SMBJ5.0A vs CPDUR24V

Part Number
SMBJ5.0A
CPDUR24V
Category TVS - Diodes TVS - Diodes
Manufacturer KYOCERA AVX Comchip Technology
Description TVS DIODE 5VWM 9.2VC SMB TVS DIODE 24VWM 47VC 0603
Package DO-214AA, SMB 2-SMD, No Lead
Series - -
Type Zener Zener
Operating Temperature -55°C ~ 150°C (TJ) -
Mounting Type Surface Mount Surface Mount
Package / Case DO-214AA, SMB 2-SMD, No Lead
Supplier Device Package SMB 0603/SOD-523F
Applications General Purpose General Purpose
Unidirectional Channels 1 -
Voltage - Reverse Standoff (Typ) 5V 24V
Voltage - Breakdown (Min) 6.4V 25V
Voltage - Clamping (Max) @ Ipp 9.2V 47V
Current - Peak Pulse (10/1000µs) 65.22A 1A (8/20µs)
Power - Peak Pulse 600W 47W
Power Line Protection No No
Bidirectional Channels - 1
Capacitance @ Frequency - 10pF @ 1MHz
  • 1. TVS is the abbreviation of diode. What does it mean?

    TVS is the abbreviation of Transient Voltage Suppressor, also known as Transient Voltage Suppression Diode.
    How TVS diodes work
    TVS diodes work using the avalanche breakdown effect. When the TVS diode receives a reverse voltage, the depletion layer near its PN junction will increase, causing the electric field intensity to increase, which in turn triggers the avalanche effect and causes the reverse current to increase sharply. Unlike ordinary diodes, TVS diodes can recover after avalanche breakdown and continue to work normally.

  • 2. What is the difference between TVS and ESD diodes?

    The main difference between TVS diodes and ESD diodes is their working principle, application scenarios and characteristics.
    Working principle and application scenarios
    TVS diodes (Transient Voltage Suppressors): TVS diodes are mainly used to suppress transient voltages and prevent components in the circuit from being damaged by surge voltages. When the two poles of the TVS diode are impacted by reverse transient high energy, it can change the high impedance to low impedance in a very short time, absorb the surge power, and protect the precision components in the circuit‌1. TVS diodes are suitable for protection against various surge pulses, such as lightning strikes, large-capacity load switching, etc.
    ESD diode (Electro-Static discharge): ESD diode is mainly used to prevent static electricity and prevent damage to electronic equipment caused by electrostatic discharge. ESD diodes have low capacitance values, typically between 1 and 3.5 picofarad (PF), to accommodate the rapid changes in electrostatic discharge. ESD diodes are suitable for board-level protection, especially in high-speed USB and I/O interfaces, which have higher requirements for electrostatic discharge.

  • 3. How do TVS diodes fail?

    The failure modes of TVS diodes mainly include short circuit failure, open circuit failure and performance degradation‌. These failure modes can have a serious impact on the normal operation and protection functions of the circuit.
    short circuit fault
    Short circuit failure is one of the most common failure modes of TVS diodes. When a TVS diode is short-circuited, it changes to a low-impedance state, allowing a large amount of current to pass through, which may cause the circuit to not function properly and may even damage other circuit components. Causes of short circuit faults include:
    Thermal breakdown: In a high temperature environment or when subjected to excessive transient energy impact, the PN junction of the TVS diode may undergo thermal breakdown, resulting in a short circuit.
    Over-electrical stress: When the transient pulse energy exceeds the energy that the TVS can withstand, it will cause over-electrical stress damage and even directly cause burnout.
    Manufacturing process issues: Such as chip bonding interface voids, mesa defects, strong accumulation layer or strong inversion layer on the surface, chip cracks, uneven impurity diffusion, etc., which may cause short circuit failures of TVS diodes during manufacturing or use.

  • 4. What is the difference between TVS diodes and MOVs?

    The main differences between TVS diodes and MOV varistors lie in their working principles, application scenarios and performance parameters.
    Working principle
    TVS diode: TVS diode (Transient Voltage Suppressor) is a semiconductor device with a high-sensitivity N/P junction. When the reverse voltage exceeds its breakdown voltage, the TVS diode will conduct quickly and introduce the surge current into the ground, thereby protecting the subsequent circuit. The response speed of TVS diodes is very fast, usually within nanoseconds.
    MOV varistor: MOV varistor (Metal-Oxide Varistor) is a multi-layer varistor made of multi-layer zinc oxide material. When the voltage exceeds its varistor voltage, the MOV will conduct, absorb the surge energy, and clamp the voltage within a safe range. MOV has a long response time, usually completing the response within microseconds.

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