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VV6444 View Datasheet(PDF) - STMicroelectronics

Part Name
Description
MFG CO.
VV6444
ST-Microelectronics
STMicroelectronics 
VV6444 Datasheet PDF : 63 Pages
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STV0680B + VV6444/6410/6500
Detailed chipset specifications
6.5 Typical current consumption of complete camera
The following data assumes that the camera has been built according to reference design referred
to in Chapter 6 Figures are approximate and depend on actual components sources - see notes.
6.5.1 Using VV6444 (sensor operates at @ 5V DC)
Mode
Typical Current Cons.
Comments
’Snapshot’/Continuous/Self
timer mode (while un-teth- 80mA
ered)
’Snapshot’/Continuous/Self
timer mode (while tethered 80mA
to PC)
Assuming appropriate hardware included, power is sourced
from PC while USB connected.
Camera stand-by mode
(when NOT connected to
USB)
Approx. 220µA + SDRAM
self-refresh current (see
Note 2)
Total current in this mode equals:
STV0680/680A Standby current consumption (see Note 1)
+ SDRAM self-refresh current (see Note 2)
+ peripheral circuitry (approx. 50µA, see Note 3).
Suspend mode
(when connected to USB)
Approx. 80µA + SDRAM
self-refresh current (see
Note 2)
Total current in this mode equals:
STV0680/680A Standby current consumption (see Note 1)
+ SDRAM self-refresh current (see Note 2)
+ peripheral circuitry (approx. 50µA, see Note 3).
+ 200µA, based on 1.5k pull-up in camera (see Section 4)
and 15k pull-down in PC.
Table 17 : Current consumption, complete STV0680B+VV6444 camera
Note: 1 See Table 10 fin Section 6.2
2 From limited evaluation, typical self-refresh current figures of certain SDRAM chips are well below
manufacturers’ maximum specification, e.g. 100-250µA. See Section 4 for recommendations.
3 This is assuming a low quiescent current 3v3 VReg is used, and assuming that the sensor is
switched off using external circuitry.
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