dsPIC33FJ128GP804 and PIC24HJ128GP504 PIM Information Sheet for Graphics Apps

dsPIC33FJ128GP804
and PIC24HJ128GP504
dsPIC33FJ128GP804 and PIC24HJ128GP504 PIM
Information Sheet for Graphics Applications
The dsPIC33FJ128GP804 and PIC24HJ128GP504
Graphics Plug-In-Modules (PIMs) demonstrate the
capabilities of the dsPIC33FJ128GP804 Digital Signal
Controller (DSC) and the PIC24HJ128GP504
Microcontroller (MCU) using the Explorer 16
Development Board and the PICtail™ Plus Daughter
Boards for graphics.
For a typical application using the TFT with a touch
screen, connect pin 2 and pin 3 on jumper J2 to use the
touch screen signals for touch sense, as shown in
Figure 1.
FIGURE 1:
TFT JUMPER SETTING
J2
These PIMs support the Microchip Graphics Library
with the following PICtail™ Plus boards:
• Graphics LCD Controller PICtail™ Plus SSD1926
Board
• Graphics PICtail™ Plus Daughter Board
Touch/UART
In addition, these PIMs also extend parallel port
support to the LCD display on the Explorer 16
Development Board.
To use the UART channel to download the image files
from PC, connect pin 1 and pin 3 on jumper J2, as
shown in Figure 2.
The pin schematics for the graphics PIMs are different
from that of the dsPIC33FJ128GP804 and
PIC24HJ128GP504 general purpose PIMs. These
graphics PIMs do not support other PICtail™ Plus
Daughter Boards such as the Audio PICtail™ Plus
Daughter Board and the Thermal/Linear Intelligent
Sensor PICtail™ Plus Daughter Board. For additional
compatibility details refer the schematics of the
respective PICtail™ Plus Daughter Boards.
FIGURE 2:
© 2009 Microchip Technology Inc.
UART JUMPER SETTING
J2
Touch/UART
Table 1 provides the mapping of the 44 pins on the
device to the 100-pin socket. The schematics for the
100-pin header and 44-pin device are provided in
Figure 3 and Figure 4.
DS51876A-page 1
dsPIC33FJ128GP804 and PIC24HJ128GP504
TABLE 1:
Device
Pin #
44-PIN TO 100-PIN PINOUT
dsPIC33FJ128GP804 and
PIC24HJ128GP504
PIM
Pin #
Functional
Description
Device
Pin #
dsPIC33FJ128GP804 and
PIC24HJ128GP504
PIM
Pin #
Functional
Description
1
SDA1/RP9/CN21/PMD3/RB9
99
PMPD3
23
AN4/C1IN-/RP2/CN6/RB2
34/39(1) YD/UART_RX(1)
2
RP22/CN18/PMA1/RC6
43
ALH
24
AN5/C1IN+/RP3/CN7/RB3
35/50(1) XR/UART_TX(1)
3
RP23/CN17/PMA0/RC7
44
ALL
25
AN6/DAC1RM/RP16/CN8/RC0
12
EEPROM SDO
4
RP24/CN20/PMA5/RC8
96
YU
26
AN7/DAC1LM/RP17/CN9/RC1
11
EEPROM SDI
5
RP25/CN19/PMA6/RC9
97
XL
27
AN8/CVREF/RP18/PMA2/CN10/RC2
10
EEPROM SCK
6
VSS
15
Vss
28
VDD
62
VDD
7
VCAP/VDDCORE
85
VDDCORE
29
VSS
65
VSS
8
PGED2/RP10/CN16/PMD2/RB10
98
PMPD2
30
OSC1/CLKI/CN30/RA2
63
OSCI
9
PGEC2/RP11/CN15/PMD1/RB11
94
PMPD1
31
OSC2/CLKO/CN29/RA3
64
OSCO
10
AN12/RP12/CN14/PMD0/RB12
93
PMPD0
32
TDO/PMA8/RA8
76
FLASH CS1
11
AN11/RP13/CN13/PMRD/RB13
82
PMPRD
33
SOSCI/RP4/CN1/RB4
72
BUZZER
12
TMS/PMA10/RA10
8
POWER
34
SOSCO/T1CK/CN0/RA4
6
RST
13
TCK/PMA7/RA7
77
WAIT
35
TDI/PMA9/RA9
71
FLASH CS2
14
AN10/DAC1LP/RTCC/RP14/
CN12/PMWR/RB14
81
PMPWR
36
RP19/CN28/PMBE/RC3
78
BE
15
AN9/DAC1LN/RP15/CN11/RB15
70
CS
37
RP20/CN25/PMA5/RC4
95
A16
16
AVSS
36
AVSS
38
RP21/CN26/PMA3/RC5
1
A17
17
AVDD
30
AVDD
39
VSS
31
VSS
18
MCLR
13
MCLR
40
VDD
2
VDD
19
AN0/VREF+/CN2/RA0
