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System On Modules

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  • i.MX8M SMARC System On Module

    i.MX8M SMARC System On Module

    Rs0.00

    The NXP i.MX8M Quad, Quad Lite, Dual based SMARC System On Module integrates Quad/Dual Cortex A53 @ 1.5GHz, H.265 4K60 decode, 1080p encode, GC7000 Lite GPU, MIPI CSI/DSI, HDMI2.0 TX, USB3.0, PCIe2.0 with on SOM 10/100/1000 Mbps Ethernet PHY, USB 3.0 hub and 802.11n Wi-Fi & BLE4.0 module. The i.MX8QuadMax SMARC System On Module is aimed to offer applications such as Digital Media Adaptors, HD Digital signage, Industrial HMI, Building Automation, Imaging & Scanning, Audio/Video Streaming devices and Machine Vision.

    Present i.MX8 QuadMax boards are supported with i.MX8QM Alpha CPU silicon. Erratas and functional restrictions may exist, please check NXP documentation and contact your local FAE for restrictions.

    NXP Semiconductors - Our Technology Partner

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  • Zynq UltraScale+ SoC

    Zynq UltraScale+ SoC / FPGA System On Module

    Rs0.00
    Xilinx Zynq UltraScale+ SoC based System On Module features the Xilinx Zynq UltraScale+ SoC CG/EG/EV devices with B900 package. The MPSOC supports Quad/Dual Cortex A53 up to 1.5GHz with programmable logic cells ranging from 192K to 504K. The SOM supports high speed connectivity peripherals such as PCIe, USB3.0, SATA3.1, display port, Gigabit Ethernet through GTR high speed transceivers from MPSOC. 
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  • i.MX8 QuadMax SMARC SOM

    i.MX8 QuadMax SMARC System On Module

    Rs0.00

    The i.MX8QuadMax SMARC System On Module integrates Dual Cortex A72 + Quad Cortex A53 Cores, Dual GPU systems, 4K H.265 capable VPU dual failover-ready display controller based i.MX8 QuadMax SoC with on SOM Dual 10/100/1000 Mbps Ethernet PHY, USB 3.0 hub and 802.11n Wi-Fi & BLE4.0 module. The NXP i.MX8QuadMax SMARC System On Module is aimed to offer maximum performance with higher efficiency for complex embedded application of consumer, medical and industrial embedded computing applications.

    Present i.MX8 QuadMax boards are supported with i.MX8QM Alpha CPU silicon. Erratas and functional restrictions may exist, please check NXP documentation and contact your local FAE for restrictions.

    NXP Semiconductors - Our Technology Partner

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  • Xilinx Zynq 7000 SoC FPGA SOM Module

    Zynq-7000 All Programmable SoC

    Rs0.00

    Xilinx Zynq 7000 SoC based System On Module (SOM) features the Xilinx Zynq 7000 series SoC with Dual Cortex A9 CPU @ 866MHz, 85K FPGA logic cells and up to 120 FPGA IOs. The SOM is equipped with on-board NAND flash, DDR3 RAM, Wi-Fi, BT and Gigabit Ethernet. This SOM is suitable for various industrial, embedded computing and medical applications.

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  • Snapdragon 820 SMARC System On Module

    Snapdragon 820 SMARC System On Module

    Rs0.00

    The Snapdragon 820 SMARC System On Module integrates Qualcomm’s APQ8096 SOC offering 64-bit Quad Kryo CPU, H.265 hardware decode & encode, Adreno 530 GPU with on board 802.11ac Wi-Fi, BT4.1 and the GPS. The Snapdragon 820 SOM module is intended for high end embedded computing applications which require high processing power, graphics and multimedia capabilities such as Augmented & Virtual Reality, 4K Digital signage, Media streaming, Connected home & entertainment, High end wearables, Drones, Secure POS, Video analytics to name a few.

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  • renesas-rz-g1h-q7-system-on-module-iwave

    RZ/G1H Qseven System On Module

    Rs0.00

    iWave's RZ/G1H based Qseven CPU module integrates Renesas RZ/G1H Quad core ARM Cortex A15 @ 1.4GHz & Quad core ARM Cortex A7 @780MHz CPU with rich set of features and IO peripherals. It integrates Full HD hardware codecs, graphic acceleration, DDR3 RAM, eMMC Flash, Micro SD slot, USB HUB, HDMI transmitter and Gigabit Ethernet PHY. The SOM is ideally suitable for high performance video intensive and graphic rich applications.

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  • Intel Arria10 SoC FPGA System On Module

    Intel Arria 10 SoC SOM

    Rs0.00

    Arria 10 SoC System on Module is based on the Arria 10 SX family device with F34 package. The module is equipped with 32-bit DDR4 memory support for HPS with optional ECC and 64-bit DDR4 support for FPGA. All the IOs and high speed transceiver blocks will be available on the SOM board to board connector.

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  • nxp imx 6ul kitl som

    KITL-i.MX6UL

    Rs0.00

    iWave’s KITL i.MX 6UL System on Module is based on the NXP i.MX6UL2 ARM Cortex A7 Core @ 528MHz CPU. The module is equipped with 512MB DDR3 memory support, advanced hardware enabled security, PMIC with DVFS support. This small form factor module is available with Linux 3.14.38 OS and commercial grade temperature support.

    NXP Semiconductors - Our Technology Partner

    i.MX6 Latest Updates

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iWave specializes in accelerating design cycles with Modular approach of using System On Modules (SOM) and Carrier boards. The SOM modules have the advantage of advanced peripheral Integration, space-saving, quick time to market and great cost savings. These Embedded boards go by several names such as Computer On Modules or COMs, CPU Modules and ARM SOMs.

iWave offers various System On Modules (SOMs) conforming to the R2.0 Qseven / SODIMM / MXM / XMC standards. These SOM modules are based on various processors and are readily available to deploy in product designs:

iWave's SOM Modules are targeted for OEMs, ODMs and any high-end embedded product designers, who can adopt the design and bring out innovative and cost-effective products within a short period of time for various applications.

For each of the System On Modules, iWave provides Development Platforms (Evaluation Board) for quick software prototyping associated with the Board Support Packages (BSPs) especially for the Linux / Windows Embedded / Android / QNX / VxWorks / iTRON / Green Hills Software INTEGRITY operating systems (OS/RTOS) etc.

Advantages of our SOMs:

  • The modules are fully standard compatible OEM Modules
  • Available in Industrial & Automotive temperature grade, with long term availability and technical support
  • The BSP / device drivers are available with rich feature set for multiple RTOS environments with good documentation
  • The modules & BSPs are targeted and being used in multiple products already
  • Lower Risk. No complex PCB design and manufacturing overheads
  • Long term product life support
  • Technical & Customization support, even for the low volume segment