04023j4r7abstr Datasheet - Avx

The 0402 is a surface-mount ceramic capacitor. Ceramic capacitors are made of ceramic material and are commonly used in electronic circuits for filtering,...

Manufacturer
Avx
Part Number
04023J4R7ABSTR
Primary Category
PASSIVE COMPONENTS
Package
Surface Mount
Key Spec 1
Capacitance: 100pF
Key Spec 2
Voltage Rating: 50V

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📝 Component Overview

The 0402 is a surface-mount ceramic capacitor. Ceramic capacitors are made of ceramic material and are commonly used in electronic circuits for filtering, coupling, and decoupling applications. They are known for their high insulation resistance, low leakage current, and relatively low cost. The '0402' part of the designation refers to the component's size in inches, specifically 0.04 inches by 0.02 inches, which is a common size for surface-mount components.

Key Features and Benefits

Typical Applications

📊 Complete Technical Specifications

Absolute Maximum Ratings

ParameterValue
Operating Temperature-55°C to +125°C
Storage Temperature-55°C to +150°C

Electrical Characteristics

ParameterConditionMinTypMaxUnit
CapacitanceAt 1kHz, 1Vrms90pF100pF110pFpF
Dissipation FactorAt 1kHz, 1Vrms0.0010.0020.003

Package Information

Pin Configuration

🔧 Application Guidelines

Design Considerations

When designing with ceramic capacitors, consider the voltage and capacitance requirements of your application. Ensure the capacitor's voltage rating exceeds the maximum voltage it will be exposed to. Also, consider the temperature range and the potential for voltage coefficient effects on capacitance.

Installation Guidelines

For surface-mount components like the 0402, proper soldering techniques are crucial. Ensure the PCB is clean, and the solder paste is applied correctly. Follow recommended soldering profiles to avoid damaging the component.

Operational Notes

Ceramic capacitors can be sensitive to mechanical stress. Avoid flexing or bending the PCB near the capacitor. Also, be mindful of the capacitor's position relative to other components to minimize electromagnetic interference.