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DLX1414 Datasheet(PDF) 3 Page - OSRAM GmbH

No. de pieza DLX1414
Descripción Electrónicos  Intelligent Display Products
Download  4 Pages
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Fabricante Electrónico  OSRAM [OSRAM GmbH]
Página de inicio  http://www.osram.com
Logo OSRAM - OSRAM GmbH

DLX1414 Datasheet(HTML) 3 Page - OSRAM GmbH

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 2000 Infineon Technologies Corp. • Optoelectronics Division • San Jose, CA
Appnote 15
www.infineon.com/opto • 1-888-Infineon (1-888-463-4636)
OSRAM Opto Semiconductors GmbH & Co. OHG • Regensburg, Germany
www.osram-os.com • +49-941-202-7178
3
May 31, 2000-12
When using the DLX1414 on a separate display board with
more than 6 inches of cable length, it may be necessary to
buffer all inputs. This is most easily achieved with Hex
non-inverting buffers such as the 74365. The object is to
prevent transient current in the protection diodes. The
buffers should be located on the display board near the dis-
plays.
Local power supply bypass capacitors are also needed in
many cases. These should be 6 or 10 volt, tantalum type
with 10 µF or greater capacitance. Low internal resistance
is important due to current steps which result from the
internal multiplexing of the displays.
If small wire cables are used, good engineering practice is
to calculate the wire resistance of the ground plus the +5
volt wires. More than 0.1 volt drop, (at 25 mA per digit
worst case) should be avoided, since this loss is in addition
to any inaccuracies or load regulation limitations of the
power supply.
The 5-volt power supply for the displays should be the
same one supplying VCC to all logic devices which drive
the display devices. If a separate supply must be used,
then local buffers using hex, non-inverting gates should be
used on all inputs and these buffers should be powered
from the display power supply. This precaution is to avoid
logic inputs higher than display VCC during power up or
line transients.
Interfacing the DLX1414
A general and straightforward interface circuit is shown in
Figure 6. This scheme can easily interface to LP systems
or any other systems which can provide the seven data
lines, appropriate address and control lines.
The DLX1414 does not have a chip enable input; therefore
each display in a system requires its Write pulse be gated
with appropriate address signals. Figure 7a shows the use
of a 74154 decoder (4 lines to 16 lines) for up to a 64 char-
acter display. Using the G1 input for display select (address
select in a memory mapped system) and the G2 input to
gate the Write signal. Another approach (Figure 7b and 7c)
which minimizes logic for a 16 or 32 digit display takes
advantage of decoding scheme of the 7442 decoder.
Parallel l/O
The parallel l/O device of a microprocessor can be con-
nected easily to the circuit in Figure 6. One eight bit output
port can provide the seven input data bits. Another eight
bit output port can contain the address and control signals.
Figure 5. Data loading table
Figure 6. General interface circuit
Figure 7. Gating the write pulse
Data Input
H
L
L
Digit
3
See Character Set
WR A1
A0 D6
D5 D4 D3 D2
D1 D0
L
L
L
L
L
NC
D
D
D
C
C
C
K
B
B
B
B
A
A
E
E
NC
NC
NC
X
L
L
X
L
H
X
H
H
X
L
L
X
L
L
X
L
L
X
L
L
X
L
H
X
H
L
H
H
L
H
L
H
L
L
H
H
H
H
L
L
L
L
L
L
L
L
L
L
L
H
L
H
H
L
H
L
L
H
H
L
H
H
Digit
2
Digit
1
Digit
0
Address
B
A
A
X=Don't care
NC
NC
NC
NC
NC
L
NC=No change
Digit
Select
Decoder
D
C
B
A
Display
Vcc
GND
D15
D12
WR
A3
A2
2/
Display
D11
D8
Display
D7
D4
Display
D3
D0
WR
A0
A1
D0 – A6
WR
WR
WR
Display Select
0
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
9
8
7
6
5
4
3
2
1
0
9
8
7
6
5
4
3
2
1
0
WR
A2
A3
A4
A5
A4
A3
A2
WR
Digit Select
Digit Select
to WR
of Display
WR
A3
A2
to WR
of Display
to WR
of Display
G 1
G 2
A
B
C
D
D
C
B
A
D
C
B
A
Unused
Unused
7c.
7b.
7a.
74154
7442
7442


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