diff --git a/docs/som/vmarc/README.md b/docs/som/vmarc/README.md new file mode 100644 index 000000000..dde15e5a8 --- /dev/null +++ b/docs/som/vmarc/README.md @@ -0,0 +1,5 @@ +--- +sidebar_position: 1 +--- + +# VMARC 系列 diff --git a/docs/som/vmarc/q9075/README.md b/docs/som/vmarc/q9075/README.md new file mode 100644 index 000000000..967e434fe --- /dev/null +++ b/docs/som/vmarc/q9075/README.md @@ -0,0 +1,201 @@ +--- +sidebar_position: 3 +--- + +# 瑞莎 VMARC-Q9075 + +## 产品介绍 + +瑞莎 VMARC-Q9075 是一款基于高通跃龙 IQ-9075 处理器的高性能 AI 计算核心模组,采用 314-Pin MXM 3.0 连接器,尺寸为 82 毫米 × 80 毫米,适合空间受限且对计算性能、AI 推理和多媒体处理能力要求较高的嵌入式应用。 + +该核心模组集成 8 核 Kryo Gen 6 CPU、4 核 Cortex-R52 MCU、高通 Adreno 663 GPU 和 Hexagon Tensor Processor(HTP),可提供 100 Dense / 200 Sparse TOPS@INT8 AI 算力。模组配备 36GB LPDDR5 内存和 128GB UFS 3.1 存储,支持多路高清摄像头、显示输出、2.5GbE、USB 3.2 Gen 2、PCIe Gen4 及 CAN、UART、SPI、I2C、GPIO 等扩展信号。 + +瑞莎 VMARC-Q9075 开发套件由核心模组和配套载板组成,提供双 2.5GbE 网口、M.2 NVMe SSD、Wi-Fi / 蓝牙及 4G / 5G 扩展能力,并集成多路 USB、CAN、RS-232、RS-485、显示和摄像头接口,可用于快速完成性能评估、接口验证、AI 应用开发与产品原型搭建。 + +## 产品实物 + + + + + +
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+ +## 产品规格 + + + + + +| 类别 | 规格 | +| ---------- | ---------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------- | +| 处理器 | 高通跃龙 IQ-9075 | +| 中央处理器 | 8 核 Kryo Gen 6,最高主频可达 2.36GHz | +| 微控制器 | 4 核 Cortex-R52,最高主频可达 1.85GHz | +| 图形处理器 | 高通 Adreno 663
- 支持安全通用 GPU 计算,1.2 TFLOPS FP32 算力
- 支持 Vulkan 1.2、OpenGL ES 3.2、OpenCL 2.0 FP
- 支持 Adreno NN Direct | +| AI 性能 | 100 Dense / 200 Sparse TOPS@INT8
- 采用 Hexagon Tensor Processor(HTP),集成四路 HVX 与双路 HMX
- 支持主流深度学习框架:TensorFlow、PyTorch、ONNX、Paddle、Caffe、DarkNet 等 | +| 视频编解码 | Adreno VPU 765
视频解码:
- 支持 AV1、HEVC、H.264、H.265、VP9、MPEG2 视频格式
- 性能:1 路 8K@60fps / 2 路 8K@30fps / 4 路 4K@60fps / 8 路 4K@30fps / 16 路 1080p@60fps / 32 路 1080p@30fps
视频编码:
- 支持 H.264、H.265、HEIF、HEIC 视频格式
- 性能:2 路 4K@60fps / 4 路 4K@30fps / 8 路 1080p@60fps / 16 路 1080p@30fps | +| 内存 | LPDDR5
- 容量:36GB
- 内存位宽:96 位
- 最高速率:6400 MT/s | +| 存储 | 1× 板载 32MB SPI Flash
1× 板载 128GB UFS 3.1(Gear4 x2) | +| 显示 | 1× MIPI DSI 显示信号
1× eDP 显示信号
1× HDMI TX 信号(DP 转 HDMI 信号)
1× DP TX 信号 | +| 摄像头 | 1× MIPI CSI 摄像头信号(4 通道)
1× MIPI CSI 摄像头信号(2 通道) | +| 网络 | 2× 2.5GbE PHY | +| USB | 2× USB 3.2 Gen 2 信号(10Gbps)
4× USB 2.0 信号 | +| PCIe | 2× PCIe Gen4 x2 | +| GPIO | 2× CAN
2× I2S
4× UART
2× SPI
5× I2C
14× GPIO | +| 供电 | DC 输入(12 V) | +| 连接器 | 314-Pin MXM 3.0 连接器 | +| 机械尺寸 | 82 毫米 x 80 毫米 | + +
+ + + +| 类别 | 规格 | +| ------------ | ---------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------- | +| 兼容核心模组 | VMARC-Q9075 | +| 存储 | 1× M.2 M Key 2280 插槽(NVMe 固态硬盘) | +| 网络 | 2× 2.5GbE RJ45 网口
1× M.2 E Key 2230 插槽(Wi-Fi / 蓝牙模组)
1× M.2 B Key 3042 插槽(4G / 5G 蜂窝模组)
1× Nano SIM 卡槽 | +| 显示 | 1× MIPI DSI 显示接口(4 通道,39-pin)
1× eDP 接口
1× HDMI 标准接口(Type-A)
1× DP 接口(DisplayPort) | +| 摄像头 | 1× MIPI CSI 摄像头接口(4 通道,31-pin)
1× MIPI CSI 摄像头接口(2 通道,15-pin) | +| USB | 4× USB 3.1 Type-A
1× USB 3.2 Gen 2 接口
3× USB 2.0 接口
1× USB Type-C 调试接口 | +| 其它接口 | 1× 电源按键
1× EDL 按键
1× 状态指示灯
1× 风扇接口
1× RTC 电池接口
4× CAN 总线接口
2× RS-232 接口
1× RS-485 接口
1× 40-Pin GPIO 排针(UART / SPI / PWM / GPIO 等) | +| 供电 | DC5525 电源插孔或 XT60 供电接口(19–24V 输入) | +| 核心模组接口 | 314-Pin MXM 3.0 连接器 | +| 机械尺寸 | 120 毫米 x 120 毫米 | + +
+ + + +| 类别 | 规格 | +| ---------- | ------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------ | +| 核心模组 | 瑞莎 VMARC-Q9075 | +| 载板 | 瑞莎 VMARC-Q9075 载板 | +| 中央处理器 | 8 核 Kryo Gen 6,最高主频可达 2.36GHz | +| 微控制器 | 4 核 Cortex-R52,最高主频可达 1.85GHz | +| 图形处理器 | 高通 Adreno 663
