| Allicdata Part #: | STD10-ND |
| Manufacturer Part#: |
STD10 |
| Price: | $ 7.90 |
| Product Category: | Circuit Protection |
| Manufacturer: | Eaton |
| Short Description: | FUSE CRTRDGE 10A 240VAC CYLINDR |
| More Detail: | N/A |
| DataSheet: | STD10 Datasheet/PDF |
| Quantity: | 1000 |
| Moisture Sensitivity Level (MSL): | 1 (Unlimited) |
| Lead Free Status / RoHS Status: | Lead free / RoHS Compliant |
| 20 +: | $ 7.17444 |
| Applications: | Electrical, Industrial |
| Melting I²t: | 28 |
| Size / Dimension: | 0.476" Dia x 0.945" L (12.10mm x 24.00mm) |
| Package / Case: | Cylindrical, Blade Terminal (Bolt) |
| Mounting Type: | Bolt Mount |
| Breaking Capacity @ Rated Voltage: | 33kA |
| Operating Temperature: | -- |
| Approvals: | -- |
| Class: | -- |
| Features: | -- |
| Series: | STD |
| Response Time: | -- |
| Voltage Rating - AC: | 240V |
| Current Rating: | 10A |
| Fuse Type: | Cartridge |
| Moisture Sensitivity Level (MSL): | -- |
| Part Status: | Active |
| Lead Free Status / RoHS Status: | -- |
| Packaging: | Bulk |
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Electrical systems, including those used in industrial and commercial applications, play a critical role in a variety of areas, and effective power control is essential for their successful operation. One of the many components used in power control includes the specialty fuse. Specialty fuses, such as the Standard 10 (STD 10) types, are designed to ensure power is distributed as intended and to protect other components from damage due to power surges or overloads. This article will discuss the application field and working principle of STD 10 fuses.
STD 10 fuses are primarily used in electrical circuits which require precise control of current levels in order to ensure safety and functionality. They are also commonly used in telecommunications systems, where precise control of current is required to ensure that communication signals are delivered accurately and with minimal interference. Additionally, these fuses are used in automotive systems, where they help protect wiring and associated components from damage due to electrical faults and surges.
When working within an electrical system, STD 10 fuses act as a circuit breaker, and they are designed to “trip” or open the circuit if the electrical current exceeds a predetermined amount. This predetermined level is known as the “trip point” and is usually between 8 and 10 amps in commercial applications. When the fuse trips, it quickly disconnects the electrical connection, thereby preventing further damage or interruption to the system. It also ensures that the circuit is not restarted until the current has been reduced to acceptable levels.
STD 10 fuses are typically composed of a variety of materials, including metal, ceramic, and plastic. These materials help to form the overall shape and construction of the fuse, as well as the working mechanism. Generally, the fuse comprises two metal elements, the body and the core. The body is the main part of the fuse and is usually constructed from metal or ceramic. The core, on the other hand, is constructed from plastic and consists of a conducting “wire” or “rod” which is connected to both the body and the electrical circuit.
When a current passes through the circuit, it generates heat. This heat is absorbed by the core and is dissipated into the body of the fuse. Once the current passes through the established trip point, the fuse begins to melt and the circuit is broken. Additionally, the heat generated from the core can also cause a short circuit, which is why it is important to ensure that the correct trip level is established and that the fuse is not overloaded.
In order to prevent the fuse from overheating and tripping, circuit designers must ensure that there is an adequate distance of at least 6 inches between the electrical connections and the fuse itself. Additionally, the fuse should also be placed away from any other sources of heat, such as lighting fixtures, heating ducts, or electronic equipment.
In conclusion, STD 10 fuses are an essential component of any electrical system and provide a crucial layer of protection against damage due to power surges and overloads. Their precise trip point ensures the safety of the system, as well as providing a cost effective and reliable solution to power control. In order to ensure the optimal and safe operation of these fuses, it is essential to select the correct type for a specific application and to maintain an adequate distance between the electrical connections and the fuse itself.
