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VD5377CBUW 데이터시트(PDF) 19 Page - STMicroelectronics

부품명 VD5377CBUW
상세설명  Ultra-low power motion sensor for optical finger navigation (OFN)
PDF  88 Pages
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제조업체  STMICROELECTRONICS [STMicroelectronics]
홈페이지  http://www.st.com
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VD5377CBUW 데이터시트(HTML) 19 Page - STMicroelectronics

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Doc ID 022952 Rev 2
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VD5377
System overview
Table 8 summarizes the typical operating current in Manual mode.
Figure 8 describes the power-up sequence of the VD5377.
Figure 8. Manual power mode timing diagram
After the MCU boot sequence is completed, the system enters SW STDBY state and the
MOTION pin is set to 1 indicating that the device is ready to receive commands from the
host. After initialization by the host over I2C, the device enters the MANUAL RUN state and
the MOTION pin goes low.
Note:
The MOTION pin polarity is programmable. If active low polarity is selected during
initialization, the MOTION pin will remain high.
If the STANDBY pin is asserted, the system completes the current frame operation before
entering the STANDBY state and stopping the internal system clock. When the STANDBY
pin is deasserted, the system clock is restarted and the device resumes in the RUN state
(no re-initialization required). If the POWERDOWN pin is asserted (active high), the internal
1.8 V regulator is disabled and the 1.8 V core supply is switched off. When the
Table 8. Typical power consumption(1) - Manual mode
1. Includes LED (maximum exposure)
Run(2)
2. Internal clock = 44 MHz; led_dac 14 mA; Maximum exposure
Standby
Power down
3k3 kf/s
2 kf/s
1 kf/s
10.2 mA
6.9 mA
4.5 mA
25 µA
<1 µA
VTop
DVDD/AVDD
POR
System
Clock
POWERDOWN (I)
System States Power Up
SW STDBY
MANUAL
STANDBY
POWERDOWN
Power Up
STANDBY (I)
MOTION (O)
I2C (I/O)
MCU BOOT
RUNNING
state
state
MANUAL
RUNNING
host_config_done
Power Up
MCU BOOT
STANDBY pin latency
up to 1 frame duration
t1
t2
t3
t5
t2
Device Ready
t4



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