The TSM80N400CF C0G capacitor belongs to the category of ceramic capacitors and is widely used in electronic circuits for its high stability and reliability. This capacitor is known for its excellent characteristics, including low loss, high insulation resistance, and stable capacitance over a wide temperature range. It is typically available in a variety of package sizes and quantities to suit different application requirements.
The TSM80N400CF C0G capacitor has the following specifications: - Capacitance: 80nF - Voltage Rating: 400V - Dielectric: C0G (NP0) - Tolerance: ±5% - Temperature Coefficient: 0±30ppm/°C
The detailed pin configuration of the TSM80N400CF C0G capacitor is as follows: - Pin 1: Connected to one terminal of the capacitor - Pin 2: Connected to the other terminal of the capacitor
The TSM80N400CF C0G capacitor operates based on the principles of energy storage in an electric field. When a voltage is applied across its terminals, it stores electrical energy in the form of an electrostatic field between its plates. This stored energy can be released when needed, making it an essential component in various electronic circuits.
The TSM80N400CF C0G capacitor finds extensive use in the following application fields: - Power supply filtering - RF coupling and decoupling - Timing circuits - Oscillator circuits - Signal processing
Some alternative models to the TSM80N400CF C0G capacitor include: - TSM60N300CF C0G - TSM100N500CF C0G - TSM120N600CF C0G - TSM150N700CF C0G
In conclusion, the TSM80N400CF C0G capacitor offers high stability, low loss, and reliable performance, making it a preferred choice for various electronic circuit applications.
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What is TSM80N400CF C0G?
What are the key features of TSM80N400CF C0G?
In what technical solutions can TSM80N400CF C0G be used?
What is the voltage rating of TSM80N400CF C0G?
How does TSM80N400CF C0G compare to other MLCCs?
Are there any specific layout or mounting considerations for TSM80N400CF C0G?
Can TSM80N400CF C0G be used in automotive applications?
What are the storage and operating temperature ranges for TSM80N400CF C0G?
Does TSM80N400CF C0G require derating at high temperatures?
Are there any known failure modes associated with TSM80N400CF C0G?