CY22801KSXC-019T belongs to the category of integrated circuits (ICs).
This product is commonly used in electronic devices for various applications.
CY22801KSXC-019T is available in a small surface mount package.
The essence of this product lies in its ability to provide precise timing and control signals in electronic systems.
Each package contains one CY22801KSXC-019T IC.
The pin configuration of CY22801KSXC-019T is as follows:
| Pin Number | Pin Name | Description | |------------|----------|-------------| | 1 | VDD | Power supply | | 2 | GND | Ground | | 3 | OUT | Output signal | | 4 | NC | Not connected |
CY22801KSXC-019T offers the following functional characteristics:
CY22801KSXC-019T is suitable for use in a wide range of electronic products, including but not limited to: - Consumer electronics - Communication devices - Industrial equipment - Automotive applications
This IC operates by generating a precise square wave signal with adjustable frequency and duty cycle. It utilizes internal oscillators and dividers to achieve accurate timing control.
CY22801KSXC-019T can be applied in various fields, such as: 1. Timing circuits in digital clocks 2. Frequency generation in communication systems 3. Synchronization in data transmission 4. Pulse width modulation in motor control 5. Clock signals for microcontrollers
Some alternative models to CY22801KSXC-019T include: - CY22800KSXC-018T - CY22802KSXC-020T - CY22803KSXC-021T - CY22804KSXC-022T - CY22805KSXC-023T
Q: What is the operating voltage range of CY22801KSXC-019T? A: The operating voltage is 3.3V.
Q: Can I adjust the duty cycle of the output signal? A: Yes, CY22801KSXC-019T allows you to adjust the duty cycle.
Q: What is the temperature range this IC can operate in? A: CY22801KSXC-019T can operate in temperatures ranging from -40°C to +85°C.
Q: Is the output signal of CY22801KSXC-019T a square wave? A: Yes, the output signal is a square wave.
Q: How does CY22801KSXC-019T achieve low jitter performance? A: This IC incorporates advanced circuitry and design techniques to minimize jitter in the output signal.
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