Clock/Timing - Clock Generators, PLLs, Frequency Synthesizers

Image Part Number Description / PDF Quantity Rfq
CY22389FZXC

CY22389FZXC

Rochester Electronics

QUAD PLL CLOCK GENERATOR

2656

CY22392ZC-347

CY22392ZC-347

Rochester Electronics

PROGRAMMABLE PLL CLOCK GENERATOR

1596

CY22388ZXC-26T

CY22388ZXC-26T

Rochester Electronics

CLOCKS

2500

IMIC9851BYT

IMIC9851BYT

Rochester Electronics

LOW SKEW CLOCK GENERATOR

980

CY28159ZC

CY28159ZC

Rochester Electronics

PROCESSOR SPECIFIC CLOCK GENERAT

148

CY22381SXC-160

CY22381SXC-160

Rochester Electronics

TRIPLE PLL CLOCK MULTIPLIER

7161

CY25103SXC-2

CY25103SXC-2

Rochester Electronics

CLOCK GENERATOR

9989

CG6233AS

CG6233AS

Rochester Electronics

CLOCK GENERATOR, 27MHZ, CMOS

190

CY2273APVC-4

CY2273APVC-4

Rochester Electronics

CLOCK GENERATOR

322

CY2X014LXC012T

CY2X014LXC012T

Rochester Electronics

CLOCKS

14988

CY2220PVC-1

CY2220PVC-1

Rochester Electronics

CLOCK GENERATOR

296

CY22392ZC-337

CY22392ZC-337

Rochester Electronics

PROGRAMMABLE PLL CLOCK GENERATOR

813

CY2292SC-833

CY2292SC-833

Rochester Electronics

PROGRAMMABLE PLL CLOCK GENERATOR

771

PY2292SC-492

PY2292SC-492

Rochester Electronics

CLOCKS

0

IMIXG571CTB

IMIXG571CTB

Rochester Electronics

CLOCK GENERATOR

1244

CY24212SZC-5

CY24212SZC-5

Rochester Electronics

CLOCK GENERATOR

3117

W129AGT

W129AGT

Rochester Electronics

CLOCK GENERATOR

10000

CY22393ZXC-551

CY22393ZXC-551

Rochester Electronics

CLOCKS

9934

CY2292SXL-677

CY2292SXL-677

Rochester Electronics

PROGRAMMABLE PLL CLOCK GENERATOR

1400

CY28381OC

CY28381OC

Rochester Electronics

PROCESSOR SPECIFIC CLOCK GENERAT

971

Clock/Timing - Clock Generators, PLLs, Frequency Synthesizers

1. Overview

Clock and timing ICs are semiconductor devices that generate, regulate, and distribute timing signals in electronic systems. Key components include Clock Generators (produce stable clock signals), Phase-Locked Loops (PLLs, synchronize signals with phase alignment), and Frequency Synthesizers (generate precise frequencies from reference signals). These devices ensure synchronization across components in modern electronics, enabling reliable operation in communication systems, computing devices, and industrial equipment.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Clock GeneratorsProduce fixed or programmable clock signals with low jitterMicroprocessors, FPGAs, networking equipment
PLLsAlign output signal phase with reference input, enable frequency multiplicationWireless transceivers, data recovery circuits
Frequency SynthesizersGenerate multiple frequencies from single reference with high precision5G base stations, satellite communication systems

3. Structure and Components

Typical clock ICs feature: 1) Crystal oscillator interface for reference signal input; 2) Internal voltage-controlled oscillator (VCO); 3) Phase detector and loop filter (PLL components); 4) Programmable dividers; 5) Output buffers. Advanced packages include QFN (4x4mm to 8x8mm) and TSSOP with 8-48 pins. Integration levels vary from single-channel devices to multi-output clock generators with integrated EEPROM.

4. Key Technical Specifications

ParameterTypical RangeImportance
Frequency Range1 kHz - 3.6 GHzDetermines application compatibility
Phase Noise-150 to -120 dBc/HzImpacts signal integrity
Jitter (RMS)50 fs - 1 psCritical for high-speed systems
Power Consumption10-300 mAAffects thermal design
Temperature Stability 20-100 ppmEnsures reliability in harsh environments

5. Application Fields

  • Telecommunications: 5G NR base stations, optical transceivers
  • Computing: Server motherboards, PCIe clocks
  • Industrial: Precision test equipment, motor control systems
  • Automotive: ADAS sensors, infotainment systems
  • Medical: MRI imaging systems, patient monitoring devices

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
TI (Texas Instruments)LMX259415-GHz wideband PLL with integrated VCO
Analog DevicesAD95484-channel clock generator with 0.1 ppb accuracy
STMicroelectronicsCLK2692Programmable 2-output synthesizer for automotive
MicrochipZL30264High-performance network synchronizer

7. Selection Guidelines

Key selection criteria: 1) Required output frequency and voltage levels; 2) Acceptable phase noise/jitter specifications; 3) Number of required outputs; 4) Operating temperature range; 5) Power budget constraints; 6) Integration level (e.g., single-chip vs. discrete VCO solutions). For wireless applications, prioritize low phase noise. For portable devices, emphasize power efficiency.

8. Industry Trends

Future developments include: 1) Higher integration with on-chip EEPROM and multi-phase outputs; 2) Advancement to sub-10fs jitter performance; 3) Development of radiation-hardened variants for aerospace; 4) Adoption of 3D packaging for reduced EMI; 5) Increased use of AI-enabled dynamic frequency scaling. The market is projected to grow at 7.2% CAGR through 2027 driven by 5G and automotive electrification.

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