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SoC
A complete computer "System on a Chip".
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Cladding Alignment Splicer
95EA
OFS-95EA optical fiber fusion splicer is designed with high-speed image processing technology and special precision-positioning technology. It will automatically finish the whole fiber fusion process in 9 seconds by fast mode, and splice loss is lower than 0.02dB for single mode fiber. 3.5-inch LCD, dual CMOS monitors, X and Y axis separately display or simultaneously display, thus different fusion stages can be showed clearly. It is compatible with ITU-T SM/MM/DS/NZDS/ED fiber, and is equipped with 4-in-1 holders and SOC adapter.
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Clock Domain Crossing Sign-off Solution
Meridian CDC
Meridian CDC is the fastest, highest capacity and most precise CDC solution in the market. It performs comprehensive structural and functional analysis to ensure that signals crossing asynchronous clock domains on ASIC, or FPGA devices are received reliably. Meridian CDC is the only solution that enables all aspects of CDC sign-off for giga-gate SoC designs.
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CMOS SoC for mmWave 3D Imaging Sensor
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Vayyar chip covers imaging and radar bands from 3GHz-81GHz with 72 transmitters and 72 receivers in one chip. Enhanced by an integrated, high-performance DSP with large internal memory, Vayyar’s sensor does not need any external CPU to execute complex imaging algorithms.
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Custom Sensor Development
X4M03 | X4M06
Kickstart your sensor product development with the XeThru development platform, and quickly develop a prototype using certified radar sensors and your programming language of choice, be it MATLAB, Python or C++. All embedded functionality for your radar sensor project is included; access to parametric control of the XeThru X4 UWB radar SoC, the back-end data processing it demands, and communcation stacks that connects to the host software running on Windows, Mac, Linus and embedded targets.
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Hybrid Verification Platform
HES-DVM
HES-DVM™ is a fully automated and scalable hybrid verification environment for SoC and ASIC designs. Utilizing the latest co-emulation standards like SCE-MI or TLM and newest FPGA technology, hardware and software design teams obtain early access to the hardware prototype of the design. Working concurrently with one another they develop and verify high-level code with RTL accuracy and speed-effective SoC emulation or prototyping models reducing test time and a risk of silicon re-spins.
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Intel® 5th Generation Xeon Processor, AMC
AMC752
The AMC752 is a Processor AMC in a single module, mid-size based on the Intel® 5th generation Xeon (Broadwell). The efficient SoC design has low power consumption and integrated PCH technology. The module follows the AMC.1, AMC.2 and the AMC.3 specifications.
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Intel Xeon D-15xx Processor, AMC
AMC763
The AMC763 is a Processor AMC in a single module, mid-size, based on the Intel® 5th generation Xeon 4-core, 8-core or 16-core Processors (Broadwell). The efficient SoC design has low power consumption and integrated PCH technology. The module follows the AMC.1, AMC.2 and the AMC.3 specifications.
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Intel® Xeon™ D SoC (Skylake-D), PCIe Gen3 And Dual 40GbE, 6U VPX
VPX762
The VPX762 is a processor module (VITA 46) for general purpose processing in demanding applications. Based on the Intel Xeon D-2183IT or D-2143IT processor, the efficient SoC design has low power consumption and integrated PCH technology.
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Intel® Xeon™ SoC, PCIe Gen3, 3U VPX
VPX754
The VPX754 is a processor module (VITA 46) for general purpose processing in demanding applications. Based on the Intel® 5th generation Xeon 4-core, 8-core or 16-core Processors (Broadwell). The efficient SoC design has low power consumption and integrated PCH technology.
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Intel® Xeon™ SoC, PCIe Gen3 And 10GbE (XAUI), 6U VPX
VPX752
The VPX752 is a processor module (VITA 46) for general purpose processing in demanding applications. Based on the Intel 5th generation Xeon-D processor, the efficient SoC design has low power consumption and integrated PCH technology.
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(IoT) Wireless Module
SX-59HLS
The SX-59HLS is an ultra-low power Hosted Dual Band 1x1 802.11a/b/g/n Internet-of-Things (IoT) wireless module based on the Qualcomm QCA4012-2 System-on-Chip (SoC). The SX-59HLS is a first in its class to provide enterprise security for today’s high performing networks.
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PC/104 OneBank Board
EMC2-ZU4CG
Sundance Multiprocessor Technology Ltd.
