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MAX232EC/D датащи(PDF) 12 Page - Analog Devices |
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MAX232EC/D датащи(HTML) 12 Page - Analog Devices |
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12 / 26 page ![]() IEC1000-4-2 The IEC1000-4-2 standard covers ESD testing and per- formance of finished equipment; it does not specifically refer to integrated circuits. The MAX202E/MAX203E– MAX213E, MAX232E/MAX241E help you design equip- ment that meets level 4 (the highest level) of IEC1000- 4-2, without the need for additional ESD-protection components. The major difference between tests done using the Human Body Model and IEC1000-4-2 is higher peak cur- rent in IEC1000-4-2, because series resistance is lower in the IEC1000-4-2 model. Hence, the ESD withstand voltage measured to IEC1000-4-2 is generally lower than that measured using the Human Body Model. Figure 7b shows the current waveform for the 8kV IEC1000-4-2 level-four ESD contact-discharge test. The air-gap test involves approaching the device with a charged probe. The contact-discharge method connects the probe to the device before the probe is energized. Machine Model The Machine Model for ESD tests all pins using a 200pF storage capacitor and zero discharge resistance. Its objective is to emulate the stress caused by contact that occurs with handling and assembly during manufacturing. Of course, all pins require this protection during manu- facturing, not just RS-232 inputs and outputs. Therefore, after PC board assembly, the Machine Model is less rel- evant to I/O ports. Figure 6a. Human Body ESD Test Model Figure 7a. IEC1000-4-2 ESD Test Model Figure 7b. IEC1000-4-2 ESD Generator Current Waveform Figure 6b. Human Body Model Current Waveform www.analog.com Analog Devices │ 12 MAX202E–MAX213E, MAX232E/MAX241E ±15kV ESD-Protected, 5V RS-232 Transceivers CHARGE-CURRENT- LIMIT RESISTOR DISCHARGE RESISTANCE STORAGE CAPACITOR Cs 100pF RC 1MΩ RD 1500Ω HIGH- VOLTAGE DC SOURCE DEVICE UNDER TEST CHARGE-CURRENT- LIMIT RESISTOR DISCHARGE RESISTANCE STORAGE CAPACITOR Cs 150pF HIGH- VOLTAGE DC SOURCE DEVICE UNDER TEST RC 50MΩ to 100MΩ RD 330Ω tr = 0.7ns to 1ns 30ns 60ns t 100% 90% 10% I IP100% 90% 36.8% tRL TIME tDL CURRENT WAVEFORM PEAK-TO-PEAK RINGING (NOT DRAWN TO SCALE) Ir 10% 0 0 AMPERES |
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