- 支持安全通用 GPU 计算,1.2 TFLOPS FP32 算力
- 支持 Vulkan 1.2、OpenGL ES 3.2、OpenCL 2.0 FP
- 支持 Adreno NN Direct | +| AI 性能 | 100 Dense / 200 Sparse TOPS@INT8
- 采用 Hexagon Tensor Processor(HTP),集成四路 HVX 与双路 HMX
- 支持主流深度学习框架:TensorFlow、PyTorch、ONNX、Paddle、Caffe、DarkNet 等 | +| 视频编解码 | Adreno VPU 765
视频解码:
- 支持 AV1、HEVC、H.264、H.265、VP9、MPEG2 视频格式
- 性能:1 路 8K@60fps/2 路 8K@30fps/4 路 4K@60fps/8 路 4K@30fps/16 路 1080p@60fps/32 路 1080p@30fps
视频编码:
- 支持 H.264、H.265、HEIF、HEIC 视频格式
- 性能:2 路 4K@60fps/4 路 4K@30fps/8 路 1080p@60fps/16 路 1080p@30fps | +| 内存 | LPDDR5
- 容量:36GB
- 内存位宽:96 位
- 最高速率:6400 MT/s | +| 存储 | 1× 板载 32MB SPI Flash
1× 板载 128GB UFS 3.1(Gear4 x2)
1× M.2 M Key 2280 插槽(NVMe 固态硬盘) | +| 显示 | 1× MIPI DSI 显示接口(4 通道,39-pin)
1× eDP 接口
1× HDMI 标准接口(Type-A)
1× DP 接口 | +| 摄像头 | 1× MIPI CSI 摄像头接口(4 通道,31-pin)
1× MIPI CSI 摄像头接口(2 通道,15-pin) | +| 网络 | 2× 2.5GbE RJ45 网口
1× M.2 E 2230 Key 插槽(Wi-Fi / 蓝牙模组)
1× M.2 B Key 3042 插槽(4G / 5G 蜂窝模组)
1× Nano SIM 卡槽 | +| USB | 4× USB 3.2 Gen 2 Type-A(10Gbps)
1× USB 3.2 Gen 2 接口(10Gbps)
3× USB 2.0 接口
1× USB Type-C 调试接口 | +| 其它接口 | 1× 电源按键
1× EDL 按键
1× 状态指示灯
1× 风扇接口
1× RTC 电池接口
4× CAN 总线接口
2× RS-232 接口
1× RS-485 接口
1× 40-Pin GPIO 排针(UART / SPI / PWM / GPIO 等) | +| 供电 | DC5525 电源插孔或 XT60 供电接口(19–24V 输入) | +| 连接器 | 314-Pin MXM 3.0 连接器 | +| 机械尺寸 | 120 x 120 毫米 | + +
+ +
+ +## 系统框图 + +
+ +
+ +## 接口说明 + + + + + +
+ +
+ +| 序号 | 说明 | 序号 | 说明 | 序号 | 说明 | +| :--: | :------------ | :--: | :--------------- | :--: | :--------------------- | +| 1 | LPDDR5 | 2 | 高通跃龙 IQ-9075 | 3 | 314-Pin MXM 3.0 连接器 | +| 4 | SPI NOR Flash | 5 | 高通 QCA8081 | 6 | 板载 UFS | + +
+ + + +
+ +
+ +| 序号 | 说明 | 序号 | 说明 | 序号 | 说明 | +| :--: | :--------------------- | :--: | :--------------------- | :--: | :---------------------- | +| 1 | 风扇接口 | 2 | 40-Pin GPIO 排针 | 3 | 4× CAN 总线接口 | +| 4 | 2× RS-232 接口 | 5 | RS-485 接口 | 6 | XT60 供电接口 | +| 7 | 314-Pin MXM 3.0 连接器 | 8 | DP 接口 | 9 | 4× USB 3.2 Gen 2 Type-A | +| 10 | Nano SIM 卡槽 | 11 | eDP 接口 | 12 | 1× 4 通道 MIPI CSI | +| 13 | 1× 2 通道 MIPI CSI | 14 | 1× M.2 M Key 2280 插槽 | 15 | USB Type-C 调试接口 | +| 16 | 电源按键 | 17 | USB 3.2 Gen 2 接口 | 18 | 3× USB 2.0 接口 | +| 19 | RTC 电池接口 | 20 | EDL 按键 | 21 | DC5525 电源插孔 | +| 22 | HDMI 接口 | 23 | 2× 2.5GbE RJ45 网口 | 24 | 1× 4 通道 MIPI DSI | +| 25 | 1× M.2 B Key 3042 插槽 | 26 | 1× M.2 E Key 2230 插槽 | | | + +
+ + + +
+ 开发套件接口图 +
+ +| 序号 | 说明 | 序号 | 说明 | 序号 | 说明 | +| :--: | :--------------------- | :--: | :--------------------- | :--: | :---------------------- | +| 1 | 风扇接口 | 2 | 40-Pin GPIO 排针 | 3 | 4× CAN 总线接口 | +| 4 | 2× RS-232 接口 | 5 | RS-485 接口 | 6 | XT60 供电接口 | +| 7 | 314-Pin MXM 3.0 连接器 | 8 | DP 接口 | 9 | 4× USB 3.2 Gen 2 Type-A | +| 10 | Nano SIM 卡槽 | 11 | eDP 接口 | 12 | 1× 4 通道 MIPI CSI | +| 13 | 1× 2 通道 MIPI CSI | 14 | 1× M.2 M Key 2280 插槽 | 15 | USB Type-C 调试接口 | +| 16 | 电源按键 | 17 | USB 3.2 Gen 2 接口 | 18 | 3× USB 2.0 接口 | +| 19 | RTC 电池接口 | 20 | EDL 按键 | 21 | DC5525 电源插孔 | +| 22 | HDMI 接口 | 23 | 2× 2.5GbE RJ45 网口 | 24 | 1× 4 通道 MIPI DSI | +| 25 | 1× M.2 B Key 3042 插槽 | 26 | 1× M.2 E Key 2230 插槽 | | | + +
+ +
