2275 lines
65 KiB
Plaintext
2275 lines
65 KiB
Plaintext
<sect1 id="hd44780-howto">
|
|
<title>The HD44780 Driver</title>
|
|
|
|
<para>
|
|
There are several ways of wiring up the HD44780 devices. Your choice
|
|
will probably be governed largely by your ability to wire up each one
|
|
and/or a desire to use the device with other programs.
|
|
</para>
|
|
|
|
<para>
|
|
The LCDproc HD44780 driver supports the following connections on a
|
|
parallel port:
|
|
</para>
|
|
|
|
<itemizedlist>
|
|
<listitem><para>4bit</para></listitem>
|
|
<listitem><para>8bit (winamp style)</para></listitem>
|
|
<listitem><para>extended 8bit (LCD + LED bargraph)</para></listitem>
|
|
<listitem><para>serial LPT</para></listitem>
|
|
</itemizedlist>
|
|
|
|
<para>
|
|
It also supports the following connections:
|
|
</para>
|
|
|
|
<itemizedlist>
|
|
<listitem><para>A PIC-an-LCD or LCD serializer connected to a serial port</para></listitem>
|
|
<listitem><para>A I<superscript>2</superscript>C port expander connected to an I<superscript>2</superscript>C port</para></listitem>
|
|
</itemizedlist>
|
|
|
|
<para>
|
|
The driver also lets you use multiple displays as a single virtual
|
|
display. For example, a 4, 2 and 1 line display can be used to form a
|
|
7 line display. The number of displays is limited by the individual
|
|
HD44780 driver.
|
|
</para>
|
|
|
|
<sect2 id="hd44780-connections">
|
|
<title>Connections</title>
|
|
|
|
<sect3 id="hd44780-connections-common">
|
|
<title>Common connections for all connectiontypes</title>
|
|
|
|
<para>
|
|
No matter what connectiontype you choose, you will always need some
|
|
connections. They are explaned here.
|
|
</para>
|
|
|
|
<sect4 id="hd44780-connections-power">
|
|
<title>Power</title>
|
|
|
|
<para>
|
|
All variants use the same method of obtaining power. i.e., for each LCD:
|
|
</para>
|
|
|
|
<table id="hd44780-connections-power.table">
|
|
<title>HD44780: Power Connections</title>
|
|
<tgroup cols="3" align="left">
|
|
<thead>
|
|
<row>
|
|
<entry>LCD</entry>
|
|
<entry>pin</entry>
|
|
<entry>signal</entry>
|
|
</row>
|
|
</thead>
|
|
<tbody>
|
|
<row>
|
|
<entry>1</entry>
|
|
<entry>GND</entry>
|
|
<entry>(connect to any of pins 18 - 25 of you parallel port)</entry>
|
|
</row>
|
|
<row>
|
|
<entry>2</entry>
|
|
<entry>+5V</entry>
|
|
<entry></entry>
|
|
</row>
|
|
<row>
|
|
<entry>3</entry>
|
|
<entry>Vadj</entry>
|
|
<entry>(contrast)</entry>
|
|
</row>
|
|
</tbody>
|
|
</tgroup>
|
|
</table>
|
|
|
|
<warning>
|
|
<para>
|
|
Always double check your power connection, your display will probably
|
|
<emphasis>not</emphasis> survive a reversely connected supply !
|
|
</para>
|
|
</warning>
|
|
|
|
<para>
|
|
There are several ways to get 5V:
|
|
</para>
|
|
|
|
<itemizedlist>
|
|
<listitem><para>
|
|
Connect to a 5V line intented for disk drives (the red wire is 5V,
|
|
black is GND).
|
|
</para></listitem>
|
|
<listitem><para>
|
|
Get it from a joystick port (pin 1 and 9 are 5V, 4, 5 and 12 are GND).
|
|
It seems that some soundcards can use these lines for communication,
|
|
so if you want to use this first check wether it really gives a 'clean' 5V.
|
|
</para></listitem>
|
|
<listitem><para>
|
|
If you don't have a backlight, you can sometimes get the needed mA's
|
|
from the LPT port itself. Connect a few diodes from the data pins to
|
|
a capacitor and you have the 5V. If it's strong enough is another question...
|
|
</para></listitem>
|
|
<listitem><para>
|
|
Get it from the keyboard connector. I do not recommend to use this with
|
|
a backlight, as the keyboard connector is often protected with a fuse
|
|
of 100mA or 200mA.
|
|
</para></listitem>
|
|
</itemizedlist>
|
|
|
|
<figure id="hd44780-connections-power.contrast-circuit">
|
|
<title>HD44780: Connecting the contrast adjusting pin (Vadj.)</title>
|
|
<screen>
|
|
<![CDATA[
|
|
|
|
(variable resistor)
|
|
.------.
|
|
Vcc ---| 10k |--- GND
|
|
`---^--'
|
|
/|\
|
|
|
|
|
Vadj.
|
|
|
|
]]>
|
|
</screen>
|
|
</figure>
|
|
|
|
</sect4>
|
|
|
|
<sect4 id="hd44780-connections-keypad">
|
|
<title>Keypad</title>
|
|
|
|
<para>
|
|
You can connect a keypad with most connection types. The maximum supported
|
|
number of keys differs per type. There are several ways to connect the keys
|
|
to the input pins.
|
|
</para>
|
|
|
|
<sect5 id="hd44780-connections-keypad-direct">
|
|
<title>Direct Keys</title>
|
|
|
|
<para>
|
|
If you connect a key like sketched below, then you can only connect one key
|
|
per input pin. It is a simple solution if you need only few keys.
|
|
</para>
|
|
|
|
<figure id="hd44780-connections-keypad-direct.circuit">
|
|
<title>HD44780: Direct Keys</title>
|
|
<screen>
|
|
<![CDATA[
|
|
|
|
O 5V
|
|
|
|
|
|
|
|
-
|
|
| | 10k
|
|
| |
|
|
-
|
|
|
|
|
+-----------o input (X)
|
|
|
|
|
|
|
|
o
|
|
\
|
|
o
|
|
|
|
|
|
|
|
=== GND
|
|
|
|
]]>
|
|
</screen>
|
|
</figure>
|
|
|
|
<para>
|
|
By default, the following keystrokes are generated by the different keys:
|
|
</para>
|
|
|
|
<table id="hd44780-connections-keypad-direct.mapping">
|
|
<title>HD44780: Direct Key Mapping</title>
|
|
<tgroup cols="2" align="left">
|
|
<tbody>
|
|
<row>
|
|
<entry>X0</entry>
|
|
<entry><literal>A</literal></entry>
|
|
</row>
|
|
<row>
|
|
<entry>X1</entry>
|
|
<entry><literal>B</literal></entry>
|
|
</row>
|
|
<row>
|
|
<entry>X2</entry>
|
|
<entry><literal>C</literal></entry>
|
|
</row>
|
|
<row>
|
|
<entry>X3</entry>
|
|
<entry><literal>D</literal></entry>
|
|
</row>
|
|
<row>
|
|
<entry>X4</entry>
|
|
<entry><literal>E</literal></entry>
|
|
</row>
|
|
</tbody>
|
|
</tgroup>
|
|
</table>
|
|
|
|
</sect5>
|
|
|
|
<sect5 id="hd44780-connections-keypad-matrix">
|
|
<title>Matrix Keys</title>
|
|
|
|
<para>
|
|
Using a matrix, we can connect much more keys. To simplify the drawing here,
|
|
we replace all switches with an @ symbol:
|
|
</para>
|
|
|
|
<figure id="hd44780-connections-keypad-matrix.single-circuit">
|
|
<title>HD44780: Single Matrix Key</title>
|
|
<screen>
|
|
<![CDATA[
|
|
|
|
X line
|
|
|
|
|
|
|
|
Y line ---+---------
|
|
| | |
|
|
o | = --@--
|
|
\ | |
|
|
o |
|
|
| |
|
|
+---+
|
|
|
|
|
|
|
|
|
|
]]>
|
|
</screen>
|
|
</figure>
|
|
|
|
<para>
|
|
We connect the matrix of keys like this:
|
|
</para>
|
|
|
|
<figure id="hd44780-connections-keypad-matrix.complete-circuit">
|
|
<title>HD44780: Complete Key Matrix</title>
|
|
<screen>
|
|
<![CDATA[
|
|
|
|
Y0 o---|<---@--@--@
|
|
| | |
|
|
Y1 o---|<---@--@--@
|
|
| | |
|
|
Y2 o---|<---@--@--@
|
|
| | |
|
|
Y3 o---|<---@--@--@ O 5V
|
|
| | | |
|
|
diodes | | | ___ |
|
|
1N4148 +----------|___|---+
|
|
| | | ___ |
|
|
| +-------|___|---+
|
|
| | | ___ |
|
|
| | +----|___|---+ resistors 22k
|
|
| | |
|
|
o o o
|
|
X0 X1 X2
|
|
|
|
]]>
|
|
</screen>
|
|
</figure>
|
|
|
|
<para>
|
|
As you can see, you need 1 resistor per X line, and 1 diode per Y line.
