Ceramic Capacitors

Image Part Number Description / PDF Quantity Rfq
RA012020BB40138BJ1

RA012020BB40138BJ1

Vishay / Beyschlag

CAP CER 400PF 2KV NONSTND

0

RC020080BD12236BJ1

RC020080BD12236BJ1

Vishay / Beyschlag

CAP CER 1200PF 4KV NONSTND

0

RE012020BB20136BJ1

RE012020BB20136BJ1

Vishay / Beyschlag

CAP CER 200PF 2KV R85 NONSTND

0

RA012085BB95015BF1

RA012085BB95015BF1

Vishay / Beyschlag

CAP CER 5PF 2KV R7 NONSTND

0

HPZ060WP20238AX1

HPZ060WP20238AX1

Vishay / Beyschlag

CAP CER 2000PF 20KV

0

RC020080BD20238BJ1

RC020080BD20238BJ1

Vishay / Beyschlag

CAP CER 2000PF 4KV NONSTND

0

TD020050BP40133BJ1

TD020050BP40133BJ1

Vishay / Beyschlag

CAP CER 400PF 8KV R85 NONSTND

0

FPS040BF20136BJ1

FPS040BF20136BJ1

Vishay / Beyschlag

CAP CER 200PF 6KV R85

0

HR0030VT15238AX1

HR0030VT15238AX1

Vishay / Beyschlag

CAP CER 1500PF 3.5KV Z5U NONSTND

0

RE020080BD10236BJ1

RE020080BD10236BJ1

Vishay / Beyschlag

CAP CER 1000PF 4KV R85 NONSTND

0

TC045150WJ80136BJ1

TC045150WJ80136BJ1

Vishay / Beyschlag

CAP CER 800PF 14KV NONSTND

0

HR0022VT75191AV1

HR0022VT75191AV1

Vishay / Beyschlag

CAP CER 750PF 3.5KV Z5U NONSTND

0

PE0140BJ10136BF2

PE0140BJ10136BF2

Vishay / Beyschlag

CAP CER 100PF 15KV R7 DISK

0

PE0200WJ30238BJ2

PE0200WJ30238BJ2

Vishay / Beyschlag

CAP CER 3000PF 14KV R85 DISK

0

PDZ100WH10236BJ1

PDZ100WH10236BJ1

Vishay / Beyschlag

CAP CER 1000PF 13KV R85 DISK

0

RE020080BD10136BF1

RE020080BD10136BF1

Vishay / Beyschlag

CAP CER 100PF 4KV R7 NONSTND

0

RA012085BB98015BF1

RA012085BB98015BF1

Vishay / Beyschlag

CAP CER 8PF 2KV R7 NONSTND

0

TC020080BP10138BG1

TC020080BP10138BG1

Vishay / Beyschlag

CAP CER 100PF 8KV R16 NONSTND

0

RE020080BD20238BJ1

RE020080BD20238BJ1

Vishay / Beyschlag

CAP CER 2000PF 4KV R85 NONSTND

0

BF025016WC50036BJ2

BF025016WC50036BJ2

Vishay / Beyschlag

CAP CER 50PF 9KV R85 AXIAL

0

Ceramic Capacitors

1. Overview

Ceramic capacitors are fixed-value capacitors with ceramic materials as dielectrics. They consist of alternating layers of ceramic and metal electrodes, offering compact size, low cost, and stable performance. As core passive components, they are critical in modern electronics for functions like noise filtering, signal coupling, and power supply stabilization. Their importance spans from consumer electronics to aerospace systems due to their reliability and wide operating frequency range.

2. Main Types and Functional Classification

Type Functional Characteristics Application Examples
Class I Ceramic Capacitors High stability, low losses, linear temperature coefficient ( 30ppm/ C) RF circuits, precision oscillators
Class II Ceramic Capacitors Higher capacitance density, nonlinear temperature response ( 15%-22%) Power decoupling, DC link circuits
Multi-Layer Ceramic Capacitors (MLCCs) Stacked electrode structure, high capacitance-to-volume ratio Mobile devices, automotive electronics
High Voltage Ceramic Capacitors Rated voltage >1kV, thick dielectric layers Power supplies, medical imaging equipment

3. Structure and Composition

Ceramic capacitors feature a layered structure with three primary components:

  • Ceramic Dielectric: Barium titanate (BaTiO3) or calcium zirconate formulations for Class II/III types
  • Electrodes: Nickel, copper, or silver-palladium alloys in alternating layers
  • Terminations: Solderable outer layers (e.g., tin/nickel plating) for PCB mounting

MLCCs are manufactured through tape casting, screen printing, and sintering processes to create monolithic structures with up to 1000+ electrode layers.

4. Key Technical Specifications

Parameter Significance Typical Range
Capacitance (C) Determines charge storage capability 0.5pF - 100 F
Rated Voltage (VR) Maximum DC working voltage 2.5V - 10kV
Capacitance Tolerance Manufacturing accuracy 1% (Class I) to 22% (Class III)
Temperature Coefficient Stability across temperature -55 C to +125 C operating range
ESR (Equivalent Series Resistance) Impacts high-frequency performance 1m - 100m

5. Application Fields

Ceramic capacitors are deployed in:

  • Consumer Electronics: Smartphones (decoupling), laptops (power management)
  • Automotive Systems: ECU units (noise suppression), EV charging circuits
  • Industrial Equipment: Motor drives (snubber circuits), PLC controllers
  • Telecommunications: 5G base stations (RF filtering), optical transceivers
  • Medical Devices: MRI scanners (high-voltage isolation), pacemakers

6. Leading Manufacturers and Products

Manufacturer Key Products Technical Highlights
Murata Manufacturing GRM series MLCCs Sub-millimeter 0201 size with 10 F capacity
TDK Corporation C4532 series High-reliability automotive grade components
KEMET Electronics C1210 series Space-grade tantalum ceramic hybrid capacitors
AVX Corporation 943D series High-voltage 2000V surface-mount devices
Vishay Intertechnology VCB series Anti-sulfurated terminations for harsh environments

7. Selection Guidelines

Key considerations for capacitor selection:

  • Operating voltage margin (>20% above rated voltage)
  • Temperature stability requirements (Class I for precision circuits)
  • Size constraints (MLCCs preferred for miniaturization)
  • Environmental factors (humidity, vibration, thermal cycling)
  • Cost optimization (Class II for cost-sensitive applications)

Example: For a 5G RF front-end module, select Class I capacitors with 0.1pF tolerance and 50 impedance matching characteristics.

8. Industry Trends

Emerging developments include:

  • Miniaturization: Development of 01005-inch MLCCs for wearable devices
  • High Capacitance Density: 100 F+ in 1210 package through nano-dielectric engineering
  • Advanced Materials: Lead-free ceramics meeting RoHS standards
  • High-Temperature Performance: Capacitors operating reliably at 200 C+
  • Integrated Solutions: Embedded capacitor substrates for SiP (System-in-Package) applications
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