0.47uF Parallel 1.2MΩ Snubber Capacitors

Advantages:

The Snubber Capacitor 0.47uF 310VAC Parallel 0.25W 1.2M Ω offers several advantages in electronic circuit design.

  1. It enhances the reliability and longevity of electronic devices by preventing voltage spikes that can damage components.
  2. It helps reduce EMI, ensuring proper operation of nearby sensitive equipment.

3. Tts high voltage rating and power dissipation capability make it suitable for demanding applications.

 

Working Principles:

Snubber capacitors are primarily used in power electronics and switching circuits. When connected in parallel with a load or a switching device, such as a diode or transistor, the snubber capacitor absorbs and dissipates high-frequency energy generated during switching. This prevents voltage spikes and reduces electromagnetic interference (EMI) in the circuit.

Product Description

Specifications:

 

Dielectric: Metallized polypropylene film

Electrodes: Non-inductive,high pulse resistor

Leads: Tinned wire or polyvinylchloride(PVC)insulation stranded copper wire

Coating: Expoxy resin(UL94V-0)

CATEGORY: X2 class

Reference standard: IEC384-14 GB/T14472-98 EN132400 UL1283

Climatic catalogue: 40/100/21

Capacitance versus rated voltage:

(SERIES)0.01μF~1.0μF 300VAC

(PARALLEL)0.001μF~0.68μF 300VAC

RESISTANCE AND POWER:

(SERIES ) 10-470 Ω,1/4、1/2 、1.0 or 2.0 Watt

(PARALLEL )1.0~2.2 MΩ,1/4 、1/2、 1Watt

Voltage-proof:

4.3*UR Unit:VDC ( 1 minute at 20℃ )

INSULATION RESISTANCE:

C≤0.33µF IR ≥15,000MΩ; C>0.33µF ,IR*C≥ 5,000S—-Series only

(1minute at 20 ℃ and RH≤ 65%)

CAPACITANCE TOLERANCE: M=±20% K=±10% J=±5%

AUTO-DRAFTAUTO-DRAFT

Applications  

The Snubber Capacitor 0.47uF 310VAC Parallel 0.25W 1.2M Ω finds applications in various electronic systems. It is commonly used in power supplies, motor drives, inverters, and other high-voltage circuits. Its ability to suppress voltage transients and reduce EMI makes it valuable in protecting sensitive components, such as microcontrollers, integrated circuits, and power semiconductors.

In certain cases, alternative snubber capacitor values or types may be required based on specific circuit requirements. Additionally, complementary components such as resistors, diodes, or inductors may be used in conjunction with the snubber capacitor to optimize snubbing performance and control voltage transients effectively.

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