The EMC²-ZU4CG is a PCIe/104 OneBank™ SBC with a Xilinx Zynq SoC and a VITA57.1 FMC™ LPC I/O board. The main processing power of the EMC²-ZU4CG is a Dual Core ARM V7 and combined with traditional FPGA fabrics/gates + High-Speed I/O interfaces, like USB2.0, HDMI, 1Gb Ethernet and SATA and provide an total solution for any Embedded Application.
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PC/104 OneBank Board
EMC2-ZU3EG
Sundance Multiprocessor Technology Ltd.
The EMC²-ZU3EG is a PCIe/104 OneBank™ SBC with a Xilinx Zynq SoC and a VITA57.1 FMC™ LPC I/O board. The main processing power of the EMC²-ZU3EG is a Dual Core ARM9 and combined with traditional FPGA fabrics/gates + High-Speed I/O interfaces, like USB2.0, HDMI, 1Gb Ethernet and SATA and provide an total solution for any Embedded Application.
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PC/104 OneBank Board
EMC2-ZU4EV
Sundance Multiprocessor Technology Ltd.
The EMC²-ZU4EV is a PCIe/104 OneBank™ SBC with a Xilinx Zynq SoC and a VITA57.1 FMC™ LPC I/O board. The main processing power of the EMC²-ZU4EV is a Dual Core ARM9 and combined with traditional FPGA fabrics/gates + High-Speed I/O interfaces, like USB2.0, HDMI, 1Gb Ethernet and SATA and provide an total solution for any Embedded Application.
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PCIe/104 OneBank SBC w. Dual 1GHz ARM9 & 1Gbyte DDR3
EMC²-Z7015
Sundance Multiprocessor Technology Ltd.
The EMC²-Z7015 is a PCIe/104 OneBank™ SBC with a Xilinx Zynq SoC, Artix-7 FPGA fabric and a VITA57.1 FMC™ LPC I/O board. The main processing power of the EMC²-Z7015 is a Dual Core ARM9 and combined with traditional FPGA fabrics/gates + High-Speed I/O interfaces, like USB2.0, HDMI, 1Gb Ethernet and SATA and provide an total solution for any Embedded Application.
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Pico-ITX SBC With Intel® Pentium® N3710 & Celeron® N3060 Processor, HDMI (VGA)/LVDS, LAN And Audio
PICO300
The PICO300, an extreme-compact fanless pico-ITX motherboard, is built with the Intel® Pentium® N3710 or Celeron® N3060 processor (codename: Braswell SoC). One SO-DIMM socket is provided to support up to 8GB of DDR3L-1600 memory. The PICO300 is supported in dual display configurations along with one 18/24-bit single/dual-channel LVDS and a choice of VGA or HDMI. Furthermore, the tiny 2.5” pico-ITX embedded board features Intel® integrated Gfx graphic engine to build excellent media and graphics performance capability. In addition, the compact size of the pico-ITX form factor also makes the PICO300 suitable for space-constrained embedded applications. It runs fanless operation, and supports -20°C to +60°C operating temperature. Combined all features as above, the PICO300 is ideal for any media editing, imaging, graphics and video intensive applications that be applied for a wide array of industrial IoT industries.
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Portable Sequence Generator for Verification, Firmware & Validation
ISequenceSpec
The complexity of modern SoC has raised the requirement for HW/SW co-simulation to catch the bugs from the early design stage. There is lack of common set of sequences which can be shared across the teams. ISepenceSpec helps design teams to generate the unified test and programming sequences in UVM and Firmware from the specification. ISequenceSpec uses the register information from importing the standard formats like IP-XACT, SystemRDL, XML. User can define the test sequences in a simple editor, and then generate the unified test sequences from verification to validation.
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Processor IP
System IP
Perfect for high-efficiency IoT endpoint or a high performance server SoC.
