Programmable Oscillators

Image Part Number Description / PDF Quantity Rfq
SG-9101CE-C20SGABC

SG-9101CE-C20SGABC

Epson

XTAL OSC PROG XO CMOS CTR SPRD

1019

SG-9101CB-C10PGCCC

SG-9101CB-C10PGCCC

Epson

XTAL OSC PROG XO CMOS CTR SPRD

180

510NBB-BAAG

510NBB-BAAG

Silicon Labs

XTAL OSC PROG XO CMOS 3.3V 25PPM

0

SG-9101CG-D30PHDBB

SG-9101CG-D30PHDBB

Epson

XTAL OSC PROG XO CMOS DWN SPRD

386

SG-8003CG-SCM

SG-8003CG-SCM

Epson

XTAL OSC PRG XO CMOS 3.3V 100PPM

21

511HBB-CBAG

511HBB-CBAG

Silicon Labs

XTAL OSC PROG XO HCSL 2.5V 25PPM

0

SG-9101CA-D40SGDBA

SG-9101CA-D40SGDBA

Epson

XTAL OSC PROG XO CMOS DWN SPRD

112

SG-9101CG-C20SGACB

SG-9101CG-C20SGACB

Epson

XTAL OSC PROG XO CMOS CTR SPRD

386

SG-9101CG-D40SGBCC

SG-9101CG-D40SGBCC

Epson

XTAL OSC PROG XO CMOS DWN SPRD

386

SG-9101CA-C20PHACA

SG-9101CA-C20PHACA

Epson

XTAL OSC PROG XO CMOS CTR SPRD

112

SG-9101CB-C02PGDCB

SG-9101CB-C02PGDCB

Epson

XTAL OSC PROG XO CMOS CTR SPRD

180

SG-9101CB-D05PHABB

SG-9101CB-D05PHABB

Epson

XTAL OSC PROG XO CMOS DWN SPRD

180

SG-9101CG-C15SGCBB

SG-9101CG-C15SGCBB

Epson

XTAL OSC PROG XO CMOS CTR SPRD

386

DSC8102DI2

DSC8102DI2

Roving Networks / Microchip Technology

MEMS OSC PROG BLANK 10MHZ-460MHZ

835

510PAB-CBAG

510PAB-CBAG

Silicon Labs

XTAL OSC PROG XO CMOS 2.5V 50PPM

0

SG-9101CA-C02PGABC

SG-9101CA-C02PGABC

Epson

XTAL OSC PROG XO CMOS CTR SPRD

112

511RAA-AAAG

511RAA-AAAG

Silicon Labs

XTAL OSC PROG XO CMOS 1.8V 50PPM

0

591HA-ADG

591HA-ADG

Silicon Labs

XTAL OSC PROG XO CML 2.5V 50PPM

0

SG-9101CA-C20PGDBA

SG-9101CA-C20PGDBA

Epson

XTAL OSC PROG XO CMOS CTR SPRD

112

SG-9101CB-C10PHCAA

SG-9101CB-C10PHCAA

Epson

XTAL OSC PROG XO CMOS CTR SPRD

180

Programmable Oscillators

1. Overview

Programmable oscillators are frequency generation devices that allow dynamic adjustment of output frequency through digital control. Unlike fixed-frequency crystals or resonators, these oscillators use phase-locked loop (PLL) circuits or direct digital synthesis (DDS) to achieve precise frequency tuning. Their adaptability makes them critical components in modern communication systems, industrial automation, and high-speed computing equipment where frequency agility and phase noise optimization are required.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Phase-Locked Loop (PLL) OscillatorsFrequency synthesis through feedback control, offers high stabilityWireless base stations, frequency converters
Direct Digital Synthesis (DDS)Programmable frequency resolution down to micro-Hertz levelsTest equipment, medical imaging systems
Temperature-Compensated Oscillators (TCXO)Embedded temperature sensors for stability in varying environmentsGPS receivers, automotive navigation systems
Voltage-Controlled Crystal Oscillators (VCXO)Analog frequency adjustment via control voltageTelecom transceivers, precision timing devices

3. Structure and Components

Typical programmable oscillator architecture includes: 1) Quartz crystal or MEMS resonator for base frequency reference 2) PLL/DDS circuit with programmable dividers 3) Digital control interface (I2C/SPI) 4) Voltage-controlled oscillator core 5) Output buffer amplifier 6) Temperature compensation module (for TCXO variants) Advanced packages integrate EEPROM for storing configuration profiles and phase noise optimization algorithms.

4. Key Technical Specifications

ParameterImportanceTypical Values
Frequency RangeDetermines application suitability10 MHz - 1.5 GHz
Phase NoiseCritical for signal integrity-150 to -165 dBc/Hz @ 1kHz offset
Tuning ResolutionAffects precision capability0.1 Hz - 10 kHz
Power ConsumptionKey for portable devices50-300 mA
Temperature StabilityImpacts long-term reliability 0.5 to 2.5 ppm
Startup TimeDetermines system response speed1-10 ms

5. Application Fields

  • Telecommunications: 5G base stations, optical transceivers
  • Automotive: ADAS radar systems, V2X communication modules
  • Industrial: Precision test equipment, robotics controllers
  • Consumer Electronics: High-end audio clocks, gaming peripherals
  • Aerospace: Satellite communication terminals, navigation systems

6. Leading Manufacturers and Products

ManufacturerProduct SeriesKey Features
SiTimeSiT8924MEMS-based, 20 ppm stability, 10-110 MHz range
Texas InstrumentsLMX259415 GHz PLL with integrated VCO, <35 fs jitter
Analog DevicesAD9914125 MHz DDS with 48-bit tuning word
STMicroelectronicsVL53L3CXTime-of-flight sensor with integrated oscillator

7. Selection Guidelines

  1. Define required frequency range and tuning step
  2. Assess phase noise requirements based on system SNR targets
  3. Consider environmental operating conditions (temperature, vibration)
  4. Evaluate interface compatibility (I2C/SPI vs analog control)
  5. Analyze power budget constraints
  6. Check package size and PCB integration requirements
  7. Verify long-term stability specifications for mission-critical applications

8. Industry Trends

Key development directions include: - Integration of AI-based frequency prediction algorithms - MEMS resonator adoption enabling higher shock resistance - Sub-100 femtosecond jitter performance through advanced PLL architectures - System-on-Chip (SoC) integration reducing external component requirements - Expansion into millimeter-wave frequency bands (above 30 GHz) - Energy harvesting capabilities for IoT applications

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