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5.0SMDJ58CA
+Lista de MateriaisTVS DIODE 64.4VWM 93.6VC DO214AB
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FabricanteRectron USA
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Peça do Fabricante #5.0SMDJ58CA
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Ficha Técnica 5.0SMDJ58CA DataSheet
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Pacote DO-214AB, SMC
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Especificações
| Atributo | Valor |
| Supplier | Rectron USA |
| Package | Tape & Reel (TR) |
| Series | 5.0SMDJ |
| ProductStatus | Active |
| Type | Zener |
| BidirectionalChannels | 1 |
| Voltage-ReverseStandoff(Typ) | 64.4V |
| Voltage-Clamping(Max)@Ipp | 93.6V |
| Power-PeakPulse | 5000W (5kW) |
| PowerLineProtection | No |
| Applications | General Purpose |
| OperatingTemperature | -55°C ~ 150°C (TJ) |
| MountingType | Surface Mount |
| Package/Case | DO-214AB, SMC |
Visão Geral
Description
Key features of the 5.0SMDJ58CA include:
1. Peak Pulse Power: It can handle peak pulse power dissipation of up to 5000 Watts (5 kW) for a 10/1000 µs waveform, ensuring robust protection against high-energy transients.
2. Clamping Voltage: This diode has a clamping voltage that limits the voltage across the device to a safe level during a transient event.
3. Bidirectional Capability: The "CA" suffix indicates that it is a bidirectional device, providing protection against both positive and negative voltage spikes.
4. Low Leakage Current: It offers low leakage current, making it energy efficient when not actively suppressing transients.
5. Applications: Commonly used in telecommunications, automotive electronics, and industrial systems, where reliable over-voltage protection is critical.
Equivalent
1. Littelfuse 5.0SMDJ58CA
2. Vishay SM6T58CA
3. ON Semiconductor P6SMB58CA
4. Bourns 5.0SMDJ58CA
5. STMicroelectronics SM6T58CA
These equivalents generally share similar electrical characteristics such as peak power dissipation, standoff voltage, and breakdown voltage, but always verify specific parameters to ensure compatibility.
Features
1. Peak Pulse Power: It offers a peak pulse power rating of 5000 Watts (5 kW) with a 10/1000μs waveform, providing robust protection against transient voltage events.
2. Stand-Off Voltage: The diode has a stand-off voltage of 58 volts, which is the maximum voltage it can handle without conducting.
3. Low Clamping Voltage: It features a low clamping voltage, ensuring effective suppression of voltage spikes and minimal risk to the protected circuitry.
4. Polymeric Package: The component is typically encased in a surface-mount DO-214AB (SMC) package, allowing for easy integration into circuit boards with minimal space.
5. Response Time: It has a fast response time, usually in the picosecond range, to quickly react to transient events.
6. ESD Protection: The diode provides excellent ESD protection, meeting or exceeding IEC standards for electrostatic discharge.
These features make the 5.0SMDJ58CA suitable for applications requiring reliable overvoltage protection in automotive, telecommunications, and industrial electronics.
Pinout
Regarding the pin count, the 5.0SMDJ58CA has two terminals, typical for a diode, which are the anode and cathode. These two leads are used to connect the diode into a circuit to provide the desired transient voltage suppression.
The primary function of the 5.0SMDJ58CA is to clamp voltage surges to a safe level, thereby protecting downstream components. It can handle significant power in the event of a surge, given its peak pulse power dissipation rating of 5000 watts (5.0 kW) for a 10/1000 µs waveform. The "58" in its part number indicates its breakdown voltage of 58 volts, while "CA" signifies a bidirectional device, meaning it can protect against voltage transients in both polarities.
Manufacturer
Application
1. Telecommunications: Protecting communication lines and equipment from surges.
2. Industrial Electronics: Safeguarding control systems and automation equipment.
3. Consumer Electronics: Shielding devices like TVs and smartphones from electrical surges.
4. Automotive Electronics: Protecting electronic control units (ECUs) and sensors.
5. Computers and Peripherals: Ensuring the safety of PCs, servers, and associated hardware.
6. Power Supplies: Securing power distribution systems and components from voltage spikes.
These applications exploit its ability to clamp excess voltage and prevent damage to electronic circuits.