BOARDCON MINI3562 System On Module
Introduction
About this Manual
This manual is intended to provide the user with an overview of the board and benefits, complete features specifications, and set-up procedures. It contains important safety information as well.
Feedback and Update to this Manual
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Limited Warranty
Boardcon warrants this product to be free of defects in material and workmanship for a period of one year from the date of buy. During this warranty period, Boardcon will repair or replace the defective unit in accordance with the following process: A copy of the original invoice must be included when returning the defective unit to Boardcon. This limited warranty does not cover damages resulting from lighting or other power surges, misuse, abuse, abnormal conditions of operation, or attempts to alter or modify the function of the product. This warranty is limited to the repair or replacement of the defective unit. In no event shall Boardcon be liable or responsible for any loss or damages, including but not limited to any lost profits, incidental or consequential damages, loss of business, or anticipatory profits arising from the use or inability to use this product. Repairs make after the expiration of the warranty period are subject to a repair charge and the cost of return shipping. Please contact Boardcon to arrange for any repair service and to obtain repair charge information.
MINI3562 Introduction
Summary
The MINI3562 is a cost-optimized SOM powered by Rockchip RK3562 processor with quad-core Cortex-A53 CPU and ARM G52 2EE GPU, 1 TOPS NPU. This RK3562 SOM offers a smaller form factor and power efficiency for a wide range of target applications such as security surveillance and Traffic Management. It is designed specifically for high-performance devices such as TV box or recorders, VI devices, intelligent interactive devices, personal computers and robots. The high-performance multimedia processing and acceleration engine solution can help customers to introduce new technologies more quickly and enhance the overall solution efficiency.
Features
- Microprocessor
- Quad-core 64-bit Cortex-A53 architecture clocked at up to 2.0GHz.
- Full implementation of the ARM architecture v8-A instruction set, ARM Neon Advanced SIMD (single instruction, multiple data) support for accelerated media and signal processing computation.
- Integrated 32KB L1 instruction cache, 32KB L1 data cache with 4-way set associative.
- Memory Organization
- LPDDR4 or LPDDR4X RAM up to 8GB
- EMMC up to 128GB
- Boot ROM
- Supports system code download through USB OTG
- Secure system
- Embedded two cipher engine
- Support key ladder to guarantee key secure
- Support secure OS and data scrambling
- Support OTP
- Video Decoder/Encoder
- H.265 HEVC/MVC Main Profile yuv420@L5.0 up to 4096×2304@30fps.
- H.264 AVC/MVC Main Profile yuv400/yuv420/yuv422/@L5.0 up to 1920×1080@60fps.
- VP9 Profile0 yuv420@L5.0 up to 4096×2304@30fps.
- H.264 High Profile level 4.2, up to 1920×1080@60fps.
- Support YUV/RGB video source with rotation and mirror.
- NPU
- The built-in 1TOPS NPU supports hybrid operations with INT4/INT8/INT16/FP16 data types. Additionally, it boasts strong compatibility with a series of frameworks, such as TensorFlow, MXNet, PyTorch, and Caffe, enabling easy conversion of network models.
- Display Subsystem
Support 1- channel MIPI_DSI or LVDS- MIPI DSI TX (Up to 2048×1080@60Hz)
- LVDS(Up to 800×1280@60Hz)
- RGB video output interface
- Support up to 2048×1080@60Hz
- Support RGB(up to 8bit) format
- Up to 150MHz data rate
- BT.656/BT.1120 video output interface
- BT1120 up to 1080 P/I output
- BT656 up to 576 P/I output
- MIPI CSI RX
- Up to 4 data lanes, 2.5Gbps maximum data rate per lane.
- Support MIPI-HS, MIPI-LP mode.
- Support One interface with 1 clock lane and 4 data lanes.
- Support Two interface, each with 1 clock lane and 2 data lanes.
- Audio 2- channel I2S interface
- Support normal, left-justified, right-justified.
- Support master and slave mode.
- I2S, PCM and TDM mode cannot be used at the same time.
- 1- channel SPDIF
- Support two 16-bit audio data store together in one 32-bit wide location.
- Support biphase format stereo audio data output.
- Support non-linear PCM transfer.
- 2- channel digital DAC Analog
- 1- channel MIC IN.
- 1- channel Headphone.
- 1- channel Speaker OUT.
