Capacitors store and release electrical energy, serving as fundamental components in nearly every circuit design. The category spans several distinct technologies, each suited to specific electrical and environmental demands. Aluminum electrolytic and polymer types handle bulk capacitance and power supply smoothing, while ceramic capacitors dominate high-frequency decoupling and filtering applications. Film and mica variants offer stability for precision timing and RF circuits, whereas tantalum and supercapacitors provide high volumetric efficiency or rapid charge-discharge cycles for energy storage. Buyers typically narrow options by dielectric material, voltage rating, tolerance, and package size before comparing manufacturers. A persistent trade-off involves balancing cost against availability; opting for a niche, high-tolerance film capacitor might secure performance but often extends lead times to twelve weeks or more, whereas a standard X7R ceramic part ships immediately but may require derating for critical applications. Counterfeit components remain a risk in the open market, particularly with obsolete or high-demand MLCCs, so traceability and date codes matter. Many engineers also weigh the choice between tantalum and aluminum polymer based on surge current tolerance and longevity requirements. Packaging preferences, such as tape and reel versus bulk, influence assembly costs and production scheduling. Stock levels and current pricing for these sub-categories are listed at icxing.com, where you can submit a bill of materials for a consolidated quote.
Request full traceability documentation including certificates of conformance and original manufacturer packaging with date codes. We source directly from franchised distributors or manufacturers to eliminate counterfeit risk, but you should still inspect for consistent labeling and lead finish upon receipt.
Standard values typically ship from stock within one to two weeks, while high-voltage or custom tolerances often require eight to twelve weeks. Plan your procurement schedule around production runs, as film capacitors are less frequently stocked in depth compared to ceramics.
Tantalum offers high capacitance in small packages but requires careful surge current derating and carries a failure mode risk. Aluminum polymer provides lower ESR and better surge tolerance, though at a slightly larger footprint and often lower maximum voltage ratings.
| Image | Part | Manufacturer | Description | Stock | Action | |
|---|---|---|---|---|---|---|
|
Würth Elektronik | CAP CER 0.5PF 100V C... |
17,300
In-stock
|
Inquiry | ||
|
Würth Elektronik | CAP CER 680PF 16V NP... |
40,500
In-stock
|
Inquiry | ||
|
Würth Elektronik | CAP CER 0.033UF 10V X... |
20,400
In-stock
|
Inquiry | ||
|
Würth Elektronik | CAP CER 1PF 25V C0G... |
36,000
In-stock
|
Inquiry | ||
|
Würth Elektronik | CAP CER 220PF 25V C0... |
42,800
In-stock
|
Inquiry | ||
|
Würth Elektronik | CAP CER 150PF 16V C0... |
30,100
In-stock
|
Inquiry | ||
|
Würth Elektronik | CAP CER 0.033UF 16V X... |
12,100
In-stock
|
Inquiry | ||
|
Würth Elektronik | CAP CER 680PF 100V X... |
35,100
In-stock
|
Inquiry | ||
|
Würth Elektronik | CAP CER 1500PF 10V X... |
44,600
In-stock
|
Inquiry | ||
|
Würth Elektronik | CAP CER 0.015UF 25V X... |
36,200
In-stock
|
Inquiry | ||
|
Würth Elektronik | CAP CER 220PF 25V X7... |
30,000
In-stock
|
Inquiry | ||
|
Würth Elektronik | CAP CER 100PF 100V C... |
32,500
In-stock
|
Inquiry | ||
|
Würth Elektronik | CAP CER 68PF 25V C0G... |
45,600
In-stock
|
Inquiry | ||
|
Würth Elektronik | CAP CER 150PF 100V C... |
12,500
In-stock
|
Inquiry | ||
|
Würth Elektronik | CAP CER 3300PF 10V X... |
12,400
In-stock
|
Inquiry | ||
|
Würth Elektronik | CAP CER 0.068UF 100V ... |
24,000
In-stock
|
Inquiry | ||
|
Würth Elektronik | CAP CER 33PF 10V C0G... |
20,200
In-stock
|
Inquiry | ||
|
Würth Elektronik | CAP CER 15PF 25V C0G... |
26,900
In-stock
|
Inquiry | ||
|
Würth Elektronik | CAP CER 2.2PF 50V C0... |
14,500
In-stock
|
Inquiry | ||
|
Würth Elektronik | CAP CER 6800PF 100V X... |
23,800
In-stock
|
Inquiry |