0132M4-22.000F20DTNLL
Model
0132M4-22.000F20DTNLL
Category
The HCI 22MHz SMD crystal offers a compact, high-stability solution for frequency generation in communication and IoT applications, with 20pF load capacitance and ROHS compliance. It requires precise soldering at 300-350°C, operates within 2.0-3.6V, and needs proper thermal management to maintain frequency stability. Alternative models should match frequency, capacitance, and package dimensions. Designers should place it near oscillator components, use 0.3mm copper traces for cooling, and verify compatibility with power supplies.
Reference Pricing
Reference Stock
Specifications
Frequency Accuracy | ±10ppm / ±20ppm / ±30ppm |
Load Capacitance | 6 ~ 32pF or SERIES |
Load Resistance | <100Ω |
Operating Temperature Range | -20 to +70°C |
Package Type | SMD3225-4P |
Quality Factor | ±10ppm ±15ppm |
Resonant Frequency | 8.000 ~ 60.000MHz |
Temperature Coefficient | ±10ppm ±15ppm |
Function And Role
Core Function
Surface mount crystal for frequency generation
Key Characteristics
- 22MHz frequency
- 20pF load capacitance
- SMD3225-4P package
- ROHS compliant
Application Domains
Basic Scenarios
- Oscillator circuits
- Communication modules
- Timekeeping systems
Extended Scenarios
- IoT devices
- GPS receivers
- Medical equipment
- Automotive control systems
Precautions
Soldering | Use 300-350°C soldering iron with 3-5 seconds per pad |
Current Limit | Max 10mA operating current |
Voltage Limit | Operating voltage: 2.0-3.6V |
Thermal Management | Thermal resistance: 20°C/W |
Storage | Store in antistatic packaging below 25°C |
Risk Warnings |
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Alternative Model Params
- Frequency range (18-24MHz)
- Load capacitance (15-25pF)
- Package dimensions (3.2mmx2.5mm)
- SMD pitch (0.5mm)
Design Recommendations
Layout | Place within 5mm of oscillator components |
Thermal | Use 0.3mm copper trace for heat dissipation |
Compatibility | Verify with 2.0-3.6V regulated power supply |
Testing | Perform frequency stability test at 85°C/85% RH |
Market Positioning
Strengths |
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Weaknesses |
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