ETC IMAGELINK-50

SPECIFICATION
IMAGELINK-50 PAGE 1 OF 5
DISTEC GMBH
IMAGELINK-50-USB2.0
5” TFT Display with USB 2.0 HighSpeed
Interface
The information given in this document has been carefully checked and is correct to the best of our knowledge. Distec
GmbH reserves the right to make changes in products or specifications at any time and without further notice. Distec
GmbH products are not intended for use in systems in which product failures could result in personal injury. All
mentioned trademarks are registered trademarks of their owner.
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SPECIFICATION
IMAGELINK-50 PAGE 2 OF 5
CONTENT
1.
GENERAL DESCRIPTION .....................................................................................................................3
2.
USB INTERFACE DESCRIPTION .........................................................................................................3
2.1
ENDPOINT OVERVIEW ..........................................................................................................................4
2.2
USB DESCRIPTORS ..............................................................................................................................5
2.2.1
High-Speed....................................................................................................................................5
2.2.2
Full-Speed .....................................................................................................................................6
3.
USB VENDOR CALLS OVER ENDPOINT 0.........................................................................................7
3.1
BACKLIGHT REQUESTS:........................................................................................................................7
3.1.1
GET_BKL.....................................................................................................................................7
3.1.2
SET_BKL .....................................................................................................................................8
3.1.3
GET_BRIGHTNESS .....................................................................................................................8
3.1.4
SET_BRIGHTNESS......................................................................................................................9
3.2
DISPLAY REQUESTS ...........................................................................................................................10
3.2.1
GET_DISPLAY_POWER ...........................................................................................................10
3.2.2
SET_ DISPLAY_POWER...........................................................................................................11
3.2.3
GET_TRANSFER_COUNTER ...................................................................................................12
3.2.4
SET_ TRANSFER_COUNTER...................................................................................................13
4.
INTERRUPT TRANSFER DATA OVER ENDPOINT 1 ......................................................................14
4.1
4.2
4.3
STATUS FLAGS ..................................................................................................................................14
ERROR FLAGS....................................................................................................................................15
TOUCH SCREEN DATA ........................................................................................................................15
5.
BULK TRANSFER OVER ENDPOINT 2 .............................................................................................17
6.
PROGRAMMFLOW OF IMAGELINK USAGE .................................................................................19
7.
ELECTRICAL CHARACTERISTICS ..................................................................................................20
8.
CONNECTOR PIN ASSIGNMENT.......................................................................................................21
8.1
8.2
9.
CONNECTOR OVERVIEW.....................................................................................................................21
PIN ASSIGNMENTS .............................................................................................................................22
OUTSIDE DIMENSIONS.......................................................................................................................26
10.
10.1
MODIFICATIONS & IMPROVEMENTS........................................................................................28
VERSION HISTORY ............................................................................................................................28
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IMAGELINK-50 PAGE 3 OF 5
1.
GENERAL DESCRIPTION
The ImageLink technology is providing an easy to use USB Interface for TFT displays.
The ImageLink-50-USB comes with a 5” QVGA (320x240) Display. For Display details
see the Display Specification.
The ImageLink-50-USB is a self powered USB device with only needs a single 12V
voltage supply.
ImageLink-50-USB also provides an integrated four wire resistive touch controller.
2.
USB INTERFACE DESCRIPTION
The ImageLink-50-USB2.0 provides a USB 2.0 HighSpeed interface.
Vendor ID: ????
Product ID: ????
The ImageLink-50-USB is providing 3 USB endpoints (see figure 1).
ImageLink-50-USB
endpoint 0
control transfer
endpoint 1
interrupt IN transfer
USB
host
system
endpoint 2
bulk OUT transfer
figure 1: ImageLink datapipes
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IMAGELINK-50 PAGE 4 OF 5
2.1
Endpoint overview
The endpoint 0 is the mandatory control endpoint. Over this endpoint you switch the
backlight on/off, control the brightness and switch the display power on/off over USB
vendor calls. There are also vendor calls for initalizing and restarting the ImageLink
picture transmission. The USB vendor calls are described in chapter 3.
The endpoint 1 is an interrupt endpoint. Over this endpoint you get a status code
periodically and error codes if occur. Also the touch screen data comes over this
pipe. The functionality of endpoint 1 is described in chapter 4.
