HECMLCC capacitor C1808X471K302T

HEC

HEC Capacitors C1808X471K302T 1808 X7R 3KV 470PF

X7R dielectric provides ±15% capacitance stability over -55°C to +125°C, suitable for automotive, industrial, and other applications requiring a wider operating temperature range. SMD MLCC package Commonly used in Power Electronics, LED Lighting, Home Appliance. Typical end-products include RC Step-Down Circuit, LED Bulb Driver, Smart Meter Power Supply.

Mfr. PartC1808X471K302T
Factory PartC1808X471K302T
ManufacturerHEC
Movthing PartC1808X471K302T
StatusStock
Package500 PCS

Specifications

RoHSYes
Applicationscommercial
Size1808
Capacitance470PF
TemperatureX7R
Voltage3KV
Tolerance±10%
Description1808 X7R 3KV 470PF ±10%

Related Products

Applications

Power Electronics

  • RC Step-Down Circuit
  • LED Bulb Driver
Browse all Power Electronics capacitors →

LED Lighting

  • LED Bulb Driver
  • Smart Meter Power Supply
Browse all LED Lighting capacitors →

Home Appliance

  • Smart Meter Power Supply
  • HV DC-DC Aux Power
Browse all Home Appliance capacitors →

Renewable Energy

  • HV DC-DC Aux Power
  • High Voltage DC-DC Converter
Browse all Renewable Energy capacitors →

Real-World Case Study

RC Step-Down Power Supply Design

"The 1812 high-voltage X7R MLCC at 250V–400V rating is a common choice for transformerless capacitor-drop power supplies in LED bulbs, smart meters, and low-cost auxiliary supplies. Key design note: ensure adequate voltage derating (≥1.5× nominal) for long-term reliability."

Frequently Asked Questions

C0G (NP0) is a Class 1 dielectric with ±30ppm/°C stability, zero DC bias effect, and DF under 0.1% — use it for resonant circuits, timing, and precision filters. X7R is a Class 2 dielectric with ±15% tolerance over -55°C to +125°C and moderate DC bias roll-off, ideal for decoupling, bypass, and general-purpose filtering. X5R offers higher capacitance density than X7R but only spans -55°C to +85°C. Y5V delivers the highest density but swings +22% to -82% across -30°C to +85°C and can lose 70-90% of its rated capacitance at operating voltage.