|
|
Lcdproc will presume that you have a keypad with a layout like a telephone
|
|
connected, with X and Y lines connected as show. To be more precise, it
|
|
assumes this:
|
|
</para>
|
|
|
|
<table id="hd44780-connections-keypad-matrix.mapping">
|
|
<title>HD44780: Matrix Keypad Layout</title>
|
|
<tgroup cols="5" align="left">
|
|
<tbody>
|
|
<row>
|
|
<entry></entry>
|
|
<entry><emphasis>X0</emphasis></entry>
|
|
<entry><emphasis>X1</emphasis></entry>
|
|
<entry><emphasis>X2</emphasis></entry>
|
|
<entry><emphasis>X3</emphasis></entry>
|
|
<entry><emphasis>X4</emphasis></entry>
|
|
</row>
|
|
<row>
|
|
<entry><emphasis>Y0</emphasis></entry>
|
|
<entry><literal>1</literal></entry>
|
|
<entry><literal>2</literal></entry>
|
|
<entry><literal>3</literal></entry>
|
|
<entry><literal>A</literal></entry>
|
|
<entry><literal>E</literal></entry>
|
|
</row>
|
|
<row>
|
|
<entry><emphasis>Y1</emphasis></entry>
|
|
<entry><literal>4</literal></entry>
|
|
<entry><literal>5</literal></entry>
|
|
<entry><literal>6</literal></entry>
|
|
<entry><literal>B</literal></entry>
|
|
<entry><literal>F</literal></entry>
|
|
</row>
|
|
<row>
|
|
<entry><emphasis>Y2</emphasis></entry>
|
|
<entry><literal>7</literal></entry>
|
|
<entry><literal>8</literal></entry>
|
|
<entry><literal>9</literal></entry>
|
|
<entry><literal>C</literal></entry>
|
|
<entry><literal>G</literal></entry>
|
|
</row>
|
|
<row>
|
|
<entry><emphasis>Y3</emphasis></entry>
|
|
<entry><literal>*</literal></entry>
|
|
<entry><literal>0</literal></entry>
|
|
<entry><literal>#</literal></entry>
|
|
<entry><literal>D</literal></entry>
|
|
<entry><literal>H</literal></entry>
|
|
</row>
|
|
</tbody>
|
|
</tgroup>
|
|
</table>
|
|
|
|
<para>
|
|
If you only need 10 keys, leave the rest away. However, the lcdproc menu is
|
|
controlled by the keystrokes A to D. You should modify and recompile the
|
|
driver to get an other keypad layout.
|
|
</para>
|
|
|
|
<para>
|
|
You can buy arrays of keys that are connected like this in the electronics
|
|
shop. They usually call it a matrix keypad. To hook it to lcdproc, you
|
|
would only need to add the resistors and diodes.
|
|
</para>
|
|
|
|
<para>
|
|
If you want to use just one return line, for example with the serialLpt
|
|
wiring, it looks (completely drawn) like this:
|
|
</para>
|
|
|
|
<figure id="hd44780-connections-keypad-matrix.1line-circuit">
|
|
<title>HD44780: One Return Line</title>
|
|
<screen>
|
|
<![CDATA[
|
|
|
|
O 5V
|
|
|
|
|
.-.
|
|
| | 4k7 or 22k
|
|
diodes | |
|
|
1N4148 '-'
|
|
___ |
|
|
Y0 o---|<---o o---+
|
|
___ |
|
|
Y1 o---|<---o o---+
|
|
___ |
|
|
Y2 o---|<---o o---+
|
|
___ |
|
|
Y3 o---|<---o o---+----o return line
|
|
|
|
]]>
|
|
</screen>
|
|
</figure>
|
|
|
|
<tip>
|
|
<para>
|
|
If the driver generates keypresses without that you actually press a key,
|
|
it might be that the unconnected input lines are picking up
|
|
electromagnetic waves from the air. In that case connect the unconnected
|
|
input lines (pin 10, 11, 12, 13 and 15 of the LPT) to VCC = 5V.
|
|
</para>
|
|
</tip>
|
|
|
|
</sect5>
|
|
|
|
</sect4>
|
|
|
|
<sect4 id="hd44780-connections-backlight">
|
|
<title>Backlight</title>
|
|
|
|
<para>
|
|
A small extension allows you to switch the backlight of the display on
|
|
and off. At the moment only the <code>4bit</code> and <code>winamp</code>
|
|
connection types support this.
|
|
The extension uses one output pin, you cannot use that pin for other
|
|
functions anymore. The wiring looks like this:
|
|
</para>
|
|
|
|
<figure id="hd44780-connections-backlight.circuit">
|
|
<title>HD44780: Backlight Wiring</title>
|
|
<screen>
|
|
<![CDATA[
|
|
|
|
O 5V
|
|
___ |
|
|
+---|___|---+
|
|
LPT Sub-D connector | 4k7 |
|
|
| |e
|
|
___ | b |/
|
|
BL pin o------------|___|---+---------|
|
|
1k |\
|
|
BC327 |c
|
|
| LCD connector
|
|
|
|
|
+--------o 15 backlight
|
|
|
|
+--------o 16 GND backlight
|
|
|
|
|
=== GND
|
|
|
|
Note: 4k7 means 4,7 kOhm.
|
|
The BC327 transistor has the following connections:
|
|
|
|
_____
|
|
| |
|
|
|BC327|
|
|
|_____|
|
|
| | |
|
|
| | |
|
|
| | |
|
|
c b e
|
|
|
|
]]>
|
|
</screen>
|
|
</figure>
|
|
|
|
<caution>
|
|
<para>
|
|
Sometimes the backlight connections are not on the 'main' connector, but on
|
|
the side. If that is the case, there is usually NO RESISTOR present to limit
|
|
the current through the LEDs. Therefor you should then add a resistor after
|
|
the transistor of about 10 ohm (see display documentation).
|
|
</para>
|
|
</caution>
|
|
|
|
<tip>
|
|
<para>
|
|
If you want the backlight to light a bit while it's switched 'off', you can
|
|
add a resistor bypassing the transistor from e to c, with a value of, say
|
|
47ohm or 22ohm. (My 4x20 has an internal resistor of 6ohm, so with 47 ohm
|
|
extra it lights at only 1/9th. I like this. Joris.)
|
|
</para>
|
|
</tip>
|
|
|
|
</sect4>
|
|
|
|
</sect3>
|
|
|
|
<sect3 id="hd44780-4bit">
|
|
<title>4bit</title>
|
|
|
|
<para>
|
|
This is originally based on "lcdtext" (by Matthias Prinke).
|
|
</para>
|
|
|
|
<table id="hd44780-4bit.base-mapping">
|
|
<title>HD44780: 4bit Pinouts (1)</title>
|
|
<tgroup cols="4" align="left">
|
|
<colspec colname="lpt1"/>
|
|
<colspec colname="lpt2"/>
|
|
<colspec colname="lcd1"/>
|
|
<colspec colname="lcd2"/>
|
|
<thead>
|
|
<row>
|
|
<entry namest="lpt1" nameend="lpt2" align="center">printer port</entry>
|
|
<entry namest="lcd1" nameend="lcd2" align="center">LCD</entry>
|
|
</row>
|
|
<row>
|
|
<entry>name</entry>
|
|
<entry>pin</entry>
|
|
<entry>name</entry>
|
|
<entry>pin</entry>
|
|
</row>
|
|
</thead>
|
|
<tbody>
|
|
<row>
|
|
<entry>D0</entry>
|
|
<entry>2</entry>
|
|
<entry>D4</entry>
|
|
<entry>11</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D1</entry>
|
|
<entry>3</entry>
|
|
<entry>D5</entry>
|
|
<entry>12</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D2</entry>
|
|
<entry>4</entry>
|
|
<entry>D6</entry>
|
|
<entry>(13)</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D3</entry>
|
|
<entry>5</entry>
|
|
<entry>D7</entry>
|
|
<entry>14</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D4</entry>
|
|
<entry>6</entry>
|
|
<entry>RS</entry>
|
|
<entry>4</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D5</entry>
|
|
<entry>7</entry>
|
|
<entry>RW</entry>
|
|
<entry>5 (LCD3 - 6) (optional - pull all LCD RW low (*) )</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D6</entry>
|
|
<entry>8</entry>
|
|
<entry>EN</entry>
|
|
<entry>6</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D7</entry>
|
|
<entry>9</entry>
|
|
<entry>EN2</entry>
|
|
<entry>(LCD2 - 6) (optional)</entry>
|
|
</row>
|
|
</tbody>
|
|
</tgroup>
|
|
</table>
|
|
|
|
<para>
|
|
(*) on the RW line of the display: this line decides whether the display receives data from the
|
|
LPT port, or whether it sends data to the LPT port. If grounded, it receives. If High or connected
|
|
to nothing at all, it "sends" (i.e., will not work as intended). So, if you are not sure that
|
|
you need it otherwise, then connect it to GND. This certainly applies if you have only one display.
|
|
</para>
|
|
|
|
<para>
|
|
If you want to connect more than two displays to the parallel port then
|
|
wire D5 (pin 7) to the enable line (pin 6) of the third LCD. Then for
|
|
displays four to seven use:
|
|
</para>
|
|
|
|
<table id="hd44780-4bit.multi-mapping">
|
|
<title>HD44780: 4bit Pinouts (2)</title>
|
|
<tgroup cols="2" align="left">
|
|
<thead>
|
|
<row>
|
|
<entry>printer port</entry>
|
|
<entry>LCD</entry>
|
|
</row>
|
|
</thead>
|
|
<tbody>
|
|
<row>
|
|
<entry>STR (1)</entry>
|
|
<entry>EN4</entry>
|
|
</row>
|
|
<row>
|
|
<entry>LF (14)</entry>
|
|
<entry>EN5</entry>
|
|
</row>
|
|
<row>
|
|
<entry>INIT (16)</entry>
|
|
<entry>EN6</entry>
|
|
</row>
|
|
<row>
|
|
<entry>SEL (17)</entry>
|
|
<entry>EN7</entry>
|
|
</row>
|
|
</tbody>
|
|
</tgroup>
|
|
</table>
|
|
|
|
<para>
|
|
The optional keypad can be connected as follows:
|
|
</para>
|
|
|
|
<table id="hd44780-4bit.keypad-mapping">
|
|
<title>HD44780: 4bit Keypad Pinouts</title>
|
|
<tgroup cols="2" align="left">
|
|
<thead>
|
|
<row>
|
|
<entry>printer port</entry>
|
|
<entry>LCD</entry>
|
|
</row>
|
|
</thead>
|
|
<tbody>
|
|
<row>
|
|
<entry>D0 (2)</entry>
|
|
<entry>Y0</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D1 (3)</entry>
|
|
<entry>Y1</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D2 (4)</entry>
|
|
<entry>Y2</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D3 (5)</entry>
|
|
<entry>Y3</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D4 (6)</entry>
|
|
<entry>Y4</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D5 (7)</entry>
|
|
<entry>Y5</entry>
|
|
</row>
|
|
<row>
|
|
<entry>nSTRB (1)</entry>
|
|
<entry>Y6</entry>
|
|
</row>
|
|
<row>
|
|
<entry>nLF (14)</entry>
|
|
<entry>Y7</entry>
|
|
</row>
|
|
<row>
|
|
<entry>INIT (16)</entry>
|
|
<entry>Y8</entry>
|
|
</row>
|
|
<row>
|
|
<entry>nSEL (17)</entry>
|
|
<entry>Y9</entry>
|
|
</row>
|
|
<row>
|
|
<entry>nACK (10)</entry>
|
|
<entry>X0</entry>
|
|
</row>
|
|
<row>
|
|
<entry>BUSY (11)</entry>
|
|
<entry>X1</entry>
|
|
</row>
|
|
<row>
|
|
<entry>PAPEREND (12)</entry>
|
|
<entry>X2</entry>
|
|
</row>
|
|
<row>
|
|
<entry>SELIN (13)</entry>
|
|
<entry>X3</entry>
|
|
</row>
|
|
<row>
|
|
<entry>nFAULT (15)</entry>
|
|
<entry>X4</entry>
|
|
</row>
|
|
</tbody>
|
|
</tgroup>
|
|
</table>
|
|
|
|
<para>
|
|
The optional backlight wiring should be connected to D5, pin 7.
