Oscillators

Image Part Number Description / PDF Quantity Rfq
C3391-155.520

C3391-155.520

Crystek Corporation

XTAL OSC XO 155.5200MHZ HCMOS

0

C3292-1.544

C3292-1.544

Crystek Corporation

XTAL OSC XO 1.5440MHZ HCMOS TTL

0

C3391-7.372800

C3391-7.372800

Crystek Corporation

XTAL OSC XO 7.3728MHZ HCMOS SMD

0

C3291-24.000

C3291-24.000

Crystek Corporation

XTAL OSC XO 24.0000MHZ HCMOS TTL

0

CE3390-40.000

CE3390-40.000

Crystek Corporation

XTAL OSC XO 40.0000MHZ HCMOS SMD

0

CE3390-35.000

CE3390-35.000

Crystek Corporation

XTAL OSC XO 35.0000MHZ HCMOS SMD

0

CE3291-12.288

CE3291-12.288

Crystek Corporation

XTAL OSC XO 12.2880MHZ HCMOS TTL

0

CE3291-14.318180

CE3291-14.318180

Crystek Corporation

XTAL OSC XO 14.31818MHZ HCMOS

0

C3290-24.704

C3290-24.704

Crystek Corporation

XTAL OSC XO 24.7040MHZ HCMOS TTL

0

CE3390-4.000

CE3390-4.000

Crystek Corporation

XTAL OSC XO 4.0000MHZ HCMOS SMD

0

C3290-80.000

C3290-80.000

Crystek Corporation

XTAL OSC XO 80.0000MHZ HCMOS TTL

0

C3292-66.666600

C3292-66.666600

Crystek Corporation

XTAL OSC XO 66.6666MHZ HCMOS TTL

0

CE3292-6.176

CE3292-6.176

Crystek Corporation

XTAL OSC XO 6.1760MHZ HCMOS TTL

0

C3292-30.000

C3292-30.000

Crystek Corporation

XTAL OSC XO 30.0000MHZ HCMOS TTL

0

C3291-32.000

C3291-32.000

Crystek Corporation

XTAL OSC XO 32.0000MHZ HCMOS TTL

0

C3392-51.840

C3392-51.840

Crystek Corporation

XTAL OSC XO 51.8400MHZ HCMOS SMD

0

C3392-18.432

C3392-18.432

Crystek Corporation

XTAL OSC XO 18.4320MHZ HCMOS SMD

0

CE3292-33.333

CE3292-33.333

Crystek Corporation

XTAL OSC XO 33.3330MHZ HCMOS TTL

0

CE3390-33.000

CE3390-33.000

Crystek Corporation

XTAL OSC XO 33.0000MHZ HCMOS SMD

0

CE3392-44.736

CE3392-44.736

Crystek Corporation

XTAL OSC XO 44.7360MHZ HCMOS SMD

0

Oscillators

1. Overview

Oscillators are electronic components that generate stable periodic signals, serving as frequency references in electronic systems. Crystals and resonators are core elements that determine frequency stability through mechanical vibration. These components are critical in modern technology for ensuring synchronization, timing accuracy, and signal integrity in applications ranging from consumer electronics to aerospace systems.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Crystal Oscillator (XO)Fixed frequency output, high stabilityMicrocontrollers, clocks
Voltage-Controlled Crystal Oscillator (VCXO)Frequency adjustable via control voltageTelecom networks, phase-locked loops
Temperature-Compensated Crystal Oscillator (TCXO)Integrated temperature compensation circuitGPS devices, mobile phones
Oven-Controlled Crystal Oscillator (OCXO)Heated enclosure for ultra-high stabilityTest equipment, military radar
Microwave ResonatorHigh-frequency operation using dielectric materials5G base stations, satellite communication

3. Structure and Components

A typical oscillator consists of:

  • Crystal unit (quartz or ceramic resonator)
  • Amplification circuit (transistor/IC)
  • Feedback network (LC/pi-filter)
  • Power supply regulation
  • Metal/ceramic hermetic enclosure
Quartz crystals are cut in AT or SC configurations for optimal temperature response. Advanced packages integrate phase noise reduction circuitry and digital control interfaces.

4. Key Technical Specifications

ParameterDescriptionImportance
Frequency RangeOperational frequency band (kHz to GHz)Determines application suitability
Stability (ppm)Frequency deviation over temperature/timeSystem reliability indicator
Phase NoiseShort-term frequency fluctuations (dBc/Hz)Critical for RF communication
Start-up TimeTime to reach stable oscillationPower-sensitive applications
Operating TemperatureFunctional temperature rangeEnvironmental adaptability

5. Application Fields

  • Telecommunications: 5G base stations, optical transceivers
  • Consumer Electronics: Smartphones, wearables
  • Automotive: ADAS sensors, engine control units (ECUs)
  • Industrial: Test equipment, precision sensors
  • Aerospace: Satellite navigation systems, flight computers

Case Study

The SiTime SiT5358 MEMS oscillator ( 0.1ppm stability) enables 5G small cells to maintain synchronization within 1588v2 standards. Compared to traditional TCXO solutions, it reduces holdover drift by 80% while maintaining better vibration resistance.

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Specifications
EpsonTG-550032.768kHz TCXO, 0.03ppm stability
SiTimeSiT89240.1ppm MEMS oscillator with 70MHz output
TXC Corporation7B-26.000MAAJ26MHz VCXO for Bluetooth modules
CrystekCFOV-950-100.000100MHz OCXO with -145dBc/Hz phase noise

7. Selection Guidelines

  • Determine frequency requirements (fundamental vs overtone mode)
  • Evaluate stability needs (temperature range, aging tolerance)
  • Assess phase noise requirements (critical for high-speed ADC/DAC)
  • Consider package size (common: 2016, 3225, 5032)
  • Verify power consumption (important for IoT devices)
  • Select appropriate compensation method (TCXO vs OCXO)

8. Industry Trends

Key developments include:

  • MEMS oscillators replacing quartz in high-vibration environments
  • Integration of digital control (I2C programmable oscillators)
  • Development of sub-ppm stability at consumer price points
  • Miniaturization to meet wearable device demands
  • Increased adoption of differential output formats (LVPECL, HCSL)
The market is projected to grow at 6.8% CAGR through 2028, driven by 5G infrastructure and automotive electronics demand.

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