Crystals

Image Part Number Description / PDF Quantity Rfq
SC12S-12.5PF20PPM

SC12S-12.5PF20PPM

Seiko Instruments, Inc.

CRYSTAL 32.7680KHZ 12.5PF SMD

4235

VT200F-6PF20PPM

VT200F-6PF20PPM

Seiko Instruments, Inc.

CRYSTAL 32.7680KHZ 6PF TH

0

SC32S-12.5PF20PPM

SC32S-12.5PF20PPM

Seiko Instruments, Inc.

CRYSTAL 32.7680KHZ 12.5PF SMD

12000

SSPT7F-12.5PF20-R

SSPT7F-12.5PF20-R

Seiko Instruments, Inc.

CRYSTAL 32.7680KHZ 12.5PF SMD

2000

SC32S-7PF20PPM

SC32S-7PF20PPM

Seiko Instruments, Inc.

CRYSTAL 32.7680KHZ 7PF SMD

47867

VT200F-12.5PF20PPM

VT200F-12.5PF20PPM

Seiko Instruments, Inc.

CRYSTAL 32.7680KHZ 12.5PF TH

12281

SC20S-7PF20PPM

SC20S-7PF20PPM

Seiko Instruments, Inc.

CRYSTAL 32.7680KHZ 7PF SMD

71920

SC16S-12.5PF20PPM

SC16S-12.5PF20PPM

Seiko Instruments, Inc.

CRYSTAL 32.7680KHZ 12.5PF SMD

1877

SC12S-7PF20PPM

SC12S-7PF20PPM

Seiko Instruments, Inc.

CRYSTAL 32.7680KHZ 7PF SMD

3

SC20S-12.5PF20PPM

SC20S-12.5PF20PPM

Seiko Instruments, Inc.

CRYSTAL 32.7680KHZ 12.5PF SMD

12757

SSPT7F-7PF20-R

SSPT7F-7PF20-R

Seiko Instruments, Inc.

CRYSTAL 32.7680KHZ 7PF SMD

101944

SC16S-7PF20PPM

SC16S-7PF20PPM

Seiko Instruments, Inc.

CRYSTAL 32.7680KHZ 7PF SMD

4489

SC12S-9PF20PPM

SC12S-9PF20PPM

Seiko Instruments, Inc.

CRYSTAL 32.7680KHZ 9PF SMD

4990

SSPT7F-12.5PF5PPM

SSPT7F-12.5PF5PPM

Seiko Instruments, Inc.

CRYSTAL 32.7680KHZ 12.5PF SMD

0

SSPT7F-12.5PF10PPM

SSPT7F-12.5PF10PPM

Seiko Instruments, Inc.

CRYSTAL 32.7680KHZ 12.5PF SMD

0

SSPT7F-12.5PF20PPM

SSPT7F-12.5PF20PPM

Seiko Instruments, Inc.

CRYSTAL 32.7680KHZ 12.5PF SMD

0

SSPT7F-7PF20PPM

SSPT7F-7PF20PPM

Seiko Instruments, Inc.

CRYSTAL 32.7680KHZ 7PF SMD

0

Crystals

1. Overview

Crystals, oscillators, and resonators are passive electronic components that generate stable frequency signals for timing and synchronization in electronic systems. Crystals (e.g., quartz) utilize piezoelectric properties to produce precise oscillations. Oscillators integrate active circuitry to generate periodic signals, while resonators provide frequency-selective feedback. These components are critical in communication systems, computing devices, industrial controls, and consumer electronics.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Quartz CrystalsHigh frequency stability, low phase noiseMicroprocessors, GPS modules, RF transceivers
Ceramic ResonatorsLower cost, moderate stabilityRemote controls, toys, low-precision sensors
MEMS ResonatorsMiniaturized, shock-resistantIoT devices, wearables, automotive sensors
Crystal Oscillators (XO)Integrated driver circuitryNetwork switches, test equipment, precision clocks

3. Structure and Composition

A typical quartz crystal consists of a precision-cut piezoelectric wafer (AT-cut or SC-cut), metallized electrodes (silver or gold), and a hermetically sealed package (glass or ceramic). MEMS resonators use silicon-based microstructures with electrostatic or piezoelectric transducers. Ceramic resonators employ zirconium titanate (PZT) materials with printed electrodes.

4. Key Technical Specifications

ParameterDescriptionImportance
Frequency RangeOperating frequency band (kHz-MHz)Determines circuit timing resolution
Frequency ToleranceInitial accuracy at 25 C (ppm)Impacts system synchronization
Temperature StabilityFrequency drift over temperature (ppm/ C)Critical for harsh environments
Equivalent Series Resistance (ESR)Internal resistance affecting startup timeImpacts oscillator reliability
Aging RateLong-term frequency shift (ppm/year)System longevity consideration

5. Application Fields

Key industries include:

  • Telecommunications: 5G base stations, optical transceivers
  • Industrial Automation: PLCs, robotics controllers
  • Consumer Electronics: Smartphones, smartwatches
  • Automotive: ECUs, tire pressure sensors
  • Medical Devices: Pacemakers, diagnostic equipment

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
EpsonSG-800332.768 kHz TCXO for real-time clocks
MurataXRCGB32M000F32 MHz ceramic resonator
SiTimeSiT8924MEMS-based automotive-grade oscillator
TXC Corporation9B-26.000MHZ26 MHz quartz crystal for Bluetooth modules

7. Selection Guidelines

Key considerations:

  • Required frequency and stability (temperature/vibration)
  • Power consumption constraints
  • Environmental operating conditions
  • Package size and mounting type
  • Cost vs. precision trade-offs

Example: For IoT edge devices, prioritize MEMS resonators with low power (<10 A) and 50 ppm stability.

8. Industry Trends

Emerging trends include:

  • Miniaturization: 0.4x0.2 mm MEMS devices for wearable integration
  • Higher frequency adoption: 100+ MHz crystals for 5G infrastructure
  • Integrated solutions: Oscillators with built-in frequency modulation
  • Automotive-grade reliability: AEC-Q100 qualified components for EVs
  • AI-driven testing: Machine learning for crystal defect detection
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