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CC1010-RTY1 Scheda tecnica(PDF) 19 Page - Texas Instruments

Il numero della parte CC1010-RTY1
Spiegazioni elettronici  Single Chip Very Low Power RF Transceiver with 8051-Compatible Microcontroller
PDF  150 Pages
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Produttore elettronici  TI2 [Texas Instruments]
Homepage  https://www.ti.com
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CC1010-RTY1 Scheda tecnica(HTML) 19 Page - Texas Instruments

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CC1010
SWRS047A
Page 19 of 146
15. 8051 Core
15.1 General description
The
CC1010 microcontroller core is based
on
the
industry-standard
8051
architecture. The MCU core is 8-bit, with
program and data memory located in
separate
memory
spaces
(Harvard
architecture). The internal registers are
organised as four banks of 8 registers
each. The instruction set supports direct,
indirect and register addressing modes.
Program memory can be addressed using
indexed addressing. The core registers
are comprised of an accumulator, a stack
pointer and dual data pointer registers in
addition to the general registers.
Data memory is split into internal and
external RAM. The name "external RAM"
is in fact misleading since in the case of
the
CC1010 all the RAM is internal to the
chip. The difference between external and
internal is that external RAM can only be
accessed by a few instructions. Therefore,
frequently-accessed variables as well as
the stack should be kept in internal RAM.
The various peripherals are controlled
through
Special
Function
Registers
(SFRs) located in the internal RAM space.
The
8051
core
is
instruction
set
compatible with the industry standard
8051. It also has one additional instruction,
TRAP
,
to
enable
advanced
in-circuit-
debugging features. This is described on
page 44.
The instruction cycle time is 4 clock
cycles,
which
typically
gives
a
2.5X
average reduction in instruction execution
time over the original Intel 8051.
Peripheral units, including general purpose
I/O, 2 standard 8051 timers, 2 extra timers
with PWM functionality, a watchdog timer,
a real-time clock, an SPI master interface,
hardware DES encryption, a true random
bit generator and ADC are all described
from page 47 and out. Dual data pointers
are available for faster data transfer.
15.2 Reset
CC1010 must be reset at start-up. There
are several sources for reset in
CC1010 :
External reset pin, RESET . Applying
a low signal to this pin at any time will
reset almost all registers in
CC1010.
Exceptions can be found in Table 40
on
page
141.
The
input
is
asynchronous and is synchronised
internally, so that the reset can be
released independent of the timing of
the active clock signal. If the main
crystal oscillator is inactive, the reset
input should be held long enough for
the oscillator to start up and stabilize.
See Electrical Specifications page 7
for oscillator start-up timing.
Power On Reset (POR). The internal
POR module can generate reset upon
power-up. Special requirements for
power consumption or power supply
voltage may require an external POR
module, as described in the Power On
Reset (Brown-Out Detection) section
at page 62.
Brown-out detection reset. The POR
will also detect low supply voltage and
generate a reset.
Watchdog timer reset. The watchdog
timer
can
generate
a
reset,
as
described in the section on page 63.
ADC reset. The ADC module can be
programmed
to
generate
a
reset
signal
if
its
inputs
exceed
a
programmed threshold. See the ADC
section on page 79 for details.
The POR and ADC reset signals will be
held for 1024 clock periods after the signal
is released. This will ensure a safe clock
start-up if the crystal oscillator is currently
not running.



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