By selecting the appropriate photo transistor type, optimizing the circuit design, using auxiliary measures to improve the photoelectric response, and paying attention to selection and testing
By selecting the appropriate photo transistor type, optimizing the circuit design, using auxiliary measures to improve the photoelectric response, and paying attention to selection and testing
With the rapid development of modern wireless communication technology, the demand for SMD receivers in high-frequency applications is growing.
In modern scientific and technological applications, infrared receiver module, as an important electronic component, is widely used in remote control, smart home, industrial automation and other fields.
The performance of infrared receiver modules in strong light environments is a key indicator that directly affects their application effects in outdoor or high-brightness scenes.
The power management of SMD receivers is very suitable for equipment that runs for a long time. Through low-power design, multiple working modes, intelligent power management
The bandwidth limitation of photo transistors is also an important issue in high-speed data transmission.