PI6C2501AWE belongs to the category of integrated circuits (ICs).
The PI6C2501AWE IC is primarily used for clock generation and distribution in electronic devices.
The PI6C2501AWE is available in a small outline integrated circuit (SOIC) package.
The essence of PI6C2501AWE lies in its ability to generate and distribute accurate clock signals, ensuring synchronized operation of various components within electronic devices.
The PI6C2501AWE is typically packaged in reels or tubes, with a quantity of 2500 units per reel/tube.
The PI6C2501AWE features an 8-pin configuration as follows:
┌───┬───┐
│ 1 │ 2 │
├───┼───┤
│ 3 │ 4 │
├───┼───┤
│ 5 │ 6 │
├───┼───┤
│ 7 │ 8 │
└───┴───┘
Pin Description: 1. VDD: Power supply voltage 2. GND: Ground 3. OUT1: Clock output 1 4. OUT2: Clock output 2 5. OUT3: Clock output 3 6. OUT4: Clock output 4 7. CLKIN: Clock input 8. OE: Output enable
The PI6C2501AWE operates by taking an input clock signal (CLKIN) and generating four independent clock outputs (OUT1 to OUT4). The output frequencies can be programmed using external resistors and capacitors. The IC also provides an output enable (OE) pin for controlling the activation of the clock outputs.
The PI6C2501AWE finds applications in various electronic devices that require precise clock synchronization, such as:
These alternative models offer similar functionalities to the PI6C2501AWE and can be considered as alternatives based on specific requirements.
In conclusion, the PI6C2501AWE is a versatile clock generator and distributor IC that provides high precision, stability, and programmability. Its compact size and low power consumption make it suitable for various electronic applications requiring synchronized operation.
Question: What is the PI6C2501AWE?
Answer: The PI6C2501AWE is a programmable clock generator and buffer designed for use in various technical solutions.
Question: What are the key features of the PI6C2501AWE?
Answer: The key features of the PI6C2501AWE include programmable outputs, low jitter performance, wide frequency range, and compatibility with different voltage levels.
Question: How can I program the outputs of the PI6C2501AWE?
Answer: The PI6C2501AWE can be programmed using an I2C interface or by configuring the device through hardware pins.
Question: What is the frequency range supported by the PI6C2501AWE?
Answer: The PI6C2501AWE supports a wide frequency range from a few kilohertz to several hundred megahertz.
Question: Can the PI6C2501AWE generate multiple clock signals simultaneously?
Answer: Yes, the PI6C2501AWE can generate multiple clock signals simultaneously, making it suitable for applications requiring multiple synchronized clocks.
Question: Is the PI6C2501AWE compatible with different voltage levels?
Answer: Yes, the PI6C2501AWE supports a wide range of voltage levels, making it versatile for integration into various technical solutions.
Question: Does the PI6C2501AWE provide low jitter performance?
Answer: Yes, the PI6C2501AWE is designed to provide low jitter performance, ensuring accurate and reliable clock signals.
Question: Can the PI6C2501AWE be used in battery-powered devices?
Answer: Yes, the PI6C2501AWE has low power consumption and can be used in battery-powered devices, making it suitable for portable applications.
Question: Are there any evaluation boards or development kits available for the PI6C2501AWE?
Answer: Yes, the manufacturer provides evaluation boards and development kits to facilitate the integration and testing of the PI6C2501AWE in technical solutions.
Question: What are some typical applications of the PI6C2501AWE?
Answer: The PI6C2501AWE can be used in various applications such as telecommunications equipment, networking devices, industrial automation, and consumer electronics where accurate clock generation is required.