+ +## 应用场景 + +### 边缘 AI 计算与智能网关 + +依托 100 Dense / 200 Sparse TOPS@INT8 AI 算力、双 2.5GbE 网口以及 Wi-Fi、蓝牙和 4G / 5G 扩展能力,可在边缘侧完成数据汇聚、AI 推理和实时决策,适用于工业网关、边缘服务器及多协议数据采集设备。 + +### 机器视觉与视频分析 + +支持 4 通道和 2 通道 MIPI CSI 摄像头输入,以及多路 8K、4K 和 1080p 视频编解码,可用于视觉检测、目标识别、行为分析、多路视频汇聚和智能安防等应用。 + +### 工业自动化与设备控制 + +4 核 Cortex-R52 MCU 配合 CAN、RS-232、RS-485、UART、SPI、I2C 和 GPIO 等接口,可连接传感器、执行器及工业控制设备,适用于自动化产线、机器状态监测、质量检测和设备控制系统。 + +### 机器人与自主设备 + +多核 CPU、GPU 和高性能 AI 加速能力可协同处理环境感知、目标检测和路径规划任务;丰富的摄像头、网络和控制接口便于扩展传感器与运动控制模块,可用于移动机器人、服务机器人、巡检设备及其他自主系统。 + +### 智能显示与交互终端 + +通过 MIPI DSI、eDP、HDMI 和 DP 显示能力,可搭建高分辨率、多屏或嵌入式显示方案,适用于数字标牌、智慧零售、自助终端、信息发布和智能交互设备。 diff --git a/docs/som/vmarc/q9075/getting-started/README.md b/docs/som/vmarc/q9075/getting-started/README.md new file mode 100644 index 000000000..ec9477dba --- /dev/null +++ b/docs/som/vmarc/q9075/getting-started/README.md @@ -0,0 +1,7 @@ +--- +sidebar_position: 20 +--- + +# 上手指南 + + diff --git a/docs/som/vmarc/q9075/getting-started/quickly-start.md b/docs/som/vmarc/q9075/getting-started/quickly-start.md new file mode 100644 index 000000000..f17617403 --- /dev/null +++ b/docs/som/vmarc/q9075/getting-started/quickly-start.md @@ -0,0 +1,81 @@ +--- +sidebar_position: 1 +--- + +# 快速上手 + +本节教程目的是为了让大家快速上手使用瑞莎 VMARC-Q9075 开发套件产品。 + +:::tip 使用说明 + +由于瑞莎 VMARC-Q9075 开发套件的板载 128GB UFS 出厂内置系统,我们可以直接通电使用该产品,无需进行系统安装,整个过程轻松简单! + +::: + +## 产品实物 + +| 产品实物 | 序号 | 视图 | 序号 | 视图 | 序号 | 视图 | +| :-----------------------: | :--: | :----: | :--: | :----: | :--: | :----: | +| 瑞莎 VMARC-Q9075 开发套件 | ① | 正视图 | ② | 侧视图 | ③ | 背视图 | + +
+ +
+ +## 使用前提 + +### 硬件准备 + +您需要提前准备以下硬件设备: + +- 开发套件:瑞莎 VMARC-Q9075 开发套件 +- 供电:19V DC 电源适配器(推荐,支持 19-24V DC5525 电源输入) +- 输入设备:键盘和鼠标 +- 显示设备:显示器和 HDMI 数据线,用于显示系统界面 + +:::tip 开发套件 + +瑞莎 VMARC-Q9075 开发套件组成: + +- 瑞莎 VMARC-Q9075 +- 瑞莎 VMARC-Q9075 载板 +- 主动散热器 +- 无线模组 +- 保护底座 +- 电源适配器 + +::: + +### 硬件连接 + +将显示器、键盘、鼠标等外设连接到瑞莎 VMARC-Q9075 开发套件上,最后使用 19-24V DC 电源适配器给瑞莎 VMARC-Q9075 开发套件供电。 + +
+ +
+ +① : 使用 HDMI 或 DP 数据线连接显示器和主板 + +② : 使用 USB Type-A 接口连接鼠标或键盘 + +③ : 使用以太网数据线连接路由器和主板(可选,开发套件自带无线模组,可通过 Wi-Fi 进行联网) + +④ : 使用电源适配器给瑞莎 VMARC-Q9075 开发套件供电 + +## 启动系统 + +使用电源适配器给瑞莎 VMARC-Q9075 开发套件通电,成功启动系统后,你可以看到显示器显示系统界面。 + +## 登录系统 + +首次启动系统,你需要使用默认的用户名和密码登录。 + +默认凭据如下: + +| 用户名 | 密码 | +| :----: | :---: | +| radxa | radxa | + +## 使用系统 + +成功登录系统,你可以在瑞莎 VMARC-Q9075 开发套件上进行系统配置和使用。 diff --git a/docs/som/vmarc/q9075/getting-started/use-system.md b/docs/som/vmarc/q9075/getting-started/use-system.md new file mode 100644 index 000000000..cea7f1891 --- /dev/null +++ b/docs/som/vmarc/q9075/getting-started/use-system.md @@ -0,0 +1,21 @@ +--- +sidebar_position: 3 +--- + +# 使用系统 + +主要介绍如何使用系统,包括启动系统、系统用户信息、以及有屏模式和无屏模式的使用建议。 + +## 启动系统 + +使用 19-24V DC 电源适配器给瑞莎 VMARC-Q9075 开发套件通电,若存在系统启动介质,系统将自动启动。 + +## 系统信息 + +首次启动系统,你需要使用默认的用户名和密码登录。 + +默认凭据如下: + +| 用户名 | 密码 | +| :----: | :---: | +| radxa | radxa | diff --git a/i18n/en/docusaurus-plugin-content-docs/current/som/vmarc/README.md b/i18n/en/docusaurus-plugin-content-docs/current/som/vmarc/README.md new file mode 100644 index 000000000..f827b6279 --- /dev/null +++ b/i18n/en/docusaurus-plugin-content-docs/current/som/vmarc/README.md @@ -0,0 +1,5 @@ +--- +sidebar_position: 1 +--- + +# VMARC Series diff --git a/i18n/en/docusaurus-plugin-content-docs/current/som/vmarc/q9075/README.md b/i18n/en/docusaurus-plugin-content-docs/current/som/vmarc/q9075/README.md new file mode 100644 index 000000000..103676484 --- /dev/null +++ b/i18n/en/docusaurus-plugin-content-docs/current/som/vmarc/q9075/README.md @@ -0,0 +1,201 @@ +--- +sidebar_position: 3 +--- + +# Radxa VMARC-Q9075 + +## Introduction + +The Radxa VMARC-Q9075 is a high-performance AI computing module based on the Qualcomm Dragonwing IQ-9075 processor. It uses a 314-pin MXM 3.0 connector and measures 82 mm × 80 mm, making it suitable for space-constrained embedded applications that require high computing performance, AI inference, and multimedia processing