- Multi-PHY Interface
- Support multi-PHY with one PCIe2.1 and one USB3.0 controller
- USB 3.0 Dual-Role Device (DRD) Controller
- PCIe2.1 interface
- USB 2.0 Host
- Support one USB2.0 Host
- Ethernet
- On board RTL8211F
- Support RMII/RGMII PHY interface
- I2C
- Up to 5-CH I2C
- Support standard mode and fast mode(up to 400kbit/s)
- 1- channel SDIO and 1- channel SDMMC
- Support SDIO 3.0 protocol
- Support SD3.0 card
- SPI
- Up to 3 SPI controllers
- Support two chip-select output
- Support serial-master and serial-slave mode, software-configurable.
- UART
- Support up to 10 UARTs
- UART0 with 2 wires for debug
- Embedded two 64byte FIFO
- ADC
- Up to 11 ADC channels
- 10-bit resolution up to 1MS/s sampling rate
- SARADC0 for RECOVERY
- Voltage input range between 0V to 1.8V
- PWM
- Up to15 PWMs with interrupt-based operation
- Support 32bit time/counter facility
- IR option on PWM3/PWM7/PWM11/PWM15
- Power unit
- PMU RK809 on board
- 3.4~ 5.5V Power input up to 4A current
- 1.8V and 3.3V max 500mA output
- Very low RTC consume current, less 0.25uA at 3V button Cell.
MINI3562 Block Diagram
RK3562 Block Diagram
Development board (EM3562) Block Diagram
MINI3562 Specifications
Feature | Specifications |
SoC | Rockchip RK3562. Quad-core Cortex-A53 up to 2.0GHz |
GPU | ARM G52 2EE with support for OpenGL ES 1.1/2.0/3.2, OpenCL 2.0, Vulkan 1.1 |
NPU | 1 TOPS |
VPU | 4K@30fps H.265 HEVC/MVC, VP9 Video Decoder 1080p@60fps H.264 AVC/MVC Video Decoder 1080p@60fps H.264 Video Encoder |
Memory | 4GB/8GB LPDDR4X |
Storage | 8GB/16GB/32GB/64GB/128GB |
Supply Voltage | DC 5V |
Pin out | 5x UART, USB2.0 OTG, USB2.0 Host, MIPI DSI/LVDS, 2x MIPI CSI, GbE, PCIe2.1, 2x SDMMC, I2C, ADC, GPIO, I2S, PWM, etc |
Ethernet | GbE PHY (RTL8211F) on core board |
PCB Layer | 8 |
Dimensions | 45 x 34 mm |
Weight | 7.3 gram |
Connectors | 2x 100-pin, 0.4mm pitch Board-to-Board Connectors (Plug) |
Application | security surveillance, Traffic Management, Retail Analytics, Manufacturing & Quality Control, etc. |
MINI3562 PCB Dimension
Connector Type
- Mini3562 connector
PLUG
Recommended PCB Pattern
Based board connector
Receptacle
Stacking Height 1.5mm
Recommended PCB Pattern
MINI3562 Pin Definition
Pin (J1) | Signal | Description or functions | GPIO serial | IO Voltage(V) |
1 | VCC_RTC | POWER INPUT | 1.8~3.3 | |
2 | GND | 0 | ||
3 | GND | 0 | ||