79
EEPROM CS
41
PGED3/ASDA1/RP5/CN27/PMD7/RB5
5
PMPD7
20
AN1/VREF-/CN3/RA1
7
RS
42
PGEC3/ASCL1/RP6/CN24/PMD6/RB6
4
PMPD6
21
PGED1/AN2/C2IN-/RP0/CN4/RB0
27
PGD
43
INT0/RP7/CN23/PMD5/RB7
3
PMPD5
PGEC1/AN3/C2IN+/RP1/CN5/RB1
26
PGC
44
SCL1/RP8/CN22/PMD4/RB8
100
PMPD4
22
Note
1:
The pin function is based on the J2 jumper setting (see Figure 1 and Figure 2).
DS51876A-page 2
© 2009 Microchip Technology Inc.
© 2009 Microchip Technology Inc.
DS51876A-page 3
dsPIC33FJ128GP804 and PIC24HJ128GP504
100-PIN HEADER SCHEMATIC
FIGURE 3:
DS51876A-page 4
© 2009 Microchip Technology Inc.
dsPIC33FJ128GP804 and PIC24HJ128GP504
44-PIN DEVICE SCHEMATIC
FIGURE 4:
Note the following details of the code protection feature on Microchip devices:
•
Microchip products meet the specification contained in their particular Microchip Data Sheet.
•
Microchip believes that its family of products is one of the most secure families of its kind on the market today, when used in the
intended manner and under normal conditions.
•
There are dishonest and possibly illegal methods used to breach the code protection feature. All of these methods, to our
knowledge, require using the Microchip products in a manner outside the operating specifications contained in Microchip’s Data
Sheets. Most likely, the person doing so is engaged in theft of intellectual property.
•
Microchip is willing to work with the customer who is concerned about the integrity of their code.
•
Neither Microchip nor any other semiconductor manufacturer can guarantee the security of their code. Code protection does not
mean that we are guaranteeing the product as “unbreakable.”
Code protection is constantly evolving. We at Microchip are committed to continuously improving the code protection features of our
products. Attempts to break Microchip’s code protection feature may be a violation of the Digital Millennium Copyright Act. If such acts
allow unauthorized access to your software or other copyrighted work, you may have a right to sue for relief under that Act.
Information contained in this publication regarding device
applications and the like is provided only for your convenience
and may be superseded by updates. It is your responsibility to
ensure that your application meets with your specifications.
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The Microchip name and logo, the Microchip logo, dsPIC,
KEELOQ, KEELOQ logo, MPLAB, PIC, PICmicro, PICSTART,
rfPIC and UNI/O are registered trademarks of Microchip
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© 2009, Microchip Technology Incorporated, Printed in the
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Printed on recycled paper.
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are for its PIC® MCUs and dsPIC® DSCs, KEELOQ® code hopping
devices, Serial EEPROMs, microperipherals, nonvolatile memory and
analog products. In addition, Microchip’s quality system for the design
and manufacture of development systems is ISO 9001:2000 certified.
© 2009 Microchip Technology Inc.
DS51876A-page 5
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DS51876A-page 6
© 2009 Microchip Technology Inc.