|
|
</para>
|
|
|
|
</sect3>
|
|
|
|
<sect3 id="hd44780-8bit-winamp">
|
|
<title>8bit "Winamp"</title>
|
|
|
|
<para>
|
|
This type of connection should work with winamp.
|
|
</para>
|
|
|
|
<table id="hd44780-8bit-winamp.base-mapping">
|
|
<title>HD44780: "Winamp" wiring</title>
|
|
<tgroup cols="4" align="left">
|
|
<colspec colname="lpt1"/>
|
|
<colspec colname="lpt2"/>
|
|
<colspec colname="lcd1"/>
|
|
<colspec colname="lcd2"/>
|
|
<thead>
|
|
<row>
|
|
<entry namest="lpt1" nameend="lpt2" align="center">printer port</entry>
|
|
<entry namest="lcd1" nameend="lcd2" align="center">LCD</entry>
|
|
</row>
|
|
<row>
|
|
<entry>name</entry>
|
|
<entry>pin</entry>
|
|
<entry>name</entry>
|
|
<entry>pin</entry>
|
|
</row>
|
|
</thead>
|
|
<tbody>
|
|
<row>
|
|
<entry>D0</entry>
|
|
<entry>2</entry>
|
|
<entry>D0</entry>
|
|
<entry>7</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D1</entry>
|
|
<entry>3</entry>
|
|
<entry>D1</entry>
|
|
<entry>8</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D2</entry>
|
|
<entry>4</entry>
|
|
<entry>D2</entry>
|
|
<entry>9</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D3</entry>
|
|
<entry>5</entry>
|
|
<entry>D3</entry>
|
|
<entry>10</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D4</entry>
|
|
<entry>6</entry>
|
|
<entry>D4</entry>
|
|
<entry>11</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D5</entry>
|
|
<entry>7</entry>
|
|
<entry>D5</entry>
|
|
<entry>12</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D6</entry>
|
|
<entry>8</entry>
|
|
<entry>D6</entry>
|
|
<entry>13</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D7</entry>
|
|
<entry>9</entry>
|
|
<entry>D7</entry>
|
|
<entry>14</entry>
|
|
</row>
|
|
<row>
|
|
<entry>nSTRB</entry>
|
|
<entry>(1)</entry>
|
|
<entry>EN</entry>
|
|
<entry>6</entry>
|
|
</row>
|
|
<row>
|
|
<entry>nLF</entry>
|
|
<entry>14</entry>
|
|
<entry>nRW</entry>
|
|
<entry>5 (EN3 6 - LCD 3) (optional (*) )</entry>
|
|
</row>
|
|
<row>
|
|
<entry>INIT</entry>
|
|
<entry>16</entry>
|
|
<entry>RS</entry>
|
|
<entry>4</entry>
|
|
</row>
|
|
<row>
|
|
<entry>nSEL</entry>
|
|
<entry>17</entry>
|
|
<entry>EN2</entry>
|
|
<entry>6 - LCD 2) (optional)</entry>
|
|
</row>
|
|
</tbody>
|
|
</tgroup>
|
|
</table>
|
|
|
|
<para>
|
|
(*) on the RW line of the display: this line decides whether the display receives data from the
|
|
LPT port, or whether it sends data to the LPT port. If grounded, it receives. If High or connected
|
|
to nothing at all, it "sends" (i.e., will not work as intended). So, if you are not sure that
|
|
you need it otherwise, then connect it to GND. This certainly applies if you have only one display.
|
|
</para>
|
|
|
|
<para>
|
|
If you want the display to work with the Winamp plugin, wire nLF (pin 14)
|
|
to nRW of your LCD. You can then use the plugin in bidirectional mode (wich
|
|
is much faster). With 3 connected LCDs this is not possible.
|
|
Note from Benjamin: I haven't tried using winamp while having the third LCD
|
|
connected to this line.
|
|
</para>
|
|
|
|
<para>
|
|
The optional keypad can be connected as follows:
|
|
</para>
|
|
|
|
<table id="hd44780-8bit-winamp.keypad-mapping">
|
|
<title>HD44780: "Winamp" wiring - Keypad</title>
|
|
<tgroup cols="2" align="left">
|
|
<thead>
|
|
<row>
|
|
<entry>printer port</entry>
|
|
<entry>keypad</entry>
|
|
</row>
|
|
</thead>
|
|
<tbody>
|
|
<row>
|
|
<entry>D0 (2)</entry>
|
|
<entry>Y0</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D1 (3)</entry>
|
|
<entry>Y1</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D2 (4)</entry>
|
|
<entry>Y2</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D3 (5)</entry>
|
|
<entry>Y3</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D4 (6)</entry>
|
|
<entry>Y4</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D5 (7)</entry>
|
|
<entry>Y5</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D6 (8)</entry>
|
|
<entry>Y6</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D7 (9)</entry>
|
|
<entry>Y7</entry>
|
|
</row>
|
|
<row>
|
|
<entry>nLF (14)</entry>
|
|
<entry>Y8</entry>
|
|
</row>
|
|
<row>
|
|
<entry>INIT (16)</entry>
|
|
<entry>Y9</entry>
|
|
</row>
|
|
<row>
|
|
<entry>nACK (10)</entry>
|
|
<entry>X0</entry>
|
|
</row>
|
|
<row>
|
|
<entry>BUSY (11)</entry>
|
|
<entry>X1</entry>
|
|
</row>
|
|
<row>
|
|
<entry>PAPEREND (12)</entry>
|
|
<entry>X2</entry>
|
|
</row>
|
|
<row>
|
|
<entry>SELIN (13)</entry>
|
|
<entry>X3</entry>
|
|
</row>
|
|
<row>
|
|
<entry>nFAULT (15)</entry>
|
|
<entry>X4</entry>
|
|
</row>
|
|
</tbody>
|
|
</tgroup>
|
|
</table>
|
|
|
|
<para>
|
|
The optional backlight wiring should be connected to nSEL, pin 17.
|
|
</para>
|
|
|
|
</sect3>
|
|
|
|
<sect3 id="hd44780-8bit-lcdtime">
|
|
<title>8bit "lcdtime"</title>
|
|
|
|
<para>
|
|
This is originally based on "lcdtime" (by Benjamin Tse
|
|
<email>blt@ComPorts.com</email>) and allows you to combine the LCD with a LED
|
|
bargraph. The LCD is driven by LCDproc and the LEDs by another program
|
|
such as portato. Further details can be obtained from:
|
|
</para>
|
|
|
|
<para>
|
|
<ulink url="http://metalab.unc.edu/pub/linux/system/status/lcdtime-0.2.tar.gz"></ulink>
|
|
<ulink url="http://metalab.unc.edu/pub/linux/system/status/meter-0.2.tar.gz"></ulink>
|
|
<ulink url="http://metalab.unc.edu/pub/linux/system/status/portato-1.2.tar.gz"></ulink>
|
|
</para>
|
|
|
|
<note>
|
|
<para>
|
|
Theoretically this wiring sends the data over twice as slow as the
|
|
winamp or ext8bit wirings, because it only sends 4 bits at a time.
|
|
</para>
|
|
</note>
|
|
|
|
<para>
|
|
The LCD connections are:
|
|
</para>
|
|
|
|
<table id="hd44780-8bit-lcdtime.base-mapping">
|
|
<title>HD44780: "lcdtime" wiring</title>
|
|
<tgroup cols="4" align="left">
|
|
<colspec colname="lpt1"/>
|
|
<colspec colname="lpt2"/>
|
|
<colspec colname="lcd1"/>
|
|
<colspec colname="lcd2"/>
|
|
<thead>
|
|
<row>
|
|
<entry namest="lpt1" nameend="lpt2" align="center">printer port</entry>
|
|
<entry namest="lcd1" nameend="lcd2" align="center">LCD</entry>
|
|
</row>
|
|
<row>
|
|
<entry>name</entry>
|
|
<entry>pin</entry>
|
|
<entry>name</entry>
|
|
<entry>pin</entry>
|
|
</row>
|
|
</thead>
|
|
<tbody>
|
|
<row>
|
|
<entry>D0</entry>
|
|
<entry>2</entry>
|
|
<entry>D0</entry>
|
|
<entry>7</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D1</entry>
|
|
<entry>3</entry>
|
|
<entry>D1</entry>
|
|
<entry>8</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D2</entry>
|
|
<entry>4</entry>
|
|
<entry>D2</entry>
|
|
<entry>9</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D3</entry>
|
|
<entry>5</entry>
|
|
<entry>D3</entry>
|
|
<entry>10</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D4</entry>
|
|
<entry>6</entry>
|
|
<entry>D4</entry>
|
|
<entry>11</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D5</entry>
|
|
<entry>7</entry>
|
|
<entry>D5</entry>
|
|
<entry>12</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D6</entry>
|
|
<entry>8</entry>
|
|
<entry>D6</entry>
|
|
<entry>13</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D7</entry>
|
|
<entry>9</entry>
|
|
<entry>D7</entry>
|
|
<entry>14</entry>
|
|
</row>
|
|
<row>
|
|
<entry>nSEL</entry>
|
|
<entry>17</entry>
|
|
<entry>-</entry>
|
|
<entry></entry>
|
|
</row>
|
|
<row>
|
|
<entry>nSTRB</entry>
|
|
<entry>1</entry>
|
|
<entry>RS</entry>
|
|
<entry>4</entry>
|
|
</row>
|
|
<row>
|
|
<entry>nLF</entry>
|
|
<entry>14</entry>
|
|
<entry>RW</entry>
|
|
<entry>5 (LCD2 - 6) (optional - pull all LCD RW low (*)</entry>
|
|
</row>
|
|
<row>
|
|
<entry>INIT</entry>
|
|
<entry>16</entry>
|
|
<entry>EN</entry>
|
|
<entry>6</entry>
|
|
</row>
|
|
</tbody>
|
|
</tgroup>
|
|
</table>
|
|
|
|
<para>
|
|
(*) on the RW line of the display: this line decides whether the display receives data from the
|
|
LPT port, or whether it sends data to the LPT port. If grounded, it receives. If High or connected
|
|
to nothing at all, it "sends" (i.e., will not work as intended). So, if you are not sure that
|
|
you need it otherwise, then connect it to GND. This certainly applies if you have only one display.