4 | RTCIC_32KOUT | (PU10K) | 1.8 | |
5 | UART0_TX_M0_DEBUG | JTAG_CPU_MCU_TCK_M0 | GPIO0_D1_u | 3.3 |
6 | GND | 0 | ||
7 | UART0_RX_M0_DEBUG | JTAG_CPU_MCU_TMS_M0 | GPIO0_D0_u | 3.3 |
8 | CAM_RST1_L_1V8 | I2S1_SDO0_M1/CAM_CLK3 _OUT/UART8_RTSN_M0/ SPI0_CLK_M1/PWM13_M1 | GPIO3_B5_d | 1.8 |
9 | PCIE20_PERSTn_M1 | PDM_SDI1_M0 | GPIO3_B0_d | 3.3 |
10 | CAM_PDN1_L_1V8 | I2S1_SDI0_M1/ISP_FLASH _TRIGIN/UART3_RTSN_M1 | GPIO3_C1_d | 1.8 |
11 | PCIE20_WAKEn_M1 | PDM_SDI2_M0/UART5_RX _M1 | GPIO3_A7_d | 3.3 |
12 | CAM_RST0_L_1V8 | I2S1_LRCK_M1/CAM_CLK2 | GPIO3_B4_d | 1.8 |
Pin (J1) | Signal | Description or functions | GPIO serial | IO Voltage(V) |
_OUT/UART8_CTSN_M0/S PI0_MOSI_M1/PWM12_M1 | ||||
13 | PCIE20_CLKREQn_M1 | PDM_CLK0_M0/UART5_TX _M1 | GPIO3_A6_d | 3.3 |
14 | I2C5_SDA_M0_1V8 | ISP_FLASH_TRIGOUT/UAR T9_RX_M | GPIO3_C3_d | 1.8 |
15 | TP_RST_L | SPI0_CSN1_M0/PWM4_M0/ CPU_AVS/SPDIF_TX_M1 | GPIO0_B7_d | 3.3 |
16 | I2C5_SCL_M0_1V8 | ISP_PRELIGHT_TRIGOUT/ UART9_TX_M1 | GPIO3_C2_d | 1.8 |
17 | I2C2_SDA_TP | I2C2_SDA_M0/PCIE20_WA KEN_M0 | GPIO0_B6_d | 3.3 |
18 | I2C4_SDA_M0_1V8 | I2S1_SDO2_M1/I2S1_SDI2_ M1/UART3_TX_M1/SPI0_C SN0_M1/I2C4_SDA_M0 | GPIO3_B7_d | 1.8 |
19 | I2C2_SCL_TP | I2C2_SCL_M0/PCIE20_PER STN_M0 | GPIO0_B5_d | 3.3 |
20 | I2C4_SCL_M0_1V8 | I2S1_SDO1_M1/I2S1_SDI3_ M1/UART3_CTSN_M1/SPI0 _CSN1_M1/I2C4_SCL_M0 | GPIO3_B6_d | 1.8 |
21 | TP_INT_L | UART2_RTSN_M0/PWM0_ M0/SPI0_CLK_M0 | GPIO0_C3_d | 3.3 |
22 | CAM_PDN0_L_1V8 | I2S1_SDO3_M1/I2S1_SDI1_ M1/UART3_RX_M1/SPI0_MI SO_M1 | GPIO3_C0_d | 1.8 |
23 | GND | 0 | ||
24 | GND | 0 | ||
25 | LCDC_HSYNC | I2S1_SDO1_M0/UART9_CT SN_M0/SPI2_CSN1_M0/I2C 1_SCL_M1/UART3_TX_M0 | GPIO4_B4_d | 3.3 |
26 | CAM_CLK1_OUT_1V8 | I2S1_SCLK_M1/UART8_RX _M0 | GPIO3_B3_d | 1.8 |
27 | LCDC_VSYNC | I2S1_SDO2_M0/UART9_RT SN_M0/SPI2_CSN0_M0/I2C 1_SDA_M1/UART3_RX_M0 | GPIO4_B5_d | 3.3 |
28 | GND | 0 | ||
29 | LCDC_DEN | I2S1_SDO3_M0/SPI2_CLK_ M0/UART3_CTSN_M0 | GPIO4_B6_d | 3.3 |
30 | CAM_CLK0_OUT_1V8 | I2S1_MCLK_M1/UART8_TX _M0 | GPIO3_B2_d | 1.8 |
31 | UART4_TX_M0/LCD_D7 | I2S1_SDI0_M0 | GPIO3_D0_d | 3.3 |
Pin (J1) | Signal | Description or functions | GPIO serial | IO Voltage(V) |
32 | GND | 0 | ||
33 | UART7_RX_M0/LCD_D6 | I2S1_SDO0_M0 | GPIO3_C7_d | 3.3 |
34 | UART7_RTS_M0/LCD_D12 | I2S1_SDI3_M0/SPI2_MOSI_ M0/I2C2_SDA_M1 | GPIO3_D3_d | 3.3 |
35 | UART4_RTS_M0/LCD_D5 | I2S1_LRCK_M0/PWM15_M 0 | GPIO3_C6_d | 3.3 |
