CDX 10KV 1000pF High Voltage Ceramic Capacitor string High quality ceramic material media

Brand Name:XIWUER
Certification:ISO9001,ISO14001,ISO45001,CCC
Model Number:CDX-10KV-P34
Minimum Order Quantity:1 unit
Delivery Time:5-8 days
Payment Terms:L/C, T/T
Contact Now

Add to Cart

Verified Supplier
Address: No.1118, Ziqiang Road, Xi'an-710015, Shaanxi, China.
Supplier`s last login times: within 25 hours
Product Details Company Profile
Product Details

Product Description:

The same ultra-high voltage silver sheets are connected in series using a new welding process. It has the characteristics of small size, high voltage resistance, good capacitance, and dielectric loss consistency. Generally, it is customized according to the needs of the circuit designed by the customer.

Features:

When it comes to choosing a product, four of the most sought-after characteristics are high-frequency response, low leakage of the transmission signal, high voltage AC resistance, and small size.

High-frequency response, also known as bandwidth, refers to how quickly the device can respond to signal changes. Low leakage of transmission signal indicates that the receiver is able to receive signals with minimal interference. High voltage AC resistance ensures that the device won't malfunction during fluctuating current levels, and small size is important when space is a concern.

It is important to consider these four characteristics when choosing components for any system. Paying close attention to these features can help ensure that a product performs optimally.

Technical Parameters:

PropertyValue
BrandXIWUER
Lead Spacing5mm
Temperature Coefficient±15ppm/°C
Capacitance4000pF
Insulation Resistance3000MΩ
Operating Temperature-55°C To +125°C
Ceramic materialY5V
Product NameHigh Voltage Ceramic Capacitor
Size20mm X 7mmX 5mm
ColorBrown

Applications:

Ferrite cores are a type of material made of powdered iron-gallium oxide in the form of iron, bound together with a binder. Commonly, they are seen in the form of a round ferrite core. These materials are mainly used in cable-television electromagnetic interference (EMI) suppression devices for the low-frequency region. Their function here is to reduce the effects of EMI from interfering with signals. In addition to this, they may also be used in high frequency radio antennas, microwave absorbers, and other electronic equipment. The ferrite core materials consist of the powdered iron-gallium oxide mixture, the binder and some other additives to make the core have different properties. Each component plays a role in giving the ferrite cores their special performance characteristics.

Customization:

High Voltage Ceramic Capacitor

  • Brand Name: XIWUER
  • Place of Origin: XIAN,CHINA
  • Certification: ISO9001,ISO14001,ISO45001,CCC
  • Minimum Order Quantity: 1 unit
  • Price: Negotiable
  • Packaging Details: Carton
  • Delivery Time: 5-8 days
  • Payment Terms: L/C, T/T
  • Supply Ability: 4,000,000 units a year
  • Operating Temperature: -55°C To +125°C
  • Product Name: High Voltage Ceramic Capacitor
  • Ceramic material: Y5V
  • RoHS Compliant: Yes
  • Capacitance: 4700pF

We offer custom High Voltage Ceramic Condenser, High Voltage Ceramic Cap, High Voltage Ceramic Capacitor with the highest quality and reliability, meeting the highest ISO standards. Our competitive pricing and superior quality make us the ideal choice for your High Voltage Ceramic Capacitor needs.

Packing and Shipping:

High Voltage Ceramic Capacitor Packaging and Shipping:

  • The product should be packaged in moisture-resistant containers or plastic bags.
  • Products are delivered using a dedicated shipping service.
  • The temperature and humidity of the goods must be strictly controlled.
  • The product must be securely sealed and properly labeled.
  • Products should be tested before shipping to ensure quality.
China CDX 10KV 1000pF High Voltage Ceramic Capacitor string High quality ceramic material media supplier

CDX 10KV 1000pF High Voltage Ceramic Capacitor string High quality ceramic material media

Inquiry Cart 0