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ADCLK914BCPZ
+NomenclatureADI 1:1 ECL, 3 Gbpps CLOCK/DATA BUFFERS
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FabricantÉquipement de simulation
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Pièce fabricant #ADCLK914BCPZ
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En stock9494
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Spécifications
| Attribut | Valeur |
| Packaging | Reel |
| StandardPackQty | 1500 |
Présentation
Description
Key features of the ADCLK914BCPZ include low output skew, low power consumption, and the ability to drive multiple outputs with minimal signal degradation. Its robust design makes it ideal for use in data conversion, communication systems, instrumentation, and test equipment where reliable clock distribution is crucial. The compact size and surface-mount packaging facilitate easy integration into various circuit designs.
Overall, the ADCLK914BCPZ offers a versatile solution for engineers and designers looking to implement efficient clock distribution in high-performance electronic systems.
Equivalent
Features
1. High Frequency Operation: Supports very high frequencies, enabling it to work efficiently in fast digital communication systems.
2. Low Jitter: Exhibits ultra-low jitter, crucial for maintaining signal integrity in high-speed data transfer, making it suitable for precision clocking applications.
3. Multiple Outputs: Provides multiple clock outputs, which can be used for distributing a reference clock to multiple components within a system.
4. Wide Operating Temperature Range: Ensures reliability in various environmental conditions, suitable for industrial applications.
5. Low Power Consumption: Designed to consume minimal power which is beneficial for energy-efficient systems.
6. Package Type: Comes in a compact package, facilitating integration into space-constrained designs.
These features make the ADCLK914BCPZ an excellent choice for applications requiring precise clock distribution and low noise performance.
Pinout
The primary function of the ADCLK914 is to distribute a high-speed clock signal to multiple outputs with minimal added jitter, making it ideal for use in data conversion, communications, and instrumentation systems where precise timing is crucial. It typically supports differential signaling standards, such as LVDS, for improved noise immunity and signal integrity.
For detailed specifications, always refer to the official datasheet provided by the manufacturer.
Manufacturer
Application
1. Data Communications: Ensures synchronization in high-speed network equipment.
2. Instrumentation: Used in test and measurement devices for accurate timing.
3. Wireless Infrastructure: Supports stable clock distribution in base stations.
4. Medical Imaging: Provides precise timing in imaging systems.
5. Radar Systems: Enhances performance in defense and aerospace applications.
Its ability to provide low skew and low additive jitter makes it ideal for these high-performance, timing-critical applications.