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Giải thích chi tiết về linh kiện  Alphanumeric Intelligent Display Devices
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HSDP2110S, HSDP2111S, HSDP2112S, HSDP2113S, HSDP2114S, HSDP2115S
2006-01-23
11
UDC Address Register
The UDC Address Register is selected by setting FL=1, A4=0,
A3=0. It is a 4 bit register and uses data bits, D3–D0 to store the
4 bit address code (D7–D4 are ignored). The address code selects
one of 16 UDC RAM locations for custom character generation.
UDC RAM
The UDC RAM is selected by setting FL=1, A4=0, A3=1. The RAM
is comprised of a 7 x 5 bit RAM. As shown in Table „Flash RAM
Access Logic“ (page 12), address lines, A2–A0 select one of the
7 rows of the custom character. Data bits, D4–D0 determine the
5 bits of column data in each row. Each data bit corresponds to a
LED. If the data bit is high, then the LED is on. If the data bit is low,
the LED is off. To create a character, each of the 7 rows of column
data need to be defined. See Tables „UDCAddress Register and
UDC Character RAM“ (page 11) and „UDC Character Map“
(page 12) for logic.
Flash RAM
The Flash RAM allows the display to flash one or more of the char-
acters being displayed. The Flash Ram is accessed by setting FL
low. A4 and A3 are ignored. The Flash RAM is a 8 x 1 bit RAM with
each bit corresponding to a digit address. Digit 0 is on the left side
of the display and digit 7 is on the right side of the display. Address
lines, A2–A0 select the digit address with A2 being the most signif-
icant digit and A0 being the least significant digit. Data bit, D0, sets
and resets the flash bit for each digit. When D0 is high, the flash bit
is set and when D0 is low, It is reset. See Table „Flash RAM
Access Logic“ (page 12).
Control Word
The Control Word is used to set up the attributes required by the
user. It is addressed by setting FL=1, A4=1, A3=0. The Control
Word is an 8 bit register and is accessed using data bits, D7–D0.
See Table „Control Word Access Logic“ (page 12) and Figure
„Control Word Data Definition“ (page 13) for the logic and attrib-
uted control. The Control Word has 5 functions. They are bright-
ness control, flashing character enable, blinking character enable,
self test, and clear (Flash and Character RAMS only).
Brightness Control
Control Word bits, D2–D0, control the brightness of the display
with a binary code of 000 being 100% brightness and 111 being
display blank. See Figure „Control Word Data Definition“ (page 13)
for brightness level versus binary code. The average I
CC can be
calculated by multiplying the 100% brightness level I
CC value by
the display’s brightness level. For example, a display set to 80%
brightness with a 100% average I
CC value of 200 mA will have an
average I
CC value of 200 mA x 80%=160 mA.
Flash Function
Control Word bit, D3, enables or disables the Flash Function.
When D3 is 1, the Flash Function is enabled and any digit with its
corresponding bit set in the Flash RAM will flash at approximately
2.0 Hz. When using an external clock, the flash rate can be deter-
mined by dividing the clock rate by 28,672. When D3 is 0, the
Flash Function is disabled and the contents of the Flash RAM is
ignored. For synchronized flashing on multiple displays, see the
Reset Section (page 12)..
Character RAM Access Logic
RST
CE
WR
RD
FL
A4
A3
A2
A1
A0
D7 D6 D5 D4 D3 D2 D1 D0
1
0
0
1
1
1
1
Character Address for Digits 0–7
0
7 bit ASCII code for a Write Cycle
1
0
1
0
1
1
1
Character Address for Digits 0–7
0
7 bit ASCII code read during a Read Cycle
1
0
0
1
1
0
0
Character Address for Digits 0–7
1
D3–D0=UDC address for a Write Cycle
1
0
1
0
1
0
0
Character Address for Digits 0–7
1
D3–D0=UDC address for Read Data
UDC Address Register and UDC Character RAM
RST
CE
WR
RD
FL
A4
A3
A2
A1
A0
D7 D6 D5 D4 D3 D2 D1 D0
1
0
0
1
1
0
0
Not used for UDC
Address Register
D3–D0=UDC RAM Address Code for Write
Cycle
UDC
Address
Register
1
0
1
0
1
0
0
Not used for UDC
Address Register
D3–D0=UDC RAM Address Code for Read
Cycle
1
0
0
1
1
0
1
A2–A0=Character
Row Address
D4–D0=Character Column Data for
Write Cycle
UDC
RAM
1
0
1
0
1
0
1
A2–A0=Character
Row Address
D4–D0=Character Column Data read
during a Read Cycle



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