|
|
</para>
|
|
|
|
<para>
|
|
See the lcdtime tar-ball (above) for full details of the bargraph
|
|
connections.
|
|
</para>
|
|
|
|
<para>
|
|
The optional keypad can be connected as follows:
|
|
</para>
|
|
|
|
<table id="hd44780-8bit-lcdtime.keypad-mapping">
|
|
<title>HD44780: "lcdtime" wiring - keypad</title>
|
|
<tgroup cols="2" align="left">
|
|
<thead>
|
|
<row>
|
|
<entry>printer port</entry>
|
|
<entry>keypad</entry>
|
|
</row>
|
|
</thead>
|
|
<tbody>
|
|
<row>
|
|
<entry>D0 (2)</entry>
|
|
<entry>Y0</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D1 (3)</entry>
|
|
<entry>Y1</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D2 (4)</entry>
|
|
<entry>Y2</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D3 (5)</entry>
|
|
<entry>Y3</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D4 (6)</entry>
|
|
<entry>Y4</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D5 (7)</entry>
|
|
<entry>Y5</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D6 (8)</entry>
|
|
<entry>Y6</entry>
|
|
</row>
|
|
<row>
|
|
<entry>D7 (9)</entry>
|
|
<entry>Y7</entry>
|
|
</row>
|
|
<row>
|
|
<entry>nSTRB (1)</entry>
|
|
<entry>Y8</entry>
|
|
</row>
|
|
<row>
|
|
<entry>nSEL (17)</entry>
|
|
<entry>Y9</entry>
|
|
</row>
|
|
<row>
|
|
<entry>nACK (10)</entry>
|
|
<entry>X0</entry>
|
|
</row>
|
|
<row>
|
|
<entry>BUSY (11)</entry>
|
|
<entry>X1</entry>
|
|
</row>
|
|
<row>
|
|
<entry>PAPEREND (12)</entry>
|
|
<entry>X2</entry>
|
|
</row>
|
|
<row>
|
|
<entry>SELIN (13)</entry>
|
|
<entry>X3</entry>
|
|
</row>
|
|
<row>
|
|
<entry>nFAULT (15)</entry>
|
|
<entry>X4</entry>
|
|
</row>
|
|
</tbody>
|
|
</tgroup>
|
|
</table>
|
|
|
|
<para>
|
|
The backlight wiring should be attached to nSEL, pin 17. Because the portato
|
|
program (mentioned above) also uses this pin to control the bargraph, you
|
|
cannot use the backlight control together with the bargraph.
|
|
</para>
|
|
|
|
</sect3>
|
|
|
|
<sect3 id="hd44780-seriallpt">
|
|
<title>Serial LPT</title>
|
|
|
|
<para>
|
|
This interface uses a handful of wires to interface to the
|
|
HD44780. Suitable for high noise, long connections. Designed by
|
|
Andrew McMeikan <email>andrewm@engineer.com</email>. The original wiring and
|
|
driver can be found at:
|
|
</para>
|
|
<para>
|
|
<ulink url="http://members.xoom.com/andrewmuck"></ulink>
|
|
</para>
|
|
|
|
<para>
|
|
I (Joris) have extended this driver and the wiring a bit. It now supports
|
|
keys again (it had earlier supported keys, but some time did not).
|
|
</para>
|
|
|
|
<para>
|
|
Further I have extended the driver and the wiring to be able to run
|
|
using 2 instead of 3 output pins. That's even one less pin ! :)
|
|
</para>
|
|
|
|
<para>
|
|
Of course the use of fewer lines than the other wirings can not stay
|
|
without drawbacks. In this case the simplicity of the long feeding wires
|
|
is compensated by some intelligence in the decoding of the data. If you
|
|
have no experience with the soldering iron, I do not recommend to build
|
|
this wiring.
|
|
</para>
|
|
|
|
<para>
|
|
OK, so here is the wiring. First of the 'simple' 3 wires version. IC1 is
|
|
the shift register, a 4094. Do not forget to connect the 5V to pin 16 and
|
|
GND to pin 8 of the IC.
|
|
</para>
|
|
|
|
<figure id="hd44780-seriallpt.simple-circuit">
|
|
<title>HD44780: Serial LPT wiring ('simple')</title>
|
|
<screen>
|
|
<![CDATA[
|
|
|
|
IC1
|
|
-----------
|
|
| 4094 |
|
|
5V | shift reg | display
|
|
O | | keys
|
|
| 1| |4
|
|
+----|STR Q0|--------------------o 11 D4 Y0
|
|
| | |5
|
|
Data | 2| Q1|--------------------o 12 D5 Y1
|
|
D3 5 o-------------------------|D |6
|
|
| | Q2|--------------------o 13 D6 Y2
|
|
| 3| |7
|
|
D4 6 o-------------------------|CK Q3|--------------------o 14 D7 Y3
|
|
| | |14
|
|
| 15| Q4|--------------------o Y4
|
|
+----|OE |13
|
|
| Q5|--------------------o 4 RS Y5
|
|
| |12
|
|
| Q6|--------------------o Y6
|
|
| |11
|
|
| Q7|--------------------o Y7
|
|
| |9
|
|
| QS|-- +--o 5 RW
|
|
| __|10 |
|
|
| QS|-- ===
|
|
| |
|
|
-----------
|
|
|
|
D2 4 o----------------------------------------------------------o 6 EN
|
|
|
|
D7 9 o----------------------------------------------------------o 6 EN2
|
|
(2nd LCD)
|
|
|
|
|
|
5V O-----+--------+-------------------------------+-----o 2 VCC
|
|
| | |
|
|
| | |
|
|
|100n O 16 .-.
|
|
--- IC1 | |<---o 3 Vlcd
|
|
--- O 8 | |10k
|
|
| | '-'
|
|
GND | | |
|
|
18..25 o-----------+--------+-----------------------+-------+-----o 1 GND
|
|
|
|
|
=== GND
|
|
|
|
]]>
|
|
</screen>
|
|
</figure>
|
|
|
|
<para>
|
|
The second possible wiring is with 2 output lines. This one is a bit more
|
|
complex. If you do not understand the schematic, do not build it.
|
|
</para>
|
|
|
|
<figure id="hd44780-seriallpt.complex-circuit">
|
|
<title>HD44780: Serial LPT wiring ('complex')</title>
|
|
<screen>
|
|
<![CDATA[
|
|
|
|
IC2
|
|
-----------
|
|
| 74HCT164 |
|
|
| shift reg | display
|
|
| | keys
|
|
Data 1| |3
|
|
D3 5 o---------------------+---|D Q0|--------------------o 11 D4 Y0
|
|
| | |4
|
|
| 2| Q1|--------------------o 12 D5 Y1
|
|
+---|D |5
|
|
| Q2|--------------------o 13 D6 Y2
|
|
| |6
|
|
| Q3|--------------------o 14 D7 Y3
|
|
| |10
|
|
Clock 8| Q4|--------------------o Y4
|
|
D4 6 o-------------------------|CK |11
|
|
| Q5|--------------------o 4 RS Y5
|
|
___ 9|\ 8 9|_ |12
|
|
+--|___|--+----| >o----|R Q6|--------------------o Y6
|
|
| 22k | |/ | |13
|
|
| --- IC1 | Q7|---+ +--o 5 RW
|
|
| --- | | | 5V |
|
|
| |100p ----------- | O ===
|
|
| | | |
|
|
| === | .-.
|
|
| | | |22k
|
|
+--------------------------------------+ | |
|
|
| '-'
|
|
| ___ 11|\ 10 | 5|\ 6
|
|
+--|___|--+----| >o-------------------||-----+----| >o--o 6 EN
|
|
22k | |/ 22p |/
|
|
--- IC1 IC1
|
|
---
|
|
|22p
|
|
| IC1=74HCT14 (6x Schmitt trigger inverter)
|
|
===
|
|
|
|
|
|
5V O--+-------+------+------+-----------------------+-----o 2 VCC
|
|
| | | | 13|\ 12 |
|
|
| | | +---| >o- |
|
|
|100n O 14 O 14 |/ .-.
|
|
--- IC1 IC2 | |<---o 3 Vlcd
|
|
--- O 7 O 7 1|\ 2 3|\ 4 | |10k
|
|
| | | +--| >o- +--| >o- '-'
|
|
GND | | | | |/ | |/ |
|
|
18..25 o------+-------+------+-------+----------+-----+-----+-----o 1 GND
|
|
|
|
|
=== GND
|
|
|
|
]]>
|
|
</screen>
|
|
</figure>
|
|
|
|
<sect4 id="hd44780-seriallpt-keypad">
|
|
<title>Serial LPT Keypad</title>
|
|
|
|
<note>
|
|
<para>
|
|
To understand this part of the serialLpt documentation, you also need to
|
|
read the <link linkend="hd44780-connections-keypad">keypad section</link> in this document.
|
|
</para>
|
|
</note>
|
|
|
|
<para>
|
|
serialLpt wiring supports a keypad. The 3 wires version supports
|
|
8 keys, or if you use multiple return lines up to 8 x 5 = 40 lines. The
|
|
2 wires version supports 7 keys, or with multiple return lines
|
|
7 x 5 = 35 keys.