36 | UART7_CTS_M0/LCD_D11 | I2S1_SDI2_M0/SPI2_MISO_ M0/I2C2_SCL_M1 | GPIO3_D2_d | 3.3 |
37 | UART4_CTS_M0/LCD_D4 | I2S1_SCLK_M0/PWM14_M0 | GPIO3_C5_d | 3.3 |
38 | UART4_RX_M0/LCD_D10 | I2S1_SDI1_M0/UART3_RTS N_M0 | GPIO3_D1_d | 3.3 |
39 | UART7_TX_M0/LCD_D3 | I2S1_MCLK_M0 | GPIO3_C4_d | 3.3 |
40 | GND | 0 | ||
41 | PHY0_LED1/CFG_LDO0/LC D_D21(default:PHY0_LED1) | PWM12_M0/I2S2_LRCK_M 1 | GPIO4_A1_d | 3.3 |
42 | LCDC_CLK | PDM_CLK0_M1/CAM_CLK1 _OUT_M1 | GPIO4_B7_d | 3.3 |
43 | PHY0_LED2/CFG_LDO1/LC D_D9(default:PHY0_LED2) | PDM_CLK0_M1/CAM_CLK1 _OUT_M1 | GPIO4_B7_d | 3.3 |
44 | GND | 0 | ||
45 | GND | 0 | ||
46 | PDM_SDI1/LCD_D16 | UART1_CTSN_M1/PDM_SD I1_M1/UART6_RX_M1 | GPIO4_B0_d | 3.3 |
47 | PHY0_MDI0+/LCD_D22 (default:PHY0_MDI0+) | SPI1_MOSI_M0/UART6_CT SN_M1 | GPIO4_A2_d | 3.3 |
48 | GND | 0 | ||
49 | PHY0_MDI0-/LCD_D23 (default:PHY0_MDI0-) | SPI1_MISO_M0/UART6_RT SN_M1 | GPIO4_A3_d | 3.3 |
50 | ETH_CLK_25M/LCD_D17 (default:ETH_CLK_25M) | PDM_CLK1_M1/CAM_CLK0 _OUT_M1/I2S2_SCLK_M1 | GPIO4_B1_d | 3.3 |
51 | PHY0_MDI1+/LCD_D13 (default:PHY0_MDI1+) | UART8_TX_M1/I2S2_SDI_ M1 | GPIO3_D4_d | 3.3 |
52 | LCD_D19 | UART8_CTSN_M1/SPI1_CS N0_M0 | GPIO3_D7_d | 3.3 |
53 | PHY0_MDI1-/LCD_D14 (default:PHY0_MDI1-) | UART8_RX_M1/I2S2_SDO_ M1 | GPIO3_D5_d | 3.3 |
54 | LCD_D20 | UART8_RTSN_M1/SPI1_CS N1_M0 | GPIO4_A0_d | 3.3 |
55 | PHY0_MDI2+/LCD_D18 | UART9_RX_M0 | GPIO4_B3_d | 3.3 |
Pin (J1) | Signal | Description or functions | GPIO serial | IO Voltage(V) |
(default:PHY0_MDI2+) | ||||
56 | LCD_D15 | SPI1_CLK_M0/I2S2_MCLK_ M1 | GPIO3_D6_d | 3.3 |
57 | PHY0_MDI2-/LCD_D2 (default:PHY0_MDI2-) | UART9_TX_M0 | GPIO4_B2_d | 3.3 |
58 | GND | 0 | ||
59 | PHY0_MDI3+ | |||
60 | MIPI_CSI_RX1_CLK1P | INPUT | ||
61 | PHY0_MDI3- | |||
62 | MIPI_CSI_RX1_CLK1N | INPUT | ||
63 | GND | 0 | ||
64 | MIPI_CSI_RX1_D3P | INPUT | ||
65 | MIPI_CSI_RX1_CLK0P | INPUT | ||
66 | MIPI_CSI_RX1_D3N | INPUT | ||
67 | MIPI_CSI_RX1_CLK0N | INPUT | ||
68 | MIPI_CSI_RX1_D2P | INPUT | ||
69 | MIPI_CSI_RX1_D1P | INPUT | ||
70 | MIPI_CSI_RX1_D2N | INPUT | ||
71 | MIPI_CSI_RX1_D1N | INPUT | ||
72 | GND | 0 | ||
73 | MIPI_CSI_RX1_D0P | INPUT | ||
74 | MIPI_CSI_RX0_CLK1P | INPUT | ||
75 | MIPI_CSI_RX1_D0N | INPUT | ||
76 | MIPI_CSI_RX0_CLK1N | INPUT | ||
77 | GND | 0 | ||
78 | MIPI_CSI_RX0_D3P | INPUT | ||
79 | MIPI_CSI_RX0_CLK0P | INPUT | ||
