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5962-9755701HPA Datasheet(PDF) 13 Page - Agilent(Hewlett-Packard) |
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5962-9755701HPA Datasheet(HTML) 13 Page - Agilent(Hewlett-Packard) |
13 / 16 page ![]() 13 Applications Information Functional Description Figure 23 shows the primary functional blocks of the HCPL- 7850. In operation, the sigma- delta modulator converts the analog input signal into a high- speed serial bit stream. The time average of this bit stream is directly proportional to the input signal. This stream of digital data is encoded and optically transmitted to the detector circuit. The detected signal is decoded and converted back into an analog signal, which is filtered to obtain the final output signal. Figure 25. Single-Supply Post-Amplifier Circuit. Figure 26. Top Layer of Printed Circuit Board Layout. Figure 27. Bottom Layer of a Printed Circuit Board Layout. Application Circuit The recommended application circuit is shown in Figure 24. A floating power supply (which in many applications could be the same supply that is used to drive the high-side power transistor) is regulated to 5 V using a simple three-terminal voltage regulator (U1). The voltage from the current sensing resistor, or shunt (Rsense), is applied to the input of the HCPL-7850 through an RC anti-aliasing filter (R5, C3). And finally, the differential output of the isolation amplifier is converted to a ground-referenced single-ended output voltage with a simple differential amplifier circuit (U3 and associated components). Although the application circuit is relatively simple, a few recommendations should be followed to ensure optimal performance. Supplies and Bypassing As mentioned above, an inexpensive three-terminal regulator can be used to reduce the gate-drive power supply voltage to 5 V. To help attenuate high frequency power supply noise or ripple, a resistor or 0.1 µF +5 V VOUT 8 7 6 1 3 U2 5 2 4 R1 10.0 K +5 V C8 0.1 µF – + MC34071 R3 10.0 K HCPL-7850 C4 R4B 20.0 K C6 150 pF U3 R4A 20.0 K +5 V C5 150 pF R2 10.0 K C3 C2 C4 R5 TO RSENSE+ TO RSENSE– TO VDD1 TO VDD2 VOUT+ VOUT– Figure 28. Operating Circuit for Burn-In and Steady State Life Tests. 1 2 3 4 8 7 6 5 VDD VIN+ VIN– GND VDD VOUT+ VOUT– GND + – + – 27 Ω 27 Ω 1 k 1 k 1 k 1 k (+) (–) VDD 5.5 VDC 0.1 µF CONDITIONS: ICC=17.5mA TA=+125˚C |
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