參數(shù)資料
型號: DSPIC30F4012T-20I/SO
廠商: Microchip Technology
文件頁數(shù): 12/66頁
文件大?。?/td> 0K
描述: IC DSPIC MCU/DSP 48K 28SOIC
標準包裝: 1,600
系列: dsPIC™ 30F
核心處理器: dsPIC
芯體尺寸: 16-位
速度: 20 MIPS
連通性: CAN,I²C,SPI,UART/USART
外圍設(shè)備: 高級欠壓探測/復(fù)位,電機控制 PWM,QEI,POR,PWM,WDT
輸入/輸出數(shù): 20
程序存儲器容量: 48KB(16K x 24)
程序存儲器類型: 閃存
EEPROM 大?。?/td> 1K x 8
RAM 容量: 2K x 8
電壓 - 電源 (Vcc/Vdd): 2.5 V ~ 5.5 V
數(shù)據(jù)轉(zhuǎn)換器: A/D 6x10b
振蕩器型: 內(nèi)部
工作溫度: -40°C ~ 85°C
封裝/外殼: 28-SOIC(0.295",7.50mm 寬)
包裝: 帶卷 (TR)
其它名稱: DSPIC30F4012T20IS
dsPIC30F Flash Programming Specification
DS70102K-page 2
2010 Microchip Technology Inc.
2.2
Pins Used During Programming
The pins identified in Table 2-1 are used for device
programming. Refer to the appropriate device data
sheet for complete pin descriptions.
TABLE 2-1:
dsPIC30F PIN DESCRIPTIONS
DURING PROGRAMMING
Pin Name
Pin Type
Pin Description
MCLR/VPP
P
Programming Enable
VDD
P
Power Supply
VSS
P
Ground
PGC
I
Serial Clock
PGD
I/O
Serial Data
2.3
Program Memory Map
The program memory space extends from 0x0 to
0xFFFFFE. Code storage is located at the base of the
memory map and supports up to 144 Kbytes (48K
instruction words). Code is stored in three, 48 Kbyte
memory panels that reside on-chip. Table 2-2 shows
the location and program memory size of each device.
Locations 0x800000 through 0x8005BE are reserved
for executive code memory. This region stores either
the programming executive or debugging executive.
The programming executive is used for device
programming, while the debug executive is used for in-
circuit debugging. This region of memory cannot be
used to store user code.
Locations 0xF80000 through 0xF8000E are reserved
for the Configuration registers. The bits in these
registers may be set to select various device options,
Locations 0xFF0000 and 0xFF0002 are reserved for
the Device ID registers. These bits can be used by the
programmer to identify what device type is being
programmed and are described in Section 10.0
“Device ID”. The device ID reads out normally, even
after code protection is applied.
Figure 2-2 illustrates the memory map for the
dsPIC30F devices.
2.4
Data EEPROM Memory
The Data EEPROM array supports up to 4 Kbytes of
data and is located in one memory panel. It is mapped
in program memory space, residing at the end of User
Memory Space (see Figure 2-2). Table 2-2 shows the
location and size of data EEPROM in each device.
TABLE 2-2:
CODE MEMORY AND DATA EEPROM MAP AND SIZE
Device
Code Memory map
(Size in Instruction Words)
Data EEPROM Memory Map
(Size in Bytes)
dsPIC30F2010
0x000000-0x001FFE (4K)
0x7FFC00-0x7FFFFE (1K)
dsPIC30F2011
0x000000-0x001FFE (4K)
None (0K)
dsPIC30F2012
0x000000-0x001FFE (4K)
None (0K)
dsPIC30F3010
0x000000-0x003FFE (8K)
0x7FFC00-0x7FFFFE (1K)
dsPIC30F3011
0x000000-0x003FFE (8K)
0x7FFC00-0x7FFFFE (1K)
dsPIC30F3012
0x000000-0x003FFE (8K)
0x7FFC00-0x7FFFFE (1K)
dsPIC30F3013
0x000000-0x003FFE (8K)
0x7FFC00-0x7FFFFE (1K)
dsPIC30F3014
0x000000-0x003FFE (8K)
0x7FFC00-0x7FFFFE (1K)
dsPIC30F4011
0x000000-0x007FFE (16K)
0x7FFC00-0x7FFFFE (1K)
dsPIC30F4012
0x000000-0x007FFE (16K)
0x7FFC00-0x7FFFFE (1K)
dsPIC30F4013
0x000000-0x007FFE (16K)
0x7FFC00-0x7FFFFE (1K)
dsPIC30F5011
0x000000-0x00AFFE (22K)
0x7FFC00-0x7FFFFE (1K)
dsPIC30F5013
0x000000-0x00AFFE (22K)
0x7FFC00-0x7FFFFE (1K)
dsPIC30F5015
0x000000-0x00AFFE (22K)
0x7FFC00-0x7FFFFE (1K)
dsPIC30F5016
0x000000-0x00AFFE (22K)
0x7FFC00-0x7FFFFE (1K)
dsPIC30F6010
0x000000-0x017FFE (48K)
0x7FF000-0x7FFFFE (4K)
dsPIC30F6010A
0x000000-0x017FFE (48K)
0x7FF000-0x7FFFFF (4K)
dsPIC30F6011
0x000000-0x015FFE (44K)
0x7FF800-0x7FFFFE (2K)
dsPIC30F6011A
0x000000-0x015FFE (44K)
0x7FF800-0x7FFFFE (2K)
dsPIC30F6012
0x000000-0x017FFE (48K)
0x7FF000-0x7FFFFE (4K)
dsPIC30F6012A
0x000000-0x017FFE (48K)
0x7FF000-0x7FFFFE (4K)
dsPIC30F6013
0x000000-0x015FFE (44K)
0x7FF800-0x7FFFFE (2K)
dsPIC30F6013A
0x000000-0x015FFE (44K)
0x7FF800-0x7FFFFE (2K)
dsPIC30F6014
0x000000-0x017FFE (48K)
0x7FF000-0x7FFFFE (4K)
dsPIC30F6014A
0x000000-0x017FFE (48K)
0x7FF000-0x7FFFFE (4K)
dsPIC30F6015
0x000000-0x017FFE (48K)
0x7FF000-0x7FFFFE (4K)
Legend: I = Input, O = Output, P = Power
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