capabilities. + +The module integrates an 8-core Kryo Gen 6 CPU, a 4-core Cortex-R52 MCU, a Qualcomm Adreno 663 GPU, and a Hexagon Tensor Processor (HTP), delivering 100 Dense / 200 Sparse TOPS@INT8 of AI performance. It is equipped with 36GB LPDDR5 memory and 128GB UFS 3.1 storage and supports multiple high-resolution cameras, display outputs, 2.5GbE, USB 3.2 Gen 2, PCIe Gen4, and expansion signals including CAN, UART, SPI, I2C, and GPIO. + +The Radxa VMARC-Q9075 Development Kit consists of the compute module and a matching IO board. It provides dual 2.5GbE ports, M.2 NVMe SSD, Wi-Fi / Bluetooth, and 4G / 5G expansion capabilities, as well as multiple USB, CAN, RS-232, RS-485, display, and camera interfaces. It can be used to quickly evaluate performance, validate interfaces, develop AI applications, and build product prototypes. + +## Product Views + + + + + +
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+ +## Specifications + + + + + +| Category | Specification | +| -------------- | ------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------ | +| Processor | Qualcomm Dragonwing IQ-9075 | +| CPU | 8-core Kryo Gen 6, up to 2.36GHz | +| MCU | 4-core Cortex-R52, up to 1.85GHz | +| GPU | Qualcomm Adreno 663
- Supports secure general-purpose GPU computing with 1.2 TFLOPS FP32 performance
- Supports Vulkan 1.2, OpenGL ES 3.2, and OpenCL 2.0 FP
- Supports Adreno NN Direct | +| AI Performance | 100 Dense / 200 Sparse TOPS@INT8
- Hexagon Tensor Processor (HTP) with four HVX units and two HMX units
- Supports mainstream deep-learning frameworks including TensorFlow, PyTorch, ONNX, Paddle, Caffe, and DarkNet | +| Video Codec | Adreno VPU 765
Video decoding:
- Supports AV1, HEVC, H.264, H.265, VP9, and MPEG2
- Performance: 1× 8K@60fps / 2× 8K@30fps / 4× 4K@60fps / 8× 4K@30fps / 16× 1080p@60fps / 32× 1080p@30fps
Video encoding:
- Supports H.264, H.265, HEIF, and HEIC
- Performance: 2× 4K@60fps / 4× 4K@30fps / 8× 1080p@60fps / 16× 1080p@30fps | +| Memory | LPDDR5
- Capacity: 36GB
- Bus width: 96-bit
- Maximum data rate: 6400 MT/s | +| Storage | 1× onboard 32MB SPI Flash
1× onboard 128GB UFS 3.1 (Gear4 x2) | +| Display | 1× MIPI DSI display signal
1× eDP display signal
1× HDMI TX signal (DP-to-HDMI signal)
1× DP TX signal | +| Camera | 1× 4-lane MIPI CSI camera signal
1× 2-lane MIPI CSI camera signal | +| Network | 2× 2.5GbE PHY | +| USB | 2× USB 3.2 Gen 2 signals (10Gbps)
4× USB 2.0 signals | +| PCIe | 2× PCIe Gen4 x2 | +| GPIO | 2× CAN
2× I2S
4× UART
2× SPI
5× I2C
14× GPIO | +| Power | 12V DC input | +| Connector | 314-pin MXM 3.0 connector | +| Dimensions | 82 mm × 80 mm | + +
+ + + +| Category | Specification | +| ------------------------- | ------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------ | +| Compatible Compute Module | VMARC-Q9075 | +| Storage | 1× M.2 M Key 2280 slot (NVMe SSD) | +| Network | 2× 2.5GbE RJ45 ports
1× M.2 E Key 2230 slot (Wi-Fi / Bluetooth module)
1× M.2 B Key 3042 slot (4G / 5G cellular module)
1× Nano SIM card slot | +| Display | 1× 4-lane MIPI DSI display connector (39-pin)
1× eDP connector
1× standard HDMI connector (Type-A)
1× DP connector (DisplayPort) | +| Camera | 1× 4-lane MIPI CSI camera connector (31-pin)
1× 2-lane MIPI CSI camera connector (15-pin) | +| USB | 4× USB 3.1 Type-A ports
1× USB 3.2 Gen 2 port
3× USB 2.0 ports
1× USB Type-C debug port | +| Other Interfaces | 1× power button
1× EDL button
1× status LED
1× fan connector
