Datasheet-1

Table Of Contents
PDF: 3295348826/Source:7478516499 Aptina reserves the right to change products or specifications without notice.
MT9V022_DS - Rev.H 6/10 EN
40 ©2005 Aptina Imaging Corporation. All rights reserved.
MT9V022: 1/3-Inch Wide-VGA Digital Image Sensor
Electrical Specifications
Electrical Specifications
Table 10: DC Electrical Characteristics
VPWR = 3.3V ±0.3V; T
A
= Ambient = 25°C
Symbol Definition Condition Minimum Typical Maximum Unit
V
IH Input high voltage VPWR - 0.5 VPWR + 0.3 V
VIL Input low voltage –0.3 0.8 V
I
IN Input leakage current No pull-up resistor;
VIN = VPWR or VGND
–15.0 15.0 μA
V
OH Output high voltage IOH = –4.0mA VPWR -0.7 V
V
OL Output low voltage IOL = 4.0mA 0.3 V
IOH Output high current VOH = VDD - 0.7 –9.0 mA
I
OL Output low current VOL = 0.7 9.0 mA
V
AA Analog power supply Default settings 3.0 3.3 3.6 V
IPWRA Analog supply current Default settings 35.0 60.0 mA
V
DD Digital power supply Default settings 3.0 3.3 3.6 V
I
PWRD Digital supply current Default settings, CLOAD = 10pF 35.0 60 mA
VAAPIX Pixel array power supply Default settings 3.0 3.3 3.6 V
I
PIX Pixel supply current Default settings 0.5 1.4 3.0 mA
V
LVDS LVDS power supply Default settings 3.0 3.3 3.6 V
ILVDS LVDS supply current Default settings 11.0 13.0 15.0 mA
I
PWRA
Standby
Analog standby supply current STDBY = VDD 234μA
I
PWRD
Standby
Clock Off
Digital standby supply current with
clock off
STDBY = VDD, CLKIN = 0 MHz 1 2 4 μA
I
PWRD
Standby
Clock On
Digital standby supply current with
clock on
STDBY= VDD, CLKIN = 27 MHz 1.05 mA
LVDS Driver DC Specifications
|V
OD| Output differential voltage
R
LOAD = 100
Ω±1%
250 400 mV
|DV
OD| Change in VOD between
complementary output states
––50mV
V
OS Output offset voltage 1.0 1.2 1.4 mV
DV
OS Change in VOS between
complementary output states
––35mV
I
OS Output current when driver shorted
to ground
±10 ±12 mA
I
OZ Output current when driver is tri-
state
±1 ±10 μA
LVDS Receiver DC Specifications
VIDTH+ Input differential | VGPD| < 925mV –100 100 mV
Iin Input current ±20 μA