|
|
</para>
|
|
|
|
<table id="hd44780-seriallpt-keypad.mapping">
|
|
<title>HD44780: Serial LPT - Keypad return lines</title>
|
|
<tgroup cols="2" align="left">
|
|
<tbody>
|
|
<row>
|
|
<entry>nACK (10)</entry>
|
|
<entry>X0</entry>
|
|
</row>
|
|
<row>
|
|
<entry>BUSY (11)</entry>
|
|
<entry>X1</entry>
|
|
</row>
|
|
<row>
|
|
<entry>PAPEREND (12)</entry>
|
|
<entry>X2</entry>
|
|
</row>
|
|
<row>
|
|
<entry>SELIN (13)</entry>
|
|
<entry>X3</entry>
|
|
</row>
|
|
<row>
|
|
<entry>nFAULT (15)</entry>
|
|
<entry>X4</entry>
|
|
</row>
|
|
</tbody>
|
|
</tgroup>
|
|
</table>
|
|
|
|
<para>
|
|
On lines longer than, say a meter, you should buffer the return line(s).
|
|
If you only have 1 return line, you can buffer it with two remaining
|
|
buffers from the 74HCT14:
|
|
</para>
|
|
|
|
<figure id="hd44780-seriallpt-keypad.circuit">
|
|
<title>HD44780: Serial LPT - Keypad return lines buffered</title>
|
|
<screen>
|
|
<![CDATA[
|
|
|
|
1|\ 2 13|\ 12 ___
|
|
keypad o-----| >o------| >o---|___|---+---o input pin on LPT port
|
|
return |/ |/ 220E |
|
|
IC1 IC1 ---
|
|
--- 1nF
|
|
|
|
|
===
|
|
|
|
]]>
|
|
</screen>
|
|
</figure>
|
|
|
|
</sect4>
|
|
|
|
<sect4 id="hd44780-seriallpt-backlight">
|
|
<title>Serial LPT Backlight</title>
|
|
|
|
<para>
|
|
Also a backlight is suported. You will also need a port from the 74HCT14 for
|
|
that. The BL output below should be connected to the BL input in the
|
|
<link linkend="hd44780-connections-backlight">backlight section</link>
|
|
</para>
|
|
|
|
<figure id="hd44780-seriallpt-backlight.circuit">
|
|
<title>HD44780: Serial LPT - Backlight extra circuit</title>
|
|
<screen>
|
|
<![CDATA[
|
|
|
|
___ 3|\ 4
|
|
Data o-----|___|--+----| >o----o BL output
|
|
LPT-D3 470k | |/
|
|
--- IC1
|
|
---
|
|
|100nF
|
|
|
|
|
===
|
|
|
|
]]>
|
|
</screen>
|
|
</figure>
|
|
|
|
</sect4>
|
|
|
|
</sect3>
|
|
|
|
<sect3 id="hd44780-lis2">
|
|
<title>LIS2 USB device "lis2"</title>
|
|
|
|
<para>
|
|
LIS2 from VLSystem (<ulink url="http://www.vlsys.co.kr"></ulink>) is a full featured USB VFD module
|
|
with four channel fan controls. This device can be accessed as a serial device with the
|
|
help of the kernel modules <filename>ftdi_sio.ko</filename> that map the USB port to a serial port
|
|
(<filename class="devicefile">/dev/ttyUSB<replaceable>x</replaceable></filename>).
|
|
</para>
|
|
|
|
</sect3>
|
|
|
|
<sect3 id="hd44780-los-panel">
|
|
<title>LCD on Serial panel device "los-panel"</title>
|
|
|
|
<para>
|
|
See <ulink url="http://www.xs4all.nl/~mlf/los/"></ulink>
|
|
for more information on this device.
|
|
</para>
|
|
|
|
</sect3>
|
|
|
|
<sect3 id="hd44780-vdr-lcd">
|
|
<title>VDR LCD serial device "vdr-lcd"</title>
|
|
|
|
<para>
|
|
… to be documented …
|
|
</para>
|
|
|
|
<para>
|
|
Please address Matteo Pillon for further information.
|
|
</para>
|
|
|
|
</sect3>
|
|
|
|
<sect3 id="hd44780-vdr-wakeup">
|
|
<title>VDR-Wakeup module "vdr-wakeup"</title>
|
|
|
|
<para>
|
|
The VDR-Wake module by Frank Jepsen is a serial IO extension module for the
|
|
famous Linux-based VDR that allows to connect an LCD to it and supports LCDproc.
|
|
</para>
|
|
|
|
<para>
|
|
See <ulink url="http://www.jepsennet.de/vdr/"></ulink>
|
|
(German) for more information on VDR-Wakeup.
|
|
</para>
|
|
|
|
</sect3>
|
|
|
|
<sect3 id="hd44780-pertelian">
|
|
<title>Pertelian X2040 "pertelian"</title>
|
|
|
|
<para>
|
|
The Pertelian X2040 includes an HD44780 display with enclosure and USB
|
|
connection.
|
|
|
|
In order to work with <package>LCDproc</package> in Linux you need
|
|
the <filename>usbserial.ko</filename> and <filename>ftdi_sio.ko</filename>
|
|
kernel modules loaded. The display will then be available on a
|
|
serial port <filename>/dev/ttyUSB<replaceable>x</replaceable></filename>.
|
|
</para>
|
|
|
|
<para>
|
|
See the
|
|
<ulink url="http://pertelian.com/joomla/index.php?option=com_content&task=view&id=43&Itemid=48">
|
|
X4020 product page</ulink> for more information.
|
|
</para>
|
|
|
|
</sect3>
|
|
|
|
|
|
<sect3 id="hd44780-picanlcd">
|
|
<title>PIC-an-LCD serial device "picanlcd"</title>
|
|
|
|
<para>
|
|
The PIC-an-LCD module is also supported. It is not connected to the LPT port
|
|
but to a serial port, which saves you from a lot of potential problems.
|
|
To use it, specify the device to which you have connected the module in the
|
|
config file with the <command>Device=</command> setting.
|
|
The default is <filename>/dev/lcd</filename>.
|
|
It does not support a keypad nor backlight switching.
|
|
</para>
|
|
|
|
<para>
|
|
For more information see the
|
|
<ulink url="http://dalewheat.com/pdf/PIC-an-LCD.pdf">PIC-an-LCD User Manual</ulink>
|
|
by Dale Wheat.
|
|
</para>
|
|
|
|
</sect3>
|
|
|
|
|
|
<sect3 id="hd44780-lcdserializer">
|
|
<title>LCD serializer device "lcdserializer"</title>
|
|
|
|
<para>
|
|
LCD serializer connection is technically the same as PIC-an-LCD with the same advantages,
|
|
it uses the serial port making things really simple.
|
|
Unlike PIC-an-LCD
|
|
<ulink url="http://www.mindspring.com/~tcoonan/lcd.html">LCD serializer</ulink>
|
|
is not a commercial product. it's just a project found digging on the net and freely available.
|
|
You have all the tools and the code to build it yourself and to customize the behaviour of the device.
|
|
</para>
|
|
|
|
<sect4 id="hd44780-lcdserializer-whatyouneed">
|
|
<title>What you need</title>
|
|
|
|
<para>
|
|
<itemizedlist>
|
|
<listitem><para>Some electronic knowledge and familiarity with the soldering iron</para></listitem>
|
|
<listitem><para>A PIC16F84 (I used PIC16F84A) or PIC16C54</para></listitem>
|
|
<listitem><para><ulink url="http://jdm.homepage.dk/newpic.htm">JDM PIC programmer</ulink></para></listitem>
|
|
<listitem><para><ulink url="http://gputils.sf.net">gputils</ulink> and <ulink url="http://www.iki.fi/hyvatti/pic/picprog.html">picprog</ulink> installed on your GNU/Linux box</para></listitem>
|
|
</itemizedlist>
|
|
</para>
|
|
</sect4>
|
|
|
|
<sect4 id="hd44780-lcdserializer-burning">
|
|
<title>Burning the PIC</title>
|
|
|
|
<para>
|
|
First, you need to download the ASM source for your PIC and then make the hex:
|
|
</para>
|
|
|
|
<screen>
|
|
<prompt>$</prompt> <userinput>gpasm lcd16f84_custom.asm</userinput>
|
|
</screen>
|
|
|
|
<para>
|
|
Now the binary is ready to be flashed to the PIC.
|
|
Connect the programmer with the PIC installed and issue the following command to see it burning ;-):
|
|
</para>
|
|
|
|
<screen>
|
|
<prompt>$</prompt> <userinput>picprog --erase --burn --input lcd16f84.hex --pic /dev/ttyS0</userinput>
|
|
</screen>
|
|
|
|
</sect4>
|
|
|
|
<sect4 id="hd44780-lcdserializer-runninglcdproc">
|
|
<title>Running lcdproc</title>
|
|
|
|
<para>
|
|
It's time to build the <ulink url="http://www.mindspring.com/~tcoonan/lcdpic.html">operating circuit</ulink>,
|
|
remember this driver uses a baud rate of 9600, so JP2 need to be closed.
|
|
</para>
|
|
|
|
<para>
|
|
Now power on the board. You should see <computeroutput>OK</computeroutput> on the LCD screen.
|
|
Otherwise double-check all the connections.
|
|
</para>
|
|
|
|
<para>
|
|
Change <filename>LCDd.conf</filename> to include the following statements in the <code>[hd44780]</code> section:
|
|
</para>
|
|
|
|
<programlisting>
|
|
ConnectionType=lcdserializer
|
|
Device=/dev/ttyS0
|
|
</programlisting>
|
|
|
|
<para>
|
|
Finally, start the daemon and relax watching lcdproc running.
|
|
</para>
|
|
</sect4>
|
|
|
|
<sect4 id="hd44780-lcdserializer-customizemsg">
|
|
<title>Customizing startup message</title>
|
|
|
|
<para>
|
|
If want to change the default startup message (OK.), you can edit the asm source
|
|
and write anything you want.
|
|
Open the asm source with your preferred editor and look for this:
|
|
</para>
|
|
|
|
<para>
|
|
<programlisting>
|
|
<![CDATA[
|
|
;******* START Main Loop Here **************
|
|
|
|
; This is where we should insert any little startup LCD messages...
|
|
; Print "OK." on startup...
