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Electronic circuit design

 

The electronic circuit research and development team is proficient in the selection of complex components and perfect PCB layout, which can quickly create high-performance electronic circuits, ensure the reliable operation of products in complex environments, and meet the various customized needs of customers.

 

 

Embedded development

 

Our R&D team provides you with system solutions and electronic circuit development for multiple platforms such as ARM, STM32, RISC-V, BSP low-level development services, various embedded system customization and optimization low-level software support packages to ensure good collaboration between hardware and software.
The team has full stack development capabilities from system architecture design, bottom drive development, to upper application programming, and can provide you with overall solutions for a variety of products such as intelligent terminals, wearable devices, and portable devices.

Function module design

 

With R & D team, we are good at customizing modules according to the specific needs of customers, and flexibly adjusting the functions and parameters to suit the actual application scenarios. Rigorous testing of each module to provide customers with more superior solutions.

Hardware design

Program control automation module design

 

The electronic circuit research and development team is proficient in the selection of complex components and perfect PCB layout, which can quickly create high-performance electronic circuits, ensure the reliable operation of products in complex environments, and meet the various customized needs of customers.

Structural strength and vibration simulation

 

Analyze the stress, strain and deformation of hardware shell, bracket and other structures subjected to external force or vibration. Ensure that the structure can withstand various loads during transportation, installation and use to avoid failures caused by structural failure.

Engineering simulation

Circuit simulation

 

Perform simulation and analysis of circuit design to verify circuit function and performance.

Signal integrity simulation

 

Analyze the integrity of the signal transmission in the hardware circuit to avoid signal distortion and interference. Through engineering simulation, designers can evaluate and optimize hardware product design more quickly and accurately, and improve product performance and reliability.

Electromagnetic compatibility simulation

 

Assess electromagnetic radiation and interference inside and outside of hardware devices. Through simulation, the propagation and coupling of electromagnetic signals are predicted, and circuit board wiring and shielding design are optimized to reduce electromagnetic interference and ensure the normal coexistence of hardware and other electronic devices.

Thermal simulation

 

Computer hardware generates a lot of heat when it is running. Heat dissipation simulation simulates the temperature distribution of components, such as chips, circuit boards, and chassis, and optimizes the layout and design of heat dissipation fins and fans to ensure that hardware runs within the normal operating temperature range, preventing performance degradation or damage caused by overheating.

Thermal mechanical reliability simulation

 

Consider the effect of temperature changes on the thermal expansion and contraction of hardware materials, evaluate the reliability and life of components such as solder joints and connectors, and prevent connection failures due to thermal cycling.