The endpoint 2 is a bulk out endpoint. Just send the image you want to show on the
ImageLink display, over this pipe to the endpoint. There is no protocol overhead. The
image format is a raw type with 320x240 points at 16 Bit color depth. The ImageLink is
double buffered. You can transfer images on “low” Full- Speed USB 1.1 Interfaces
without showing frame tears. A new Image is only showed after a buffer was fully
filled. The functionality of endpoint 2 is described in chapter 5.
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IMAGELINK-50 PAGE 5 OF 5
2.2
USB Descriptors
2.2.1 HIGH-SPEED
ImageLink-50-USB2.0 V01.26
Manufacturer: Data Display Group
Serial Number: xxxxxx
Speed: 480Mb/s (high)
USB Version: 2.00
Device Class: 00(>ifc )
Device Subclass: 00
Device Protocol: 00
Maximum Default Endpoint Size: 64
Number of Configurations: 1
Vendor Id: ????
Product Id: ????
Revision Number: 1.26
Config Number: 1
Number of Interfaces: 1
Attributes: c0
MaxPower Needed:
0mA
Interface Number: 0
Name: dd_lou
Alternate Number: 0
Class: ff(vend.)
Sub Class: 0
Protocol: 0
Number of Endpoints: 2
Endpoint Address: 81
Direction: in
Attribute: 3
Type: Int.
Max Packet Size: 64
Interval: 16ms
Endpoint Address: 02
Direction: out
Attribute: 2
Type: Bulk
Max Packet Size: 512
Interval: 0ms
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IMAGELINK-50 PAGE 6 OF 5
2.2.2 FULL-SPEED
ImageLink-50-USB2.0 V01.26
Manufacturer: Data Display Group
Serial Number: xxxxxx
Speed: 12Mb/s (full)
USB Version: 2.00
Device Class: 00(>ifc )
Device Subclass: 00
Device Protocol: 00
Maximum Default Endpoint Size: 64
Number of Configurations: 1
Vendor Id: ????
Product Id: ????
Revision Number: 1.26
Config Number: 1
Number of Interfaces: 1
Attributes: c0
MaxPower Needed:
0mA
Interface Number: 0
Name: dd_lou
Alternate Number: 0
Class: ff(vend.)
Sub Class: 0
Protocol: 0
Number of Endpoints: 2
Endpoint Address: 81
Direction: in
Attribute: 3
Type: Int.
Max Packet Size: 64
Interval: 8ms
Endpoint Address: 02
Direction: out
Attribute: 2
Type: Bulk
Max Packet Size: 64
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IMAGELINK-50 PAGE 7 OF 5
3.
USB VENDOR CALLS OVER ENDPOINT 0
The ImageLink should be configured over the 8 Byte of setup data of the specified
vendor calls over transfer endpoint 0.
For the USB standard requests see the USB Specification.
3.1
Backlight requests:
3.1.1 GET_BKL
The GET_BKL request is intended to determine the backlight status (switch ON/OFF).
Request
bmRequest bRequest
Type
wValue
wIndex
wLength
Data
1. Byte
GET_BKL 0xC0
bitmap:
b7
reserved
0
b6
reserved
0
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0xB0
b5
reserved
0
0x0000
b4
reserved
0
0x0000
b3
reserved
0
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0x0002
b2
reserved
0
bitmap
b1
reserved
0
2.
Byte
0xB0
b0
actual
state
0= OFF
1= ON
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3.1.2 SET_BKL
The SET_BKL request is intended to switch the backlight ON/OFF.
Request
SET_BKL
bmRequest
Type
0xC0
bRequest
wValue
0xB1
1.
2.
Byte
Byte
bitmap value 0x0000
bitmap:
b7
b6
b5
b4
reserved
reserved
reserved
reserved
0
0
0
0
each bit can be set individually or together.
wIndex
b3
reserved
0
b2
reserved
0
wLength
Data
0x0002
0x00B1
b1
reserved
0
b0
set actual
value
value:
0=OFF
1=ON
3.1.3 GET_BRIGHTNESS
The GET_BRIGHTNESS is intended to determine the brightness value. It can query the actual
and the stored default values.
Request
GET_BRIGHTNESS
bmReques
t Type
0xC0
bRequest
0xB2
wValue
mode
wIndex
0x0000
wLength
Data
0x0002
1.
2.
Byte Byte
value 0xB2
mode:
0: get actual value
1: get stored default value
value:
0 to 255
0 is min brightness
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3.1.4 SET_BRIGHTNESS
The SET_BRIGHNESS request is intended to set the actual and stored default brightness
values. The decision which value should be changed is made by the bitmap in the first byte of
wValue.
