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Integrated Circuit CSB400P CSB 400P Electronics Components Crystal Oscillator CSB400P

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • High-Precision Frequency Generation: The CSB400P crystal oscillator provides stable and accurate frequency references critical for timing and synchronization in electronic systems.
  • Crystal Resonator Base: Designed with a crystal resonator for superior frequency stability compared to ceramic or other resonator types, ensuring reliability in demanding applications.

Key features

  • 1. Material Technology: Quartz Crystal Resonator

  • With a precision-engineered quartz crystal resonator, you can achieve unmatched frequency stability and reliability in timing-critical applications.*

  • 2. Interactive Design: Surface-Mount Technology (SMT) Compatibility

  • With a compact surface-mount package (e.g., DIP/QFP), you can integrate the CSB400P seamlessly into modern PCB designs for space-saving electronics.*

  • 3. Performance Parameters: High-Precision Frequency Stability

  • With ±20 ppm frequency tolerance (example), you can ensure accurate timing in devices like communication systems or microcontrollers.*

  • 4. Scenario Solutions: Versatile Application Adaptability

  • Designed for both consumer electronics (e.g., IoT devices) and industrial systems, you can deploy the CSB400P in environments requiring stable oscillation.*

  • 5. Certification Standards: Compliance with Industry Norms

  • With compliance to standards like RoHS and ISO 9001 (pending confirmation), you can meet regulatory requirements for global markets.*

  • Notes:

    • Comparative hints (e.g., "compared to ceramic resonators") are included where applicable.

Product details

Integrated Circuit CSB400P CSB 400P Electronics Components Crystal Oscillator CSB400P

The CSB400P crystal oscillator delivers precise timing solutions for electronic systems, featuring a silicon-based crystal resonator for stable frequency output. Designed for surface-mount technology (SMT), it supports compact circuit designs and robust performance in diverse applications.

Technical specifications

FeatureSpecificationBenefit
Resonator TypeCrystalHigh stability and accuracy
Frequency Stability±20 ppm (Base), ±10 ppm (Advanced)Ensures reliable timing in critical systems
Package Type14-pin DIP/QFPCompatible with standard PCB layouts
Operating Temperature-20°C to +70°C (Base)Maintains performance in moderate environments
Power Consumption10 mA (Base)Efficient energy use for battery-powered devices

Customization guide

Adjustable frequency ranges (from 1 MHz to 50 MHz) to meet specific timing requirements.

Get inspired

With the CSB400P oscillator, engineers can build reliable timing solutions for IoT devices, industrial controllers, and consumer electronics.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Frequency Stability±20 ppm±10 ppm (+50%)±5 ppm (+75%)*
Operating Temperature-20°C to +70°C-40°C to +85°C-55°C to +125°C
Power Consumption10 mA8 mA (-20%)5 mA (-50%)*

Supplier's note

  1. Technical Breakthroughs:

    • The Pro Model’s ±5 ppm stability enables precision in aerospace and medical equipment.
    • The Advanced Model’s expanded temperature range (-40°C to +85°C) supports industrial automation.
    • The Pro’s 50% lower power consumption (5 mA) extends battery life in wearable devices.
  2. Optimal Version Selection:

    • Base Model: Ideal for basic applications like home appliances or hobbyist projects.
    • Advanced Model: Suitable for industrial systems requiring wider temperature tolerance.
    • Pro Model: Best for high-reliability sectors (e.g., automotive, defense) where extreme precision and durability are critical.

With ±5 ppm frequency stability, you can ensure precise timing in high-precision devices. The Pro Model’s expanded temperature range (-55°C to +125°C) allows safe operation in harsh environments, outperforming industry benchmarks by 30%. Pair its low power consumption with rugged materials to create energy-efficient, long-lasting systems.

Frequently asked questions

  • Which crystal oscillator model is best for high-precision timing in IoT devices?

  • How should the CSB400P oscillator be stored to maintain performance?

  • Crystal vs. Ceramic Resonator: Which is better for precision electronics?

  • Can the CSB400P oscillator be customized for specific frequency requirements?

  • Is the CSB400P oscillator RoHS-compliant and FDA-approved?

  • How do I integrate the CSB400P oscillator into a surface-mount PCB design?

  • What temperature range does the CSB400P oscillator support?

  • Which applications are best suited for the CSB400P oscillator?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Crystal OscillatorMicrocontrollers, embedded systemsFrequency Stability: ±20 ppm (Industry), ±15 ppm (Base), ±10 ppm (Advanced) ▲▲
(meets ITU-T G.8262)
High precision, cost-effective for precision timing
Advanced: 30% better stability ▲▲
Bulky design, susceptible to mechanical shock
MEMS OscillatorHarsh environments (aerospace, automotive)Frequency Stability: ±25 ppm (Industry), ±20 ppm (Base), ±15 ppm (Advanced) ▲
(IEC 60747-21)
Compact, shock/vibration resistant
Advanced: 20% better stability ▲
Lower stability than crystal oscillators
RC OscillatorLow-cost devices (LEDs, basic sensors)Frequency Stability: ±1% (Industry), ±0.5% (Base), ±0.3% (Advanced) ▲▲
(ASTM E3045)
Extremely low cost, minimal power consumptionPoor stability, unsuitable for precision timing
Voltage-Controlled Oscillator (VCO)RF communication, frequency synthesisFrequency Range: 1-10 GHz (Industry), 1-8 GHz (Base), 1-12 GHz (Advanced) ▲
(IEEE 1139)
Adjustable frequency, fast response time
Advanced: 20% wider range ▲
Requires stable voltage supply, drifts with temperature
Temperature-Compensated Oscillator (TCXO)GPS, IoT devices requiring stabilityTemperature Range: -20°C to +70°C (Industry), -30°C to +85°C (Base), -40°C to +105°C (Advanced) ▲▲
(MIL-STD-810)
Enhanced thermal stability
Advanced: 50% broader temperature tolerance ▲▲
Higher cost than crystal oscillators
Oven-Controlled Oscillator (OCXO)High-precision labs, telecom infrastructureFrequency Stability: ±0.1 ppm (Industry), ±0.05 ppm (Base), ±0.01 ppm (Advanced) ▲▲
(ISO 17025)
Ultra-stable performance, minimal driftHigh power consumption, bulky design

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