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  • (IC components) HCT166M
(IC components) HCT166M

(IC components) HCT166M

$0.55-$1.20/ Piece|1 Piece/Pieces(Min. Order)

(IC components) HCT166M

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • 8-Bit Shift Register: Enables data storage and sequential transfer in digital circuits, supporting both parallel and serial input/output operations.
  • Logic Compatibility: Designed for high-speed CMOS (HCT) technology, ensuring seamless integration with TTL and other logic families for versatile circuit design.

Key features

  • 1. Material Technology: Precision-Engineered Compatibility

  • With a semiconductor material optimized for quartz crystal integration, the HCT166M ensures seamless synchronization with high-stability frequency control components. This compatibility guarantees precise timing and signal accuracy in critical applications.

  • 2. Performance Parameters: High-Speed Data Handling

  • With a maximum operating frequency of 50MHz*, the HCT166M achieves 30% faster data transfer than standard shift registers, enabling efficient performance in real-time systems like communication devices and industrial controllers.

  • 3. Scenario Solutions: Versatile Application Adaptability

  • Designed for timing-critical scenarios, the HCT166M supports stable operation in GPS systems, digital clocks, and telecom equipment. Its compact form factor simplifies integration into space-constrained devices compared to bulkier alternatives.

  • 4. Interactive Design: Streamlined Integration

  • With a surface-mount package (SOP) and standardized pin configuration, the HCT166M reduces assembly complexity by 20% versus through-hole components*, accelerating PCB design and manufacturing workflows.

  • 5. Certification Standards: Compliance with Global Regulations

  • Manufactured to RoHS and REACH standards, the HCT166M ensures eco-friendly disposal and meets international safety requirements for consumer and industrial electronics.

Product details

(IC components) HCT166M

The HCT166M is an 8-bit static shift register IC designed for reliable data storage and transfer in digital systems. Built with high-precision integrated circuit technology, it supports versatile applications in microcontroller-based systems, data buffering, and sequential control circuits.

Technical specifications

FeatureSpecificationBenefit
Storage Capacity8-bit parallel-in/serial-outEfficient data buffering for sequential tasks
Operating Voltage2V to 6V (TTL-compatible)Wide voltage tolerance for diverse systems
Clock SpeedUp to 50 MHzHigh-speed data transfer in real-time applications
Packaging18-pin DIP/SOICFlexible mounting options for PCB design
Temperature Range-55°C to +125°CIndustrial-grade reliability in extreme environments

Customization guide

Adjustable parameters include frequency tolerance (±20 ppm to ±100 ppm) and power consumption (optimized for low-energy applications). Customize based on specific timing requirements or thermal constraints.

Get inspired

Use the HCT166M to build robust data pipelines in IoT devices, automate industrial control systems, or synchronize signals in communication hardware. Its compact design and high-speed performance make it ideal for modern embedded systems.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Operating Voltage2V to 5V2V to 6V2V to 6V
Max Clock Speed20 MHz40 MHz50 MHz
Temperature Range0°C to +70°C-40°C to +85°C-55°C to +125°C
Power Consumption150 mW120 mW (-20%)90 mW (-40%)

Supplier's note

  1. Technical Breakthroughs:

    • The Pro Model’s 50 MHz clock speed (25% faster than industry benchmarks) enables ultra-fast data processing in high-frequency systems.
    • Advanced Model’s -40°C to +85°C range expands usability in automotive and aerospace environments.
    • Base Model’s TTL compatibility simplifies integration with legacy systems.
  2. Version Selection Guide:

    • Base Model: Ideal for basic automation or educational projects requiring cost-effective solutions.
    • Advanced Model: Suited for industrial IoT devices needing moderate thermal and voltage resilience.
    • Pro Model: Best for mission-critical applications like radar systems or medical equipment, where extreme precision and reliability are paramount.

With the Pro Model’s 50 MHz clock speed, you can achieve real-time data synchronization in high-frequency communication networks. Pair its low power consumption (-40% vs. competitors) with wide temperature tolerance to ensure stable operation in harsh industrial settings.

Frequently asked questions

  • Which shift register IC suits high-speed data transfer in digital systems?

  • How to store HCT166M ICs to prevent static damage during handling?

  • CMOS vs TTL: Which is better for low-power digital circuits?

  • Can HCT166M ICs be customized for specific packaging needs?

  • Is HCT166M compliant with RoHS and industrial safety standards?

  • Does HCT166M work seamlessly with 5V TTL logic systems?

  • How does HCT166M perform in high-temperature industrial environments?

  • What applications use HCT166M shift registers?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Operating Voltage RangeMixed-voltage systems (3.3V/5V)Industry Standard: 5V only
Our Base: 2V–6V (HCT166M)
Our Advanced: 1.65V–5.5V (▲▲)
▲▲ Wider compatibility with modern systems (e.g., IoT devices)
Industry Standard: Limited to legacy 5V systems
Requires voltage regulation in mixed systems (e.g., 1.8V embedded systems)
Max Operating FrequencyHigh-speed data transfer (e.g., CAN bus)Industry Standard: 35MHz (ISO/IEC 11898)
Our Base: 50MHz (▲)
Our Advanced: 70MHz (▲▲)
▲▲ 70MHz (Advanced) enables real-time industrial control (e.g., robotics)
Industry Standard: Slower for high-throughput tasks
Higher power consumption at max frequency (e.g., 20% increase at 70MHz)
Power ConsumptionBattery-operated devices (e.g., sensors)Industry Standard: 15mW @5V
Our Base: 10mW @5V (▲)
Our Advanced: 8mW @3.3V (▲▲)
▲▲ 8mW (Advanced) extends battery life in wearables (e.g., 2x longer runtime)May require thermal management in high-density boards (e.g., 15°C rise at 70MHz)
Package TypeCompact PCB designs (e.g., smartphones)Industry Standard: PDIP-16
Our Base: SOIC-16 (▲)
Our Advanced: QFN-16 (▲▲)
▲▲ QFN-16 (Advanced) saves 60% board space (e.g., 3mm² footprint)
Industry Standard: Bulky for miniaturized devices
Requires advanced SMT assembly (e.g., reflow soldering for QFN)
Temperature RangeIndustrial environments (-40°C to +85°C)Industry Standard: 0°C–70°C
Our Base: -40°C–85°C (▲)
Our Advanced: -55°C–125°C (▲▲)
▲▲ -55°C–125°C (Advanced) for automotive/ aerospace use (e.g., engine control units)Higher cost for extreme-temperature variants (e.g., +30% premium)
Data RateReal-time logging (e.g., industrial IoT)Industry Standard: 25Mbps
Our Base: 40Mbps (▲)
Our Advanced: 60Mbps (▲▲)
▲▲ 60Mbps (Advanced) reduces latency in high-speed networks (e.g., 10ms delay improvement)May require faster clock synchronization (e.g., PCIe Gen2+ interfaces)

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