|
|
movlw 0x4F
|
|
movwf ARG1
|
|
call SendLCDData
|
|
call InitDelay200MS
|
|
movlw 0x4B
|
|
movwf ARG1
|
|
call SendLCDData
|
|
call InitDelay200MS
|
|
movlw 0x2E
|
|
movwf ARG1
|
|
call SendLCDData
|
|
call InitDelay200MS
|
|
]]>
|
|
</programlisting>
|
|
</para>
|
|
|
|
<para>
|
|
This piece of code sends three characters to the LCD.
|
|
The first line sets the value of w register (working register, aka accumulator) to 0x4F ('O' in ascii). The second line copies this
|
|
value to ARG1, then the value is sent to the LCD. The fourth line delays the execution.
|
|
</para>
|
|
|
|
<para>
|
|
You don't have to write the ASCII values in your modification, gpasm does the translation for you, so
|
|
if you want to see Booting... at startup, change the code above to look like this:
|
|
</para>
|
|
|
|
<para>
|
|
<programlisting>
|
|
<![CDATA[
|
|
;******* START Main Loop Here **************
|
|
|
|
; This is where we should insert any little startup LCD messages...
|
|
; Print "Booting..." on startup...
|
|
movlw 'B'
|
|
movwf ARG1
|
|
call SendLCDData
|
|
call InitDelay200MS
|
|
movlw 'o'
|
|
movwf ARG1
|
|
call SendLCDData
|
|
call InitDelay200MS
|
|
movlw 'o'
|
|
movwf ARG1
|
|
call SendLCDData
|
|
call InitDelay200MS
|
|
movlw 't'
|
|
movwf ARG1
|
|
call SendLCDData
|
|
call InitDelay200MS
|
|
movlw 'i'
|
|
movwf ARG1
|
|
call SendLCDData
|
|
call InitDelay200MS
|
|
movlw 'n'
|
|
movwf ARG1
|
|
call SendLCDData
|
|
call InitDelay200MS
|
|
movlw 'g'
|
|
movwf ARG1
|
|
call SendLCDData
|
|
call InitDelay200MS
|
|
movlw '.'
|
|
movwf ARG1
|
|
call SendLCDData
|
|
call InitDelay200MS
|
|
movlw '.'
|
|
movwf ARG1
|
|
call SendLCDData
|
|
call InitDelay200MS
|
|
movlw '.'
|
|
movwf ARG1
|
|
call SendLCDData
|
|
call InitDelay200MS
|
|
]]>
|
|
</programlisting>
|
|
</para>
|
|
|
|
<para>
|
|
Refer to <link linkend="hd44780-lcdserializer-burning">burning section</link> in order to compile and reflash the new firmware.
|
|
</para>
|
|
</sect4>
|
|
</sect3>
|
|
|
|
|
|
<sect3 id="hd44780-bwctusb">
|
|
<title>BWCT USB device "bwctusb"</title>
|
|
|
|
<para>
|
|
The BWCT USB LCD module is also supported. It is not connected to an LPT port
|
|
but to an USB port, which saves you from a lot of potential problems.
|
|
To use it, set the connection type in the config file with the ConnectionType=
|
|
setting to "bwctusb" (without the quotes).
|
|
It does neither support a keypad nor backlight switching but it supports setting
|
|
the display's contrast using the "Contrast" configuration parameter as well as
|
|
specifying which one (of multiple BWCT LCD devices) is wanted using the
|
|
"SerialNumber" configuration parameter.
|
|
</para>
|
|
|
|
</sect3>
|
|
|
|
|
|
<sect3 id="hd44780-lcd2usb">
|
|
<title>Till Harbaum's "lcd2usb"</title>
|
|
|
|
<para>
|
|
<ulink url="http://www.harbaum.org/till/lcd2usb/">LCD2USB</ulink>
|
|
is a cheap but powerful do-it-yourself interface to connect HD44780 based displays via USB,
|
|
consisting of easily available parts only.
|
|
The device supports software adjustable contrast and backlight as well as dual controller displays
|
|
(required for 4*27 and 4*40).
|
|
</para>
|
|
|
|
<para>
|
|
It is based upon Atmel AVR Mega8 CPU with a pure software implementation of the USB protocol
|
|
for the Atmel AVR microcontroller series.
|
|
</para>
|
|
|
|
<para>
|
|
The whole interface incl. the hardware layout is under a GPL like license.
|
|
This means that you can take these schematics and use it as a basis for your own interface
|
|
e.g. for a graphic LCD
|
|
</para>
|
|
|
|
<sect4 id="hd44780-lcd2usb-config">
|
|
<title>Special config options</title>
|
|
|
|
<para>
|
|
Besides the standard configuration options for <code>hd44780</code> displays, the
|
|
<code>lcd2usb</code> connection type supports two additional options:
|
|
<command>Contrast=</command> to set the display's contrast and
|
|
<command>Brightness=</command> to set the display's brightness.
|
|
Both options expect a number in the range from <literal>0</literal> to <literal>1000</literal>.
|
|
</para>
|
|
</sect4>
|
|
|
|
<sect4 id="hd44780-lcd2usb-status">
|
|
<title>Status</title>
|
|
|
|
<para>
|
|
Although the LCD2USB sports two keys, they are currently not supported by
|
|
<package>LCDproc</package>. Patches to fix the situation are very welcome.
|
|
</para>
|
|
|
|
<tip>
|
|
<para>
|
|
In order to make the <code>lcd2usb</code> connection type work with a 2-controller display
|
|
you may need to set the <command>vSpan=</command> config option accordingly.
|
|
</para>
|
|
</tip>
|
|
</sect4>
|
|
|
|
</sect3>
|
|
|
|
|
|
<sect3 id="hd44780-i2c">
|
|
<title>I<superscript>2</superscript>C with Port-Expander</title>
|
|
|
|
<para>
|
|
If you have an I<superscript>2</superscript>C port available that is supported by your kernel
|
|
(through <filename>/dev/i2c*</filename>), you can add a I<superscript>2</superscript>C
|
|
port expander there (PCF8574P in this example).
|
|
</para>
|
|
|
|
<figure id="hd44780-i2c.circuit">
|
|
<title>HD44780: PCF8574P port expander on I<superscript>2</superscript>C bus</title>
|
|
<screen>
|
|
<![CDATA[
|
|
IC1
|
|
-----------
|
|
| PCF8574P |
|
|
| I2C-Port- | HD44780
|
|
| Expander | display
|
|
| |4
|
|
| P0|----------------------------o 11 D4
|
|
| |5
|
|
I2C-Bus 14| P1|----------------------------o 12 D5
|
|
SCL o-------------------------|SCL |6
|
|
| P2|----------------------------o 13 D6
|
|
15| |7
|
|
SDA o-------------------------|SDA P3|----------------------------o 14 D7
|
|
| |9
|
|
|1 P4|----------------------------o 4 RS
|
|
Set I2C-Address +-----|A0 |10
|
|
here: | |2 P5|----------------------------o 5 RW
|
|
GND: Bit:=0 +-----|A1 |11
|
|
VCC: Bit:=1 | |3 P6|----------------------------o 6 EN
|
|
+-----|A1 | ___
|
|
Here: 0x00 | | | +---|___|--o 15 backlight
|
|
=== | | |c 10R
|
|
| |12 ___ b|/
|
|
|13 P7|-----|___|-----|
|
|
-|INT | 1k |\
|
|
| | bc557 |e
|
|
----------- |
|
|
|
|
|
+5V o-----------+------------------+---------------------+--+----------o 2 VCC
|
|
| | |
|
|
| | |
|
|
|10uF O 16 .-.
|
|
--- IC1 | |<-----------o 3 Vlcd
|
|
--- O 8 | |10k
|
|
| | '-'
|
|
| | |
|
|
GND o-----------+-------+----------+---------------------+-------+-----o 1 GND
|
|
| |
|
|
=== GND +-----o 16 GND Backlight
|
|
]]>
|
|
</screen>
|
|
</figure>
|
|
|
|
<sect4 id="hd44780-i2c-config">
|
|
<title>Configuration</title>
|
|
|
|
<example id="hd44780-i2c-config.example">
|
|
<title>HD44780: Configuration for I<superscript>2</superscript>C with port expander</title>
|
|
<screen>
|
|
<![CDATA[
|
|
[HD44780]
|
|
ConnectionType=i2c
|
|
Device=/dev/i2c-0
|
|
Port=0x20
|
|
Backlight=yes
|
|
Size=40x2
|
|
DelayBus=false
|
|
DelayMult=1
|
|
Keypad=no
|
|
]]>
|
|
</screen>
|
|
</example>
|
|
|
|
<para>
|
|
The <command>Device=</command> configuration setting denotes the device file
|
|
of your I<superscript>2</superscript>C bus (here <filename>/dev/i2c-0</filename>).
|
|
You have to load the kernel standard module <filename>i2c-dev.ko</filename> and
|
|
the bus driver, but <emphasis>no</emphasis> I<superscript>2</superscript>C
|
|
chip modules (e.g. <filename>pcf8574.ko</filename>)!
|
|
</para>
|
|
|
|
<para>
|
|
The <command>Port=</command> config option contains the I<superscript>2</superscript>C
|
|
address of the I<superscript>2</superscript>C port expander
|
|
(here 0x20, the PCF8574 from the example above, with all address bits set to <literal>0</literal>).
|
|
|
|
Bit 8 of the address (normally <literal>0</literal> in I<superscript>2</superscript>C addresses)
|
|
has a special meaning:
|
|
It tells the driver to treat the device as PCA9554 or similar,
|
|
a device that needs a 2-byte command, and it will be stripped
|
|
off the address.