Request
bmRequest
Type
SET_
BRIGHTNESS
bitmap:
b7
reserved
0xC0
b6
reserved
b5
reserved
bRequest
wValue
0xB3
1.
Byte
bitmap
b4
reserved
b3
reserved
2.
Byte
value
wIndex
wLength
Data
0x0000
0x0002
0x00B3
b2
set to
stored
default
value (2)
b1
store
value as
default
(1)
b0
set actual
value (1)
(1) each bit can be set individually or together.
(2) has priority over b0
value:
0 to 255
0 is min brightness
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3.2
Display requests
3.2.1 GET_DISPLAY_POWER
The GET_ DISPLAY_POWER request is intended to determine the display power status
(switch display power ON/OFF and power good signal from power supply).
Request
bmRequest
Type
GET_
0xC0
DISPLAY_POWER
bitmap:
b7
reserved
0
b6
reserved
0
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b5
reserved
0
bRequest
wValue
0xB4
0x0000
b4
reserved
0
b3
reserved
0
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wIndex
0x0000
wLength
Data
0x0002
1.
2.
Byte
Byte
bitmap 0xB4
b2
0= no
power
1= power
good
b1
reserved
0
b0
actual
state
0= OFF
1= ON
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3.2.2 SET_ DISPLAY_POWER
The SET_DISPLAY_POWER request is intended to switch the display power ON/OFF. A
return bitmap announces success or failure of power up or down.
Request
SET_
DISPLAY
_POWER
Bm
Request
Type
0xC0
B
wValue
Request
0xB5
1.
Byte
bitmap
bitmap:
b7
b6
b5
b4
reserved
reserved
reserved
reserved
0
0
0
0
each bit can be set individually or together.
wIndex wLength Data
2.
Byte
value
1. Byte
0x0000 0x0002
return
bitmap
2.
Byte
0xB5
b3
reserved
0
b2
reserved
0
b1
reserved
0
b0
set actual
value
b3
reserved
0
b2
0= no
power
1= power
good
b1
reserved
0
b0
actual
state
0= OFF
1= ON
value:
0=OFF
1=ON
return bitmap:
b7
b6
reserved
reserved
0
0
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b5
reserved
0
b4
reserved
0
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3.2.3 GET_TRANSFER_COUNTER
The GET_TRANSFER_COUNTER is intended for controlling the number of transferred pixels.
At start of a transmission of one picture bitmap the counter has to be 320x240 pixels (1). For
each transferred pixel the counter will decremented. After transferring a complete picture bitmap
of 320x240 pixels the counter is automatically reinitialized and at a value of 320x240 pixels (1).
Request
GET_
TRANSFER_
COUNTER
bmRequest
Type
0xC0
bRequest
0xB6
wValue
mode
wIndex
0x0000
wLength
Data
0x0005
1.-4.
Byte
value[4]
5.
Byte
0xB6
mode:
0: get actual value
1: get stored default value (1)
value:
value[0] = couter_byte_0
value[1] = couter_byte_1
value[2] = couter_byte_2
value[3] = couter_byte_3
(1) at present there is only a fixed value:
couter_byte_0 = 0x00
couter_byte_1 = 0xc2
couter_byte_2 = 0x01
couter_byte_3 = 0x00
this is corresponding to 320x240 pixels
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3.2.4 SET_ TRANSFER_COUNTER
The SET_TRANSFER_COUNTER is used for initializing an image transfer. After some
conditions which leave the ImageLink in an undefined state it has to be reinitialized with this
request.
Request
bmRequest
Type
SET_
TRANSFER
_COUNTER
bitmap:
b7
reserved
0
0xC0
b6
reserved
0
bRequest wValue
0xB7
b5
reserved
0
1.
Byte
bitmap
b4
reserved
0
wIndex wLength Data
2.
Byte
0x00
b3
reserved
0
0x0000 0x0002
b2
set to
stored
default
value (1)
1.
Byte
return
bitmap
b1
reserved
0
2.
Byte
0xB7
b0
reserved
0
each bit can be set individually or together.
The return bitmap value of “Data” depends on display power state. If there is no switched ON
or no display power good signal the SET_TRANSFER_COUNTER will fail and the return value
is 0x00. Otherwise the return value is 0x01.
return bitmap:
b7
b6
reserved
reserved
0
0
b5
reserved
0
b4
reserved
0
b3
reserved
0
b2
reserved
0
b1
reserved
0
b0
0= failure
1= success
(1) at present there is only a fixed value:
couter_byte_0 = 0x00
couter_byte_1 = 0xc2
couter_byte_2 = 0x01
couter_byte_3 = 0x00
this corresponds with 320x240 = 76800 pixel
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IMAGELINK-50 PAGE 14 OF 5
4.
