P89LPC932A1FA NXP Semiconductors, P89LPC932A1FA Datasheet - Page 26

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P89LPC932A1FA

Manufacturer Part Number
P89LPC932A1FA
Description
MCU 8-Bit 89LP 80C51 CISC 8KB Flash 2.5V/3.3V 28-Pin PLCC Tube
Manufacturer
NXP Semiconductors
Datasheet

Specifications of P89LPC932A1FA

Package
28PLCC
Device Core
80C51
Family Name
89LP
Maximum Speed
18 MHz
Operating Supply Voltage
2.5|3.3 V
Data Bus Width
8 Bit
Number Of Programmable I/os
26
Interface Type
I2C/SPI/UART
Number Of Timers
2
Ram Size
768 Byte
Program Memory Size
8 KB
Program Memory Type
Flash
Operating Temperature
-40 to 85 °C

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NXP Semiconductors
P89LPC932A1_3
Product data sheet
7.17.2 Mode 1
7.17.3 Mode 2
7.17.4 Mode 3
7.17.5 Mode 6
7.17.6 Timer overflow toggle output
7.18 RTC/system timer
Mode 1 is the same as Mode 0, except that all 16 bits of the timer register are used.
Mode 2 configures the Timer register as an 8-bit Counter with automatic reload. Mode 2
operation is the same for Timer 0 and Timer 1.
When Timer 1 is in Mode 3 it is stopped. Timer 0 in Mode 3 forms two separate 8-bit
counters and is provided for applications that require an extra 8-bit timer. When Timer 1 is
in Mode 3 it can still be used by the serial port as a baud rate generator.
In this mode, the corresponding timer can be changed to a PWM with a full period of
256 timer clocks.
Timers 0 and 1 can be configured to automatically toggle a port output whenever a timer
overflow occurs. The same device pins that are used for the T0 and T1 count inputs are
also used for the timer toggle outputs. The port outputs will be a logic 1 prior to the first
timer overflow when this mode is turned on.
The P89LPC932A1 has a simple RTC that allows a user to continue running an accurate
timer while the rest of the device is powered-down. The RTC can be a wake-up or an
interrupt source. The RTC is a 23-bit down counter comprised of a 7-bit prescaler and a
16-bit loadable down counter. When it reaches all logic 0s, the counter will be reloaded
again and the RTCF flag will be set. The clock source for this counter can be either the
CCLK or the XTAL oscillator, provided that the XTAL oscillator is not being used as the
CPU clock. If the XTAL oscillator is used as the CPU clock, then the RTC will use CCLK as
its clock source. Only power-on reset will reset the RTC and its associated SFRs to the
default state.
Rev. 03 — 12 March 2007
8-bit microcontroller with accelerated two-clock 80C51 core
P89LPC932A1
© NXP B.V. 2007. All rights reserved.
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