MXSMBJ170CA Allicdata Electronics

MXSMBJ170CA Circuit Protection

Allicdata Part #:

1086-14047-ND

Manufacturer Part#:

MXSMBJ170CA

Price: $ 16.93
Product Category:

Circuit Protection

Manufacturer: Microsemi Corporation
Short Description: TVS DIODE 170V 275V DO214AA
More Detail: N/A
DataSheet: MXSMBJ170CA datasheetMXSMBJ170CA Datasheet/PDF
Quantity: 1000
Moisture Sensitivity Level (MSL): 1 (Unlimited)
Lead Free Status / RoHS Status: Contains lead / RoHS non-compliant
100 +: $ 15.39490
Stock 1000Can Ship Immediately
$ 16.93
Specifications
Voltage - Clamping (Max) @ Ipp: 275V
Supplier Device Package: SMBJ (DO-214AA)
Package / Case: DO-214AA, SMB
Mounting Type: Surface Mount
Operating Temperature: -65°C ~ 150°C (TJ)
Capacitance @ Frequency: --
Applications: General Purpose
Power Line Protection: No
Power - Peak Pulse: 600W
Current - Peak Pulse (10/1000µs): 2.2A
Series: Military, MIL-PRF-19500
Voltage - Breakdown (Min): 189V
Voltage - Reverse Standoff (Typ): 170V
Bidirectional Channels: 1
Type: Zener
Moisture Sensitivity Level (MSL): --
Part Status: Active
Lead Free Status / RoHS Status: --
Packaging: Bulk 
Description

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The MXSMBJ170CA is a transient voltage suppressor (TVS) diode that offers an advanced level of ruggedness against high-current surge events. It is designed to clamp and protect circuits against voltage surges while offering an extremely efficient heat dissipation path. The device is specified for use in both automotive and consumer electronics applications.

The MXSMBJ170CA is primarily used to protect circuits from damaging overvoltage events that could cause serious damage or even catastrophic failure. The diode is designed to clamp an overvoltage event (spike or surge) to a maximum threshold voltage. The device’s ability to dissipate excessive heat without burning out makes it ideal for use in applications that require an aggressive clamping action. For example, the MXSMBJ170CA can protect against high-current events in automotive applications by providing an effective shield against too high power or by clamps internal transients generated by an electronic system’s controller or power supply.

The working principle behind the MXSMBJ170CA utilizes the avalanche breakdown phenomenon. When a certain voltage across the diode junction is reached, an avalanche of electrons is created, which causes the voltage to rise to the breakdown voltage level. This allows the diode to rapidly clamp any overvoltage events and act as a short-circuit. The breakdown voltage level is determined by the design parameters of the device and the forward current that it can support. This helps to ensure that the device will not be damaged due to an excessively high surge event.

The MXSMBJ170CA is used in a wide variety of applications including automotive electronics, consumer electronics, and industrial equipment. In automotive applications, the device is frequently used to protect against high-current events or transients generated by the vehicle’s electrical system. In consumer electronics, the device provides an effective protection solution against surges, spikes, and transients generated by an external or internal source. In industrial equipment, the device provides an effective protection solution for various electrical systems.

The MXSMBJ170CA is an invaluable device for circuit protection, especially in applications that require increased levels of protection. It provides an effective solution for clamping overvoltage events while providing an efficient heat dissipation path. The device is designed to withstand high-current surge events while offering an exceptional level of ruggedness.

Overall, the MXSMBJ170CA offers an advanced level of protection for a wide range of applications and is a great choice for circuit protection. It utilizes the avalanche breakdown phenomenon to protect circuits from damaging overvoltage events while providing efficient heat dissipation. The device is an invaluable tool for various automotive, consumer electronics, and industrial applications, providing an effective solution for the prevention of damage or failure from high-current or voltage events.

The specific data is subject to PDF, and the above content is for reference

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