The AVP32F379QP176 development board is an evaluation and prototype development platform based on the AVP32F379QP176 high-performance real-time control chip, equipped with high-capacity on-chip storage and high-precision control peripherals; On board differential ADC sampling front-end, CAN bus interface, and orthogonal encoder interface, with full IO pin output and support for multiple BOOT boot modes, can quickly complete scheme verification and product development in high-performance servo drive, industrial automation, high-precision signal acquisition and other scenarios.

The AVP32F00157QP80 development board is a learning and secondary development platform based on the AVP32F00157QP80 chip. It can be directly embedded into users' product development process as a functional board, greatly reducing the development cycle. Onboard 2-channel orthogonal encoder interface, equipped with industrial communication peripherals such as CAN, LIN, I2C, etc., paired with on-chip high-speed ADC and high-resolution PWM, with full IO pin output and support for multiple BOOT boot modes, can meet the development needs of high reliability industrial drivers, automotive electronics, and other multiple scenarios.

The AVP32F0039 development board is a learning and secondary development platform based on the AVP32F0039 chip, which can be directly embedded into the user's product development process as a functional board, greatly reducing the development cycle. The chip adopts A200032 bit floating-point architecture, with a main frequency of 120MHz. It integrates programmable control accelerator and rich control peripherals, analog resources, and is suitable for various scenarios such as motor drive, industrial control, sensor acquisition, etc; Onboard standard debugging interface, full IO port pin out, supports multiple BOOT boot modes, facilitating users to quickly carry out scheme verification and secondary development.

The ADM32F036A7Q low-voltage motor evaluation board is a dual motor development platform based on the ADM32F036A7Q chip. It integrates two independent drive paths on a single chip, which can meet the requirements of dual sensing/non sensing FOC (single and dual resistors) and sensing/non sensing square wave independent debugging. The dual LIN transceiver integrated into the chip enables users to easily and cost effectively achieve dual LIN communication functions; Onboard dual channel CANFD transceiver, which can also achieve dual channel CANFD communication function; Support offline burning and adapt to multi scenario burning requirements.

The ADM32F036A6Q low-voltage motor evaluation board is a motor development platform based on the ADM32F036A6Q chip, which can meet the needs of users for sensing/non sensing FOC (single resistor sampling) and sensing/non sensing square wave debugging. At the same time, the LIN transceiver integrated into the chip allows users to easily and cost effectively implement LIN communication functions; Onboard CANFD transceiver can also achieve CANFD communication function; Support offline burning and adapt to multi scenario burning requirements.

The ADM32F036A5Q low-voltage motor evaluation board is a motor development platform based on the ADM32F036A5Q chip, which can meet the needs of users for sensing/non sensing FOC (single and dual resistors) and sensing/non sensing square wave debugging. At the same time, the LIN transceiver integrated into the chip allows users to easily and cost effectively implement LIN communication functions; Onboard CANFD transceiver can also achieve CANFD communication function; Support offline burning and adapt to multi scenario burning requirements.