The specific data is subject to PDF, and the above content is for reference
| Part Number | Manufacturer | Price | Quantity | Description |
|---|
| STD12W-W | TE Connectiv... | 0.06 $ | 1000 | MARKER CHEVRON W LEGEND W... |
| STD18N55M5 | STMicroelect... | -- | 17500 | MOSFET N-CH 550V 13A DPAK... |
| STD12W-C | TE Connectiv... | 0.06 $ | 1000 | MARKER CHEVRON C LEGEND W... |
| STD17W-5 | TE Connectiv... | 0.15 $ | 1000 | MARKER CHEVRON 5 LEGEND W... |
| STD16N50M2 | STMicroelect... | -- | 1000 | MOSFET N-CH 500V 13A DPAK... |
| STD14NM50NAG | STMicroelect... | 0.6 $ | 1000 | MOSFETN-Channel 500V 12A ... |
| STD10N60M2 | STMicroelect... | 0.54 $ | 1000 | MOSFET N-CH 600V DPAKN-Ch... |
| STD110NH02LT4 | STMicroelect... | 0.0 $ | 1000 | MOSFET N-CH 24V 80A DPAKN... |
| STD15W-7 | TE Connectiv... | 0.15 $ | 1000 | MARKER CHEVRON 7 LEGEND W... |
| STD100N10F7 | STMicroelect... | -- | 1000 | MOSFET N CH 100V 80A DPAK... |
| STD10PF06T4 | STMicroelect... | 0.0 $ | 1000 | MOSFET P-CH 60V 10A DPAKP... |
| STD16N65M2 | STMicroelect... | 0.85 $ | 1000 | MOSFET N-CH 650V 11A DPAK... |
| STD12W-X | TE Connectiv... | 0.06 $ | 1000 | MARKER CHEVRON X LEGEND W... |
| STD17W-6 | TE Connectiv... | 0.15 $ | 1000 | MARKER CHEVRON 6 LEGEND W... |
| STD1NK80Z-1 | STMicroelect... | 0.94 $ | 2995 | MOSFET N-CH 800V 1A IPAKN... |
| STD10P10F6 | STMicroelect... | -- | 1000 | MOSFET P-CH 100V 10AP-Cha... |
| STD17W-8 | TE Connectiv... | 0.15 $ | 1000 | MARKER CHEVRON 8 LEGEND W... |
| STD17W-H | TE Connectiv... | 0.16 $ | 1000 | MARKER CHEVRON H LEGEND W... |
| STD100NH02LT4 | STMicroelect... | -- | 7500 | MOSFET N-CH 24V 60A DPAKN... |
| STD150N2LH5 | STMicroelect... | 0.0 $ | 1000 | MOSFET N-CH DPAKMOSFET N-... |
| STD12W-F | TE Connectiv... | 0.06 $ | 1000 | MARKER CHEVRON F LEGEND W... |
| STD17W-9 | TE Connectiv... | 0.15 $ | 1000 | MARKER CHEVRON 9 LEGEND W... |
| STD12NF06T4 | STMicroelect... | 0.29 $ | 1000 | MOSFET N-CH 60V 12A DPAKN... |
| STD12W-J | TE Connectiv... | 0.06 $ | 1000 | MARKER CHEVRON J LEGEND W... |
| STD15W-R | TE Connectiv... | 0.15 $ | 1000 | MARKER CHEVRON R LEGEND W... |
| STD11N60M2-EP | STMicroelect... | 0.46 $ | 1000 | N-CHANNEL 600 V, 0.550 OH... |
| STD12W-2 | TE Connectiv... | 0.13 $ | 485 | MARKER CHEVRON 2 LEGEND W... |
| STD15W-U | TE Connectiv... | 0.15 $ | 1000 | MARKER CHEVRON U LEGEND W... |
| STD17W-T | TE Connectiv... | 0.16 $ | 1000 | MARKER CHEVRON T LEGEND W... |
| STD1060TR | SMC Diode So... | 0.16 $ | 1000 | DIODE SCHOTTKY 60V DPAKDi... |
| STD16NF25 | STMicroelect... | 0.55 $ | 1000 | MOSFET N-CH 250V 13A DPAK... |
| STD17NF25 | STMicroelect... | 0.67 $ | 1000 | MOSFET N-CH 250V 17A DPAK... |
| STD17-APPLICATOR | TE Connectiv... | 1.34 $ | 1000 | STD17-APPLICATORMarker In... |
| STD12W-T | TE Connectiv... | 0.06 $ | 1000 | MARKER CHEVRON T LEGEND W... |
| STD15W-1 | TE Connectiv... | 0.15 $ | 1000 | MARKER CHEVRON 1 LEGEND W... |
| STD15W-Q | TE Connectiv... | 0.15 $ | 1000 | MARKER CHEVRON Q LEGEND W... |
| STD17W-Q | TE Connectiv... | 0.16 $ | 1000 | MARKER CHEVRON Q LEGEND W... |
| STD15W-B | TE Connectiv... | 0.15 $ | 1000 | MARKER CHEVRON B LEGEND W... |
| STD17W-1 | TE Connectiv... | 0.16 $ | 1000 | MARKER CHEVRON 1 LEGEND W... |
| STD100NH03LT4 | STMicroelect... | 0.0 $ | 1000 | MOSFET N-CH 30V 60A DPAKN... |
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STD10 Datasheet/PDF