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PDF MN34041PL Data sheet ( Hoja de datos )

Número de pieza MN34041PL
Descripción MOS type image sensor
Fabricantes Panasonic 
Logotipo Panasonic Logotipo



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No Preview Available ! MN34041PL Hoja de datos, Descripción, Manual

MN34041PL
1.1 Product Summary
Outline
This is a MOS-type sensor of 1/3 type offering 2.1 mega pixels. This product consists of embedded photodiode, pixel
block by MOS transistor, column AD converter, built-in timing generator (TG), high speed serial output I/F and functional
circuits of various kinds. High definition 12-bit digital image signals offering 2.1 mega pixels are obtained with high speed
of 60 fps and with low power consumption.
Feature
Features of this MOS type image sensor are follows.
Table 1.1.1 List of Features
Item
Scan mode
Optical size
Number of active pixels
Total number of pixels
Pixel size
Number of pins
Actual imaging area dimensions
(active pixel area)
Color filter arrangement
Power supply voltage
Master clock
Bit number of internal ADC
Output signal type
Register I / F
Output frame rate per second (Full scan)
Electronic shutter (Full scan)
Variable gainColumn amplifier
Variable gain (Analog)
Variable digital gainDigital processing
Functions
Description
progressive scan
1/3 type (inch)
1944 (H) × 1092 (V) = 2,122,848 (pixel)
2010 (H) × 1108 (V) = 2,227,080 (pixel)
2.75 (H)μm × 2.75 (V)μm
104 Pinsincluding pins of “NC”
5.346 (H)mm × 3.003 (V)mm
Bayer arrangement of primary colors: R, G, B
3.3V / 1.8V / 1.2V
27 MHz / 37.125MHz
12 bit
subLVDS DDR method 486Mbps(MCLK=27MHz)
445.5Mbps (MCLK=37.125MHz)
3-lines Serial I/F
2ch 2port 12bit : 60fps
2ch 2port 16bit : 30fps 1
60fps: 1 / 60s 1 / 67500s (1 / 67500s step)
Full scanStandard +0/+6/+12dB
Full scan0dB/6dB
0dB 12dB
Full scan mode:2.1Mpixel output
Flip 2
Long exposure mode
1 This drive mode is available in chip set with Panasonic DSP (MN2PS00003RF) only.
2 Apply mirror function in DSP.
Publication date: August 2013
Ver. CEC
Page 1 of 12

1 page




MN34041PL pdf
MN34041PL
Pin specifications, process and functions list
Specifications and functions of pins showed in Figure 1.1.4 are the following.
Explanation of symbols: I: INPUT, O: OUT, P: POWER, G: GND
Pin No. Pin name
A3 NC
A4 SCS
A5 HD
A6 AVDD
A7 TM
A8 TB
A9 AVDD
A10 TBS0
A11 TBS1
A12 TBS2
B3 SI
B4 SCK
B5 VD
B6 AGND
B7 GND
B8 GND
B9 AGND
B10 GND
B11 VDD33
B12 VDDCELL0
C1 RSTN
C2 SO
C3 VDD
C4 VDD33
C5 GND
C6 AGNDSH
C7 VDD
C8 VDD
C9 AGNDSH
C10 GND
C11 VDD33
C12 VDD
C13 VREFRES2
C14 TBS3
Table 1.1.2 List of Pin Specifications, Process and Functions
I/O Process
Functions
- OPEN
None(Not connected to device)
I Input chip select signal Low : Select
Serial chip select
I/O
Sensor master : OPEN
Sensor slave : Horizontal synchronous signal input
Horizontal synchronous signal input
P Connect analog 3.3V power supply
Analog 3.3V power supply
I Connect DGND
Test
O OPEN
Test
P Connect analog 3.3V power supply
Analog 3.3V power supply
O OPEN
Test
O OPEN
Test
O OPEN
Test
I Input serial data
Serial data input
I Input serial clock
Serial clock input
I/O
Sensor master : OPEN
Sensor slave : Vertical synchronous signal input
Vertical synchronous signal
G Connect AGND
AGND
G Connect DGND
DGND
G Connect DGND
DGND
G Connect AGND
AGND
G Connect DGND
DGND
P Connect digital 3.3V power supply
Digital 3.3V power supply
I/O OPEN
Test
I Input reset signal (Low: Reset)
Reset signal
I/O Connect 10kbetween DGND
Serial signal output(Not guaranteed)
Register read : output, Others:Hi-z
P Connect 1.2V power supply
Digital core 1.2V power supply
P Connect digital 3.3V power supply
Digital 3.3V power supply
G Connect DGND
DGND
G Connect AGND
AGND
P Connect 1.2V power supply
Digital core 1.2V power supply
P Connect 1.2V power supply
Digital core 1.2V power supply
G Connect AGND
AGND
G Connect DGND
DGND
P Connect digital 3.3V power supply
Digital 3.3V power supply
P Connect 1.2V power supply
Digital core 1.2V power supply
I Connect 12kbetween AGND *1
Reference resistance for internal circuit
O OPEN
Test
Ver. CEC
Page 5 of 12

5 Page





MN34041PL arduino
MN34041PL
1.2.2 Reference Circuit
+ 47μF
12KΩ
±0.5%
12KΩ 12KΩ
±0.5% ±0.5%
0.1μF
AVDD
AGND
2.2μF
(±20% or less)
0.01μF
2.2μF
(±20% or less)
0.01μF
AGNDSH
VCHP1
VCHP2
MN34041
10μF
+
22μF
+
1+0μF
AVDD
VDD33,VDD33(LVDS) (Digital 3.3V)
VDD (Digital 1.2V)
VDD18
Insert terminal resistance 100Ω(±1%)
between plus and minus lines of LVDS
nearby reciever.
SDOCAP
SDOCAM
SDODA0P
SDODA0M
SDODA1P
SDODA1M
SDODA2P
SDODA2M
OPEN
SDOCBP
SDOCBM
SDODB0P
SDODB0M
SDODB1P
SDODB1M
SDODB2P
SDODB2M
OPEN
AGND (Analog GND)
Digital GND
10Ω
Figure 1.2.1 Reference circuit
※  Make it open in master mode
Vertical synchronous signal input (Slave)※
Horizontal synchronous signal input (Slave)※
Power save control (External control)
Hardware reset (External control)
Serial I/F
Master/Slave switching ( L; Master H; Slave)
Master clock input (MCLK = 27MHz/37.125MHz)
Recommended Coupling Parts for Each Power Supply Pin (decoupling capacitor)
Apply decoupling capacitance (about 0.1μF) with small parasitic series inductance to a pair of power supply and GND
near the pin as possible to cut high-frequency noise.
For example, decoupling capacitances in four corners of the chip in each four pairs of AVDD and AGND are
recommended.
Connect SO pin if need to read registers though it is not guaranteed.
Ver. CEC
Page 11 of 12

11 Page







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