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P83C749EBDDB Datasheet(PDF) 7 Page - NXP Semiconductors

Part # P83C749EBDDB
Description  80C51 8-bit microcontroller family 2K/64 OTP/ROM, 5 channel 8-bit A/D, PWM, low pin count
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Manufacturer  PHILIPS [NXP Semiconductors]
Direct Link  http://www.nxp.com
Logo PHILIPS - NXP Semiconductors

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Philips Semiconductors
Preliminary specification
83C749/87C749
80C51 8-bit microcontroller family
2K/64 OTP/ROM, 5 channel 8-bit A/D, PWM, low pin count
1998 Apr 23
7
Port 1
Port 1 is an 8-bit bidirectional I/O port whose structure is identical to
the 80C51, but also includes alternate input functions on all pins.
The alternate pin functions for port 1 are:
P1.0-P1.4 - ADC0-ADC4 - A/D converter analog inputs
P1.5 INT0 - external interrupt 0 input
P1.6 INT1 - external interrupt 1 input
P1.7 - T0 - timer 0 external input
If the alternate functions INT0, INT1, or T0 are not being used, these
pins may be used as standard I/O ports. It is necessary to connect
AVCC and AVSS to VCC and VSS, respectively, in order to use P1.5,
P1.6, and P1.7 pins as standard I/O pins. When the A/D converter is
enabled, the analog channel connected to the A/D may not be used
as a digital input; however, the remaining analog inputs may be used
as digital inputs. They may not be used as digital outputs. While the
A/D is enabled, the analog inputs are floating.
Port 3
Port 3 is an 8-bit bidirectional I/O port whose structure is identical to
the 80C51. Note that the alternate functions associated with port 3
of the 80C51 have been moved to port 1 of the 83C749 (as
applicable). See Figure 1 for port bit configurations.
Counter/Timer Subsystem
The 8XC749 has one counter/timer called timer/counter 0. Its
operation is similar to mode 2 operation on the 80C51, but is
extended to 16 bits with 16 bits of autoload. The controls for this
counter are centralized in a single register called TCON.
Timer I Implementation
Timer I is clocked once per machine cycle, which is the oscillator
frequency divided by 12. The timer operation is enabled by setting
the TIRUN bit (bit 4) in the I2CFG register. Writing a 0 into the
TIRUN bit will stop and clear the timer. The timer is 10 bits wide, and
when it reaches the terminal count of 1024, it carries out and sets
the Timer I interrupt flag. An interrupt will occur if the Timer I
interrupt is enabled by bit ETI (bit 4) of the Interrupt Enable (IE)
register, and global interrupts are enabled by bit EA (bit 7) of the
same IE register.
The vector address for the Timer I interrupt is 1Bhex, and the
interrupt service routine must start at this address. As with all 8051
family microcontrollers, only the Program Counter is pushed onto
the stack upon interrupt (other registers that are used both by the
interrupt service routine and elsewhere must be explicitly saved).
The Timer I interrupt flag is cleared by setting the CKRTI bit (bit 5 of
the I1CFG register. For more information, see application note
AN427.
Interrupt Subsystem—Fixed Priority
The IP register and the 2-level interrupt system of the 80C51 are
eliminated. The interrupt structure is a seven-source, one-level
interrupt system similar to the 8XC751. Simultaneous interrupt
conditions are resolved by a single-level, fixed priority as follows:
Highest priority:
Pin INT0
Counter/timer flag 0
Pin INT1
PWM
Timer I
Lowest priority:
ADC
The vector addresses are as follows:
Source
Vector Address
INT0
0003H
TF0
000BH
INT1
0013H
TIMER I
001BH
ADC
002BH
PWM
0033H
Interrupt Control Registers
The 80C51 interrupt enable register is modified to take into account
the different interrupt sources of the 8XC749.
Interrupt Enable Register
MSB
LSB
EA
EAD
ETI
EPWM
EX1
ET0
EX0
Position Symbol
Function
IE.7
EA
Global interrupt disable when EA = 0
IE.6
EAD
A/D conversion complete
IE.5
ETI
Timer I
IE.4
IE.3
EPWM
PWM counter overflow
IE.2
EX1
External interrupt 1
IE.1
ET0
Timer 0 overflow
IE.0
EX0
External interrupt 0
P1.X
LATCH
DQ
CL
Q
READ
LATCH
INT. BUS
WRITE TO
LATCH
READ
PIN
ALTERNATE INPUT
FUNCTION
VDD
P1.X
PIN
INTERNAL
PULL-UP
ALTERNATE
OUTPUT
FUNCTION
P0.X
LATCH
DQ
CL
Q
READ
LATCH
INT. BUS
WRITE TO
LATCH
READ
PIN
ALTERNATE INPUT
FUNCTION
P0.X
PIN
ALTERNATE
OUTPUT
FUNCTION
SU00306
Figure 1. Port Bit Latches and I/O Buffers


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