80 | MIPI_CSI_RX0_D3N | INPUT | ||
81 | MIPI_CSI_RX0_CLK0N | INPUT | ||
82 | MIPI_CSI_RX0_D2P | INPUT | ||
83 | MIPI_CSI_RX0_D1P | INPUT | ||
84 | MIPI_CSI_RX0_D2N | INPUT | ||
85 | MIPI_CSI_RX0_D1N | INPUT | ||
86 | GND | 0 | ||
87 | MIPI_CSI_RX0_D0P | INPUT | ||
88 | MIPI_DSI_TX_CLKP/LVDS_ TX_CLKP | OUTPUT | ||
89 | MIPI_CSI_RX0_D0N | OUTPUT | ||
90 | MIPI_DSI_TX_CLKN/LVDS_ TX_CLKN | OUTPUT | ||
91 | GND | 0 |
Pin (J1) | Signal | Description or functions | GPIO serial | IO Voltage(V) |
92 | MIPI_DSI_TX_D1P/LVDS_T X_D1P | OUTPUT | ||
93 | MIPI_DSI_TX_D3P/LVDS_T X_D3P | OUTPUT | ||
94 | MIPI_DSI_TX_D1N/LVDS_T X_D1N | OUTPUT | ||
95 | MIPI_DSI_TX_D3N/LVDS_T X_D3N | OUTPUT | ||
96 | MIPI_DSI_TX_D0P/LVDS_T X_D0P | OUTPUT | ||
97 | MIPI_DSI_TX_D2P/LVDS_T X_D2P | OUTPUT | ||
98 | MIPI_DSI_TX_D0N/LVDS_T X_D0N | OUTPUT | ||
99 | MIPI_DSI_TX_D2N/LVDS_T X_D2N | OUTPUT | ||
100 | GND | 0 |
Pin (J2) | Signal | Description or functions | GPIO serial | IO Voltage(V) |
1 | SARADC0_IN4 | 1.8 | ||
2 | VCC3V3_SYS | POWER OUTPUT | 3.3 | |
3 | SARADC0_IN4 | 1.8 | ||
4 | VCC3V3_SYS | POWER OUTPUT | 3.3 | |
5 | SARADC0_IN6 | 1.8 | ||
6 | GND | 0 | ||
7 | SARADC0_IN7 | 1.8 | ||
8 | PCIE_PWREN_H | I2C3_SDA_M0/UART2_RX_1/ SPDIF_TX_M0/UART5_RTSN _M1 | GPIO3_A1_d | 3.3 |
9 | SARADC0_IN1_KEY/REC OVERY | (PU10K) | 1.8 | |
10 | 4G_DISABLE_L | I2C3_SCL_M0/UART2_TX_M 1/PDM_SDI3_M0/UART5_CT SN_M1 | GPIO3_A0_d | 3.3 |
11 | SARADC0_IN2 | 1.8 | ||
12 | WIFI_WAKE_HOST_H | I2C1_SDA_M0 | GPIO0_B4_d | 3.3 |
13 | GND | 0 | ||
14 | WIFI_REG_ON_H | I2C1_SCL_M0 | GPIO0_B3_d | 3.3 |
15 | SARADC1_IN0 | 1.8 |
Pin (J2) | Signal | Description or functions | GPIO serial | IO Voltage(V) |
16 | HOST_WAKE_BT_H | UART6_RX_M0 | GPIO0_C7_d | 3.3 |
17 | SARADC1_IN1 | 1.8 | ||
18 | BT_WAKE_HOST_H | UART6_TX_M0 | GPIO0_C6_d | 3.3 |
19 | SARADC1_IN2 | 1.8 | ||
20 | BT_REG_ON_H | UART6_RTSN_M0/PWM2_M0 /SPI0_MISO_M0 | GPIO0_C5_d | 3.3 |
21 | SARADC1_IN3 | 1.8 | ||
22 | USBCC_INT_L | PCIE20_CLKREQN_M0 | GPIO0_A6_d | 3.3 |
23 | SARADC1_IN5 | 1.8 | ||
24 | HALL_INT_L | UART6_CTSN_M0/PWM1_M0 /SPI0_MOSI_M0 | GPIO0_C4_d | 3.3 |
25 | GND | 0 | ||
26 | LCD_BL_PWM | UART2_CTSN_M0/PWM5_M0 /SPI0_CSN0_M0 | GPIO0_C2_d | 3.3 |
27 | SDMMC0_CLK | TEST_CLK_OUT/UART5_TX_ M0/ SPI1_CLK_M1 | GPIO1_C0_d | 3.3 |
28 | LCD_RST_L | REF_CLK_OUT | GPIO0_A0_d | 3.3 |
29 | GND | 0 | ||