1× RTC battery connector
4× CAN bus interfaces
2× RS-232 interfaces
1× RS-485 interface
1× 40-pin GPIO header (UART / SPI / PWM / GPIO, etc.) | +| Power | DC5525 power jack or XT60 power connector (19–24V input) | +| Compute Module Connector | 314-pin MXM 3.0 connector | +| Dimensions | 120 mm × 120 mm | + +
+ + + +| Category | Specification | +| ---------------- | ------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------ | +| Compute Module | Radxa VMARC-Q9075 | +| IO Board | Radxa VMARC-Q9075 IO Board | +| CPU | 8-core Kryo Gen 6, up to 2.36GHz | +| MCU | 4-core Cortex-R52, up to 1.85GHz | +| GPU | Qualcomm Adreno 663
- Supports secure general-purpose GPU computing with 1.2 TFLOPS FP32 performance
- Supports Vulkan 1.2, OpenGL ES 3.2, and OpenCL 2.0 FP
- Supports Adreno NN Direct | +| AI Performance | 100 Dense / 200 Sparse TOPS@INT8
- Hexagon Tensor Processor (HTP) with four HVX units and two HMX units
- Supports mainstream deep-learning frameworks including TensorFlow, PyTorch, ONNX, Paddle, Caffe, and DarkNet | +| Video Codec | Adreno VPU 765
Video decoding:
- Supports AV1, HEVC, H.264, H.265, VP9, and MPEG2
- Performance: 1× 8K@60fps / 2× 8K@30fps / 4× 4K@60fps / 8× 4K@30fps / 16× 1080p@60fps / 32× 1080p@30fps
Video encoding:
- Supports H.264, H.265, HEIF, and HEIC
- Performance: 2× 4K@60fps / 4× 4K@30fps / 8× 1080p@60fps / 16× 1080p@30fps | +| Memory | LPDDR5
- Capacity: 36GB
- Bus width: 96-bit
- Maximum data rate: 6400 MT/s | +| Storage | 1× onboard 32MB SPI Flash
1× onboard 128GB UFS 3.1 (Gear4 x2)
1× M.2 M Key 2280 slot (NVMe SSD) | +| Display | 1× 4-lane MIPI DSI display connector (39-pin)
1× eDP connector
1× standard HDMI connector (Type-A)
1× DP connector | +| Camera | 1× 4-lane MIPI CSI camera connector (31-pin)
1× 2-lane MIPI CSI camera connector (15-pin) | +| Network | 2× 2.5GbE RJ45 ports
1× M.2 E Key 2230 slot (Wi-Fi / Bluetooth module)
1× M.2 B Key 3042 slot (4G / 5G cellular module)
1× Nano SIM card slot | +| USB | 4× USB 3.2 Gen 2 Type-A ports (10Gbps)
1× USB 3.2 Gen 2 port (10Gbps)
3× USB 2.0 ports
1× USB Type-C debug port | +| Other Interfaces | 1× power button
1× EDL button
1× status LED
1× fan connector
1× RTC battery connector
4× CAN bus interfaces
2× RS-232 interfaces
1× RS-485 interface
1× 40-pin GPIO header (UART / SPI / PWM / GPIO, etc.) | +| Power | DC5525 power jack or XT60 power connector (19–24V input) | +| Connector | 314-pin MXM 3.0 connector | +| Dimensions | 120 mm × 120 mm | + +
+ +
+ +## Block Diagram + +
+ +
+ +## Interface Description + + + + + +
+ +
+ +| No. | Description | No. | Description | No. | Description | +| :-: | :------------ | :-: | :-------------------------- | :-: | :------------------------ | +| 1 | LPDDR5 | 2 | Qualcomm Dragonwing IQ-9075 | 3 | 314-pin MXM 3.0 connector | +| 4 | SPI NOR Flash | 5 | Qualcomm QCA8081 | 6 | Onboard UFS | + +
+ + + +
+ +
+ +| No. | Description | No. | Description | No. | Description | +| :-: | :------------------------ | :-: | :--------------------- | :-: | :---------------------------- | +| 1 | Fan connector | 2 | 40-pin GPIO header | 3 | 4× CAN bus interfaces | +| 4 | 2× RS-232 interfaces | 5 | RS-485 interface | 6 | XT60 power connector | +| 7 | 314-pin MXM 3.0 connector | 8 | DP connector | 9 | 4× USB 3.2 Gen 2 Type-A ports | +| 10 | Nano SIM card slot | 11 | eDP connector | 12 | 1× 4-lane MIPI CSI | +| 13 | 1× 2-lane MIPI CSI | 14 | 1× M.2 M Key 2280 slot | 15 | USB Type-C debug port | +| 16 | Power button | 17 | USB 3.2 Gen 2 port | 18 | 3× USB 2.0 ports | +| 19 | RTC battery connector | 20 | EDL button | 21 | DC5525 power jack | +| 22 | HDMI connector | 23 | 2× 2.5GbE RJ45 ports | 24 | 1× 4-lane MIPI DSI | +| 25 | 1× M.2 B Key 3042 slot | 26 | 1× M.2 E Key 2230 slot | | | + +
