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ADPD6000 датащи(PDF) 17 Page - Analog Devices |
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ADPD6000 датащи(HTML) 17 Page - Analog Devices |
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17 / 89 page ![]() Data Sheet ADPD6000 THEORY OF OPERATION analog.com Rev. 0 | 17 of 89 OPTICAL SIGNAL CHAIN The optical signal path stimulates up to four LEDs and measures the return signal on up to four separate current inputs. Twelve optical time slots enable 12 separate optical measurements per sampling period. The analog inputs can be driven single-ended or in differential pairs. The four analog inputs can be multiplexed into a single channel or two independent channels, enabling simultaneous sampling of two sensors. The optical signal chain consists of a TIA, an integrator that can also be configured as a buffer depending on the register setting, and an ADC. The digital block provides multiple operating modes, programmable timing, and block averaging. Four independent LED drivers are provided that can each drive up to 200 mA. Two LED drivers can be enabled in any time slot and can be programmed from 1.5 mA to 200 mA monotonically, with a 7-bit register setting. The LED drivers enabled in any time slot can provide a combined maximum LED current of 400 mA. When making optical measurements, the ADPD6000 provides 100 dB of ac ambient light rejection using a synchronous modulation scheme with pulses as short as 1 µs. Ambient light rejection is automatic without the need of external control loops, dc current subtraction, or digital algorithms. The LED driver is a current sink and is independent from the LED supply voltage and the LED type. The optical measurement path produces a high SNR for relatively low LED power, while greatly reducing the effect of ambient light on the measured signal. Analog Signal Path The analog signal path of the optical signal chain consists of four current inputs that can be configured as single-ended or differential pairs into one of two independent channels. The two channels can be sampled simultaneously for applications that require instantane- ous sampling of two sensors. Analog Input Multiplexer The optical signal chain supports four analog input pins. Each input can be used as a single-ended input or as part of a differential pair. Figure 27 shows a single representation of the input switch matrix, which allows a programmable connection to the two optical channels. Each pair of inputs has a duplicate of this multiplexer: IN1 and IN2, and IN3 and IN4. The connections are programmable per time slot. The PAIR12 and PAIR34 bits select whether the matching input pair is used as two single-ended inputs or as a differential pair. This selection is valid for all active time slots. The INP12_x and INP34_x bits specify whether the input pair is enabled during the corresponding time slot and, if enabled, which input is connected to which optical channel. The sleep conditions are used for any inputs that are not ena- bled. Sleep conditions are determined by the INP_SLEEP_12 and INP_SLEEP_34 bits, which specify the state for the input pairs during sleep and when the inputs are not active. Inputs are only considered active during the precondition and pulse regions for time slots where they are enabled. Preconditioning of the sensor connected to the input is provided to set the operating point at the input before sampling. There are several different options for preconditioning determined by the PRECON_x bits. The PRECON_x bits are provided for each time slot to specify the precondition for enabled inputs or input pairs during the corresponding time slot. Preconditioning options include floating the inputs, VC1, VC2, input common-mode voltage (VICM), internal voltage reference signal for the TIA (TIA_VREF), TIA input, and shorting the input pair. The preconditioning time at the start of each time slot is programmable using the PRE_WIDTH_x bits. The default preconditioning period is 8 µs. The block diagram in Figure 27 shows the bias levels that can be switched into the input connections during sleep and precondition- ing. These connections are not available during the sampling phase of a time slot in which the input is selected. Figure 27. Switch Matrix Block Diagram Ambient Light Cancellation The ADPD6000 has three modes to perform ambient light cancella- tion, as follows: ► Coarse tuning only ► Coarse and fine tuning loop ► External microcontroller unit (MCU) control Coarse tuning only mode and coarse and fine tuning loop mode are automatically controlled by the ADPD6000 without any software assistance. External MCU control mode allows tuning the ambient light rejection through an external algorithm. Use the AMBIENT_CANCELLATION_x bits to choose the mode. Coarse tuning mode works at the beginning of each PPG time slot. This mode measures the ambient light level and sets the ambient DAC code. This circuitry needs 48 μs to complete these activities and determine the baseline of the ambient DAC. Afterward, the |
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