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MEGA128CAN 参数 Datasheet PDF下载

MEGA128CAN图片预览
型号: MEGA128CAN
PDF下载: 下载PDF文件 查看货源
内容描述: 微控制器,带有ISP功能的Flash和CAN控制器128K字节 [Microcontroller WITH 128K BYTES OF ISP FLASH AND CAN CONTROLLER]
分类和应用: 微控制器
文件页数/大小: 413 页 / 5507 K
品牌: ATMEL [ ATMEL ]
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Brown-out Detector  
If the Brown-out Detector is not needed by the application, this module should be turned  
off. If the Brown-out Detector is enabled by the BODLEVEL Fuses, it will be enabled in  
all sleep modes, and hence, always consume power. In the deeper sleep modes, this  
will contribute significantly to the total current consumption. Refer to “Brown-out Detec-  
tion” on page 50 for details on how to configure the Brown-out Detector.  
Internal Voltage Reference  
The Internal Voltage Reference will be enabled when needed by the Brown-out Detec-  
tion, the Analog Comparator or the ADC. If these modules are disabled as described in  
the sections above, the internal voltage reference will be disabled and it will not be con-  
suming power. When turned on again, the user must allow the reference to start up  
before the output is used. If the reference is kept on in sleep mode, the output can be  
used immediately. Refer to “Internal Voltage Reference” on page 52 for details on the  
start-up time.  
Watchdog Timer  
Port Pins  
If the Watchdog Timer is not needed in the application, the module should be turned off.  
If the Watchdog Timer is enabled, it will be enabled in all sleep modes, and hence,  
always consume power. In the deeper sleep modes, this will contribute significantly to  
the total current consumption. Refer to “Watchdog Timer” on page 53 for details on how  
to configure the Watchdog Timer.  
When entering a sleep mode, all port pins should be configured to use minimum power.  
The most important is then to ensure that no pins drive resistive loads. In sleep modes  
where both the I/O clock (clkI/O) and the ADC clock (clkADC) are stopped, the input buff-  
ers of the device will be disabled. This ensures that no power is consumed by the input  
logic when not needed. In some cases, the input logic is needed for detecting wake-up  
conditions, and it will then be enabled. Refer to the section “Digital Input Enable and  
Sleep Modes” on page 65 for details on which pins are enabled. If the input buffer is  
enabled and the input signal is left floating or have an analog signal level close to VCC/2,  
the input buffer will use excessive power.  
For analog input pins, the digital input buffer should be disabled at all times. An analog  
signal level close to VCC/2 on an input pin can cause significant current even in active  
mode. Digital input buffers can be disabled by writing to the Digital Input Disable Regis-  
ters (DIDR1 and DIDR0). Refer to “Digital Input Disable Register 1 – DIDR1” on page  
264 and “Digital Input Disable Register 0 – DIDR0” on page 283 for details.  
JTAG Interface and  
On-chip Debug System  
If the On-chip debug system is enabled by OCDEN Fuse and the chip enter sleep mode,  
the main clock source is enabled, and hence, always consumes power. In the deeper  
sleep modes, this will contribute significantly to the total current consumption. There are  
three alternative ways to avoid this:  
Disable OCDEN Fuse.  
Disable JTAGEN Fuse.  
Write one to the JTD bit in MCUCSR.  
The TDO pin is left floating when the JTAG interface is enabled while the JTAG TAP  
controller is not shifting data. If the hardware connected to the TDO pin does not pull up  
the logic level, power consumption will increase. Note that the TDI pin for the next  
device in the scan chain contains a pull-up that avoids this problem. Writing the JTD bit  
in the MCUCSR register to one or leaving the JTAG fuse unprogrammed disables the  
JTAG interface.  
46  
AT90CAN128  
4250E–CAN–12/04  
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