buffer with 1025 sample memory

The AP341E-LF AcroPack provides fast, high resolution, simultaneous A/D conversion of up to eight channels. Simultaneous channel conversion and on-board memory enable megahertz throughput rates. Programmable interrupts simplify data acquisition by providing greater control.

These modules have sixteen differential analog inputs which are sampled as two eight-channel banks. Eight A/D converters (ADCs) permit simultaneous conversion of up to eight channels in a bank.

A FIFO buffer holds the first bank’s data while the second bank is converted. Conversion of each bank requires only 8µS, and all 16 channels can be sampled in just 16µs.
• 12 differential inputs with ±10V DC input range
• 8μs conversion time (125kHz) for 6-ch. bank
• FIFO buffer with 1025 sample memory

AP342E-LF AcroPack provides fast, high resolution, simultaneous A/D conversion of up to six channels. Simultaneous channel conversion and on-board memory enable megahertz throughput rates. Programmable interrupts simplify data acquisition by providing greater control.

These modules have twelve differential analog inputs which are sampled as two six-channel banks. Six A/D converters (ADCs) permit simultaneous conversion of up to six channels in a bank.

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