INTERRUPT TRANSFER DATA OVER ENDPOINT 1
The interrupt endpoint 1 has several jobs. First it’s the data pipe for status and error flags and
second for the touch screen data. The data is transferred as block of word (2 bytes) items in little
endian byte order which can be easily abstracted with a e.g. C programming language data
structure.
title
status flags
error flags
touch screen state
x- position
y- position
z1
z2
reserved
reserved
reserved
reserved
reserved
LSB
value
value
value
value
value
value
value
reserved = 0x00
reserved = 0x00
reserved = 0x00
reserved = 0x00
reserved = 0x00
MSB
reserved = 0x00
reserved = 0x00
reserved = 0x00
reserved = 0x00
reserved = 0x00
reserved = 0x00
reserved = 0x00
reserved = 0x00
reserved = 0x00
reserved = 0x00
reserved = 0x00
reserved = 0x00
figure 2: interrupt transfer data block
typedef struct _IntTransfer {
unsigned short state;
unsigned short error;
unsigned short touch_state;
unsigned short x;
unsigned short y;
unsigned short z1;
unsigned short z2;
}IntTransfer;
figure 3: C data struct
4.1
Status flags
b7
reserved
b6
reserved
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b5
reserved
b4
reserved
b3
status
flag was
pending
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b2
b1
RAMDAG reserved
switched
to new
picture
b0
complete
picture
was
transferred
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4.2
Error flags
b7
reserved
4.3
b6
reserved
b5
reserved
b4
reserved
b3
error flag
was
pending
b2
reserved
b1
counter
expired
but
memory
isn’t fully
filled
b0
fully filled
memory
but
counter
not
expired
Touch screen data
The ImageLink integrated touch screen controller provides its measurements periodically. The
transmission of this data is announced with the “touch screen data” flag (see table 1: touch
screen state flags). The measurement methods are shown in figure 4 and figure 5. For
determining the pressure of a touch event the equation from figure 6 can be used.
b7
reserved
b6
reserved
b5
reserved
b4
reserved
b3
reserved
b2
reserved
b1
reserved
b0
touch
screen
data
table 1: touch screen state flags
figure 4: X-position measurement (Y-position is correlative)
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figure 5: Z1 and Z2 measurement
figure 6: pressure equation method
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5.
BULK TRANSFER OVER ENDPOINT 2
The bulk transfer endpoint 2 is the main data pipe for transmitting pictures to the ImageLink.
From the programmer’s point of view it’s very easy to use. After you have initialized the
ImageLink once by a SET_TRANSFER_COUNTER vendor call (see chapter 13), just send the
picture you will show on the display as a bitmap starting with pixel ‘1’ followed by the whole
picture ending with pixel ‘76800’ (see figure 7: pixel order). The picture will be stored in one
half of the ImageLink video graphics memory. After a whole picture has been transferred the
RAMDAC points to the new picture and shows it on the display. A status flag transmitted over
the interrupt endpoint 1 announces the successful transfer of the picture (see chapter 14). Then
the other half of the ImageLink video memory is free for receiving another picture and a new
picture transfer can start. For higher performance there is no need to wait for the status flag.
You only have to control the number of transferred bytes which must be the number of a whole
picture. If the data is committed to the USB system is very likely that the transfer will go well
because of the error controlled nature of the USB bulk transfer. So you can immediately start
another picture transfer. The ImageLink is generously buffered. But you should always take care
about the error flags transmitted over interrupt endpoint 1 (see chapter 14). In the unlikely event
of an error you have to stop your current transmission and to reinitialize the ImageLink with the
SET_TRANSVER_COUNTER vendor call over endpoint 0. Then you can resume the picture
transmission.
Each pixel is represented with 16 Bits in BGR order. The red and blue color have a depth of 5
Bits the green color 6 Bits. So it’s the common format BGR(565) (see figure 8: BGR color
order) in little endian order (see figure 9: pixel format).
1
2
321
322
3
319
320
640
76481
76800
xxxxxx
figure 7: pixel order
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b15 b14 b13 b12 b11 b10 b9
R4 R3 R2 R1 R0 G5 G4
b8
G3
b7
G2
b6
G1
b5
G0
b4
B4
b3
B3
b2
B2
b1
B1
b0
B0
b5
R2
MSB
b4 b3
R1 R0
b2
G5
b1
G4
b0
G3
figure 8: BGR color order
b8
G2
b6
G1
b5
G0
LSB
b4 b3
B4 B3
b2
B2
b1
B1
b0
B0
b7
R4
b6
R3
figure 9: pixel format (little endian)
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6.