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Qseven V1.2 SoM Evaluation Kit With I.MX287 454 MHz (Industrial) SoC, 128MB Memory, 4GB EMMC, Gigabit Ethernet, Audio, CAN And BSP
Q7M100-100-EVK
*Ultra low power consumption ARM9*High flexibility Qseven v1.2 compliant design*5 UART*2 CAN*24-bit TTL LCD*10/100 Mbps Ethernet*Linux 2.6.35
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Qseven V1.2 SoM With I.MX287 454 MHz (Industrial) SoC, 128MB Memory, 4GB EMMC, Gigabit Ethernet, Audio And CAN
Q7M100
*Ultra low power consumption ARM9*High flexibility Qseven v1.2 compliant design*2 CANBus 2.0B compliant ports*24-bit TTL LCD*Dual 10/100 Base-T Ethernet*Audio
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Qseven V2.0 SoM Evaluation Kit With Quad/DualLite 800 MHz (Industrial) SoC, 1GB Memory, 4GB EMMC, Gigabit Ethernet, Audio And CAN
Q7M120-120-EVK
*Ultra low power consumption Cortex™-A9*High flexibility Qseven v2.0 compliant design*2 CAN 2.0B*18/24-bit TTL LCD*LVDS/HDMI 1080P*10/100/1000 Mbps Ethernet*Linux3.0.35/Android4.3*Audio
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Qseven V2.0 SoM With IMX6 Quad/DualLite 800 MHz (Industrial) SoC, 1GB RAM, 4GB EMMC, GbE LAN, Audio And CAN
Q7M120
*Qseven v2.0 (70 x 70 mm)*Ultra low power consumption Cortex™-A9*2 CAN*24-bit TTL signal*LVDS/HDMI 1080P*10/100/1000 Mbps Ethernet*Linux 3.0.35/Android 4.3*Audio
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RTL Lint Analyzer and Rule Checker
Ascent Lint
Ascent Lint is a state-of-the-art RTL linter and rule checker for full-chip SoC analysis. Designed from the bottom-up to deliver the highest performance, capacity and low-noise reporting, it is the best-in-class HDL linter available today with a comprehensive set of syntax and semantic checks.
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ScanWorks IJTAG Test
ScanWorks IJTAG Test
The ScanWorks Internal JTAG (IJTAG) tools allow system-on-a-chip (SoC) designers, DFT engineers and validation engineers a new and simpler way to access, control and run any embedded instrument designed into chips. When the IEEE ratifies the IEEE 1687 IJTAG standard in 2013, it will enable easy access to run any functional type of IJTAG instrument. ASSET is the first tool supplier with development tools available today for the early adopters of this important new technology.
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SMARC V1.0 SoM Evaluation Kit With Quad/DualLite 800 MHz (Industrial) SoC,1GB Memory, 4GB EMMC, Gigabit Ethernet, Audio, CAN, MIPI And PCAM
SCM120-120-EVK
*Ultra low power consumption Cortex™-A9*2 CAN 2.0B*24-bit TTL LCD*LVDS/HDMI 1080P*10/100/1000 Mbps Ethernet*Open GL ES2.0*Linux3.0.35/Android 4.3*Audio
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SMARC V1.0 SoM With IMX6 Quad/DualLite 800 MHz (Industrial) SoC, 1GB RAM, 4GB EMMC, GbE LAN, Audio, CAN, MIPI And PCAM
SCM120
*SMARC 1.0 (82 x 50 mm)*Ultra low power consumption Cortex™-A9*2 CAN 2.0B*24-bit TTL signal*LVDS/HDMI 1080P*10/100/1000 Mbps Ethernet*Linux3.0.35/Android 4.3*Audio
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SMARC V2.0 SoM Evaluation Kit With I.MX8M Quad/Dual 1.5 GHz/1.3 GHz (Industrial) SoC, 4GB Memory, 64GB EMMC, CAN, MIPI CSI/DSI, And HDMI 2.0
SCM180-180-EVK
*Ultra-Low Power i.MX8M Dual/Quad A53 Core*Single M4 Core*HDMI 2.0a up to 4K*Dual Channel LVDS*MIPI CSI*10/100/1000 Mbps Ethernet*USB3.0, USB OTG*PCIe 2.0*CAN 2.0B*Audio
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SoC Integration At RTL
Before logic synthesis, STAR enables full implementation capabilities towards IP and connectivity insertion with a real-time monitoring of the integration progress. This enables SoC creation in minutes and maximize design reuse from existing projects.
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SoC Signoff & Structural Verification
Defacto’s STAR augments existing RTL verification flows by providing fully automated structural checks. Users can also define and build their custom checks.
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SoC Verification
TrekSoC
TrekSoC automatically generates self-verifying C test cases to run on the embedded processors in SoCs. This verifies your chips more quickly and more thoroughly than an external testbench, hand-written C tests, or running only production code on the processors. TrekSoC's generated test cases target all aspects of full-SoC verification and work in a variety of different environments.