Rabbit 6000 User’s Manual
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37
3.2 Dependencies
3.2.1 I/O Pins
SMODE0, SMODE1 — When the Rabbit 6000 is first powered up or when it is reset, the state of the
SMODE0 and SMODE1 pins controls its operation.
SYSCFG — When the Rabbit 6000 is first powered up or when it is reset, the state of this pin controls
whether memory bank zero is mapped to /CS0 or the internal SRAM (/CS3).
/RESET — Pulling the /RESET pin low will initialize everything in the Rabbit 6000 except for the real-
time clock registers, the 32K battery-backed RAM and the onchip-encryption RAM.
/CS1 — During reset the impedance of the /CS1 pin is high, and all other memory and I/O control signals
are held high. The special behavior of /CS1 allows an external RAM to be powered by the same source as
the VBATIO pin (which powers /CS1). In this case, a pullup resistor is required on /CS1 to keep the RAM
deselected during powerdown.
RESOUT — The RESOUT pin, which is powered by the backup battery, is high during reset and power-
down as long as VBAT and VBATIO are present, but low at all other times, and can be used to control an
external power switch to disconnect VDDIO from VBATIO when the main power source is removed.
3.2.2 Clocks
The processor requires a 32 kHz clock input to generate the 2400 bps internal clock required for asynchro-
nous serial bootstrap, which is used when booting via Dynamic C and the Rabbit Field Utility. No 32 kHz
clock is required for either clocked serial or slave port bootstrap.
When the processor comes out of reset, the CPU clock and peripheral clocks are both in divide-by-8 mode.
3.2.3 Other Registers
3.2.4 Interrupts
There are no interrupts associated with reset or bootstrap.
Register
Function
SPCR
Enable/disable processor monitoring of SMODE
pins; read current state of SMODE pins.
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