30 | LCD_PWREN_H | CLK_32K_IN/CLK0_32K_OUT /PCIE20_BUTTONRSTN | GPIO0_B0_d | 3.3 |
31 |
SDMMC0_D3 | JTAG_CPU_MCU_TMS_M1/ UART5_RTSN_M0/SPI1_CSN 0_M1/PWM11_M0/DSM_AUD _RN |
GPIO1_B6_u |
3.3 |
32 | USB30_OTG0_VBUSDET | 3.3 | ||
33 |
SDMMC0_D2 | JTAG_CPU_MCU_TCK_M1/ UART5_CTSN_M0/SPI1_CSN 1_M1/PWM10_M0/DSM_AUD _RP |
GPIO1_B5_u |
3.3 |
34 | SDMMC0_DET_L | I2C4_SDA_M1 | GPIO0_A4_u | 3.3 |
35 | SDMMC0_D1 | UART0_TX_M1/UART7_TX_ M1/SPI1_MISO_M1/DSM_AU D_LN | GPIO1_B4_u | 3.3 |
36 | GND | 0 | ||
37 | SDMMC0_D0 | UART0_RX_M1/UART7_RX_ M1/SPI1_MOSI_M1/DSM_AU D_LP | GPIO1_B3_u | 3.3 |
38 | RMII_MDIO_1V8 | I2C5_SDA_M1/ PWM3_M1 | GPIO1_D0_d | 1.8 |
39 | SDMMC0_CMD | UART5_RX_M0/SPDIF_TX_M 2 | GPIO1_B7_u | 3.3 |
40 | RMII_MDC_1V8 | I2C5_SCL_M1/ PWM2_M1 | GPIO1_C7_d | 1.8 |
Pin (J2) | Signal | Description or functions | GPIO serial | IO Voltage(V) |
41 | GND | 0 | ||
42 |
GPIO2_A1_d_1V8 | I2S2_MCLK_M0/ETH_CLK_2 5M_OUT_M1/I2S0_SDO3_M1 /SPI2_CLK_M1/CLK1_32K_O UT |
GPIO2_A1_d |
1.8 |
43 | I2S2_LRCK/RMII_CRS_D V_1V8 | UART4_TX_M1/SPI2_CSN0_ M1 | GPIO1_D6_d | 1.8 |
44 | GND | 0 | ||
45 | I2S2_SDO/RMII_RXD1_1V 8 | UART4_RTSN_M1/SPI2_MOS I_M1/PWM14_M1 | GPIO1_D7_d | 1.8 |
46 | I2S2_SCLK/RMII_CLK_1V 8 | UART4_RX_M1/SPI2_CSN1_ M1 | GPIO1_D5_d | 1.8 |
47 | UART1_CTS/RMII_RXD0_ 1V8 | PWM7_M1 | GPIO1_D4_d | 1.8 |
48 | GND | 0 | ||
49 | I2S2_SDI/RMII_RXER_1V 8 | UART4_CTSN_M1/SPI2_MIS O_M1/PWM15_M1 | GPIO2_A0_d | 1.8 |
50 | USB30_OTG0_ID | |||
51 | GND | 0 | ||
52 | UART1_TX/RMII_TXD1_1 V8 | PWM5_M1 | GPIO1_D2_d | 1.8 |
53 | SDIO_CLK/G_RCK_1V8 | PWM1_M1 | GPIO1_C6_d | 1.8 |
54 | UART1_RX/RMII_TXD0_1 V8 | PWM4_M1 | GPIO1_D1_d | 1.8 |
55 | SDIO_CMD/G_RD3_1V8 | PWM0_M1 | GPIO1_C5_d | 1.8 |
56 | UART1_RTS/RMII_TXEN_ 1V8 | PWM6_M1 | GPIO1_D3_d | 1.8 |
57 | SDIO_D3/G_RD2_1V8 | PWM11_M1 | GPIO1_C4_d | 1.8 |
58 | GND | 0 | ||
59 | SDIO_D2/G_TCK_1V8 | PWM10_M1 | GPIO1_C3_d | 1.8 |
60 | PCIE20_RXN | USB30_OTG0_SSRXN | ||
61 | SDIO_D1/G_TD3_1V8 | PWM9_M1 | GPIO1_C2_d | 1.8 |
62 | PCIE20_RXP | USB30_OTG0_SSRXP | ||
63 | SDIO_D0/G_TD2_1V8 | PWM8_M1 | GPIO1_C1_d | 1.8 |
64 | GND | 0 | ||
65 | GND | 0 | ||
66 | PCIE20_TXN | USB30_OTG0_SSTXN | ||
67 | PCIE20_REFCLKP | |||
68 | PCIE20_TXP | USB30_OTG0_SSTXP | ||
69 | PCIE20_REFCLKN | |||
70 | GND | 0 |
Pin (J2) | Signal | Description or functions | GPIO serial | IO Voltage(V) |
71 | GND | 0 | ||
72 | USB20_HOST1_DP | |||
73 | SPKP_OUT | OUTPUT | ||
