Adafruit
Adafruit ADA-753 0.1uF ceramic capacitors 10 pack
Pack of ten 0.1 uF ceramic capacitors rated 50 V with 0.1 inch spacing for breadboard use
- TypeCapacitors
- 1 uF value filters power-supply spikes for stable operation
- 1 inch lead spacing fits breadboards and perfboards directly
- Pack of 10 capacitors supports multiple prototypes or repairs
- 50 V maximum voltage rating handles common logic-level rails
- 104 marking with -20%/+80% tolerance suits decoupling applications
What these capacitors are
Adafruit ADA-753 capacitors are 0.1 uF ceramic components supplied in a pack of 10. They are intended for prototyping and general circuit work where power-supply decoupling is needed.
Check before ordering
Each capacitor uses a 104 code and offers a -20%/+80% tolerance with a 50V maximum rating. Verify that your design can accept this tolerance range and that the voltage rating meets your circuit requirements.
Behaviour under sustained load
The wide tolerance makes these capacitors suitable for bulk decoupling and noise filtering on power rails. They are less appropriate for precision filter designs where tight capacitance control is critical.
Highlights
- 1 uF value filters power-supply spikes for stable operation
- 1 inch lead spacing fits breadboards and perfboards directly
- Pack of 10 capacitors supports multiple prototypes or repairs
- 50 V maximum voltage rating handles common logic-level rails
- 104 marking with -20%/+80% tolerance suits decoupling applications
Specifications
| Brand | Adafruit Industries |
|---|---|
| Model | ADAID-753 |
| Part Number | ADA-753 |
| Type | Capacitors |
Questions about this item
What comes in the pack and is anything else needed to use them?
The pack contains ten 0.1 uF ceramic capacitors coded 104 with 0.1 inch lead spacing; no extra parts are required for breadboard or perfboard use.
Which tolerance version should I pick for power-supply decoupling versus precision filtering?
These capacitors have a -20%/+80% tolerance, making them well suited for power-supply decoupling but not ideal for precision filter designs.
What does the 50 V rating mean when the capacitor is placed on a real circuit board?
The 50 V maximum voltage rating sets the highest continuous voltage the capacitor can withstand across its terminals in the finished circuit.
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