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MAX3003 Datasheet(PDF) 16 Page - Maxim Integrated Products |
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MAX3003 Datasheet(HTML) 16 Page - Maxim Integrated Products |
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16 / 24 page ![]() +1.2V to +5.5V, ±15kV ESD-Protected, 0.1µA, 35Mbps, 8-Channel Level Translators 16 ______________________________________________________________________________________ ESD Test Conditions ESD performance depends on a variety of conditions. Contact Maxim for a reliability report that documents test setup, test methodology, and test results. Human Body Model Figure 7a shows the Human Body Model and Figure 7b shows the current waveform it generates when dis- charged into a low impedance. This model consists of a 100pF capacitor charged to the ESD voltage of inter- est, which is then discharged into the test device through a 1.5k Ω resistor. Machine Model The Machine Model for ESD tests all pins using a 200pF storage capacitor and zero discharge resis- tance. Its objective is to emulate the stress caused by contact that occurs with handling and assembly during manufacturing. Of course, all pins require this protec- tion during manufacturing, not just inputs and outputs. Therefore, after PC board assembly, the Machine Model is less relevant to I/O ports. Applications Information Power-Supply Decoupling To reduce ripple and the chance of transmitting incor- rect data, bypass VL and VCC to ground with a 0.1µF capacitor. To ensure full ±15kV ESD protection, bypass VCC to ground with a 1µF capacitor. Place all capaci- tors as close to the power-supply inputs as possible. I2C Level Translation For I2C level translation for I2C applications, please refer to the MAX3372E–MAX3379E/MAX3390E–MAX3393E datasheet. Unidirectional vs. Bidirectional Level Translator The MAX3000E/MAX3001E/MAX3002/MAX3003 can also be used to translate signals without inversion. These devices provide the smallest solution (UCSP package) for unidirectional level translation without inversion. P ONE-SHOT N ONE-SHOT VL VCC OVCC IVL 6k Ω 6k Ω P ONE-SHOT N ONE-SHOT VL VCC IVCC OVL 6k Ω 6k Ω TYPICAL DRIVING ONE CHANNEL ON VCC SIDE TYPICAL DRIVING ONE CHANNEL ON VL SIDE MAX3001E/MAX3002–MAX3012 Figure 5. MAX3001E/MAX3002–MAX3012 Simplified Functional Diagram (1 I/O Line) 0 VTH_IN/6k Ω -(VS - VTH_IN)/6k Ω IIN VTH_IN VS VIN WHERE VS = VCC OR VL Figure 6. Typical IIN vs. VIN |
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