PROGRAMMFLOW OF IMAGELINK USAGE
In figure 10 is a typical program flow for using ImageLink-50-USB shown.
figure 10: typical program flow
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IMAGELINK-50 PAGE 20 OF 5
7.
ELECTRICAL CHARACTERISTICS
Operating conditions*
Item
Symbol
Supply
VIL
Voltage
Supply
Current
Min.
Typ.
Max.
Unit
10.8
12.0
13.2
V
IIL
-
115
215
mA
IIL
-
225
185
mA
IIL
-
275
455
mA
IIL
-
585
815
mA
Max.
Unit
Note
15
V
(1),(2)
Electrical Absolute Ratings*
Item
Symbol
Min.
Supply
VIL
-0.3
Voltage
Note
Display OFF
BKL OFF
Display ON
BKL OFF
Display ON
BKL ON
min. brightness
Display ON
BKL ON
max. brightness
Note (1) Within operating temperature
Note (2) Permanent damage to the device may occur if maximum values are
exceeded.
Functional operation should be restricted to the conditions described under normal
operating conditions.
(*) preliminary
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IMAGELINK-50 PAGE 21 OF 5
8.
CONNECTOR PIN ASSIGNMENT
8.1
Connector overview
CN6/7
CN9
CN8
CN5/11
CN3/4/10
CN1
CN2
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IMAGELINK-50 PAGE 22 OF 5
CN#
Description
CN10 power supply
Type
2.5mm Pitch Header Right Angle
alternative to CN4/3
Manufacturer
Molex (5046 Series)
CN4
power supply
DC Power Jack 2.0mm
Kycon (KLD-SMT
Series)
CN3
power supply
Screw type terminal 1,5 mm²
alternative to CN4/10
Weco (95 Series)
CN5
USB
USB B-Type
Kycon
(KUSB-BS-1-N)
1.25mm pitch board to wire
alternative to CN5
Hirose (DF13 Series)
Pin header (2mm / 2x16)
--
CN11 USB
GPIO/ prog.
interface
touch screen
CN7
interface
touch screen
CN6
interface
CN11 serial data interface
TTL interface
CN1
(internal use)
inverter supply and
CN2 control
(internal use)
CN9
8.2
1.25mm pitch FFC/FPC
Connector
1.25mm pitch board to wire
alternative to CN10
RS232 / optional
DMC (KCA-4)
Hirose (DF13 Series)
Hirose (DF13 Series)
1mm pitch board to board
Hirose (DF9 Series)
1mm pitch board to board
Hirose (DF9 Series)
Pin assignments
CN10
Pin
Center
2
3
Power supply connector
Signal
Description
+12V
+12V power supply
GND
Ground
Not connected
CN4
Pin
1
2
Power supply connector (alternative)
Signal
Description
GND
Ground
+12V
+12V power supply
DISTEC GMBH
Industriestrasse 1 D-82110
Germering
30.3.2004/sw1
http://www.distec.de
Tel.: +49-89-89 43 63-0
Fax: +49-89-89 43 63-39
SPECIFICATION
IMAGELINK-50 PAGE 23 OF 5
CN3
Pin
2
Power supply connector (alternative)
Signal
Description
+5V power supply /
+5V /
Ext. panel power
VCCEXT
supply
GND
Ground
CN11
Pin
1
2
3
4
5
serial data interface (optional)
Signal
Description
TXD0
Data out
RXD0
Data in
TXD1
Data out
RXD1
Data in
GND
Ground
CN7
Pin
1
2
3
4
touch screen interface
Signal
Description
X+
X+ position input
Y+
Y- position input
XX+ position input
Y+
Y- position input
CN6
Pin
1
2
3
4
5
touch screen interface (alternative)
Signal
Description
X+
X+ position input
Y+
Y- position input
XX+ position input
Y+
Y- position input
GND
Ground
CN5
Pin
USB connector
Signal
Description
USB Bus Voltage
