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ST7LITE2 数据表(PDF) 104 Page - STMicroelectronics |
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ST7LITE2 数据表(HTML) 104 Page - STMicroelectronics |
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104 / 131 page ![]() ST7LITE2 104/131 EMC CHARACTERISTICS (Cont’d) 13.7.2 Electro Magnetic Interference (EMI) Based on a simple application running on the product (toggling 2 LEDs through the I/O ports), the product is monitored in terms of emission. This emission test is in line with the norm SAE J 1752/3 which specifies the board and the loading of each pin. Note 1. Data based on characterization results, not tested in production. 13.7.3 7Absolute Electrical Sensitivity Based on three different tests (ESD, LU and DLU) using specific measurement methods, the product is stressed in order to determine its performance in terms of electrical sensitivity. For more details, re- fer to the AN1181 ST7 application note. 13.7.3.1 Electro-Static Discharge (ESD) Electro-Static Discharges (3 positive then 3 nega- tive pulses separated by 1 second) are applied to the pins of each sample according to each pin combination. The sample size depends of the number of supply pins of the device (3 parts*(n+1) supply pin). Two models are usually simulated: Human Body Model and Machine Model. This test conforms to the JESD22-A114A/A115A standard. See Figure 67 and the following test sequences. Human Body Model Test Sequence – CL is loaded through S1 by the HV pulse gener- ator. – S1 switches position from generator to R. – A discharge from CL through R (body resistance) to the ST7 occurs. – S2 must be closed 10 to 100ms after the pulse delivery period to ensure the ST7 is not left in charge state. S2 must be opened at least 10ms prior to the delivery of the next pulse. Machine Model Test Sequence – CL is loaded through S1 by the HV pulse gener- ator. – S1 switches position from generator to ST7. – A discharge from CL to the ST7 occurs. – S2 must be closed 10 to 100ms after the pulse delivery period to ensure the ST7 is not left in charge state. S2 must be opened at least 10ms prior to the delivery of the next pulse. – R (machine resistance), in series with S2, en- sures a slow discharge of the ST7. Absolute Maximum Ratings Symbol Ratings Conditions Maximum value 1) Unit VESD(HBM) Electro-static discharge voltage (Human Body Model) TA=+25°C 4000 V VESD(MM) Electro-static discharge voltage (Machine Model) TA=+25°C TBD |
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