China FPGA
China FPGA Zynq SoC SoM – PBC7Z020G
China FPGA Zynq SoC SoM · dual-core A9 + FPGA heterogeneous · -55~125°C military-grade wide temperature · 35×42mm ultra-compact

The C7Z021G is a fully China-based ZYNQ-architecture SoC module. It carries the China-based industrial chip HWD7Z020-1CLG484, integrating dual-core ARM Cortex-A9 processors and FPGA programmable logic in a heterogeneous architecture. With an ultra-wide -55°C to 125°C operating range and a compact 60×60×8.4mm size, it is natively compatible with the Vivado development environment without extra patches. Featuring high integration, high reliability and clear cost advantages, it is an ideal core hardware platform for China-based embedded systems, smart terminals, industrial control, medical devices and aerospace scenarios.
Interface, cooling, structure and batch supply can be customized per project · we respond within 1 business day after submission.
The C7Z021G is a fully China-based ZYNQ-architecture SoC module. It carries the China-based industrial chip HWD7Z020-1CLG484, integrating dual-core ARM Cortex-A9 processors and FPGA programmable logic in a heterogeneous architecture. With an ultra-wide -55°C to 125°C operating range and a compact 60×60×8.4mm size, it is natively compatible with the Vivado development environment without extra patches. Featuring high integration, high reliability and clear cost advantages, it is an ideal core hardware platform for China-based embedded systems, smart terminals, industrial control, medical devices and aerospace scenarios.
| Parameter | Specification |
|---|---|
| SoM Model | C7Z021G |
| FPGA Chip Model | HWD7Z020-1CLG484 |
| ARM Chip | Dual-core ARM Cortex-A9 (800MHz) |
| DDR | DDR3 1GB |
| Chip Grade | Industrial; operating temperature range: -55°C to 125°C |
| Logic Cells | 85K |
| LUTs | 53,200 |
| Flip-Flops | 106,400 |
| DSP | 220 |
| Block RAM | 4.9Mb |
| eMMC Flash | 8GB |
| QSPI Flash | 256Mbit |
| PS MIO | 39 |
| PL I/O | 198 |
| LVDS Differential Pairs | 48 |
| Voltage-Configurable I/O | 100 |
| DDR3 Configuration | 32bit bus, up to 1066Mbps |
| QSPI Flash Configuration | 1× 32MB QSPI Flash for FPGA user data storage |
| eMMC Flash Configuration | 8GB capacity for system mass storage |
| JTAG Port | 6-pin JTAG header reserved for download and debug |
| AD Converter | 2 ADC, on-chip ADC measures on-die voltage and temperature, 1Mbps sampling |
| Oscillators | 1× 33.33MHz active oscillator (PS); 1× 50MHz active oscillator (PL) |
| USB Serial | 1 USB-to-serial port, provides 5V power and PC communication |
| Buttons | 1 reset button |
| Connectors | 4× 80-pin Panasonic connectors (PS 39, PL 198) |
| LEDs | 2 power LEDs, 1 PS-controlled, 1 PL-controlled |
| DIP Switch | Configures PS boot modes, e.g. JTAG/QSPI/SD card |
| Input Voltage | 5V |
| Dimensions | 60mm × 60mm × 8.4mm |
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Medical equipment demands the highest levels of image quality, real-time performance and reliability. FPGA provides low-latency pipelines and highly reliable hardware for endoscope ISP, medical image processing and device control, helping China-based medical devices achieve independent and controllable development in image enhancement, interface protocols and system miniaturization.
From university labs to enterprise pre-research, rapidly verifying algorithms and hardware architectures is the critical first step to project success. Duyuan FPGA development boards and SoMs provide rich high-speed interfaces, complete reference designs and end-to-end technical support for ASIC prototype verification, high-speed data acquisition, instrument development and academic research — helping teams turn ideas into working hardware systems quickly.
4K/8K video, machine vision and industrial cameras impose strict requirements on end-to-end latency and interface coverage. With hardware-direct video paths and parallel pipelines, FPGA delivers microsecond-level deterministic processing in video encoding/decoding, image pre-processing, multi-protocol interfaces and low-latency transport, supporting deep customization of video services and vision algorithms.
We respond within 1 business day after submission, supporting selection consulting, parameter customization and batch supply.
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