74 | USB20_HOST1_DM | |||
75 | SPKN_OUT | OUTPUT | ||
76 | USB30_OTG0_DP | |||
77 | HPL_OUT | OUTPUT | ||
78 | USB30_OTG0_DM | |||
79 | HP_SNS | 0 | ||
80 | VCC_1V8 | POWER OUTPUT | 1.8 | |
81 | HPR_OUT | OUTPUT | ||
82 | VDD_LDO9 | POWER OUTPUT | 0.6~3.4 | |
83 | GND | 0 | ||
84 | VCCSYS_SW1 | POWER OUTPUT | 5 | |
85 | MIC2_IN | INPUT | ||
86 | VCCSYS_SW1 | POWER OUTPUT | 5 | |
87 | MIC1_IN | INPUT | ||
88 | GND | 0 | ||
89 | GND | 0 | ||
90 | GND | 0 | ||
91 | RESETn | (PU10K) | 1.8 | |
92 | PWEN | (PU10K) | 5 | |
93 | PMIC_PWRON | 5 | ||
94 | VCC_SYS | POWER INPUT | 5 | |
95 | VCC_SYS | 5 | ||
96 | VCC_SYS | 5 | ||
97 | VCC_SYS |
POWER INPUT | 5 | |
98 | VCC_SYS | 5 | ||
99 | VCC_SYS | 5 | ||
100 | VCC_SYS | 5 |
Development Board (EM3562)
Hardware Design Guide
Peripheral Circuit Reference










TP2855
Product Electrical Characteristics
Dissipation and Temperature
Symbol | Parameter | Min | Typ | Max | Unit |
VCC_SYS | System IO Voltage | 3.4V | 5 | 5.5 | V |
Isys_in | VCC_SYS input Current | 3000 | mA | ||
VCC_RTC | RTC Voltage | 1.8 | 3 | 3.4 | V |
Iirtc | RTC input Current | 0.25 | 8 | uA | |
I3v3_out | VCC_3V3 output Current | 500 | mA |
Symbol | Parameter | Min | Typ | Max | Unit |
I1v8_out | VCC_1V8 output Current | 500 | mA | ||
VCCSYS_SW1 | output Current | 1500 | mA | ||
VDD_LDO9 | 0.6V~3.4V output Current | 400 | mA | ||
Ta | Operating Temperature | 0 | 70 | °C | |
Tstg | Storage Temperature | -40 | 85 | °C |
Reliability of Test
High-Temperature Operating Test | ||
Contents | Operating 8h in high-temperature | 55°C±2°C |
Result | TBD |
Operating Life Test | ||
Contents | Operating in room | 120h |
Result | TBD |
Specifications
- Support 1-channel MIPI_DSI or LVDS
- RGB video output interface
- BT.656/BT.1120 video output interface
- 2-channel I2S interface
- 1-channel SPDIF
- 2-channel digital DAC Analog
Frequently Asked Questions (FAQ)
Q: How do I update the firmware of MINI3562?
A: For firmware updates, please visit our website at www.armdesigner.com for the latest updates and instructions.
Q: What is the maximum resolution supported by the RGB video output interface?
A: The RGB video output interface supports resolutions up to 2048×1080@60Hz.
Documents / Resources
![]() | BOARDCON MINI3562 System On Module [pdf] User Manual MINI3562, MINI3562 System On Module, System On Module, Module |