VBUS
(not connected)
DUSB DD+
USB D+
GND
Ground
1
1
2
3
4
DISTEC GMBH
Industriestrasse 1 D-82110
Germering
30.3.2004/sw1
http://www.distec.de
Tel.: +49-89-89 43 63-0
Fax: +49-89-89 43 63-39
SPECIFICATION
IMAGELINK-50 PAGE 24 OF 5
CN11
Pin
2
3
4
5
USB connector
Signal
Description
USB Bus Voltage
VBUS
(not connected)
GND
Ground
DUSB DD+
USB D+
GND
Ground
CN1
Pin
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
TTL interface (internal use)
Signal
Description
NC
(not connected)
NC
(not connected)
+5V
+5V display power
+5V
+5V display power
NC
(not connected) (DE)
GND
ground
B5
blue 5 (MSB)
B4
blue 4
B3
blue 3
B2
blue 2
B1
blue 1
B0
blue 0 (LSB)
GND
ground
G5
green 5 (MSB)
G4
green 4
G3
green 3
G2
green 2
G1
green 1
G0
green 0 (LSB)
GND
ground
R5
red 5 (MSB)
R4
red 4
R3
red 3
R2
red 2
R1
red 1
R0
red 0 (LSB)
GND
ground
VSYNC
display vertical sync
HSYNC
display horizontal sync
CLK
display clock
GND
ground
1
DISTEC GMBH
Industriestrasse 1 D-82110
Germering
30.3.2004/sw1
http://www.distec.de
Tel.: +49-89-89 43 63-0
Fax: +49-89-89 43 63-39
SPECIFICATION
IMAGELINK-50 PAGE 25 OF 5
CN2
Pin
1
2
3
4
5
6
7
8
9
10
11
inverter supply and control
Signal
Description
NC
(not connected)
NC
(not connected)
NC
(not connected)
+12V
+12V backlight power
+12V
+12V backlight power
+12V
+12V backlight power
BKL_EN
backlight enable
BR_CTRL
brightness control
GND
ground
GND
ground
GND
ground
CN9 TTL – Signal CONNECTOR 9 (*)
Pin Signal
Description
Pin Signal
Description
1
+5V
fused with F2 (nc)
2
+3.3V
fused with F1 (nc)
3
VBAT1
4
VBAT2
5
IN1
6
IN2
7
PC0
GPIO (+3.3V,+5V)
8
PA4
GPIO (+3.3V,+5V)
9
PC1
GPIO (+3.3V,+5V)
10 PA5
GPIO (+3.3V,+5V)
11
PC2
GPIO (+3.3V,+5V)
12 PA6
GPIO (+3.3V,+5V)
13
PC3
GPIO (+3.3V,+5V)
14 PE3
GPIO (+3.3V,+5V)
15
INT4
Interrupt
16 PE4
GPIO (+3.3V,+5V)
17
PE7
GPIO (+3.3V,+5V)
18 INT5
Interrupt
19
RESET
20 WAKEUP
21
GND
22 GND
23
SCL
ext. I2C interface
24 +3.3V
fused with F1 (nc)
25
SDA
ext. I2C interface
26 TMS
prog. interface
27
DIN
prog. interface
28 CLK
prog. interface
29
CTRL
prog. interface
30 DONE
prog. interface
31
GND
32 GND
(*) optional GPIOs not implemented in firmware, maybe in future or on request
DISTEC GMBH
Industriestrasse 1 D-82110
Germering
30.3.2004/sw1
http://www.distec.de
Tel.: +49-89-89 43 63-0
Fax: +49-89-89 43 63-39
SPECIFICATION
IMAGELINK-50 PAGE 26 OF 5
9.
OUTSIDE DIMENSIONS
ImageLink
figure 11: ImageLink dimensions
DISTEC GMBH
Industriestrasse 1 D-82110
Germering
30.3.2004/sw1
http://www.distec.de
Tel.: +49-89-89 43 63-0
Fax: +49-89-89 43 63-39
SPECIFICATION
IMAGELINK-50 PAGE 27 OF 5
Display
DISTEC GMBH
Industriestrasse 1 D-82110
Germering
30.3.2004/sw1
http://www.distec.de
Tel.: +49-89-89 43 63-0
Fax: +49-89-89 43 63-39
SPECIFICATION
IMAGELINK-50 PAGE 28 OF 5
10.
MODIFICATIONS & IMPROVEMENTS
10.1 Version History
Rev. Date
1.0
31/03/2004
DISTEC GMBH
Industriestrasse 1 D-82110
Germering
orig. of
change
sw1
Description
initial release
30.3.2004/sw1
http://www.distec.de
Tel.: +49-89-89 43 63-0
Fax: +49-89-89 43 63-39