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H8S2245 Datasheet(PDF) 609 Page - Renesas Technology Corp

Part # H8S2245
Description  Renesas 16-Bit Single-Chip Microcomputer H8S Family / H8S/2200 Series
PDF  818 Pages
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Manufacturer  RENESAS [Renesas Technology Corp]
Direct Link  http://www.renesas.com
Logo RENESAS - Renesas Technology Corp

H8S2245 Datasheet(HTML) 609 Page - Renesas Technology Corp

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Section 18 Power-Down Modes
Rev.3.00 Mar. 26, 2007 Page 567 of 772
REJ09B0355-0300
18.7
Hardware Standby Mode
18.7.1
Hardware Standby Mode
When the
STBY pin is driven low, a transition is made to hardware standby mode from any mode.
In hardware standby mode, all functions enter the reset state and stop operation, resulting in a
significant reduction in power dissipation. As long as the prescribed voltage is supplied, on-chip
RAM data is retained. I/O ports are set to the high-impedance state.
In order to retain on-chip RAM data, the RAME bit in SYSCR should be cleared to 0 before
driving the
STBY pin low.
Do not change the state of the mode pins (MD
2 to MD0) while the H8S/2245 Group is in hardware
standby mode.
Hardware standby mode is cleared by means of the
STBY pin and the RES pin. When the STBY
pin is driven high while the
RES pin is low, the reset state is set and clock oscillation is started.
Ensure that the
RES pin is held low until the clock oscillation stabilizes (at least t
OSC1—the
oscillation stabilization time—when using a crystal oscillator). When the
RES pin is subsequently
driven high, a transition is made to the program execution state via the reset exception handling
state.
18.7.2
Hardware Standby Mode Timing
Figure 18.3 shows an example of hardware standby mode timing.
When the
STBY pin is driven low after the RES pin has been driven low, a transition is made to
hardware standby mode. Hardware standby mode is cleared by driving the
STBY pin high, waiting
for the oscillation stabilization time, then changing the
RES pin from low to high.



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