APS

APS

APS: Empowering the World with Cutting-Edge Power Electronics APS, a leading name in power electronics, is revolutionizing the industry with its advanced range of high-power electronic components and controls. Our commitment to excellence drives us to deliver superior solutions for high performance, high precision, and highly reliable power systems. Our extensive product portfolio encompasses a diverse array of products tailored to meet the specific needs of our customers. These include AC/DC converters, AC phase controllers, high power rectifier bridges, power semiconductor assemblies, SCR firing boards, snubber boards, IGBT, SiC and MOSFET gate driver circuits, high power inverters, IGBT PowerStacks, battery chargers, motor drives, and motor brakes. At APS, we strive to provide our customers with cutting-edge technologies that empower their operations. Our AC/DC converters ensure efficient conversion of power, enabling seamless integration into various applications. The AC phase controllers offer precise control over power delivery, ensuring optimal performance in critical systems. When it comes to high-powered rectifier bridges, our products excel at converting AC power to DC power with utmost reliability. We also offer power semiconductor assemblies that combine robustness and efficiency to handle demanding power system requirements. Our SCR firing boards and snubber boards enable precise control of power switching, minimizing losses and ensuring system stability. Additionally, our IGBT, SiC, and MOSFET gate driver circuits provide the necessary drive and protection for power semiconductor devices. For those in need of high-power inverters, APS offers solutions that deliver exceptional performance and reliability. Our IGBT PowerStacks are designed to handle the most demanding power conversion applications with ease. To address the growing demand for efficient energy storage, our battery chargers offer fast and reliable charging solutions. Furthermore, our motor drives and motor brakes provide precise control over motor operations, enhancing overall system efficiency. At APS, we prioritize customer satisfaction by delivering innovative and dependable power electronic solutions. With our state-of-the-art products, we empower industries worldwide to achieve new levels of performance, efficiency, and reliability. Choose APS as your trusted partner in power electronics and experience the driving force that propels your success.

Expansion Boards, Daughter Cards

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About  Expansion Boards, Daughter Cards

Evaluation and expansion boards, along with daughter cards, serve as essential tools for enhancing the functionality of microcontroller platforms. These boards are specifically engineered to seamlessly stack onto existing pin headers or preconfigured attachment ports, allowing for convenient integration of additional features and capabilities into the microcontroller-based systems. These expansion boards and daughter cards come in a variety of types, each offering specific functions to cater to diverse application requirements. Common categories of functionality include: Amplifiers: These boards provide additional amplification capabilities for signal processing and conditioning, enabling the microcontroller platform to interface with various sensors and actuators. Atomizers: Designed for applications requiring atomization or vaporization, these boards offer support for atomizer control and management, often used in electronic cigarette devices and other atomization-related applications. Audio: Boards dedicated to audio functionality, including audio input/output, sound processing, and audio signal manipulation, expanding the microcontroller's capabilities for audio-related applications. Clock Timing: These boards provide precise clock timing and synchronization features, ensuring accurate timing and clock signals for synchronous digital system operations. Interface Connectivity: Offering additional interfaces such as USB, Ethernet, CAN bus, and other communication protocols, these boards enable expanded connectivity options for the microcontroller platform. Data Acquisition/Logging: Designed for data acquisition and logging applications, these boards facilitate the capture, storage, and retrieval of analog or digital data from external sources. Display: These boards support various display technologies, including LCD, OLED, and LED displays, enhancing the microcontroller platform's ability to present visual information. Human Interface: Boards focused on human-machine interface (HMI) functionality, incorporating components such as touchscreens, keypads, and other input/output devices for user interaction. Memory: Providing additional non-volatile memory storage options, these boards expand the data storage capabilities of the microcontroller platform. Motor Drivers: Dedicated to motor control and driving applications, these boards enable the microcontroller to interface with and control different types of motors, including DC motors, stepper motors, and servo motors. Optoelectronics: Supporting various optoelectronic components such as LEDs, photodetectors, and optical sensors, these boards enhance the microcontroller's optical sensing and light emission capabilities. Power Management: Focused on power supply and management functions, these boards provide voltage regulation, power conversion, and energy-efficient power management solutions for the microcontroller platform. Prototyping: Offering prototyping and expansion capabilities, these boards provide a platform for rapid development and testing of new electronic circuits and functionalities. Relay and Transistors: Boards designed for switching and control applications, incorporating relays, transistors, and other switching components for interfacing with external electrical devices. RF and Sensor Arrays: Supporting radio frequency (RF) communication and sensor arrays, these boards enable wireless connectivity and sensor integration with the microcontroller platform. By leveraging these evaluation and expansion boards, engineers and developers can enhance the functionality and versatility of microcontroller platforms across a wide range of applications. Whether adding communication interfaces, sensor inputs, display capabilities, or specialized control functions, these boards play a crucial role in expanding the potential of microcontroller-based systems, empowering users to develop innovative and feature-rich embedded solutions.