ATSAM3U2EA-CU Atmel, ATSAM3U2EA-CU Datasheet - Page 869
ATSAM3U2EA-CU
Manufacturer Part Number
ATSAM3U2EA-CU
Description
IC MCU 32BIT 128KB FLSH 144LFBGA
Manufacturer
Atmel
Series
SAM3Ur
Specifications of ATSAM3U2EA-CU
Core Processor
ARM® Cortex-M3™
Core Size
32-Bit
Speed
96MHz
Connectivity
EBI/EMI, I²C, MMC, SPI, SSC, UART/USART, USB
Peripherals
Brown-out Detect/Reset, DMA, I²S, POR, PWM, WDT
Number Of I /o
96
Program Memory Size
128KB (128K x 8)
Program Memory Type
FLASH
Ram Size
36K x 8
Voltage - Supply (vcc/vdd)
1.65 V ~ 1.95 V
Data Converters
A/D 8x10b, 8x12b
Oscillator Type
Internal
Operating Temperature
-40°C ~ 85°C
Package / Case
144-LFBGA
Processor Series
ATSAM3x
Core
ARM Cortex M3
Data Bus Width
32 bit
Data Ram Size
36 KB
Interface Type
4xUSART, 2xTWI, 5xSPI, Bus
Maximum Clock Frequency
96 MHz
Number Of Programmable I/os
96
Number Of Timers
8
Operating Supply Voltage
1.62 V to 3.6 V
Maximum Operating Temperature
+ 85 C
Mounting Style
SMD/SMT
3rd Party Development Tools
JTRACE-CM3, MDK-ARM, RL-ARM, ULINK2
Development Tools By Supplier
ATSAM3U-EK
Minimum Operating Temperature
- 40 C
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Eeprom Size
-
Lead Free Status / Rohs Status
Details
Available stocks
Company
Part Number
Manufacturer
Quantity
Price
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38.6.2.2
6430D–ATARM–25-Mar-11
6430D–ATARM–25-Mar-11
Comparator
The comparator continuously compares its counter value with the channel period defined by
CPRD in the
defined by CDTY in the
generate an output signal OCx accordingly.
The different properties of the waveform of the output OCx are:
• the clock selection. The channel counter is clocked by one of the clocks provided by the
• the waveform period. This channel parameter is defined in the CPRD field of the
• the waveform duty-cycle. This channel parameter is defined in the CDTY field of the
(
------------------------------------------ -
(
----------------------------------------------------- -
clock generator described in the previous section. This channel parameter is defined in the
CPRE field of the
reset at 0.
PWM_CPRDx register.
If the waveform is left aligned, then the output waveform period depends on the counter
source clock and can be calculated:
By using the PWM master clock (MCK) divided by an X given prescaler value (with X being 1,
2, 4, 8, 16, 32, 64, 128, 256, 512, or 1024), the resulting period formula will be:
By using the PWM master clock (MCK) divided by one of both DIVA or DIVB divider, the
formula becomes, respectively:
If the waveform is center aligned then the output waveform period depends on the counter
source clock and can be calculated:
By using the PWM master clock (MCK) divided by an X given prescaler value
(with X being 1, 2, 4, 8, 16, 32, 64, 128, 256, 512, or 1024). The resulting period formula will
be:
By using the PWM master clock (MCK) divided by one of both DIVA or DIVB divider, the
formula becomes, respectively:
PWM_CDTYx register.
If the waveform is left aligned then:
If the waveform is center aligned, then:
(
------------------------------- -
(
------------------------------------------ -
2
2
X
CRPD
duty cycle
duty cycle
×
×
×
MCK
X
CPRD
CPRD
MCK
MCK
×
MCK
×
CPRD
DIVA
“PWM Channel Period Register” on page 937
)
×
DIVA
=
=
)
)
(
----------------------------------------------------------------------------------------------------------- -
(
----------------------------------------------------------------------------------------------------------------------------- -
or
period 1
(
period
)
“PWM Channel Mode Register” on page 933
or
(
------------------------------------------ -
CRPD
“PWM Channel Duty Cycle Register” on page 935
(
----------------------------------------------------- -
2
–
×
⁄
MCK
CPRD
×
2
⁄
) 1
DIVB
MCK
fchannel_x_clock
–
×
period
⁄
(
)
period
DIVB
fchannel_x_clock
)
⁄
2
)
×
CDTY
×
CDTY
)
(PWM_CPRDx) and the duty-cycle
) )
(PWM_CMRx). This field is
SAM3U Series
SAM3U Series
(PWM_CDTYx) to
869
869
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