Resonators

Image Part Number Description / PDF Quantity Rfq
PBRV7.37HR50Y000

PBRV7.37HR50Y000

KYOCERA Corporation

CERAMIC RES 7.3700MHZ 30PF SMD

0

PBRC-4.50AR

PBRC-4.50AR

KYOCERA Corporation

CERAMIC RES 4.5000MHZ SMD

0

PBRC-7.37AR

PBRC-7.37AR

KYOCERA Corporation

CERAMIC RES 7.3700MHZ SMD

0

PBRC8.00HR50X000

PBRC8.00HR50X000

KYOCERA Corporation

CERAMIC RES 8.0000MHZ 30PF SMD

0

PBRC-12.00BR07

PBRC-12.00BR07

KYOCERA Corporation

CERAMIC RES 12.0000MHZ 10PF SMD

0

PBRC-10.00BR07

PBRC-10.00BR07

KYOCERA Corporation

CERAMIC RES 10.0000MHZ 10PF SMD

0

PBRV7.37MR10Y000

PBRV7.37MR10Y000

KYOCERA Corporation

CERAMIC RES 7.3700MHZ 15PF SMD

0

PBRC-4.91BR

PBRC-4.91BR

KYOCERA Corporation

CERAMIC RES 4.9100MHZ 33PF SMD

0

PBRV2.45HR50Y000

PBRV2.45HR50Y000

KYOCERA Corporation

CERAMIC RES 2.4500MHZ 30PF SMD

0

PBRC-3.93AR

PBRC-3.93AR

KYOCERA Corporation

CERAMIC RES 3.9300MHZ SMD

0

PBRV16.00HR50Y000

PBRV16.00HR50Y000

KYOCERA Corporation

CERAMIC RES 16.0000MHZ 10PF SMD

0

PBRC-14.32BR07

PBRC-14.32BR07

KYOCERA Corporation

CERAMIC RES 14.3200MHZ 10PF SMD

0

PRQC20.00SR1010V00L

PRQC20.00SR1010V00L

KYOCERA Corporation

CERAMIC RES 20.0000MHZ 10PF SMD

0

PBRC-3.18BR

PBRC-3.18BR

KYOCERA Corporation

CERAMIC RES 3.1800MHZ 33PF SMD

0

PBRC3.68HR10X000

PBRC3.68HR10X000

KYOCERA Corporation

CERAMIC RES 3.6800MHZ 30PF SMD

0

PRQV12.00CR5010Y000

PRQV12.00CR5010Y000

KYOCERA Corporation

CERAMIC RES 12.0000MHZ 10PF SMD

0

PBRC-9.00BR07

PBRC-9.00BR07

KYOCERA Corporation

CERAMIC RES 9.0000MHZ 10PF SMD

0

PBRC-20.00BR07

PBRC-20.00BR07

KYOCERA Corporation

CERAMIC RES 20.0000MHZ 10PF SMD

0

PBRV3.58HR50Y000

PBRV3.58HR50Y000

KYOCERA Corporation

CERAMIC RES 3.5800MHZ 30PF SMD

0

PBRC16.00HR70X000

PBRC16.00HR70X000

KYOCERA Corporation

CERAMIC RES 16.0000MHZ 10PF SMD

0

Resonators

1. Overview

Resonators are passive electronic components that generate stable frequencies by utilizing the mechanical resonance of piezoelectric materials (e.g., quartz, ceramic) or surface acoustic waves (SAW). They are critical for timing, frequency control, and signal processing in modern electronics. Oscillators integrate resonators with active circuitry to produce periodic signals, while crystals refer to raw piezoelectric elements. These components ensure synchronization and reliability in communication systems, industrial equipment, and consumer devices.

2. Main Types and Functional Classification

TypeFunction FeaturesApplications
Quartz Crystal ResonatorsHigh Q-factor, excellent temperature stabilityMicroprocessors, GPS modules
Ceramic ResonatorsLower cost, moderate stabilityRemote controls, IoT sensors
SAW ResonatorsHigh-frequency operation (GHz range), compact size5G base stations, automotive radar
MEMS ResonatorsMiniaturized, temperature-compensatedWearables, medical implants

3. Structure and Composition

A typical resonator includes: - Piezoelectric Material: Quartz (for crystal resonators) or ceramic (for ceramic resonators) that vibrates under electric fields. - Electrodes: Metal coatings (e.g., silver, gold) to apply voltage and detect vibrations. - Encapsulation: Metal or ceramic housing to protect against environmental factors. - SAW Resonators: Feature interdigital transducers (IDTs) on piezoelectric substrates (e.g., lithium niobate) to generate surface acoustic waves.

4. Key Technical Parameters

ParameterDescription & Importance
Frequency ToleranceDeviation from nominal frequency ( ppm), critical for system synchronization
Q-FactorQuality factor indicating energy loss; higher Q ensures better frequency selectivity
Temperature StabilityFrequency drift per C (e.g., 30 ppm/ C), vital for harsh environments
Equivalent Series Resistance (ESR)Affects oscillator startup time and signal purity
Load CapacitanceRequired for tuning in oscillator circuits

5. Application Fields

  • Telecommunications: 5G transceivers, fiber-optic networks
  • Automotive: Engine control units (ECUs), tire pressure sensors
  • Consumer Electronics: Smartphones, smartwatches
  • Industrial: PLCs, precision sensors
  • Medical: Pacemakers, ultrasound imaging devices

6. Leading Manufacturers and Products

ManufacturerRepresentative Products
Murata ManufacturingCSTCE Series Ceramic Resonators
TDK CorporationFK1610 Series MEMS Oscillators
Epson ElectronicsSG-8003 Series Crystal Oscillators
Sitime CorporationSIM3-Series Automotive MEMS Resonators
KyoceraDF23SA Series SAW Filters

7. Selection Guidelines

Consider the following factors when choosing resonators: - Frequency Requirements: Match tolerance and stability to application needs. - Environmental Conditions: High-temperature stability for automotive or industrial use. - Size Constraints: MEMS resonators for miniaturized designs. - Cost vs. Performance: Ceramic resonators for budget-sensitive projects with relaxed stability needs. - Integration: Ensure compatibility with oscillator circuit design (e.g., load capacitance).

8. Industry Trends

Future developments include: - Micromachining: MEMS resonators achieving higher stability and shock resistance. - Higher Frequencies: Demand for sub-6GHz and mmWave SAW resonators in 5G. - Low-Power Solutions: Optimization for IoT and wearable devices. - AI Integration: Self-adjusting resonators using machine learning for dynamic environments. - Material Innovation: Use of aluminum nitride (AlN) and gallium nitride (GaN) for improved thermal performance.

RFQ BOM Call Skype Email
Top