Clock/Timing - Programmable Timers and Oscillators

Image Part Number Description / PDF Quantity Rfq
LTC6930CMS8-8.00#PBF

LTC6930CMS8-8.00#PBF

Analog Devices, Inc.

IC OSC SILICON 8MHZ 8-MSOP

357

KA555ID

KA555ID

1 FUNC, BIPOLAR, PDSO8

0

8N4SV75EC-0085CDI8

8N4SV75EC-0085CDI8

Renesas Electronics America

IC OSC VCXO 160MHZ 6-CLCC

0

LTC6930HMS8-5.00#PBF

LTC6930HMS8-5.00#PBF

Analog Devices, Inc.

IC OSC SILICON 5MHZ 8-MSOP

0

MC14541BF

MC14541BF

PROGRAMMABLE TIMER, 1 TIMER(S)

0

LTC6930IMS8-5.00#TRPBF

LTC6930IMS8-5.00#TRPBF

Analog Devices, Inc.

IC OSC SILICON 5MHZ 8-MSOP

0

MIC155BM5

MIC155BM5

RC TIMER / OSCILLATOR

2000

PY2071ASC-101T

PY2071ASC-101T

Rochester Electronics

PROGRAMMABLE CLOCK GENERATOR

15000

NBVSPA015LN1TAG

NBVSPA015LN1TAG

LVPECL OUTPUT CLOCK OSCILLATOR

1775

LTC6902CMS#TRPBF

LTC6902CMS#TRPBF

Analog Devices, Inc.

IC OSC SILICON PROG 10MSOP

5021

8N4Q001KG-0056CDI8

8N4Q001KG-0056CDI8

Renesas Electronics America

IC OSC CLOCK QD FREQ 10CLCC

0

MIC1557YD5-TR

MIC1557YD5-TR

Roving Networks / Microchip Technology

IC OSC SINGLE TIMER 5MHZ

3215

NBXDBA014LNHTAG

NBXDBA014LNHTAG

CLOCK GENERATOR

0

LMK60I2-322M26SIAT

LMK60I2-322M26SIAT

Texas Instruments

IC OSC CLOCK 322.265625MHZ 6QFM

100

NA555DG4

NA555DG4

Texas Instruments

IC OSC SGL TIMER 100KHZ 8-SOIC

0

CY22392ZXI-388KN

CY22392ZXI-388KN

Rochester Electronics

PROGRAMMABLE CLOCK GENERATOR

443

LS7215

LS7215

LSI/CSI

PROGRAMMABLE DIGITAL DELAY TIMER

60

LTC6905HS5-96#TRPBF

LTC6905HS5-96#TRPBF

Analog Devices, Inc.

IC OSC SILICON 96MHZ TSOT23-5

0

ICM7250IJE

ICM7250IJE

Analog Devices, Inc.

TIMER/COUNTER

1869

TPL5010DDCR

TPL5010DDCR

Texas Instruments

IC OSC PROG TIMER TSOT23-6

76093

Clock/Timing - Programmable Timers and Oscillators

1. Overview

Programmable timers and oscillators are semiconductor devices used to generate, regulate, and control timing signals in electronic systems. These ICs enable precise time-based operations, synchronization, and clock signal generation. Their importance spans across modern technology, including communication systems, computing devices, industrial automation, and consumer electronics, where reliable timing accuracy is critical for system performance.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Programmable Timer ICsAdjustable timing intervals, counter functions, pulse width modulation (PWM)Motor control, LED dimming, industrial process control
Programmable OscillatorsSoftware-configurable frequency outputs, phase adjustmentNetworking equipment, test instruments, embedded systems
Real-Time Clocks (RTCs)Timekeeping with calendar functions, battery backupSmart meters, medical devices, automotive infotainment
Frequency SynthesizersHigh-precision frequency generation using PLLsWireless base stations, satellite communication, radar systems
Watchdog TimersSystem monitoring and reset functionalityIndustrial controllers, aerospace systems, IoT gateways

3. Structure and Composition

A typical programmable timing IC consists of:

  • Control registers for configuration via I2C/SPI interfaces
  • Counter/divider circuits for time interval generation
  • Reference clock source (crystal oscillator or RC oscillator)
  • Output drivers for clock signal distribution
  • Power management modules for low-power operation
Advanced devices may integrate phase-locked loops (PLLs) or direct digital frequency synthesis (DDS) architectures.

4. Key Technical Specifications

ParameterDescriptionImportance
Frequency RangeAdjustable output frequency limitsDetermines signal generation flexibility
Timing AccuracyDeviation from nominal value (ppm)Impacts system reliability and synchronization
Power ConsumptionOperating current and voltage requirementsCritical for battery-powered applications
Temperature StabilityPerformance consistency across temperature rangesEssential for industrial/automotive environments
Programming InterfaceSupport for I2C, SPI, or USBAffects integration complexity

5. Application Areas

  • Telecommunications: 5G base stations, optical transceivers
  • Consumer Electronics: Smartphones, wearable devices
  • Industrial: CNC machines, process automation systems
  • Automotive: ADAS controllers, infotainment systems
  • Medical: Diagnostic equipment, implantable devices

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
Maxim IntegratedDS3231MHigh-precision RTC with 2ppm accuracy
Texas InstrumentsCDCE925Programmable clock generator with 4 outputs
STMicroelectronicsM41T82Automotive-grade RTC with EEPROM
Microchip TechnologySi5351Multi-output PLL-based clock generator
Analog DevicesAD9548High-performance jitter attenuator

7. Selection Guidelines

Key considerations include:

  • Required frequency range and stability ( ppm tolerance)
  • Interface compatibility (I2C/SPI/parallel)
  • Power budget and sleep mode requirements
  • Environmental operating conditions (temperature/humidity)
  • Package type (QFN, TSSOP, BGA) and board space constraints
  • Long-term availability for industrial projects
For wireless applications, prioritize low-phase-noise oscillators. Use RTCs with integrated batteries for data logging systems.

8. Industry Trends

Emerging trends include:

  • Integration of AI-driven frequency calibration algorithms
  • Development of chip-scale atomic clocks (CSAC) for precision timing
  • Rise of differential clocking architectures for high-speed systems
  • Increased demand for automotive-grade programmable oscillators (AEC-Q100 qualified)
  • Adoption of MEMS-based oscillators for vibration resistance
The market is projected to grow at 6.2% CAGR through 2030, driven by 5G infrastructure and IoT edge computing requirements.

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