+ + + +
+ Development kit interface diagram +
+ +| No. | Description | No. | Description | No. | Description | +| :-: | :------------------------ | :-: | :--------------------- | :-: | :---------------------------- | +| 1 | Fan connector | 2 | 40-pin GPIO header | 3 | 4× CAN bus interfaces | +| 4 | 2× RS-232 interfaces | 5 | RS-485 interface | 6 | XT60 power connector | +| 7 | 314-pin MXM 3.0 connector | 8 | DP connector | 9 | 4× USB 3.2 Gen 2 Type-A ports | +| 10 | Nano SIM card slot | 11 | eDP connector | 12 | 1× 4-lane MIPI CSI | +| 13 | 1× 2-lane MIPI CSI | 14 | 1× M.2 M Key 2280 slot | 15 | USB Type-C debug port | +| 16 | Power button | 17 | USB 3.2 Gen 2 port | 18 | 3× USB 2.0 ports | +| 19 | RTC battery connector | 20 | EDL button | 21 | DC5525 power jack | +| 22 | HDMI connector | 23 | 2× 2.5GbE RJ45 ports | 24 | 1× 4-lane MIPI DSI | +| 25 | 1× M.2 B Key 3042 slot | 26 | 1× M.2 E Key 2230 slot | | | + +
+ +
+ +## Applications + +### Edge AI Computing and Intelligent Gateways + +With 100 Dense / 200 Sparse TOPS@INT8 of AI performance, dual 2.5GbE ports, and Wi-Fi, Bluetooth, and 4G / 5G expansion capabilities, the system can aggregate data, perform AI inference, and make real-time decisions at the edge. It is suitable for industrial gateways, edge servers, and multi-protocol data acquisition devices. + +### Machine Vision and Video Analytics + +Support for 4-lane and 2-lane MIPI CSI camera inputs and multiple streams of 8K, 4K, and 1080p video encoding and decoding makes the system suitable for visual inspection, object recognition, behavior analysis, multi-channel video aggregation, and intelligent security applications. + +### Industrial Automation and Equipment Control + +The 4-core Cortex-R52 MCU and interfaces including CAN, RS-232, RS-485, UART, SPI, I2C, and GPIO can connect sensors, actuators, and industrial control equipment. The system is suitable for automated production lines, machine condition monitoring, quality inspection, and equipment control systems. + +### Robotics and Autonomous Devices + +The multi-core CPU, GPU, and high-performance AI accelerator can work together on environmental perception, object detection, and path-planning tasks. The extensive camera, network, and control interfaces simplify the expansion of sensors and motion-control modules, making the system suitable for mobile robots, service robots, inspection devices, and other autonomous systems. + +### Smart Displays and Interactive Terminals + +MIPI DSI, eDP, HDMI, and DP display capabilities enable high-resolution, multi-display, and embedded display solutions for digital signage, smart retail, self-service terminals, information displays, and interactive devices. diff --git a/i18n/en/docusaurus-plugin-content-docs/current/som/vmarc/q9075/getting-started/README.md b/i18n/en/docusaurus-plugin-content-docs/current/som/vmarc/q9075/getting-started/README.md new file mode 100644 index 000000000..2b774497f --- /dev/null +++ b/i18n/en/docusaurus-plugin-content-docs/current/som/vmarc/q9075/getting-started/README.md @@ -0,0 +1,7 @@ +--- +sidebar_position: 20 +--- + +# Getting Started + + diff --git