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CS43L36 Datasheet(PDF) 16 Page - Cirrus Logic |
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CS43L36 Datasheet(HTML) 16 Page - Cirrus Logic |
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16 / 89 page ![]() DS1081F3 16 CS43L36 3 Characteristics and Specifications Figure 3-1. Power Consumption Test Configuration ‘ Table 3-10. Power Consumption Test conditions (unless specified otherwise): Fig. 2-1 shows CS43L36 connections; GNDA = GNDL = GNDCP = 0 V; voltages are with respect to ground; performance data taken with VA = VCP = VL = 1.8 V; DIGLDO_PDN is deasserted; VP = 3.6 V; TA = +25°C; ASP_LRCK = 48-kHz Mode; FsINT = 48 kHz; SCLK = 12 MHz, MCLK_SRC_SEL = 0; volume= 0 dB; FULL_SCALE_VOL = 1 (–6 dB) for HPOUTx, TIP_SENSE_CTRL = 11, all other fields are set to defaults; no signal on any input; control port inactive; input clock/data are held low when not required; test load is RL = 30 and CL = 1 nF for HPOUTx; measured values include currents consumed by the DAC and do not include current delivered to external loads unless specified otherwise (e.g., HPOUTx); see Fig. 3-1. Use Cases ClassH Mode Typical Current (µA) Total Power (µW) iVA iVCP iVL iVP 1 A Off 1 1.Off configuration: Clock/data lines held low; RESET = LOW; VA = VL = VCP = 0 V; VP = 3.6 V. — 0 0 0 3.1 11.16 2 A Standby 2,3 2.Standby configuration: Clock/data lines held low; VA = VL = VCP = 0 V; VP = 3.6 V; M_HP_WAKE = 0 (unmasked). 3.SCLK_PRESENT = 1. — 0 0 0 20 72.0 3 A Standby (RCO Mode) 4,5 4.SCLK_PRESENT = 0 (RCO clocking). 5.Standby configuration (RCO clocking): Clock/data lines held low; VA = 0 V; VL = 1.8 V, VCP = 0 V, VP = 3.6 V; M_HP_WAKE = 0 (unmasked). — 0 0 343 31 729 4 A Playback Stereo HPOUT (no signal, HPOUT_LOAD = 0) VCP/3 1413 1204 858 58 6464 B Stereo HPOUT (0.1 mW, HPOUT_LOAD = 0) VCP/3 1441 2336 965 58 8744 Table 3-11. Register Field Settings Use Cases Register Fields and Settings Class H Mode p. 23 1 A — — — — 2 A 1 — — — 3 A 1 — — — 4 A 0 0 0 VCP/3 B 0 0 0 VCP/3 Note: The current draw on the VA, VCP, and VL power supply pins is derived from the measured voltage drop across a 10- series resistor between the associated supply source and each voltage supply pin. Given the larger currents that are possible on the VP supply, an ammeter is used for the measurement. Voltmeter – + DAC + – 10 – + DAC + – 10 Power Supply Ammeter VA GNDA/GNDCP/ GNDL/GND 0.1 µF VP 4.7 µF 0.1 µF VL DUT 0.1 µF – + DAC + – 10 0.1 µF VCP |
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