The FDMC86262P is a high-performance, fully integrated 6-channel digital micromirror device (DMD) driver from ON Semiconductor. This device is specifically designed to drive Texas Instruments' Digital Micromirror Device (DMD), which is a key component in various applications such as digital projection, 3D printing, and optical switching.
Description:
The FDMC86262P is a highly integrated, low-power, and high-precision driver IC that provides the necessary control signals to operate the DMD. It features a serial interface for easy communication with a host processor and supports various control modes, including synchronous and asynchronous operation.
Features:
- 6-channel architecture for driving a TI DMD
- Serial interface for communication with a host processor
- Synchronous and asynchronous control modes
- Precise timing control for optimal DMD performance
- Low power consumption for extended battery life in portable applications
- Integrated protection circuits for reliable operation
- Small form factor for easy integration into compact systems
- Wide operating temperature range for use in various environments
Applications:
- Digital projection systems: Used in projectors for home theater, business presentations, and large venue displays.
- 3D printing: Employed in selective laser sintering (SLS) and stereolithography (SLA) 3D printers for precise layer-by-layer fabrication.
- Optical switching: Utilized in optical cross-connect systems for routing and switching optical signals in telecommunications networks.
- Pico projectors: Integrated into portable devices like smartphones and tablets for on-the-go projection capabilities.
- Medical imaging: Used in optical coherence tomography (OCT) systems for high-resolution, non-invasive imaging of biological tissues.
- Security systems: Employed in LIDAR and other laser-based detection systems for surveillance and threat detection.
The FDMC86262P is a versatile and reliable driver IC that enables the efficient and precise control of DMDs in a wide range of applications. Its compact design, low power consumption, and robust feature set make it an ideal choice for designers looking to incorporate advanced digital micromirror technology into their systems.