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AMC0106M05 bảng dữ liệu(PDF) 19 Page - Texas Instruments |
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AMC0106M05 bảng dữ liệu(HTML) 19 Page - Texas Instruments |
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19 / 35 page ![]() 6.3.3 Isolation Channel Signal Transmission The AMC0106M05 uses an on-off keying (OOK) modulation scheme to transmit the modulator output bitstream across the SiO2-based isolation barrier. The transmit driver (TX) illustrated in the Functional Block Diagram transmits an internally generated, high-frequency carrier across the isolation barrier to represent a digital one. However, TX does not send a signal to represent a digital zero. The nominal frequency of the carrier used inside the AMC0106M05 is 480MHz. Figure 6-4 shows the concept of the on-off keying scheme. Modulator Bitstream on High-side Clock Signal Across Isolation Barrier Recovered Sigal on Low-side Figure 6-4. OOK-Based Modulation Scheme 6.3.4 Digital Output A differential input signal of 0V ideally produces a stream of ones and zeros that is high 50% of the time. A differential input of 50mV produces a stream of ones and zeros that is high 89.06% of the time. With 16 bits of resolution, that percentage ideally corresponds to code 58368. A differential input of 50mV produces a stream of ones and zeros that are high 10.94% of the time. With 16 bits of resolution, that percentage ideally corresponds to code 7168. These input voltages are also the specified linear range of the AMC0106M05. If the input voltage value exceeds this range, the output of the modulator shows increasing nonlinear behavior as the quantization noise increases. The modulator output clips with a constant stream of zeros with an input ≤64mV or with a constant stream of ones with an input ≥64mV. In this case, however, the AMC0106M05 generates a single 1 or 0 every 128 clock cycles to indicate proper device function. A single 1 is generated if the input is at negative full-scale and a 0 is generated if the input is at positive full-scale. See the Output Behavior in Case of a Full-Scale Input section for more details. Figure 6-5 shows the input voltage versus the output modulator signal. Modulator Output + FS (Analog Input) – FS (Analog Input) Analog Input Figure 6-5. Modulator Output vs Analog Input The density of ones in the output bitstream is calculated using Equation 1 for any input voltage (VIN = VINP – VINN) value. Except for a full-scale input signal, as described in Output Behavior in Case of a Full-Scale Input section. ρ=VIN+VClipping 2×VClipping (1) 6.3.4.1 Output Behavior in Case of a Full-Scale Input If a full-scale input signal is applied to the AMC0106M05, the device generates a single one or zero every 128 bits at DOUT. Figure 6-6 shows a timing diagram of this process. A single 1 or 0 is generated depending on www.ti.com AMC0106M05 SBASAS7A – AUGUST 2024 – REVISED JUNE 2025 Copyright © 2025 Texas Instruments Incorporated Submit Document Feedback 19 Product Folder Links: AMC0106M05 |
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