参数资料
型号: PIC24FJ16GA002-E/SS
厂商: Microchip Technology
文件页数: 28/52页
文件大小: 0K
描述: IC PIC MCU FLASH 16K 28-SSOP
特色产品: PIC24FJ/33FJ MCUs & dsPIC? DSCs
标准包装: 47
系列: PIC® 24F
核心处理器: PIC
芯体尺寸: 16-位
速度: 32MHz
连通性: I²C,PMP,SPI,UART/USART
外围设备: 欠压检测/复位,LVD,POR,PWM,WDT
输入/输出数: 21
程序存储器容量: 16KB(5.5K x 24)
程序存储器类型: 闪存
RAM 容量: 4K x 8
电压 - 电源 (Vcc/Vdd): 2 V ~ 3.6 V
数据转换器: A/D 10x10b
振荡器型: 内部
工作温度: -40°C ~ 125°C
封装/外壳: 28-SSOP(0.209",5.30mm 宽)
包装: 管件
产品目录页面: 647 (CN2011-ZH PDF)
配用: DM240011-ND - KIT STARTER MPLAB FOR PIC24F MCU
AC162088-ND - HEADER MPLAB ICD2 24FJ64GA004 28
AC164338-ND - MOD SKT PIC24F/DSPIC33F 28SOIC
DV164033-ND - KIT START EXPLORER 16 MPLAB ICD2
PIC24FJXXXGA0XX
DS39768D-page 34
2008 Microchip Technology Inc.
5.0
THE PROGRAMMING
EXECUTIVE
5.1
Programming Executive
Communication
The programmer and programming executive have a
master-slave relationship, where the programmer is
the master programming device and the programming
executive is the slave.
All communication is initiated by the programmer in the
form of a command. Only one command at a time can
be sent to the programming executive. In turn, the
programming executive only sends one response to
the programmer after receiving and processing a
command. The programming executive command set
Commands”. The response set is described in
5.1.1
COMMUNICATION INTERFACE
AND PROTOCOL
The Enhanced ICSP interface is a 2-wire SPI,
implemented using the PGCx and PGDx pins. The
PGCx pin is used as a clock input pin and the clock
source must be provided by the programmer. The
PGDx pin is used for sending command data to, and
receiving response data from, the programming
executive.
Data transmits to the device must change on the rising
edge and hold on the falling edge. Data receives from
the device must change on the falling edge and hold on
the rising edge.
All data transmissions are sent to the Most Significant
bit (MSb) first, using 16-bit mode (see Figure 5-1).
FIGURE 5-1:
PROGRAMMING
EXECUTIVE SERIAL
TIMING FOR DATA
RECEIVED FROM DEVICE
FIGURE 5-2:
PROGRAMMING
EXECUTIVE SERIAL TIMING
FOR DATA TRANSMITTED
TO DEVICE
Since a 2-wire SPI is used, and data transmissions are
half duplex, a simple protocol is used to control the
direction of PGDx. When the programmer completes a
command transmission, it releases the PGDx line and
allows the programming executive to drive this line
high. The programming executive keeps the PGDx line
high to indicate that it is processing the command.
After the programming executive has processed the
command, it brings PGDx low for 15
μsec to indicate to
the programmer that the response is available to be
clocked out. The programmer can begin to clock out the
response 23
μsec after PGDx is brought low, and it must
provide the necessary amount of clock pulses to receive
the entire response from the programming executive.
After the entire response is clocked out, the program-
mer should terminate the clock on PGCx until it is time
to send another command to the programming
executive. This protocol is shown in Figure 5-3.
5.1.2
SPI RATE
In Enhanced ICSP mode, the PIC24FJXXXGA0XX
family devices operate from the internal Fast RC oscil-
lator (FRCDIV), which has a nominal frequency of
8 MHz. This oscillator frequency yields an effective
system clock frequency of 4 MHz. To ensure that the
programmer does not clock too fast, it is recommended
that a 4 MHz clock be provided by the programmer.
5.1.3
TIME-OUTS
The programming executive uses no Watchdog Timer
or time-out for transmitting responses to the program-
mer. If the programmer does not follow the flow control
mechanism using PGCx, as described in Section 5.1.1
possible that the programming executive will behave
unexpectedly while trying to send a response to the
programmer. Since the programming executive has no
time-out, it is imperative that the programmer correctly
follow the described communication protocol.
As a safety measure, the programmer should use the
command time-outs identified in Table 5-1. If the
command time-out expires, the programmer should
reset
the
programming
executive
and
start
programming the device again.
PGCx
PGDx
12
3
11
13
15
16
14
12
LSb
14
13
12
11
45
6
MSb
1
2
3
...
4
5
P2
P3
P1
P1B
P1A
PGCx
PGDx
12
3
11
13
15
16
14
12
LSb
14
13 12
11
45
6
MSb
1
2
3
...
4
5
P2
P3
P1
P1B
P1A
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