TSOP58233 is an infrared receiver module designed for remote control systems. This component falls under the category of electronic components and is commonly used in consumer electronics for receiving and decoding infrared signals from remote controls. The TSOP58233 is known for its high sensitivity, low power consumption, and compact package, making it suitable for various applications. It is typically available in a standard package with essential features and specifications.
The TSOP58233 module has a standard pin configuration as follows: 1. OUT: Output Pin 2. GND: Ground Pin 3. VS: Supply Voltage Pin
The TSOP58233 operates based on the principle of detecting modulated infrared signals. When exposed to infrared radiation at the carrier frequency of 33kHz, the module demodulates the signal and provides a corresponding output. This output can be further processed to decode the transmitted information, such as remote control commands.
The TSOP58233 is widely used in the following applications: - Television and home entertainment systems - Set-top boxes and media players - Air conditioning and heating units - Remote-controlled toys and gadgets - Industrial automation and control systems
For users seeking alternative infrared receiver modules, the following models can be considered: 1. TSOP4838 2. TSOP38238 3. TSOP31238 4. TSOP22338
In conclusion, the TSOP58233 infrared receiver module offers high sensitivity, low power consumption, and reliable performance, making it a popular choice for remote control systems in various consumer electronics and industrial applications.
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Sure, here are 10 common questions and answers related to the application of TSOP58233 in technical solutions:
What is TSOP58233?
What is the operating voltage range of TSOP58233?
What is the typical reception range of TSOP58233?
What is the carrier frequency of TSOP58233?
How does TSOP58233 filter out noise and interference?
Can TSOP58233 be used with different types of remote controls?
What is the output signal format of TSOP58233?
Is TSOP58233 suitable for battery-powered devices?
Can TSOP58233 be used in harsh environmental conditions?
Are there any specific design considerations when integrating TSOP58233 into a circuit?
I hope these questions and answers provide helpful information about the application of TSOP58233 in technical solutions. Let me know if you need further assistance!