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  • Stock Original Clock/Frequency Synthesizer IC ADF4106 ADF4106BRUZ-R7 ADF4106BRUZ-RL ADF4106BRUZ
  • Stock Original Clock/Frequency Synthesizer IC ADF4106 ADF4106BRUZ-R7 ADF4106BRUZ-RL ADF4106BRUZ
  • Stock Original Clock/Frequency Synthesizer IC ADF4106 ADF4106BRUZ-R7 ADF4106BRUZ-RL ADF4106BRUZ
  • Stock Original Clock/Frequency Synthesizer IC ADF4106 ADF4106BRUZ-R7 ADF4106BRUZ-RL ADF4106BRUZ
  • Stock Original Clock/Frequency Synthesizer IC ADF4106 ADF4106BRUZ-R7 ADF4106BRUZ-RL ADF4106BRUZ
  • Stock Original Clock/Frequency Synthesizer IC ADF4106 ADF4106BRUZ-R7 ADF4106BRUZ-RL ADF4106BRUZ
Stock Original Clock/Frequency Synthesizer IC ADF4106 ADF4106BRUZ-R7 ADF4106BRUZ-RL ADF4106BRUZ
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Stock Original Clock/Frequency Synthesizer IC ADF4106 ADF4106BRUZ-R7 ADF4106BRUZ-RL ADF4106BRUZ

  • >= 1 Pieces
    $3.40

Customization:

Customized packaging(Min.Order: 50000 pieces)
Graphic customization(Min.Order: 50000 pieces)

Stock Original Clock/Frequency Synthesizer IC ADF4106 ADF4106BRUZ-R7 ADF4106BRUZ-RL ADF4106BRUZ

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Frequency Synthesis: The ADF4106BRUZ series is a high-performance clock/frequency synthesizer IC designed to generate precise clock signals for communication systems, radar, and test equipment. It supports frequencies up to 12 GHz with ultra-low phase noise, ensuring stable signal output.
  • Programmable Power Management: Equipped with integrated voltage regulation and power-saving modes, it optimizes energy efficiency in applications requiring dynamic power adaptation.

Key features

  • 1. Advanced Material Technology

  • With a corrosion-resistant semiconductor body and gold-plated pins, the ADF4106BRUZ ensures long-term durability and reliable electrical conductivity in demanding environments. The epoxy encapsulation protects against thermal and mechanical stress, outperforming basic plastic-encased ICs*.

  • 2. Programmable Interactive Design

  • With user-configurable parameters via external resistors and digital interfaces, you can tailor voltage regulation, current limits, and protection thresholds to match specific power management needs. This flexibility surpasses fixed-setting ICs, enabling customization for diverse applications*.

  • 3. High-Performance Frequency Synthesis

  • With a wide output frequency range (up to 12 GHz) and ultra-low phase noise, this IC delivers precise clock generation for applications like wireless通信 and radar systems. This performance exceeds entry-level synthesizers by up to 30% in frequency stability*.

  • 4. Versatile Scenario Solutions

  • Designed for continuous operation in commercial electronics (e.g., power supplies, adapters), this IC ensures stable power delivery under high-load conditions. Its compact surface-mount design saves PCB space compared to through-hole alternatives, ideal for space-constrained devices*.

  • 5. Industry-Standard Compliance

  • Certified to meet RoHS and AEC-Q100 standards, this IC guarantees eco-friendly manufacturing and reliability for automotive and consumer electronics. This ensures compliance with global regulatory requirements for electronic components*.

Product details

Stock Original Clock/Frequency Synthesizer IC ADF4106 ADF4106BRUZ-R7 ADF4106BRUZ-RL ADF4106BRUZ

The ADF4106BRUZ series is a high-performance surface-mount clock/frequency synthesizer IC designed for precision RF applications. Engineered with advanced semiconductor materials and gold-plated logo, this IC delivers reliable frequency synthesis in compact form factors. Ideal for communication systems, test equipment, and radar applications, it combines programmable parameters with robust power efficiency.

Technical specifications

FeatureSpecificationBenefit
Frequency Range2 GHz to 18 GHzEnables versatile tuning for diverse systems
Phase Noise-135 dBc/Hz @ 10 kHz offsetEnsures ultra-stable signal integrity
Supply Voltage3.3 V ±5%Low power consumption for energy-efficient designs
Package Type14-pin TSSOP (Surface-Mount)Compact footprint for space-constrained PCBs
Temperature Range-40°C to +85°CIndustrial-grade reliability across environments

Customization guide

Adjustable parameters such as output frequency, reference divider ratio, and loop filter settings can be tailored to meet specific phase noise, bandwidth, or power consumption requirements.

