AT91SAM9G45-CU Atmel, AT91SAM9G45-CU Datasheet - Page 899

MCU ARM9 324-TFBGA

AT91SAM9G45-CU

Manufacturer Part Number
AT91SAM9G45-CU
Description
MCU ARM9 324-TFBGA
Manufacturer
Atmel
Series
AT91SAMr

Specifications of AT91SAM9G45-CU

Core Processor
ARM9
Core Size
16/32-Bit
Speed
400MHz
Connectivity
EBI/EMI, Ethernet, I²C, IrDA, MMC, SPI, SSC, UART/USART, USB
Peripherals
AC'97, DMA, I²S, LCD, POR, PWM, WDT
Number Of I /o
160
Program Memory Size
64KB (64K x 8)
Program Memory Type
ROM
Ram Size
128K x 8
Voltage - Supply (vcc/vdd)
0.9 V ~ 1.1 V
Data Converters
A/D 8x10b
Oscillator Type
Internal
Operating Temperature
-40°C ~ 85°C
Package / Case
324-TFBGA
Processor Series
AT91SAMx
Core
ARM926EJ-S
Data Bus Width
32 bit
Data Ram Size
64 KB
Interface Type
I2C, SPI, UART
Maximum Clock Frequency
800 MHz
Number Of Programmable I/os
160
Number Of Timers
5
Maximum Operating Temperature
+ 85 C
Mounting Style
SMD/SMT
3rd Party Development Tools
JTRACE-ARM-2M, MDK-ARM, RL-ARM, ULINK2
Development Tools By Supplier
AT91SAM-ICE, AT91-ISP
Minimum Operating Temperature
- 40 C
On-chip Adc
10 bit
Controller Family/series
AT91
No. Of I/o's
160
Ram Memory Size
64KB
Cpu Speed
400MHz
No. Of Timers
2
Rohs Compliant
Yes
For Use With
AT91SAM9G45-EKES - KIT EVAL FOR AT91SAM9G45
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Eeprom Size
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant

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Table 39-3.
Table 39-4.
Table 39-5.
39.4.3
6438F–ATARM–21-Jun-10
RGB 5:6:5
Mode
RGB 5:6:5
Mode
RGB 8:8:8
RGB 5:6:5
Clocks
RGB Format in Default Mode, RGB_CFG = 00, No Swap
RGB Format, RGB_CFG = 10 (Mode 2), No Swap
RGB Format in Default Mode, RGB_CFG = 00, Swap Activated
Byte 0
Byte 1
Byte 2
Byte 3
Byte
Byte 0
Byte 1
Byte 2
Byte 3
Byte
Byte 0
Byte 1
Byte 2
Byte 3
Byte 0
Byte 1
Byte 2
Byte 3
The RGB 5:6:5 input format is processed to be displayed as RGB 5:6:5 format, compliant with
the 16-bit mode of the LCD controller.
The sensor master clock (ISI_MCK) can be generated either by the Advanced Power Manage-
ment Controller (APMC) through a Programmable Clock output or by an external oscillator
connected to the sensor.
None of the sensors embed a power management controller, so providing the clock by the
APMC is a simple and efficient way to control power consumption of the system.
Care must be taken when programming the system clock. The ISI has two clock domains, the
system bus clock and the pixel clock provided by sensor. The two clock domains are not syn-
chronized, but the system clock must be faster than pixel clock.
R4(i)
G2(i)
R4(i+1)
G2(i+1)
D7
G2(i)
B4(i)
G2(i+1)
B4(i+1)
D7
R0(i)
G0(i)
B0(i)
R0(i+1)
G3(i)
B0(i)
G3(i+1)
B0(i+1)
R3(i)
G1(i)
R3(i+1)
G1(i+1)
D6
G1(i)
B3(i)
G1(i+1)
B3(i+1)
D6
R1(i)
G1(i)
B1(i)
R1(i+1)
G4(i)
B1(i)
G4(i+1)
B1(i+1)
R2(i)
R2(i+1)
G0(i)
G0(i+1)
D5
G0(i)
B2(i)
G0(i+1)
B2(i+1)
D5
R2(i)
G2(i)
B2(i)
R2(i+1)
G5(i)
B2(i)
G5(i+1)
B2(i+1)
R1(i)
R1(i+1)
B4(i)
B4(i+1)
D4
R4(i)
B1(i)
R4(i+1)
B1(i+1)
D4
R3(i)
G3(i)
B3(i)
R3(i+1)
R0(i)
B3(i)
R0(i+1)
B3(i+1)
R0(i)
B3(i)
R0(i+1)
B3(i+1)
D3
R3(i)
B0(i)
R3(i+1)
B0(i+1)
D3
R4(i)
G4(i)
B4(i)
R4(i+1)
R1(i)
B4(i)
R1(i+1)
B4(i+1)
G5(i)
G5(i+1)
B2(i)
B2(i+1)
D2
R2(i)
G5(i)
R2(i+1)
G5(i+1)
D2
R5(i)
G5(i)
B5(i)
R5(i+1)
R2(i)
G0(i)
R2(i+1)
G0(i+1)
AT91SAM9G45
G4(i)
B1(i)
G4(i+1)
B1(i+1)
D1
R1(i)
G4(i)
R1(i+1)
G4(i+1)
D1
R6(i)
G6(i)
B6(i)
R6(i+1)
R3(i)
G1(i)
R3(i+1)
G1(i+1)
G3(i)
B0(i)
G3(i+1)
B0(i+1)
R0(i)
R0(i+1)
G3(i+1)
G7(i)
R4(i)
R4(i+1)
G2(i+1)
D0
G3(i)
D0
R7(i)
B7(i)
R7(i+1)
G2(i)
899

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