Logic - Counters, Dividers

Image Part Number Description / PDF Quantity Rfq
74HC4060N,652

74HC4060N,652

NXP Semiconductors

BINARY COUNTER

4282

74HC40103PW

74HC40103PW

NXP Semiconductors

NOW NEXPERIA 74HC40103PW - BINAR

0

74HCT93D,118

74HCT93D,118

NXP Semiconductors

BINARY COUNTER

0

74HC4040DB-Q100118

74HC4040DB-Q100118

NXP Semiconductors

BINARY COUNTER, HC/UH SERIES

1920

HEF4060BTTJ

HEF4060BTTJ

NXP Semiconductors

HEF4060BTT-Q100 - BINARY COUNTE

2097

74HCT4040D/AU118

74HCT4040D/AU118

NXP Semiconductors

BINARY COUNTER, HCT SERIES

1970

74HCT93D,112

74HCT93D,112

NXP Semiconductors

BINARY COUNTER

0

74HC93DB,112

74HC93DB,112

NXP Semiconductors

BINARY COUNTER

0

74LVC161DB118

74LVC161DB118

NXP Semiconductors

BINARY COUNTER, LVC/LCX/Z SERIES

1086

HEF4060BT-Q100118

HEF4060BT-Q100118

NXP Semiconductors

BINARY COUNTER

9322

74HCT161D,653

74HCT161D,653

NXP Semiconductors

BINARY COUNTER

18086

74HC4020PW/S400118

74HC4020PW/S400118

NXP Semiconductors

BINARY COUNTER, HC/UH SERIES

2500

74HCT193N,652

74HCT193N,652

NXP Semiconductors

BINARY COUNTER

1341

74HC4020PW-Q100118

74HC4020PW-Q100118

NXP Semiconductors

BINARY COUNTER, HC/UH SERIES

5393

74HCT4520D112

74HCT4520D112

NXP Semiconductors

NOW NEXPERIA 74HCT4520D - BINARY

1647

74HC160PW,118

74HC160PW,118

NXP Semiconductors

DECADE COUNTER, HC/UH SERIES

17398

74HCT6323AD/C4118

74HCT6323AD/C4118

NXP Semiconductors

DIVIDE BY N COUNTER

1625

74HC161PW112

74HC161PW112

NXP Semiconductors

NOW NEXPERIA 74HC161PW - BINARY

2400

74HCT4020PW-Q100118

74HCT4020PW-Q100118

NXP Semiconductors

BINARY COUNTER, HCT SERIES

2280

74LV4020DB,112

74LV4020DB,112

NXP Semiconductors

BINARY COUNTER

0

Logic - Counters, Dividers

1. Overview

Logic counters and dividers are digital integrated circuits designed to process clock signals by counting pulses or dividing frequencies. Counters increment or decrement stored values based on input clocks, while dividers reduce input signal frequencies by integer ratios. These ICs serve as fundamental components in timing control, frequency synthesis, and system synchronization. Their importance spans across modern electronics, including communication systems, automotive control units, and industrial automation, where precise signal manipulation is critical.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Synchronous CountersClock signals control all flip-flops simultaneouslyDigital clocks, frequency dividers
Asynchronous CountersCascaded flip-flops with ripple carryLow-speed counters, event counting
Up/Down CountersSelectable counting direction via control signalsMotion control, bidirectional timers
Frequency DividersProgrammable division ratios (1/N)RF transceivers, phase-locked loops

3. Structure and Composition

Typical logic counters/dividers consist of:

  • CMOS/TTL logic gates for control logic
  • D-type flip-flops for data storage
  • Cascaded binary/decade counting stages
  • Input/output buffers for signal integrity
Common packages: 14/16-pin DIP, SOIC, TSSOP. Semiconductor materials use silicon with advanced node processes (e.g., 90nm CMOS).

4. Key Technical Specifications

ParameterDescription
Maximum Counting FrequencyDetermines operational speed limit (DC to 160MHz)
Counting Range4-bit to 12-bit resolution options
Supply VoltageOperating range (1.8V-5.5V for CMOS variants)
Propagation DelayCritical for timing accuracy (10-50ns typical)
Quiescent CurrentPower efficiency indicator (<1 A to 30mA)

5. Application Areas

  • Telecommunications: 5G base stations, optical transceivers
  • Consumer Electronics: Smartphones, smartwatches
  • Automotive: Engine control units, ADAS sensors
  • Industrial: PLCs, CNC machine controllers

6. Leading Manufacturers and Products

ManufacturerRepresentative Products
TI (Texas Instruments)SN74HC163 (4-bit binary counter)
STMicroelectronicsCD4040 (12-stage ripple counter)
Infineon TechnologiesCY2309 (clock divider IC)
NXP Semiconductors74VHC164 (high-speed divider)

7. Selection Guidelines

Key considerations:

  • Match counting range with system bit-width requirements
  • Verify maximum operating frequency against clock sources
  • Optimize power consumption via supply voltage selection
  • Choose package type based on PCB space constraints
  • Assess temperature ratings for industrial/automotive environments

8. Industry Trends Analysis

Current development trends include:

  • Transition to sub-1V supply voltages for mobile applications
  • Integration with phase-locked loop (PLL) circuits
  • Adoption of FinFET technology for >100MHz counters
  • Emerging use in IoT edge devices for signal preprocessing
Market demand grows at 4.2% CAGR driven by 5G infrastructure and automotive electrification.

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