Clock/Timing - Clock Buffers, Drivers

Image Part Number Description / PDF Quantity Rfq
CDCLVD2108RGZR

CDCLVD2108RGZR

Texas Instruments

IC CLK BUFFER 1:8 800MHZ 48VQFN

0

CDC328DR

CDC328DR

Texas Instruments

LOW SKEW CLOCK DRIVER

20000

CDCLVP2108RGZT

CDCLVP2108RGZT

Texas Instruments

CDCLVP2108 LOW JITTER, DUAL 1:8

7000

CDCV304PW

CDCV304PW

Texas Instruments

IC CLK BUFFER 1:4 200MHZ 8TSSOP

29539900

CDCLVC1106PWR

CDCLVC1106PWR

Texas Instruments

IC CLK BUFFER 1:6 250MHZ 14TSSOP

0

CDC340DW

CDC340DW

Texas Instruments

CDC340 1-TO-8 CLOCK DRIVER WITH

16512

CDC1104RVKR

CDC1104RVKR

Texas Instruments

IC CLK BUFFER 1:4 120HZ 12WQFN

0

CDCM1802RGTTG4

CDCM1802RGTTG4

Texas Instruments

IC CLK BUFFER 1:2 800MHZ 16QFN

0

LMK1C1103PWR

LMK1C1103PWR

Texas Instruments

LVCMOS BUFFER 3-CHANNEL

1084

CDCLVP2108RGZR

CDCLVP2108RGZR

Texas Instruments

IC CLK BUFFER 1:16 2GHZ 48VQFN

0

CDCL1810ARGZT

CDCL1810ARGZT

Texas Instruments

CDCL1810A 1.8V 1-TO-10 HIGH PERF

14250

CDC2351QDB

CDC2351QDB

Texas Instruments

CDC2351-Q1 AUTOMOTIVE 1-LINE TO

16055

LMK00725PW

LMK00725PW

Texas Instruments

IC CLK BUF 2:5 650MHZ 20TSSOP

142

LMK00105SQE/NOPB

LMK00105SQE/NOPB

Texas Instruments

IC CLK BUFFER 2:5 200MHZ 24WQFN

745

CDCLVP2106RHAT

CDCLVP2106RHAT

Texas Instruments

IC CLK BUFFER 1:12 2GHZ 40VQFN

532

LMK1C1102PWR

LMK1C1102PWR

Texas Instruments

LVCMOS BUFFER 2-CHANNEL

1712

CDC391D

CDC391D

Texas Instruments

IC CLK BUFFER 1:6 100MHZ 16SOIC

73

LMK00301SQX/NOPB

LMK00301SQX/NOPB

Texas Instruments

IC CLK BUFFER 3:10 3.1GHZ 48WQFN

0

CDCLVD2108RGZT

CDCLVD2108RGZT

Texas Instruments

IC CLK BUFFER 1:8 800MHZ 48VQFN

539

DS90LV110ATMT/NOPB

DS90LV110ATMT/NOPB

Texas Instruments

IC CLK BUF 1:10 200MHZ 28TSSOP

321

Clock/Timing - Clock Buffers, Drivers

1. Overview

Clock buffers and drivers are integrated circuits (ICs) designed to distribute clock signals in electronic systems. They amplify, condition, and route timing signals to multiple destinations while minimizing skew, jitter, and signal degradation. These components are critical in synchronizing operations across processors, memory modules, communication interfaces, and other timing-sensitive circuits. Their importance spans industries such as telecommunications, automotive, and high-performance computing.

2. Main Types and Functional Classification

Type Functional Characteristics Application Examples
Clock Buffers Single-input, multiple-output devices with low phase noise and skew CPU clock distribution, FPGA systems
Clock Drivers High-drive capability for fan-out applications Networking switches, server motherboards
Differential Clock Buffers Supports LVDS, HCSL, and CML signal types High-speed ADC/DAC systems, RF transceivers
Programmable Clock Buffers Configurable output frequency/division ratios Industrial automation, test equipment

3. Structure and Composition

Clock buffers/drivers typically consist of:

  • Input receivers (single-ended or differential)
  • Internal amplification stages
  • Output drivers with controlled impedance
  • Power supply decoupling structures
  • Thermal management pads (in QFN/SSOP packages)
They are fabricated using CMOS, Bipolar, or SiGe processes to optimize speed and noise performance.

4. Key Technical Specifications

Parameter Description Importance
Max Operating Frequency Up to 1.2 GHz (CMOS), 3.2 GHz (SiGe) Determines application suitability for high-speed systems
Additive Phase Jitter 0.05 ps RMS to 1 ps RMS Impacts timing precision in data converters
Propagation Delay 50 ps to 5 ns Critical in synchronized multi-channel systems
Output Voltage Levels LVCMOS, LVDS, HSTL, etc. Ensures compatibility with downstream circuits
Supply Voltage 1.8V to 5V Affects power consumption and integration

5. Application Areas

  • Telecommunications: 5G base stations, optical transceivers
  • Computing: Servers, workstations, high-end PCs
  • Industrial: PLCs, motor controllers, test instruments
  • Automotive: ADAS clock synchronization, infotainment systems
Case Study: In 5G massive MIMO systems, low-jitter clock drivers ensure phase coherence across 64+ antenna elements.

6. Leading Manufacturers and Products

Manufacturer Representative Product Key Specifications
TI (Texas Instruments) CDCE62005 3.2 GHz LVDS driver, 0.1 ps RMS jitter
Analog Devices ADCLK846 16-output clock buffer, 1.6 GHz bandwidth
STMicroelectronics DF1610S 1.8V/3.3V dual supply buffer, 8 outputs
ON Semiconductor MC100EP195 Differential ECL buffer, 2.5 GHz operation

7. Selection Recommendations

Key considerations:

  • Match output type to receiver requirements (LVDS/CML/LVCMOS)
  • Calculate required fan-out capacity with voltage margin
  • Specify jitter budget (e.g., <0.3 ps RMS for 10 Gbps SerDes)
  • Consider temperature stability (-40 C to +125 C automotive grade)
  • Optimize package size vs. thermal dissipation needs

8. Industry Trends

Future developments include:

  • Sub-100 fs jitter performance using advanced CMOS processes
  • Integration with PLL/VCO for clock generation
  • Multi-die packaging for hybrid signal conditioning
  • Energy-efficient designs for battery-powered IoT devices
  • Automotive-grade ICs with AEC-Q100 qualification

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