Clock/Timing - Real Time Clocks

Image Part Number Description / PDF Quantity Rfq
AB-RTCMK-32.768KHZ-T

AB-RTCMK-32.768KHZ-T

Abracon

IC RTC CLK/CALENDAR I2C 8-SMT

0

X1227S8Z-2.7A

X1227S8Z-2.7A

Intersil (Renesas Electronics America)

RTC, NON-VOLATILE

10454

DS1284QN

DS1284QN

Analog Devices, Inc.

DS1284 WATCHDOG TIME KEEPERS

0

RX-4801SA:UB3 PURE SN

RX-4801SA:UB3 PURE SN

Epson

IC RTC CLK/CALENDAR SPI 14-SOP

4225

ISL12024IVZ

ISL12024IVZ

Intersil (Renesas Electronics America)

IC RTC CLK/CALENDAR I2C 8-TSSOP

0

DS1339C-33#T&R

DS1339C-33#T&R

Maxim Integrated

IC RTC CLK/CALENDAR I2C 16-SOIC

6009

BQ4852YMC-85

BQ4852YMC-85

Texas Instruments

RTC, NON-VOLATILE

1000

DS1337C#

DS1337C#

Maxim Integrated

IC RTC CLK/CALENDAR I2C 16-SOIC

373276

DS1556P-70+

DS1556P-70+

Maxim Integrated

IC RTC CLK/CALENDAR PAR 34-PCM

21640

DS1500YE+

DS1500YE+

Analog Devices, Inc.

Y2K WATCHDOG RTC WITH NV CONTROL

210

DS1338C-33#

DS1338C-33#

Maxim Integrated

IC RTC CLK/CALENDAR I2C 16-SOIC

10916652

RTC-8564NB:B3 ROHS

RTC-8564NB:B3 ROHS

Epson

IC RTC CLK/CALENDAR I2C 22-SON

4427

DS12885S+

DS12885S+

Maxim Integrated

IC RTC CLK/CALENDAR PAR 24-SOIC

1141800

DS1305EN+

DS1305EN+

Maxim Integrated

IC RTC CLK/CALENDAR SPI 20-TSSOP

1202

RX-4571SA:B3 PURE SN

RX-4571SA:B3 PURE SN

Epson

IC RTC CLK/CALENDAR SER 14-SOP

0

1338-31DVGI

1338-31DVGI

Renesas Electronics America

IC RTC CLK/CALENDAR I2C 8-TSSOP

0

CDP68HC68T1M

CDP68HC68T1M

Intersil (Renesas Electronics America)

SERIAL RTC WITH RAM

2087

RV-3129-C3-32.768KHZ-OPTION-A-TB-QA

RV-3129-C3-32.768KHZ-OPTION-A-TB-QA

Micro Crystal

IC RTC CLK/CALENDAR I2C 12-SON

1243

MCP7940M-I/SN

MCP7940M-I/SN

Roving Networks / Microchip Technology

IC RTC CLK/CALENDAR I2C 8-SOIC

490

RX-8571SA:B0 PURE SN

RX-8571SA:B0 PURE SN

Epson

IC RTC CLK/CALENDAR I2C 14-SOP

0

Clock/Timing - Real Time Clocks

1. Overview

Real-Time Clocks (RTCs) are integrated circuits designed to maintain accurate timekeeping in electronic systems, even during power interruptions. They provide critical time-of-day, date, and alarm functions through battery-backed or capacitor-powered circuits. RTCs are essential for applications requiring precise temporal synchronization in embedded systems, consumer electronics, industrial automation, and automotive systems.

2. Major Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Parallel Interface RTCs8/16-bit parallel data buses, fast accessIndustrial controllers, legacy systems
I2C/SPI Interface RTCsSerial communication, low pin countSmartphones, IoT devices
Embedded Crystal RTCsIntegrated crystal oscillator, reduced footprintWearables, medical devices
Low-Power RTCsSub-1 A standby current, extended battery lifeEnergy harvesting systems, sensors

3. Structure and Components

Typical RTC architecture includes:

  • 32.768kHz crystal oscillator circuit
  • Binary counter with BCD/time registers
  • Power supply monitoring and switching circuitry
  • Communication interface (I2C, SPI, etc.)
  • Alarm and interrupt generation modules
  • Temperature compensation circuitry (for high-precision variants)

Common packaging: 8-24 pin DIP/SOP/TSSOP, with optional integrated crystal in QFN packages.

4. Key Technical Specifications

ParameterImportanceTypical Values
Timekeeping AccuracyDetermines cumulative error over time 2ppm (0 C-40 C), 20ppm industrial
Supply CurrentImpacts battery life800nA-2 A @ 3V
Operating TemperatureDefines environmental reliability-40 C to +85 C standard
Interface SpeedLimits system communication bandwidth400kHz I2C, 10MHz SPI
Timekeeping VoltageDetermines minimum operation threshold1.3V-3.7V

5. Application Areas

Key industries and equipment:

  • Consumer Electronics: Smartphones, Set-top boxes, Digital cameras
  • Industrial Automation: PLCs, SCADA systems, Data loggers
  • Medical Devices: Patient monitors, Infusion pumps, Diagnostic equipment
  • Automotive: Telematics units, ADAS, In-vehicle infotainment
  • Smart Energy: Smart meters, Grid sensors, Energy storage systems

Case Study: DS3231 RTC in solar inverters maintains time-stamped energy production logs during grid outages.

6. Leading Manufacturers and Products

ManufacturerProduct SeriesKey Features
Analog DevicesADT74x 0.5ppm accuracy, I2C interface
Maxim IntegratedDS3231Integrated TCXO, 2ppm
STMicroelectronicsM41T82Auto-calibration, 256Hz output
NXP SemiconductorsPCF8523Low-cost I2C, 1.8V operation
Texas InstrumentsRV-8263-C33V lithium-backed, alarm functions

7. Selection Guidelines

Key considerations:

  • Accuracy requirements ( 2ppm vs 20ppm)
  • Interface compatibility (I2C vs SPI vs parallel)
  • Power budget (active vs standby current)
  • Environmental conditions (temperature, vibration)
  • Package size vs PCB space limitations
  • Battery backup vs capacitor-based solutions
  • Additional features (alarms, square wave outputs)

Example: For wearables: prioritize ultra-low power (M41T94 @ 600nA) with small TSSOP package.

8. Industry Trends

Emerging trends include:

  • Integration with MEMS oscillators replacing traditional crystals
  • Advancements in temperature compensation algorithms ( 0.1ppm achievable)
  • System-in-Package (SiP) solutions combining RTC with sensors
  • Increased adoption in edge computing devices for timestamped data processing
  • Automotive-grade RTCs for autonomous vehicle synchronization

Market drivers: Growth in IoT devices (projected 12% CAGR 2023-2030) and industrial automation systems.

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