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PDF SM59D04G2 Data sheet ( Hoja de datos )

Número de pieza SM59D04G2
Descripción 8-Bits Micro-controller
Fabricantes SyncMOS 
Logotipo SyncMOS Logotipo



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No Preview Available ! SM59D04G2 Hoja de datos, Descripción, Manual

SM59D04G2
8-Bits Micro-controller
16KB+ ISP Flash & 1KB RAM embedded
Product List
Features
SM59D04G2L25, 25MHz 16KB internal Flash MCU
z Operating Voltage: 2.7V ~ 3.6V or 4.5V ~ 5.5V
SM59D04G2C25, 25MHz 16KB internal Flash MCU
z General 8052 family compatible
z 12 or 6 clocks per machine cycle
Description
z Frequency runs up to 25MHz
z 16K byte on chip program Flash with In-System
The SM59D04G2 series product is an 8-bit single chip
Programming(ISP) and EEPROM capability
macro-controller with 16KB Flash & 1K byte RAM
z 768 Bytes on-chip expanded RAM with disable
embedded. It is a derivative of the 8052 micro-controller
function
family with a fully compatible instruction sets.
z 256 Bytes for standard 8052 RAM.
The 16K embedded Flash can be programmed via a
z
commercial writer or ISP (In-System Programming) or ICP z
(In-Circuit Programming) function. The unused Flash can z
be the memory space for the EEPROM application through z
the ISP. After programming, the code can be protected to z
prevent illegal read and write.
z
External RAM address up to 64KB
Dual 16-bit Data Pointers (DPTR0 & DPTR1)
One channel serial peripheral interface (UART)
Three 16 bit Timers/Counters(Timer 0 , 1, 2)
Four 8-bit I/O ports for PDIP package
Four 8-bit I/O ports + one 4-bit I/O ports for PLCC
Its plentiful peripherals can make many applications easier
and more efficient, such as dual DPTR, UART, WDT,
z
Timers, PCA and EEI which are functionally compatible z
with most other chips.
SM59D04G2 also provides power saving modes (IDLE and z
STOP), low EMI characteristics, etc. All of the
z
or QFP package
Programmable Watchdog Timer (WDT)
Programmable Counter Array (PCA) for Pulse
Width Modulation (PWM), capture and compare
External interrupt 0, 1 with two priority level
Expanded External Interrupt (EEI) interface for
requirements are considered to achieve the ideal MCU.
eight more external interrupts.
z ISP service program space configurable in N*512
Ordering Information
yymmv
SM59D04G2ihhkL
byte (N=0 to 8) size for IAP application
z Direct and simple ICP programming without
service program
z ALE output select for low EMI
yy: year, mm: month
v: version identifier{ A, B,…}
i: process identifier {L=2.7V~3.6V,C=4.5V~ 5.5V}
hh: working clock in MHz {25}
k: package type postfix {as below table}
L:PB Free identifier
z Clock output as the source for next MCU
z Power Management Unit ( IDLE and STOP mod)
z Code protection function
z Flash Memory Endurance : 100K erase and write
cycles each byte at TA=25
z Flash Memory Data Retention :10 years
{No text is Non-PB Free”P” is PB Free}
Postfix
P
J
Q
Package
40L PDIP
44L PLCC
44L QFP
Pin / Pad Configuration
Page 2
Page 3
Page 4
Contact SyncMOS : www.syncmos.com.tw
6F, No.10-2 Li- Hsin 1st Road , SBIP,
Hsinchu, Taiwan 30078
TEL: 886-3-567-1820 FAX: 886-3-567-1891
Specifications subject to change without notice contact your sales representatives for the most recent information.
ISSFD-M031
1 Ver.C SM59D04G2 07/2009

1 page




SM59D04G2 pdf
Block Diagram
SM59D04G2
8-Bits Micro-controller
16KB+ ISP Flash & 1KB RAM embedded
Specifications subject to change without notice contact your sales representatives for the most recent information.
ISSFD-M031
5 Ver.C SM59D04G2 07/2009

5 Page





SM59D04G2 arduino
SM59D04G2
8-Bits Micro-controller
16KB+ ISP Flash & 1KB RAM embedded
1.3 12T/6T Selection
The conventional 52-series MCUs are 12T, i.e., 12 oscillator clocks per one machine cycle. If the
machine cycle is changed to 6 clocks, then this 6T mode will double the running speed of 12T’s with
the same oscillator source. 12T or 6T is configured in the information block. The figures given below
are an example to show the difference of 12T mode and 6T mode.
Fig 1-2(a)The signal waveform of external program (EA=0) in 12T mode
Fig 1-2(b)The signal waveform of external program (EA=0) in 6T mode
Since the execution speed in 6T is two times of that in 12T, in order for the easy explanation in the
later sections, here we define the terminology “system clock” or “system frequency” as
System clock frequency(FOSC) = crystal(FCRY) or oscillator frequency in 6T, and
System clock frequency(FOSC)= crystal(FCRY) or oscillator frequency divided by 2 in 12T
Take a 16MHz oscillator as an example, the system clock frequency is 16MHz in 6T. But in 12T
mode, the system clock frequency is 8MHz.
Specifications subject to change without notice contact your sales representatives for the most recent information.
ISSFD-M031
11 Ver.C SM59D04G2 07/2009

11 Page







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