a/i18n/en/docusaurus-plugin-content-docs/current/som/vmarc/q9075/getting-started/quickly-start.md b/i18n/en/docusaurus-plugin-content-docs/current/som/vmarc/q9075/getting-started/quickly-start.md new file mode 100644 index 000000000..3effec06e --- /dev/null +++ b/i18n/en/docusaurus-plugin-content-docs/current/som/vmarc/q9075/getting-started/quickly-start.md @@ -0,0 +1,81 @@ +--- +sidebar_position: 1 +--- + +# Quick Start + +This guide helps you quickly get started with the Radxa VMARC-Q9075 Development Kit. + +:::tip Usage Notes + +The onboard 128GB UFS of the Radxa VMARC-Q9075 Development Kit comes with an operating system preinstalled. You can use the product simply by powering it on, without installing an operating system. + +::: + +## Product Views + +| Product | No. | View | No. | View | No. | View | +| :-------------------------------: | :-: | :------: | :-: | :---------: | :-: | :-------: | +| Radxa VMARC-Q9075 Development Kit | ① | Top view | ② | Side view 1 | ③ | Back view | + +
+ +
+ +## Prerequisites + +### Hardware Requirements + +Prepare the following hardware in advance: + +- Development kit: Radxa VMARC-Q9075 Development Kit +- Power supply: 19V DC power adapter (recommended; supports 19–24V DC input through the DC5525 jack) +- Input devices: Keyboard and mouse +- Display device: Monitor and HDMI cable for displaying the system interface + +:::tip Development Kit + +The Radxa VMARC-Q9075 Development Kit includes: + +- Radxa VMARC-Q9075 +- Radxa VMARC-Q9075 IO Board +- Active cooler +- Wireless module +- Protective base +- Power adapter + +::: + +### Hardware Connections + +Connect peripherals such as a monitor, keyboard, and mouse to the Radxa VMARC-Q9075 Development Kit. Finally, power the development kit with a 19–24V DC power adapter. + +
+ +
+ +①: Connect the monitor to the board using an HDMI or DP cable. + +②: Connect a mouse or keyboard to a USB Type-A port. + +③: Connect the router to the board using an Ethernet cable (optional; the development kit includes a wireless module and can connect to a network over Wi-Fi). + +④: Power the Radxa VMARC-Q9075 Development Kit using the power adapter. + +## Start the System + +Power on the Radxa VMARC-Q9075 Development Kit using the power adapter. After the system starts successfully, the system interface appears on the monitor. + +## Log In to the System + +When starting the system for the first time, log in with the default username and password. + +The default credentials are: + +| Username | Password | +| :------: | :------: | +| radxa | radxa | + +## Use the System + +After logging in successfully, you can configure and use the system on the Radxa VMARC-Q9075 Development Kit. diff --git a/i18n/en/docusaurus-plugin-content-docs/current/som/vmarc/q9075/getting-started/use-system.md b/i18n/en/docusaurus-plugin-content-docs/current/som/vmarc/q9075/getting-started/use-system.md new file mode 100644 index 000000000..845498a1e --- /dev/null +++ b/i18n/en/docusaurus-plugin-content-docs/current/som/vmarc/q9075/getting-started/use-system.md @@ -0,0 +1,21 @@ +--- +sidebar_position: 3 +--- + +# Use the System + +This guide explains how to use the system, including starting the system, system user information, and recommendations for using the system with or without a display. + +## Start the System + +Power the Radxa VMARC-Q9075 Development Kit using a 19–24V DC power adapter. If bootable system media is present, the system starts automatically. + +## System Information + +When