参数资料
型号: MC68HC705CL16
厂商: FREESCALE SEMICONDUCTOR INC
元件分类: 微控制器/微处理器
英文描述: 8-BIT, OTPROM, 1.802 MHz, MICROCONTROLLER, PQFP100
封装: TQFP-100
文件页数: 86/145页
文件大小: 673K
代理商: MC68HC705CL16
June 11, 1997
GENERAL RELEASE SPECIFICATION
MC68HC05CL48
LOW POWER MODES
MOTOROLA
REV 2.0
6-1
SECTION 6
LOW POWER MODES
6.1
LOW-POWER MODES
The MC68HC05CL48 has two low-power operational modes. The WAIT and
STOP instructions provide two modes that reduce the power required for the MCU
by stopping various internal clocks and/or the on-chip oscillator. The STOP and
WAIT instructions are not normally used if the COP Watchdog Timer is enabled.
The ow of the STOP and WAIT modes is shown in Figure 6-1.
6.1.1 STOP Instruction
Execution of the STOP instruction, places the MCU in its lowest power
consumption mode. In the STOP Mode the internal oscillator is turned off, halting
all internal processing, including the COP Watchdog Timer.
When the CPU enters STOP Mode, the I-bit in the Condition Code Register will be
cleared automatically. This enable the external hardware interrupt to wake up the
MCU. All other registers and memory remain unaltered. All input/output lines
remain unchanged.
The MCU can be brought out of the STOP Mode only by a Caller ID (RT_L)
interrupt, WTIMER interrupt, a hardware interrupt “IRQ, IRQ(n), KBI(n)” or an
externally generated RESET. When exiting the STOP Mode the internal oscillator
will resume after a 488 internal processor clock cycle oscillator stabilization delay.
6.1.2 WAIT Instruction
The WAIT instruction places the MCU in a low-power mode, which consumes
more power than the STOP Mode. In the WAIT Mode the internal processor clock
is halted, suspending all processor and internal bus activity. Other Internal clocks
remain active, permitting interrupts to be generated from the functional blocks, or
a reset to be generated from the COP Watchdog Timer. The Timer may be used to
generate a periodic exit from the WAIT Mode. Execution of the WAIT instruction
automatically clears the I-bit in the Condition Code Register, so that any hardware
interrupt can wake up the MCU. All other registers, memory, and input/output lines
remain in their previous states.
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