|
|
</para>
|
|
|
|
<table id="hd44780-i2c-config.portexpander-address">
|
|
<title>HD44780: Examples of I<superscript>2</superscript>C port expander addresses</title>
|
|
<tgroup cols="2" align="left">
|
|
<thead>
|
|
<row>
|
|
<entry><command>Port=</command> value</entry>
|
|
<entry>Meaning</entry>
|
|
</row>
|
|
</thead>
|
|
<tbody>
|
|
<row>
|
|
<entry><literal>0x20</literal>…<literal>0x27</literal></entry>
|
|
<entry>PCF8574 with A[012]=<literal>0</literal>…<literal>7</literal></entry>
|
|
</row>
|
|
<row>
|
|
<entry><literal>0x38</literal>…<literal>0x3f</literal></entry>
|
|
<entry>PCF8574A with A[012]=<literal>0</literal>…<literal>7</literal></entry>
|
|
</row>
|
|
<row>
|
|
<entry><literal>0xa0</literal>…<literal>0xa7</literal></entry>
|
|
<entry>PCA9554 with A[012]=<literal>0</literal>…<literal>7</literal></entry>
|
|
</row>
|
|
<row>
|
|
<entry><literal>0xa0</literal>…<literal>0xa7</literal></entry>
|
|
<entry>PCA9554A with A[012]=<literal>0</literal>…<literal>7</literal></entry>
|
|
</row>
|
|
</tbody>
|
|
</tgroup>
|
|
</table>
|
|
|
|
</sect4>
|
|
|
|
</sect3>
|
|
|
|
</sect2>
|
|
|
|
<sect2 id="hd44780-compiling">
|
|
<title>Compiling</title>
|
|
|
|
<para>
|
|
Make sure that the HD44780 files are built when you run <command>./configure</command>.
|
|
This can be done by specifying <option>--enable-drivers=all</option> or by including
|
|
<code>hd44780</code> in the list of enabled drivers
|
|
(e.g. <option>--enable-drivers=hd44780</option>).
|
|
</para>
|
|
|
|
</sect2>
|
|
|
|
<!-- ## Hitachi HD44780 driver ## -->
|
|
<sect2 id="hd44780-config">
|
|
<title>Configuration in LCDd.conf</title>
|
|
|
|
<sect3 id="hd44780-config-section">
|
|
<title>[hd44780]</title>
|
|
|
|
<variablelist>
|
|
<varlistentry>
|
|
<term>
|
|
<command>Port=</command>
|
|
<arg choice="plain"><replaceable>PORT</replaceable></arg>
|
|
</term>
|
|
<listitem><para>
|
|
Specify the address of the parallel port the LCD is connected to.
|
|
Common values for <replaceable>PORT</replaceable> are <literal>0x278</literal>,
|
|
<literal>0x378</literal> and <literal>0x3BC</literal>.
|
|
If not given, the default is <literal>0x378</literal>.
|
|
</para></listitem>
|
|
</varlistentry>
|
|
|
|
<varlistentry>
|
|
<term>
|
|
<command>Device=</command>
|
|
<arg choice="plain"><replaceable>DEVICE</replaceable></arg>
|
|
</term>
|
|
<listitem><para>
|
|
If you are using a serial connection, you must
|
|
set this parameter to the device your LCD is connected to. For
|
|
example, if the display is connected to the first serial port,
|
|
you have to set it to <filename>/dev/ttyS0</filename>.
|
|
The default value is <filename>/dev/lcd</filename>.
|
|
</para></listitem>
|
|
</varlistentry>
|
|
|
|
<varlistentry>
|
|
<term>
|
|
<command>ConnectionType=</command>
|
|
<arg choice="plain">
|
|
<group choice="req">
|
|
<arg choice="plain"><literal><emphasis>4bit</emphasis></literal></arg>
|
|
<arg choice="plain"><literal>8bit</literal></arg>
|
|
<arg choice="plain"><literal>winamp</literal></arg>
|
|
<arg choice="plain"><literal>serialLpt</literal></arg>
|
|
<arg choice="plain"><literal>picanlcd</literal></arg>
|
|
<arg choice="plain"><literal>lcdserializer</literal></arg>
|
|
<arg choice="plain"><literal>los-panel</literal></arg>
|
|
<arg choice="plain"><literal>vdr-lcd</literal></arg>
|
|
<arg choice="plain"><literal>vdr-wakeup</literal></arg>
|
|
<arg choice="plain"><literal>pertelian</literal></arg>
|
|
<arg choice="plain"><literal>bwctusb</literal></arg>
|
|
<arg choice="plain"><literal>lcd2usb</literal></arg>
|
|
<arg choice="plain"><literal>lis2</literal></arg>
|
|
<arg choice="plain"><literal>i2c</literal></arg>
|
|
</group>
|
|
</arg>
|
|
</term>
|
|
<listitem>
|
|
<para>
|
|
Select the type of the wiring / display connection.
|
|
</para>
|
|
<informaltable>
|
|
<tgroup cols="2" align="left">
|
|
<thead>
|
|
<row>
|
|
<entry>ConnectionType</entry>
|
|
<entry>Wiring / Display Type</entry>
|
|
</row>
|
|
</thead>
|
|
<tbody>
|
|
<row>
|
|
<entry><literal><link linkend="hd44780-4bit">4bit</link></literal></entry>
|
|
<entry>HD44780 4bit Wiring (default)</entry>
|
|
</row>
|
|
<row>
|
|
<entry><literal><link linkend="hd44780-8bit-lcdtime">8bit</link></literal></entry>
|
|
<entry>HD44780 8bit Wiring ("lcdtime")</entry>
|
|
</row>
|
|
<row>
|
|
<entry><literal><link linkend="hd44780-8bit-winamp">winamp</link></literal></entry>
|
|
<entry>HD44780 8bit Wiring "winamp" Style</entry>
|
|
</row>
|
|
<row>
|
|
<entry><literal><link linkend="hd44780-seriallpt">serialLpt</link></literal></entry>
|
|
<entry>HD44780 Serial LPT Wiring</entry>
|
|
</row>
|
|
<row>
|
|
<entry><literal><link linkend="hd44780-picanlcd">picanlcd</link></literal></entry>
|
|
<entry>PIC-an-LCD serial device "picanlcd"</entry>
|
|
</row>
|
|
<row>
|
|
<entry><literal><link linkend="hd44780-lcdserializer">lcdserializer</link></literal></entry>
|
|
<entry>LCD serializer "lcdserializer"</entry>
|
|
</row>
|
|
<row>
|
|
<entry><literal><link linkend="hd44780-los-panel">los-panel</link></literal></entry>
|
|
<entry>LCD on Serial panel device "los-panel" (<ulink url="http://www.xs4all.nl/~mlf/los/"></ulink>)</entry>
|
|
</row>
|
|
<row>
|
|
<entry><literal><link linkend="hd44780-vdr-lcd">vdr-lcd</link></literal></entry>
|
|
<entry>VDR LCD serial device "vdr-lcd"</entry>
|
|
</row>
|
|
<row>
|
|
<entry><literal><link linkend="hd44780-vdr-wakeup">vdr-wakeup</link></literal></entry>
|
|
<entry>VDR-Wakeup module "vdr-wakeup"</entry>
|
|
</row>
|
|
<row>
|
|
<entry><literal><link linkend="hd44780-pertelian">pertelian</link></literal></entry>
|
|
<entry>Pertelian X2040 LCD display (<ulink url="http://pertelian.com/joomla/index.php?option=com_content&task=view&id=43&Itemid=48"></ulink>)</entry>
|
|
</row>
|
|
<row>
|
|
<entry><literal><link linkend="hd44780-bwctusb">bwctusb</link></literal></entry>
|
|
<entry>BWCT USB device "bwctusb" (<ulink url="http://www.bwct.de/lcd.html"></ulink>)</entry>
|
|
</row>
|
|
<row>
|
|
<entry><literal><link linkend="hd44780-lcd2usb">lcd2usb</link></literal></entry>
|
|
<entry>Tim Harbaum's LCD2USB (<ulink url="http://www.harbaum.org/till/lcd2usb/"></ulink>)</entry>
|
|
</row>
|
|
<row>
|
|
<entry><literal><link linkend="hd44780-lis2">lis2</link></literal></entry>
|
|
<entry>LIS2 from VLSystem (<ulink url="http://www.vlsys.co.kr"></ulink>)</entry>
|
|
</row>
|
|
<row>
|
|
<entry><literal><link linkend="hd44780-i2c">i2c</link></literal></entry>
|
|
<entry>LCD driven by PCF8574(A)/PCA9554(A) connected via I<superscript>2</superscript>C</entry>
|
|
</row>
|
|
</tbody>
|
|
</tgroup>
|
|
</informaltable>
|
|
|
|
<tip>
|
|
<para>
|
|
The above table might be outdated, when you read this.
|
|
If you suspect the table above to be outdated, you might want to have a look at
|
|
<filename>server/drivers/hd44780-drivers.h</filename> in <package>LCDproc</package>'s
|
|
source directory which contains the actual translation code.
|
|
</para>
|
|
</tip>
|
|
|
|
</listitem>
|
|
</varlistentry>
|
|
|
|
<varlistentry>
|
|
<term>
|
|
<command>Speed=</command>
|
|
<arg choice="plain"><replaceable>BITRATE</replaceable></arg>
|
|
</term>
|
|
<listitem><para>
|
|
For a serial connection, set to the serial port bitrate. To use
|
|
the default value for the chosen interface, just set to 0.
|
|
</para></listitem>
|
|
</varlistentry>
|
|
|
|
<varlistentry>
|
|
<term>
|
|
<command>Charmap=</command>
|
|
<arg choice="plain">
|
|
<group choice="req">
|
|
<arg choice="plain"><literal><emphasis>hd44780_default</emphasis></literal></arg>
|
|
<arg choice="plain"><literal>ea_ks0073</literal></arg>
|
|
</group>
|
|
</arg>
|
|
</term>
|
|
<listitem><para>
|
|
You need to set this parameter only if you do not have a standard
|
|
HD44780 display. <literal>ea_ks0073</literal> is the charmap for Electronic
|
|
Assembly's KS0073 based displays. These devices have a richer
|
|
charset, including many icons and many more characters of the
|
|
ISO-8859-1 than standard HD44780s. Refer to <filename>hd44780-charset.h</filename>
|
|
for more information.
|
|
</para></listitem>
|
|
</varlistentry>
|
|
|
|
<varlistentry>
|
|
<term>
|
|
<command>Keypad=</command>
|
|
<arg choice="plain">
|
|
<group choice="req">
|
|
<arg choice="plain"><literal>yes</literal></arg>
|
|
<arg choice="plain"><literal><emphasis>no</emphasis></literal></arg>
|
|
</group>
|
|
</arg>
|
|
</term>
|
|
<listitem><para>
|
|
Tell whether you have a keypad connected.