starting the system for the first time, log in with the default username and password. + +The default credentials are: + +| Username | Password | +| :------: | :------: | +| radxa | radxa | diff --git a/i18n/en/docusaurus-theme-classic/navbar.json b/i18n/en/docusaurus-theme-classic/navbar.json index ab10bd366..05452529c 100644 --- a/i18n/en/docusaurus-theme-classic/navbar.json +++ b/i18n/en/docusaurus-theme-classic/navbar.json @@ -103,6 +103,14 @@ "message": "NX Series", "description": "Navbar item with label NX 系列" }, + "item.label.VMARC 系列": { + "message": "VMARC Series", + "description": "Navbar item with label VMARC 系列" + }, + "item.label.VMARC-Q9075": { + "message": "VMARC-Q9075", + "description": "Navbar item with label VMARC-Q9075" + }, "item.label.X 系列": { "message": "X Series", "description": "Navbar item with label X 系列" diff --git a/static/home/product-pictures/vmarc-q9075.webp b/static/home/product-pictures/vmarc-q9075.webp new file mode 100644 index 000000000..81b4422fd Binary files /dev/null and b/static/home/product-pictures/vmarc-q9075.webp differ diff --git a/static/img/vmarc-q9075/block_diagram_radxa_vmarc_q9075.webp b/static/img/vmarc-q9075/block_diagram_radxa_vmarc_q9075.webp new file mode 100644 index 000000000..7bbd2e8e5 Binary files /dev/null and b/static/img/vmarc-q9075/block_diagram_radxa_vmarc_q9075.webp differ diff --git a/static/img/vmarc-q9075/vmarc-q9075-dev-kit-hardware-connect.webp b/static/img/vmarc-q9075/vmarc-q9075-dev-kit-hardware-connect.webp new file mode 100644 index 000000000..b54f03d8a Binary files /dev/null and b/static/img/vmarc-q9075/vmarc-q9075-dev-kit-hardware-connect.webp differ diff --git a/static/img/vmarc-q9075/vmarc-q9075-dev-kit-interface.webp b/static/img/vmarc-q9075/vmarc-q9075-dev-kit-interface.webp new file mode 100644 index 000000000..76e182cd9 Binary files /dev/null and b/static/img/vmarc-q9075/vmarc-q9075-dev-kit-interface.webp differ diff --git a/static/img/vmarc-q9075/vmarc-q9075-dev-kit-side.webp b/static/img/vmarc-q9075/vmarc-q9075-dev-kit-side.webp new file mode 100644 index 000000000..fa790cdd1 Binary files /dev/null and b/static/img/vmarc-q9075/vmarc-q9075-dev-kit-side.webp differ diff --git a/static/img/vmarc-q9075/vmarc-q9075-dev-kit-view.webp b/static/img/vmarc-q9075/vmarc-q9075-dev-kit-view.webp new file mode 100644 index 000000000..608920f64 Binary files /dev/null and b/static/img/vmarc-q9075/vmarc-q9075-dev-kit-view.webp differ diff --git a/static/img/vmarc-q9075/vmarc-q9075-interface.webp b/static/img/vmarc-q9075/vmarc-q9075-interface.webp new file mode 100644 index 000000000..d590a5911 Binary files /dev/null and b/static/img/vmarc-q9075/vmarc-q9075-interface.webp differ diff --git a/static/img/vmarc-q9075/vmarc-q9075-io-board-interface.webp b/static/img/vmarc-q9075/vmarc-q9075-io-board-interface.webp new file mode 100644 index 000000000..ff6c5d8a7 Binary files /dev/null and b/static/img/vmarc-q9075/vmarc-q9075-io-board-interface.webp differ diff --git a/static/img/vmarc-q9075/vmarc-q9075-io-board-view.webp b/static/img/vmarc-q9075/vmarc-q9075-io-board-view.webp new file mode 100644 index 000000000..a014b4a1b Binary files /dev/null and b/static/img/vmarc-q9075/vmarc-q9075-io-board-view.webp differ diff --git a/static/img/vmarc-q9075/vmarc-q9075-view.webp b/static/img/vmarc-q9075/vmarc-q9075-view.webp new file mode 100644 index 000000000..064b8175d Binary files /dev/null and b/static/img/vmarc-q9075/vmarc-q9075-view.webp differ