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RF High Q Chip Ceramic Capacitor Applied in Low-Noise Amplifier Circuits

Customization: Available
Working Temperature: -55~125 ℃
Type: Multi-Layer Ceramic Capacitor

Product Description

Basic Information
Model NO.
1111
Application
Automobile, AC / Motor
Packaging Type
Surface Mount
Capacitance
1-4740000PF
Structure
Fixed Capacitor
Material
Ceramic
Tuning
Ceramic Capacitor
Package
Box
Specification
HQ 1111
Trademark
EKT
Origin
China
HS Code
8532249000
Packaging & Delivery
Package Size
20.00cm * 10.00cm * 15.00cm
Gross Weight
0.950kg
Capacity
300 Kk PCS/Month
Product Description
Radio Frequency High Q Multilayer Chip Ceramic Capacitor

Middle & high voltage MLCC is a special technology MLCC based on general MLCC technology. This type of MLCC features stable high voltage reliability and is perfectly suited for SMT (Surface Mount Technology). Middle & high MLCCs are widely applicable for various direct high voltage circuits where they significantly enhance circuit performance.

RF High Q Chip Ceramic Capacitor Applied in Low-Noise Amplifier Circuits
Product Parameters
Frequently Asked Questions
What are the primary applications for High Q Multilayer Chip Ceramic Capacitors?
These capacitors are specifically designed for automobile electronics, AC motors, and radio frequency circuits, particularly in low-noise amplifier environments.
What does "High Q" signify in these capacitors?
"High Q" refers to a high Quality factor, indicating lower energy loss in RF applications, which is critical for maintaining signal integrity in high-frequency circuits.
Are these capacitors compatible with automated assembly?
Yes, they are designed for Surface Mount Technology (SMT), allowing for efficient and stable automated assembly on modern circuit boards.
What range of capacitance is available for the 1111 model?
The capacitance ranges from 1PF to 4740000PF, providing a wide spectrum of options for different circuit requirements.
What are the advantages of using ceramic as a manufacturing material?
Ceramic materials provide excellent thermal stability, high voltage reliability, and a compact fixed structure, making them ideal for high-performance electronic components.
Do these products meet environmental standards?
Yes, these components are designed to meet modern industrial requirements and are compatible with standard lead-free reflow soldering processes.

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