The Embedded Computing and I/O Solutions division is focused on high-performance processors, FPGA boards, and I/O products for applications that demand rugged high-performance precise operation.

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    AP220: 12-Bit DAC Module

    • 12-bit DAC
    • 16 channels voltage outputs
    • Extended 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. Click here to watch a short video highlighting the features of the Acromag AP220.  
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    AP225: 12-Bit D/A Converter Voltage Waveform Output Module

    • 12-bit DAC
    • 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. Click here to watch a short video highlighting the features of the Acromag AP225.
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    AP226: 12-bit DAC Module

    • 12-bit DAC
    • 8 channels voltage output
    • Isolated analog voltage output
    • Extended temperature range
    • 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.
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    AP231: 16-Bit DAC Module

    • 16-bit DAC
    • 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. Click here to watch a short video highlighting the features of the Acromag AP231.
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    AP235: 16-Bit DAC Voltage Waveform Output Module

    • 16-bit DAC
    • 16 channels voltage output
    • Waveform memory
    • Extended temperature range
    • 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. Click here to watch a short video highlighting the features of the Acromag AP235.
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    AP236: Isolated 16-bit DAC Module

    • 16-bit DAC
    • 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.
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    AP323: 16-Bit ADC High Density Analog Input Module

    • 16-bit ADC
    • 20 differential or 40 single-ended channels
    • Wide temperature range
    • PCIe bus interface
    The AP323 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. Click here to watch a short video highlighting the features of the Acromag AP323.
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    AP341: 14-Bit High-Density ADC Module

    • 14-bit ADC with simultaneous multi-channel conversion
    • 16 differential inputs with ±10V DC input range
    • 8µs conversion time (125kHz) for 8-ch. bank
    The AP341 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. Click here to watch a short video highlighting the features of the Acromag AP341.
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    AP342: 14-bit High-Density Isolated ADC Module

    • 14-bit ADC with simultaneous multi-channel conversion
    • 12 differential inputs with ±10V DC input range
    • 8μs conversion time (125kHz) for 6-ch. bank
    The AP342 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.
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    APCe8675: Non-intelligent carrier card

    • 8-lane PCI Express interface
    • Holds one XMC module
    The APCe8675 is a PCIe bus adapter board that allows a PC (PCIe bus master) to control and communicate with the hosted XMC module. It simply acts as an adapter to route signals between the system’s PCIe bus and the XMC module connector.
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    APCe8775: PCI Express Carrier Card for XMC Modules

    • One XMC mezzanine module slot
    • 3/4-length
    • Non-Intelligent carrier card
    • PCIe x8 interface
    Acromag’s APCe8775 carrier card interfaces an XMC mezzanine module to a PCI Express bus in a PC-based desktop computer system.
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    VPX4812A / VPX4814A: VPX Carrier Cards for XMC Modules

    • Air-cooled, conduction-cooled and REDI versions
    • 3U Single XMC slot
    • PCIe x8 Gen 2 interface
    The VPX4812A can be used as a VPX switch card allowing a host CPU to communicate with up to 3 downstream cards in addition to the XMC card. Each VPX port can be configured to be x4 or x8. The VPX4814A is a peripheral XMC carrier board designed to be used in a system that uses a VPX AcroExpress® CPU.  
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    VPX4821A: VPX Carrier Cards for XMC or PMC Modules

    • Air-cooled and conduction-cooled versions
    • 6U dual PMC/XMC slots
    • PCIe bus 16-lane Gen 1 or 2 interface switch on data plane
    The VPX4821A carrier card provides a simple and cost-effective solution for interfacing a PMC or XMC module to a VPX computer system. Connect to the OpenVPXâ„¢ via Data plane for a direct PCIe connection over the VPX backplane. This allows host processors access to a high-performance, low latency interconnect to the PMC and XMC modules on the carrier card.
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    VPX4840 Series: 6U VPX Carrier Cards for XMC Modules

    • Two XMC slots
    • PCIe x16 Gen 3 interface via Expansion or Data plane
    • Air or Conduction-cooled
    • Supports the Jn6 differential signals and legacy I/O from Jn4
    The VPX4840 carrier cards provide a simple and cost-effective solution for interfacing an XMC module to a VPX computer system. They offer host processors low latency access to the XMC modules through high-speed interconnects on the carrier card.
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    VPX4850 Series: 6U VPX Carrier Cards for XMC Modules

    • Two XMC slots
    • PCIe x16 Gen 3 interface via Expansion or Data plane
    • Air or Conduction-cooled
    • Supports full Jn6 rear I/O
    The VPX4850 carrier cards provide a simple and cost-effective solution for interfacing XMC modules to a VPX computer system. They offer host processors low latency access to the XMC modules through high-speed interconnects on the carrier card.
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    XMCAP2000: XMC Carrier Card for AcroPack® Modules

    • Two AcroPack or mini-PCIe mezzanine module slots
    • Non-Intelligent carrier card
    • PCIe x4 interface
    This board interfaces two AcroPack mezzanine modules to a PCI Express bus on an air-cooled XMC carrier. Two AcroPack module slots give you the freedom to mix a variety of I/O functions (A/D, D/A, digital in, digital out, serial I/O, etc.) on a single board.  
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Embedded I/O Processing Solutions

Acromag’s embedded I/O boards and mezzanine modules are ideal for embedded computer and high-performance control systems. Select from VPX, PCI, CompactPCI, VME, mini PCIe-based AcroPack®, Industry Pack, VPX, XMC and PMC cards to perform a broad range of analog, digital, counter/timer I/O and serial and Ethernet communication functions.

Mini PCIe-based AcroPack®, Industry Pack, VPX, XMC and PMC mezzanine embedded I/O modules plug into VPX, PCI, PCIe, CompactPCI, and other carrier cards to perform A/D, D/A, DIO, counter/timer, communication and other functions.

Acromag embedded I/O boards offer an unmatched balance of features, performance, and price for the best values in embedded I/O. These boards are based on technology and circuit designs with time-tested reliability in thousands of installations.

Real-Time Control Systems