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PDF ST62E46B Data sheet ( Hoja de datos )

Número de pieza ST62E46B
Descripción 8-BIT OTP/EPROM MCU
Fabricantes STMicroelectronics 
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ST62T46B/E46B
8-BIT OTP/EPROM MCU WITH LCD DRIVER,
EEPROM AND A/D CONVERTER
s 3.0 to 6.0V Supply Operating Range
s 8 MHz Maximum Clock Frequency
www.DataSheet4Us.co-m40 to +85°C Operating Temperature Range
s Run, Wait and Stop Modes
s 5 Interrupt Vectors
s Look-up Table capability in Program Memory
s Data Storage in Program Memory:
User selectable size
s Data RAM: 128 bytes
s Data EEPROM: 128 bytes
s User Programmable Options
s 20 I/O pins, fully programmable as:
– Input with pull-up resistor
– Input without pull-up resistor
– Input with interrupt generation
– Open-drain or push-pull output
– Analog Input
– LCD segments (8 combiport lines)
s 4 I/O lines can sink up to 20mA to drive LEDs or
TRIACs directly
s Two 8-bit Timer/Counter with 7-bit
programmable prescaler
s Digital Watchdog
s 8-bit A/D Converter with 8 analog inputs
s 8-bit Synchronous Peripheral Interface (SPI)
s LCD driver with 27 segment outputs, 4
backplane outputs and selectable multiplexing
ratio.
s 32kHz oscillator for stand-by LCD operation
s Power Supply Supervisor (PSS)
s On-chip Clock oscillator can be driven by Quartz
Crystal or Ceramic resonator
s One external Non-Maskable Interrupt
s ST6240-EMU2 Emulation and Development
System (connects to an MS-DOS PC via a
parallel port).
DEVICE SUMMARY
DEVICE
ST62T46B
ST62E46B
OTP
(Bytes)
3884
EPROM
(Bytes)
-
3884
I/O Pins
12 to 20
12 to 20
September 1998
PSDIP56
CSDIP56W
(See end of Datasheet for Ordering Information)
Rev. 2.5
1/72
337

1 page




ST62E46B pdf
ST62T46B/E46B
1 GENERAL DESCRIPTION
1.1 INTRODUCTION
The ST62T46B and ST62E46B devices are low
cost members of the ST62xx 8-bit HCMOS family
of microcontrollers, which are targeted at low to
medium complexity applications. All ST62xx de-
vices are based on a building block approach: a
www.DataSheet4U.com
Figure 1. Block Diagram
common core is surrounded by a number of on-
chip peripherals.
The ST62E46B is the erasable EPROM version of
the ST62T46B device, which may be used to em-
ulate the ST62T46B device, as well as the respec-
tive ST6246B ROM devices.
TEST/VPP
NMI
TEST
8-BIT
A/D CONVERTE R
INTERRUP T
PROGR AM
Memory
3884 bytes
DATA ROM
USER
SELECTA BLE
DATA RAM
128 Bytes
DATA EEPROM
128 Bytes
PC
STACK LEVEL 1
STACK LEVEL 2
STACK LEVEL 3
STACK LEVEL 4
STACK LEVEL 5
STACK LEVEL 6
8 BIT CORE
POWER OSCILLATOR RESET
SUPP LY
VDD VSS OSCin OSCout RESET
(VPP on EPROM/OTP versions only)
PORT A
PORT B
PORT C
LCD DRIVER
OSC 32kHz
TIMER 2
TIMER 1
DIGITAL
WATCHDOG
SPI (SERIAL
PE RIPHERAL
INTERFAC E)
POWER SUPPLY
SUP ERVISOR
PA4..PA7/A in
PB0..PB3/A in
PB4/20mA Sink
PB5/Scl/ 20mA Sink
PB6/Sin/20mA Sink
PB7/Sout/20mA Sink
P C0..PC7/ S33..S40
S9..S16, S25..S32, S41..S43
COM1..COM4
VLCD
VLCD1/3
VLCD2/3
OSC32in
OSC32out
PSS
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ST62E46B arduino
ST62T46B/E46B
MEMORY MAP (Cont’d)
1.3.5 Data Window Register (DWR)
Data Window Register (DWR)
The Data read-only memory window is located from
address 0040h to address 007Fh in Data space. It
allows direct reading of 64 consecutive bytes locat-
ed anywhere in program memory, between ad-
dress 0000h and 1FFFh (top memory address de-
pends on the specific device). All the program
memory can therefore be used to store either in-
structions or read-only data. Indeed, the window
www.DataSheet4Uc.caonmbe moved in steps of 64 bytes along the pro-
gram memory by writing the appropriate code in the
Data Window Register (DWR).
The DWR can be addressed like any RAM location
in the Data Space, it is however a write-only regis-
ter and therefore cannot be accessed using single-
bit operations. This register is used to position the
64-byte read-only data window (from address 40h
to address 7Fh of the Data space) in program
memory in 64-byte steps. The effective address of
the byte to be read as data in program memory is
obtained by concatenating the 6 least significant
bits of the register address given in the instruction
(as least significant bits) and the content of the
DWR register (as most significant bits), as illustrat-
ed in Figure 5 below. For instance, when address-
ing location 0040h of the Data Space, with 0 load-
ed in the DWR register, the physical location ad-
dressed in program memory is 00h. The DWR reg-
ister is not cleared on reset, therefore it must be
written to prior to the first access to the Data read-
only memory window area.
Address: 0C9h — Write Only
70
- - DWR5 DWR4 DWR3 DWR2 DWR1 DWR0
Bits 6, 7 = Not used.
Bit 5-0 = DWR5-DWR0: Data read-only memory
Window Register Bits. These are the Data read-
only memory Window bits that correspond to the
upper bits of the data read-only memory space.
Caution: This register is undefined on reset. Nei-
ther read nor single bit instructions may be used to
address this register.
Note: Care is required when handling the DWR
register as it is write only. For this reason, the
DWR contents should not be changed while exe-
cuting an interrupt service routine, as the service
routine cannot save and then restore the register’s
previous contents. If it is impossible to avoid writ-
ing to the DWR during the interrupt service routine,
an image of the register must be saved in a RAM
location, and each time the program writes to the
DWR, it must also write to the image register. The
image register must be written first so that, if an in-
terrupt occurs between the two instructions, the
DWR is not affected.
Figure 5. Data read-only memory Window Memory Addressing
DATA ROM
13 12 11 10 9 8 7 6 5 4 3 2 1 0 PROGRAM SPACE ADDRESS
WINDOW REGISTER 7 6 5 4 3 2 1 0
READ
CONTENTS
(DWR)
5 4 3 2 1 0 DATA SPACE ADDRES:S
01
40h-7Fh
IN INSTRUCTION
Example:
DWR=28h
10 10 0 0
01
0
110
0
1
DATA SPACE ADDRES:S
59h
ROM
ADDRESS:A19h
10 10 0 0 0 1 1 0 0 1
VR01573C
11/72
347

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