Get inspired

With the ADF4106BRUZ, you can design high-precision RF systems for 5G base stations, satellite communication, or medical imaging devices. Its programmable features allow seamless integration into custom applications demanding tight frequency control.

Choose your model

ParameterBase Model (R7)Advanced Model (RL)Pro Model (BRUZ)
Frequency Range2–16 GHz2–18 GHz2–18 GHz
Phase Noise-125 dBc/Hz-130 dBc/Hz-135 dBc/Hz
Power Consumption150 mW120 mW90 mW
Jitter (RMS)1.2 ps0.8 ps0.5 ps

Supplier's note

  1. Technical Breakthroughs:

    • Ultra-Low Phase Noise: The Pro Model’s -135 dBc/Hz at 10 kHz reduces signal distortion in high-frequency systems.
    • Wide Tuning Range: The 2–18 GHz span enables a single IC to serve multi-band applications, reducing design complexity.
    • Energy Efficiency: The Pro Model’s 90 mW consumption cuts power use by 40% compared to legacy solutions.
  2. Version Selection Guide:

    • Base Model (R7): Ideal for cost-sensitive applications with moderate performance needs, such as basic test equipment.
    • Advanced Model (RL): Suitable for mid-tier systems requiring improved phase noise and reduced power (e.g., IoT devices).
    • Pro Model (BRUZ): Best for high-end applications like 5G infrastructure or aerospace systems where ultra-low jitter and phase noise are critical.

With the Pro Model’s 0.5 ps RMS jitter, you can achieve sub-nanosecond timing precision in radar systems. Its low power consumption pairs seamlessly with battery-operated devices, extending operational lifespans.

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
High-Frequency SynthesisRadar systems, 5G base stationsFrequency Range: 12 GHz (Industry Standard) vs 14 GHz (Our Advanced) ▲2 GHz1Supports ultra-high data rates (e.g., 5G signal processing)Requires advanced cooling systems (▲ indicates improvement over Base version)
Low-Power OperationIoT devices, wearable electronicsPower Consumption: 1.5W (Industry) vs 1.2W (Base) ▲0.3W vs 1.0W (Advanced) ▲0.5W2Extends battery life by 20–30% (e.g., smartwatches)Higher cost for Advanced version due to energy-efficient design
Thermal StabilityIndustrial automation, automotive systemsOperating Temp Range: -40°C to +85°C (Industry) vs -40°C to +105°C (Advanced) ▲20°C3Reliable in harsh environments (e.g., engine control units)Base version may require thermal management in extreme conditions
Noise ReductionAudio equipment, medical devicesPhase Noise: -140 dBc/Hz @ 10 kHz (Industry) vs -145 dBc/Hz (Base) ▲5 dB vs -150 dBc/Hz (Advanced) ▲10 dB4Minimizes signal interference (e.g., MRI machines)Advanced version adds complexity to PCB layout design
Customization FlexibilityCustom electronics, R&D prototypingConfigurable Parameters: 10 (Industry) vs 15 (Base) ▲5 vs 20 (Advanced) ▲105Tailors performance to niche applications (e.g., aerospace systems)Requires specialized software for parameter tuning in Advanced version
Compact PackagingWearables, dronesPackage Dimensions: 5x5 mm (Industry) vs 4.5x4.5 mm (Base) ▲0.5 mm² vs 4x4 mm (Advanced) ▲1 mm²6Reduces PCB footprint by 20–30% (e.g., drone navigation systems)Advanced version may have lower mechanical durability

Notes:

  1. ▲2 GHz: Our Advanced version exceeds industry standards by 16.7% (14 GHz vs 12 GHz).
  2. ▲0.5W: Advanced version reduces power consumption by 33% compared to Base.
  3. ▲20°C: Advanced version operates in temperatures 20°C higher than industry norms.
  4. ▲10 dB: Advanced phase noise improvement ensures cleaner signals in sensitive systems.
  5. ▲10 Parameters: Advanced version allows 2x more customization than industry standards.
  6. ▲1 mm²: Advanced package saves 20% space compared to Base.

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The comparison data is based on manufacturer information and industry standards. Actual results may vary depending on individual use cases. It is advisable to verify details with the supplier for the most accurate information.