ADL120S
ADL120S Stackable SBC - 6th Gen Intel Core The ADL120S is the latest in ADL’s line of high-performance, compact 120mm x 120mm SBC based on 6th Generation Intel® Core™ i3 / i7 Skylake processors. Featuring Intel Q170 chipset, it is a full-featured SBC with robust I/O including USB 3.0, LAN, M.2 PCIe/SATA and wide operating temperature range (-40°C to 85°C) and high-resolution DisplayPort outputs. Eight PCIe X1 expansion lanes allow for customization for any application-specific environment. This makes it ideal for a variety of system-critical industrial applications where these high-performance features are an absolute necessity, but no less critical are less tangible features like high MTBF, long-life availability, hardware and firmware revision control, obsolescence management, technical, engineering and design support. Applications: Secure Networking, Secure Routing, Traffic Monitoring and Gateways, Cyber Security Edge Devices for ICS and SCADA threat security, Unmanned and Drone Payload Computing, Industrial IoT Gateways and Controllers, Traffic Engineering, Security and Surveillance USB 3,0 and IP Camera CPU Interface, Transportation, Wind Turbine Datalogging and Collision Avoidance, Oil and Gas IPC, Unmanned Autonomous Systems.
ADLE3900SEC
ADLE3900SEC Intel E3900 Series Edge-Connect SBC Measuring just 75mm x 75mm, the ADLE3900SEC is an embedded SBC specially optimized for Size, Weight, and Power (SWAP) applications. Based on the E3900 series Intel Atom™ SoC, this tiny board delivers maximum performance in the smallest possible size. It features low-power quad and dual core Atom processors with integrated Intel HD Graphics engine capable of DisplayPort video output = 4K resolution at 60 Hz. The ADLE3900SEC is rated for −40°C to 85°C operation with rugged options available including chamber testing, underfill, bonding, and conformal coating. About Edge-Connect Architecture Via the backside board-edge connector, additional I/O can easily be made accessible using standard and customer-specific breakout boards. Provides easy expansion and helps reduce cabling, integration time and system size all while increasing quality and overall MTBF. Connecting to sensors, cameras and storage is easy with a full range of onboard I/O: 2x Gigabit LAN, 1x USB 3.0, 1x USB 2.0, 2x PCie, and SATA. The Intel HD Graphics engine supports video output in either HDMI or Display Port format. An onboard M.2 socket allows users to install the fastest Solid State storage solutions on the market. Extended Temperature Ratings and hard-mounted Edge-Connect design make the ADLE3900SEC ideal for rugged embedded applications. Applications: Industrial IoT Edge devices, Cyberthreat Security devices, ICS / SCADA devices, Rugged Industrial Systems, Traffic Engineering, Security Video Surveillance, Small Scale Robotics, Remote Datalogging, Man-Wearable Computing.
ADLMES9200
ADLMES9200 3- and 5-card rugged chassis systems The rugged ADLMES9200 IP67 chassis is a successor to ADL’s popular ADLMES8200 IP65 chassis system. Improvements include lower weight, lower cost, quick and reliable IP67 integration for rugged military and industrial applications. Design features for military / defense system include MIL-STD 810 tolerance and MIL-STD 461/704/1275 compliance capability. The ADLMES9200 is compatible with all ADL’s full range of Intel-based PC/104 and 3.5″ SBC’s which range from low-power ATOM to the latest Intel Core i5/i7 processors. Power supply options include ADL’s range of long-life (MTBF>500,000 hrs) with options for MIL-STD 461/704/1275 compliant filtering. The uni-body design, with minimal, reliable EMC-compliant gasketing makes for better IP67 Ingress protection as well as assembly. Full design and development services are available for chassis customization, cabling, integration and modeling support. Applications Rugged: Ground Vehicles, Mission / Payload Computing, Secure Communications, SWaP-constrained systems for mobile, airborne and vehicle Rugged Industrial: Oil and Gas, Road Construction and Inspection, Mining, Agriculture
ADLLAN
ADLLAN 2x PC/104-Plus Ethernet LAN The Intel 82541ER Gigabit Ethernet Controller provides optimized Gigabit networking for PCI designs. This highly efficient controller, with enhanced power management, consumes less than 1.0W of power at Gigabit speeds. When no signal is detected on the wire, the controller reduces power consumption by «downshifting» to 100Mbps to 10Mbps and then powering down the physical- layer circuitry (PHY). When a signal is detected, the controller automatically negotiates the connection to Gigabit, if available. The Intel 82541ER combines Intel’s fifth-generation Gigabit MAC design with fully integrated state-of-the-art PHY technology, which meets or exceeds IEEE 802.3ab specifications for Bit Error Rate performance.
Mesa 4I24
Mesa 4I24 72/96 bit parallel I/O cards The MESA 4I24 series of cards are 96 or 72 bit parallel I/O interfaces implemented on the PC/104 bus. The 4I24 uses 4 (4I24, 4I24I) or 3 (4I24M) socketed 82C55 PIO chips to give for a total of 96 I/O bits (4I24, 4I24I) or 72 I/O bits (4I24M). 3.3K Pullup resistors are provided on all ports to simplify interfacing to contact closure, opto-isolators, etc. The 4I24 series includes three models with different I/O connectors. The standard 4I24 uses two 50 pin headers for I/O connections. The 50 pin connectors each have 48 I/O bits, ground, and power. The 4I24I uses four 26 pin headers with ISO standard pinout (24 I/O bits per 26 pin connector, pin 2 = GND, pin 26= 5V). The 4I24M has I/O module rack compatible pinouts with three 50 pin connectors each having 24 I/O bits with interleaved grounds. 5V power on the I/O connectors is fused on the 4I24. All 4I24 models use the 16 bit stack through type PC/104 bus architecture. Four layer circuit card construction is used to minimize radiated EMI and provide optimum ground and power integrity. All CMOS design keeps power consumption to a minimum.
Mesa 4I20
Mesa 4I20 PC/104 card with 24 open drain 350 mA outputs The 4I20 is a stackable PC/104 card with 24 open drain 350 mA outputs for solenoids, valves, relays, motors, incandescent lamps and other medium power DC loads. The 4I20 outputs are galvanically isolated from logic ground to avoid ground loops, as the total ground return current be as much as 8.4 amps. The isolation also allows the 4I20 to drive ground referred loads.
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