Archives

February 8, 2019

ACPS3310: 3U cPCI® Serial Carrier Card for AcroPack Modules

The ACPS3310 is a 3U CompactPCI Serial carrier card for Acromag’s AcroPack mezzanine modules. Two isolated I/O expansion slots interface AcroPack or mini PCIe modules to the PCIe bus. All connections to field signals are made through front panel connectors on the carrier board which passes them to the individual AcroPack modules.

• Front I/O access
• Two isolated I/O expansion slots (AcroPack® or mPCIe)
• PCI Express Version 2.1 complaint carrier

Select from 25+ AcroPack modules to install any combination of analog I/O, digital I/O, serial I/O, communication, and FPGA processor functions. This modular approach allows the user to create a board which is customized to the application, thus saving slots and reducing costs.

The AcroPack product line updates our popular Industry Pack I/O modules with a PCIe interface format. This tech-refresh design offers a compact, low-cost I/O solution with the same functionality and memory map of the original Industry Pack mezzanine modules. New modules offer additional capabilities such as FPGA computing, Ethernet, CAN bus, and avionics interfaces.

These carriers are ideal for high-performance systems in aerospace, defense, transportation, oil/gas, test/measurement, manufacturing, and scientific research applications. End-users and system integrators benefit from a broad range of I/O functions in a small form factor.

December 21, 2018

A6pci8077

The A6pci8077 is a single-slot 6U CompactPCI designed to meet the requirements of industrial and rugged fanless applications.
Fully compliant with the PICMG 2.0 CompactPCI standard, the A6pci8077 is based on the Intel Atom E3800 processor family, with 1 to 4 cores, and up to 4GB ECC RAM on a SO-DIMM socket.
Other features include high speed interfaces on the front panel: two Gigabit Ethernet, one USB 3.0 and two USB 2.0, two RS-232 serial ports on DB9 connectors, and one VGA. In addition to these interfaces, the A6pci8077 supports one CFast slot for on-board storage, and an internal SATA 2.0 connector.
Supported operating systems include VxWorks, and Windows 10 IoT Enterprise.
Professional Services are available for the A6pci8077, starting from BIOS personalization and including full system development and production. Deep board customization, such as feature changes, are also available.

December 21, 2018

A6pci8080

The A6pci8080 is a dual-slot 6U CompactPCI CPU board designed to meet the requirements of industrial and rugged fanless applications.
Fully compliant with the PICMG 2.0 CompactPCI standard, the A6pci8080 is based on the 6th Generation Intel Core and Celeron processor family, supporting up to 32GB DDR4 RAM on dual SO-DIMM socket.
Other features include high speed interfaces on the front panel: four Gigabit Ethernet, four USB 3.0 and two serial ports on DB9 connectors, and one DVI-I that supports both analog and digital video signals. In addition to these interfaces, the A6pci8080 supports two USB 2.0 and one SATA connector on internal headers, and a M.2 slot for additional on-board storage.
Supported operating systems include Windows 10 IoT Enterprise.
Professional Services are available for the A6pci8080, starting from BIOS personalization and including full system development and production. Deep board customization, such as feature changes, are also available.

FEATURES:
6U CompactPCI – The A6pci8080 is a dual-slot 6U CompactPCI board, powered by Intel Core and Celeron processors and fully PICMG 2.0 compliant

Powerful – Comes with 6th Gen Intel Core CPUs: Core i7, i5, i3 and Celeron dual core configurations, up to 2.6GHz (3.4GHz burst)

Performant – Supports up to 32GB of high speed DDR4 dual-channel RAM on two SO-DIMM sockets
Rich – Delivers multiple high-speed interfaces, including four Gigabit Ethernet, four USB 3.0, two serial ports and much more

Low Power and Fanless – Enables fanless designs with a CPU TDP of only 15W

Customizable – Personalization and full customization options are available, ranging from custom SW image pre-installation to deep HW/SW configurations