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AN4337 bảng dữ liệu(PDF) 3 Page - STMicroelectronics |
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AN4337 bảng dữ liệu(HTML) 3 Page - STMicroelectronics |
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3 / 14 page ![]() DocID025012 Rev 1 3/14 AN4337 Avalanche failure mode 14 1 Avalanche failure mode Power MOSFETs have an intrinsic bipolar transistor in their structure. This vertical device, as illustrated in Figure 1, consists of the P+ diffusion, the N- epitaxial layer and the N+ substrate with the base-emitter junction shorted by the source metalization, forming the “Body Diode”. At the OFF-state, this non-symmetrical structure is reverse bias. The maximum reverse bias voltage that can be applied to a p-n body diode is limited by breakdown. When the applied voltage exceeds breakdown, a critical electrical field is reached and the carriers in the transition region are consequently accelerated to energies sufficient to free electron-hole pairs via collisions with bound electrons. This mechanism, known as Avalanche phenomenon, causes an electrical current multiplication that can allow very large currents within materials. Basically, the breakdown mechanism is not destructive for a p-n junction, however, heating caused by the large breakdown current and high breakdown voltage can damage a MOSFET device. In particular, two mechanisms can generate the failure of MOSFETs. The first one occurs because of the creation of thermally generated carriers in the epitaxial/bulk region and hence the creation of hot spots. The second one depends on the avalanche current: if this current creates an increasing voltage drop across the RB resistor (see Figure 1) sufficient to forward bias the parasitic BJT, it turns on, with potentially catastrophic results as control of the switch is lost. Due to these “failure modes”, the EAS and IAR parameters have been defined and inserted in the datasheets as absolute maximum ratings. EAS is the maximum avalanche energy that can be dissipated in the device during a single avalanche operation, while IAR is the maximum avalanche current without any bipolar latch up. Figure 1. MOSFET inside structure |
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