|
|
You may also need to configure the keypad layout further on in this file.
|
|
</para></listitem>
|
|
</varlistentry>
|
|
|
|
<varlistentry>
|
|
<term>
|
|
<command>Contrast=</command>
|
|
<arg choice="plain"><replaceable>CONTRAST</replaceable></arg>
|
|
</term>
|
|
<listitem><para>
|
|
Set the initial contrast for the <literal>bwctusb</literal> connection type.
|
|
Legal values for <replaceable>CONTRAST</replaceable> are <literal>0</literal> - <literal>1000</literal>.
|
|
If not given, it defaults to <literal>300</literal>.
|
|
</para></listitem>
|
|
</varlistentry>
|
|
|
|
<varlistentry>
|
|
<term>
|
|
<command>Backlight=</command>
|
|
<arg choice="plain">
|
|
<group choice="req">
|
|
<arg choice="plain"><literal>yes</literal></arg>
|
|
<arg choice="plain"><literal><emphasis>no</emphasis></literal></arg>
|
|
</group>
|
|
</arg>
|
|
</term>
|
|
<listitem><para>
|
|
Specifiy if you have a switchable backlight.
|
|
</para></listitem>
|
|
</varlistentry>
|
|
|
|
<varlistentry>
|
|
<term>
|
|
<command>OutputPort=</command>
|
|
<arg choice="plain">
|
|
<group choice="req">
|
|
<arg choice="plain"><literal>yes</literal></arg>
|
|
<arg choice="plain"><literal><emphasis>no</emphasis></literal></arg>
|
|
</group>
|
|
</arg>
|
|
</term>
|
|
<listitem><para>
|
|
Tell if you have the additional output port ("bargraph") and you want to
|
|
be able to control it with the lcdproc OUTPUT command.
|
|
</para></listitem>
|
|
</varlistentry>
|
|
|
|
<varlistentry>
|
|
<term>
|
|
<command>Lastline=</command>
|
|
<arg choice="plain">
|
|
<group choice="req">
|
|
<arg choice="plain"><literal><emphasis>yes</emphasis></literal></arg>
|
|
<arg choice="plain"><literal>no</literal></arg>
|
|
</group>
|
|
</arg>
|
|
</term>
|
|
<listitem><para>
|
|
Specifies whether the lowest pixel line of a character is pixel addressable
|
|
or if it controls an underline effect.
|
|
The default is <literal>yes</literal>, meaning a pixel addressable last pixel line.
|
|
</para></listitem>
|
|
</varlistentry>
|
|
|
|
<varlistentry>
|
|
<term>
|
|
<command>Size=</command>
|
|
<arg choice="plain">
|
|
<replaceable>WIDTH</replaceable>
|
|
<literal>x</literal>
|
|
<replaceable>HEIGHT</replaceable>
|
|
</arg>
|
|
</term>
|
|
<listitem><para>
|
|
Specifies the size of the LCD.
|
|
Default: <literal>20x4</literal>
|
|
In case of multiple combined displays, this should be the total size.
|
|
</para></listitem>
|
|
</varlistentry>
|
|
|
|
<varlistentry>
|
|
<term>
|
|
<command>vSpan=</command>
|
|
<arg choice="plain">
|
|
<replaceable>HEIGHT</replaceable>
|
|
<literal>,</literal>…
|
|
</arg>
|
|
</term>
|
|
<listitem><para>
|
|
The "vertical span" when using multiple displays or multi-controller displays.
|
|
It is a comma separated list of the heights of each display. In multi-controller
|
|
displays it lists the number of lines each controller is responsible for.
|
|
</para>
|
|
<para>
|
|
E.g. <code>VSpan=2,2</code> means you have two displays and
|
|
each has two lines.
|
|
</para>
|
|
<para>
|
|
The sum of the <replaceable>HEIGHT</replaceable>s must match the total height
|
|
given in <code>Size=</code>.
|
|
</para></listitem>
|
|
</varlistentry>
|
|
|
|
<varlistentry>
|
|
<term>
|
|
<command>ExtendedMode=</command>
|
|
<arg choice="plain">
|
|
<group choice="req">
|
|
<arg choice="plain"><literal>yes</literal></arg>
|
|
<arg choice="plain"><literal><emphasis>no</emphasis></literal></arg>
|
|
</group>
|
|
</arg>
|
|
</term>
|
|
<listitem><para>
|
|
If you have a KS0073 or an other 'almost HD44780-compatible', set this
|
|
flag to get into extended mode (4-line linear).
|
|
This flag is NOT the old obsolete Extended option.
|
|
</para></listitem>
|
|
</varlistentry>
|
|
|
|
<varlistentry>
|
|
<term>
|
|
<command>DelayMult=</command>
|
|
<arg choice="plain"><replaceable>DELAY</replaceable></arg>
|
|
</term>
|
|
<listitem><para>
|
|
If your display is slow and cannot keep up with the flow of data from
|
|
LCDd, garbage can appear on the LCDd. Set this delay multiplier to
|
|
<literal>2</literal> or <literal>4</literal> to increase the delays.
|
|
The default is <literal>1</literal> for a non-multiplied delay.
|
|
</para></listitem>
|
|
</varlistentry>
|
|
|
|
<varlistentry>
|
|
<term>
|
|
<command>DelayBus=</command>
|
|
<arg choice="plain">
|
|
<group choice="req">
|
|
<arg choice="plain"><literal><emphasis>yes</emphasis></literal></arg>
|
|
<arg choice="plain"><literal>no</literal></arg>
|
|
</group>
|
|
</arg>
|
|
</term>
|
|
<listitem><para>
|
|
You can reduce the inserted delays by setting this to <literal>no</literal>.
|
|
On fast PCs it is possible your LCD does not respond correctly.
|
|
Default: <literal>yes</literal>.
|
|
</para></listitem>
|
|
</varlistentry>
|
|
|
|
<varlistentry>
|
|
<term>
|
|
<command>KeepAliveDisplay=</command>
|
|
<arg choice="plain"><replaceable>SECONDS</replaceable></arg>
|
|
</term>
|
|
<listitem><para>
|
|
Some displays (e.g. <code>vdr-wakeup</code>) need a message from the driver to that it
|
|
is still alive. When set to a value bigger then <literal>0</literal> the character in the
|
|
upper left corner is updated every <replaceable>SECONDS</replaceable> seconds.
|
|
The default <literal>0</literal> does not cause any extra updates.
|
|
</para></listitem>
|
|
</varlistentry>
|
|
|
|
<varlistentry>
|
|
<term>
|
|
<command>RefreshDisplay=</command>
|
|
<arg choice="plain"><replaceable>SECONDS</replaceable></arg>
|
|
</term>
|
|
<listitem><para>
|
|
If you experience occasional garbage on your display you can use this
|
|
option as workaround. If set to a value bigger than <literal>0</literal> it forces a
|
|
full screen refresh <replaceable>SECONDS</replaceable> seconds.
|
|
Default: <literal>0</literal>.
|
|
</para></listitem>
|
|
</varlistentry>
|
|
|
|
<varlistentry>
|
|
<term>
|
|
<command>DirectKey_<replaceable>NUM</replaceable>=</command>
|
|
<arg choice="plain"><replaceable>KEY</replaceable></arg>
|
|
</term>
|
|
<term>
|
|
<command>KeyMatrix_<replaceable>X</replaceable>_<replaceable>Y</replaceable>=</command>
|
|
<arg choice="plain"><replaceable>KEY</replaceable></arg>
|
|
</term>
|
|
<listitem>
|
|
<para>
|
|
If you have a keypad you can assign keystrings to the keys.
|
|
See documentation for used terms and how to wire it.
|
|
</para>
|
|
<para>
|
|
To map, for example, the directly connected key <literal>4</literal>
|
|
to the string <literal>Enter</literal>, use <code>KeyDirect_4=Enter</code>.
|
|
For matrix keys use the <replaceable>X</replaceable> and
|
|
<replaceable>Y</replaceable> coordinates of the key;
|
|
e.g. <code>KeyMatrix_1_3=Enter</code>.
|
|
</para>
|
|
</listitem>
|
|
</varlistentry>
|
|
</variablelist>
|
|
|
|
</sect3>
|
|
|
|
</sect2>
|
|
|
|
<!--
|
|
<sect2 id="hd44780-running">
|
|
<title>Running</title>
|
|
|
|
<para>
|
|
Modify the LCDd.conf file before you run LCDd. In this config file are
|
|
detailed instructions on how to configure the HD44780 driver.
|
|
</para>
|
|
|
|
<para>
|
|
Then as usual, start LCDd with the correct config file:
|
|
</para>
|
|
<para>
|
|
E.g. <command>LCDd -c ./LCDd.conf</command>
|
|
</para>
|
|
<para>
|
|
If you want to override the driver selection in LCDd.conf then use:
|
|
</para>
|
|
<para>
|
|
<command>LCDd -c ./LCDd.conf -d HD44780</command>
|
|
</para>
|
|
<para>
|
|
If you use this, the HD44780 driver will read the options from the config
|
|
file anyway.
|
|
</para>
|
|
|
|
</sect2>
|
|
-->
|
|
|
|
<sect2 id="hd44780-miscellania">
|
|
<title>Miscellania</title>
|
|
|
|
<para>
|
|
This text has originally been taken from a message by Bill Farrow
|
|
<email>bfarrow@arrow.bsee.swin.edu.au</email>.
|
|
</para>
|
|
|
|
<para>
|
|
Updated February 2000, Benjamin Tse <email>blt@ComPorts.com</email>
|
|
</para>
|
|
|
|
<para>
|
|
Updated October 2001, Joris Robijn <email>joris@robijn.net</email>
|
|
</para>
|
|
|
|
<para>
|
|
Converted to docbook March 2002, Rene Wagner <email>reenoo@gmx.de</email>
|
|
</para>
|
|
|
|
<para>
|
|
Updated April 2002, Rene Wagner <email>reenoo@gmx.de</email>
|
|
</para>
|
|
|
|
<para>
|
|
Updated and extended April 2006, Peter Marschall <email>peter@adpm.de</email>
|
|
</para>
|
|
|
|
</sect2>
|
|
|
|
</sect1>
|