CDCLVC1104PW
LVCMOS clock buffer with low jitter characteristicsCDCLVC1104PW
LVCMOS clock buffer with low jitter characteristics
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Manufacturer Part # : CDCLVC1104PW
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Package/Case: TSSOP-8
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Brand: Texas Instruments
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Product Categories : Clock Buffers, Drivers
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Series : CDCLVC1104
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Shipping & Payment
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Service & Packaging
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About After Sales Service
All Parts Extended Quality Guarantee
Initiate the application within 90 days from the shipment date.
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CDCLVC1104PW DataSheet
Current price plan is under preparation. Please contact our customer service team for the latest pricing information. Thank you for your understanding and support!
Interested Parts
CDCLVC1104PW Details
With its modular design, superior performance characteristics, and wide operating temperature range, the CDCLVC11xx family of clock buffers is a reliable and adaptable solution for demanding clock distribution requirements in electronic systems. Its versatility and compatibility make it a convenient choice for designers seeking high performance and flexibility in their clock distribution designs
Key Features
- Low-Voltage Differential Signaling
- Precision Clock Distribution
- Compact Design for PCB Space Optimization
Application
- Advanced technology for speed
- Reliable in critical systems
- Efficient signal distribution
Specifications
The followings are basic parameters of the part selected concerning the characteristics of the part and categories it belongs to.
Function | Single-ended | Additive RMS jitter (typ) (fs) | 70 |
Output frequency (max) (MHz) | 250 | Number of outputs | 4 |
Output supply voltage (V) | 2.5, 3.3 | Core supply voltage (V) | 2.5, 3.3 |
Output skew (ps) | 50 | Features | 1:4 fanout, Output enable control |
Operating temperature range (°C) | -40 to 85 | Rating | Catalog |
Output type | LVCMOS | Input type | LVCMOS |
Datasheet PDF
Datasheets record the features, absolute maximum ratings, applications and more of the device, which benefit a lot as an overall guide to the specific application of the part.
FAQs
What is CDCLVC1104PW?
The CDCLVC1104PW is a quad low-voltage clock buffer/driver designed by Texas Instruments. It is specifically designed for clock distribution in high-performance digital systems where low skew, low jitter, and fanout expansion are critical.
How Does CDCLVC1104PW Work?
The CDCLVC1104PW operates by buffering and driving clock signals to multiple output channels with low skew and low jitter characteristics. It takes a single input clock signal and replicates it across four output channels while maintaining precise timing alignment. The device ensures that all output clocks are synchronized and have minimal timing variations.
How Many Pins does CDCLVC1104PW have and What are the Functions of the Pinout Configuration?
The CDCLVC1104PW is housed in a 14-pin TSSOP (Thin Shrink Small Outline Package) package. The pinout configuration includes:
- GND: Ground pin.
- PD: Power-down input pin.
- CLKin: Clock input pin.
- Y0, Y1, Y2, Y3: Clock output pins for the four channels.
- VCC: Power supply pin.
What are the Pros and Cons of CDCLVC1104PW?
Pros:
- Low Skew: Ensures precise alignment of clock signals across multiple channels.
- Low Jitter: Minimizes timing variations for improved system performance.
- High Fanout: Supports fanout expansion for distributing clock signals to multiple devices.
- Wide Operating Voltage Range: Compatible with low-voltage systems for flexible integration.
- Robust Design: Provides reliable clock distribution in high-performance digital systems.
Cons:
- Complex Configuration: May require careful consideration of output loading and termination for optimal performance.
- Power Consumption: Consumes power even in power-down mode when not operational.
- Package Size: The 14-pin TSSOP package may be relatively small and require careful handling during assembly.
Are There Any Equivalents/Alternatives to CDCLVC1104PW for Recommendation?
- The CY2309 from Cypress Semiconductor is a comparable quad clock buffer/driver with similar features.
- Alternatives to the CDCLVC1104PW include the MC10E131 from ON Semiconductor and the SY100EPT20VZG from Microchip Technology.
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Price details
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