TKD Series

Power supply
Voltage multiplier
High power
Class 1 (NPO, P100)
Class 1 (C4xx)
Class 2 (X7R, 2C1, BX)
product.thumbnail.alt TKD Series - Capacitors > Ceramic Capacitors > High Voltage
  • Conformal coated capacitors
  • Up to 10kV
  • Excellent withstanding to charge/discharge
  • Excellent stability under voltage
  • C4XX dielectric (-2 200 ± 500)ppm/°C
  • Formerly under the reference: TKD179, TKD181, TKD185, TKD279, TKD280, TKD281, TKD282, TKD283, TKD284, TKD285
  • Capacitance
10pF ~ 39µF
  • Voltage Rated DC
200V ~ 10kV
  • Operating Temp
-55°C ~ 125°C
  • Tolerance
±1%, ±2%, ±5%, ±10%, ±20%
  • Mounting
Radial
  • Dielectric
NPO, X7R, C4XX
  • RoHS
ROHS, Non ROHS

The TKD Series series ceramic capacitors featuring high discharge rate deliver high‑level performance in the most demanding applications.
 

Typical applications :

  • Power supplies
  • Voltage multipliers
  • DC/DC converters
  • Pulse application

 

The below Part Numbers reflect our high runners only
Please contact us if you can't find your specifications.

PN
Capacitance
Voltage Rated DC
Operating Temp
Tolerance
Mounting
Case size
RoHS
TKD179 - - - - S 1200pF +/-10% 1000 V - Lev FM 1200pF 1V - ±10% Radial - Non ROHS
TKD179 - - - - S 1200pF +/-10% 1000 V - Lev EM 1200pF 1V - ±10% Radial - Non ROHS
TKD181 - - - - S 1000pF +/-10% 1000 V - Lev EM 1000pF 1V - ±10% Radial - Non ROHS
TKD185 - - - - - 820pF +/-10% 10000 V - - 820pF 10V - ±10% Radial - Non ROHS
TKD279 - - - - S 5.6nF +/-10% 1000 V - Lev EM 5600pF 1V - ±10% Radial - Non ROHS
TKD279 - - - - S 6.8nF +/-20% 1 kV - Lev FM 6800pF 1V - ±20% Radial - Non ROHS
TKD279 - - - - S 6.8nF +/-20% 1 kV - Lev EM 6800pF 1V - ±20% Radial - Non ROHS
TKD279 - - - - - 15nF+/-20% 1 kV - - 15000pF 1V - ±20% Radial - Non ROHS
TKD279 - - - - S 3.3nF +/-10% 2 kV - Lev FM 3300pF 2V - ±10% Radial - Non ROHS
TKD279 - - - - S 3.3nF +/-10%2 kV - Lev EM 3300pF 2V - ±10% Radial - Non ROHS
TKD280 - - - - S 47nF+/-20% 500 V - Lev FM 47000pF 500V - ±20% Radial - Non ROHS
TKD280 - - - - S 82nF+/-10% 500 V - Lev FM 82000pF 500V - ±10% Radial - Non ROHS
TKD280 - - - - S 82nF+/-10% 500 V - Lev EM 82000pF 500V - ±10% Radial - Non ROHS
Compliance and certifications
certification
ESA
certification
Custom Qualification Plan
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Frequently Asked Questions

Find answers to the most frequently asked questions about our products and services.
High Voltage and Custom Mica Capacitors

Standard silver mica capacitors are normally designed to handle voltages from 100 to 1000 volts. High-voltage RF transmitter applications can call for higher tolerances. Mica capacitors are available for voltages up to 20kV.

Our expert engineering team can create the mica capacitor with the characteristics you require. Send us your drawing or file and we will work with you to manufacture the correct size, lead style and capacitance you desire.

High Voltage versus Traditional Capacitors

Our high voltage capacitors are specifically designed to be able to withstand a larger amount of electrical charge than other types of capacitors can offer. They use two main mechanisms to store the energy that is being transmitted, which is contrary to the conventional dielectric method that is used with other types of capacitors. The first main method used to store electricity is called double layer capacitance, while the second is called pseudo capacitance. These methods are electrostatic and electrochemical in origin, respectively, which allows high voltage capacitors to combine the energy storing methods of normal capacitors with the methods used during the operation of a normal battery.

How do High Voltage Capacitor Materials differ?

High voltage capacitors can be made from a few different types of material. High voltage ceramics capacitors and metalized polyester film capacitors are just two of the main types. They are notable for a few different characteristics:

Charge time – Even though different types of technology are at work with regards to the way high voltage types of capacitors operate, they still have both discharge and charge times that are very comparable to those of regular capacitors. These charge times are possible due to the low internal resistance in the materials at play.

Specific power – Another main characteristic that sets these types of capacitors apart is specific power, which means that they have a specific power of up to ten times larger than regular batteries.

Cycle life and safety – High voltage capacitors are much safer than traditional capacitors and batteries, even when they’re being mistreated. A traditional battery, for example, has been known to fully explode if it is short circuited, experiences excessive heat or is involved in other types of situations.

Unlimited charging – High voltage capacitors can also be charged and discharged a virtually unlimited number of times. Traditional capacitors and batteries can only be charged around 500 times before they start to lose some of their original power.

Because of these reasons, high voltage capacitors made from all types of materials are very useful during situations where energy needs to be stored and released on a frequent basis.

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