參數(shù)資料
型號: MM74C912
廠商: Fairchild Semiconductor Corporation
英文描述: Simplified Multi-Digit LED Display Controller(多數(shù)字式LED顯示控制器)
中文描述: 簡化的多位LED顯示控制器(多數(shù)字式的LED顯示控制器)
文件頁數(shù): 7/26頁
文件大?。?/td> 639K
代理商: MM74C912
When a circuit design employs large segment currents, the
maximum dissipation should be calculated to ensure that the
power consumption of the controller or digit driver is within
the maximum limits. The display controller power dissipation:
P
C
= S(I
SEG
) (V
CC
V
SEG
)
where I
and V
are the peak segment current and seg-
ment voltage, as previously determined; and S is the maxi-
mum number of segments lit per digit. The maximum pack-
age dissipation for the controllers vs. temperature is shown
in Figure 13
To gain an understanding of how segment current affects the
controllers power dissipation, Figure 14 plots average and
peak LED segment current vs. package dissipation for both
the MM74C911 and the MM74C912/MM74C917. These typi-
cal curves are plotted using the typical segment driver output
currents and voltages from Figure 8
As the digit driver output voltage V
becomes larger, the
driver dissipates more power, thus the designer should also
ensure that the driver’s dissipation is not exceeded. Gener-
ally, the standard digit driver IC will dissipate around
1
2
W.
(See specific data sheets.) Driver power dissipation can be
calculated by:
P
D
= (V
DO
)(I
DIG
)
where V
and I
are the digit driver output voltage and
current. In a standard digit driver, one output will be active all
the time, but if discrete transistors are used, each transistor
is turned on 25% of the tiime. The average power dissipation
for each discrete transistor digit driver is
1
4
of the above
equation.
B. Common Anode LED Display
Although
connecting
MM74C917 to common anode displays is somewhat more
difficult than to common cathode displays, it can be done.
These controllers still provide all the necessary timing sig-
nals, but some extra buffering must be added to ensure the
correct logic levels and drive capability.
To drive common anode displays, the display controller’s
segment outputs must be inverted and the digit outputs must
be current buffered. Figure 15shows a simple circuit to inter-
face to most common anode displays. An 8-digit calculator
digit driver IC, DS8871, is used to drive the display seg-
the
MM74C911/MM74C912/
Display
Driver
Typical Range of
Segment Resistors
200
–800
300
–1500
*
150
–700
150
–1000
*
5
–50
5
–50
5
–40
Part No.
NSA1298
Height (In.)
0.110
No. of Digits
9
DS75494
NSA1558
0.140
8
DS75494
NSN381
NSB581
NS5931
0.3
0.5
0.5
2
2
6
DS75492
DS75492
DS75492
2N3904
DS75492
2N3904
NSN781
0.7
2
5
–30
FIGURE 11. MM74C912/MM74C917 Segment Resistor for Average Intensity for Various Displays
(
*
Using Red LED Filter over Display)
AN006030-11
AN006030-12
FIGURE 12. Typical Digit Driver Current vs. Output Voltage for (a) MM74C911 (b) MM74C912/MM74C917
7
www.fairchildsemi.com
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相關代理商/技術(shù)參數(shù)
參數(shù)描述
MM74C912N 功能描述:LED顯示驅(qū)動器 6-Dgt BCD Dis Con/Dr RoHS:否 制造商:Micrel 數(shù)位數(shù)量:5 片段數(shù)量: 安裝風格:SMD/SMT 封裝 / 箱體:PLCC-44 工作電源電壓:4.75 V to 11 V 最大電源電流:10 mA 最大工作溫度:+ 85 C 最小工作溫度:- 40 C 封裝:Tube
MM74C914 制造商:FAIRCHILD 制造商全稱:Fairchild Semiconductor 功能描述:Hex Schmitt Trigger with Extended Input Voltage
MM74C914J 制造商:NSC 制造商全稱:National Semiconductor 功能描述:Hex Schmitt Trigger with Extended Input Voltage
MM74C914M 功能描述:變換器 Hex Schmitt Trigger RoHS:否 制造商:NXP Semiconductors 電路數(shù)量:6 邏輯系列:74ABT 邏輯類型:BiCMOS 高電平輸出電流:- 15 mA 低電平輸出電流:20 mA 傳播延遲時間:2.2 ns 電源電壓-最大:5.5 V 電源電壓-最小:4.5 V 最大工作溫度:+ 85 C 最小工作溫度:- 40 C 工作溫度范圍: 封裝 / 箱體:DIP-14 封裝:Tube
MM74C914M_Q 功能描述:變換器 Hex Schmitt Trigger RoHS:否 制造商:NXP Semiconductors 電路數(shù)量:6 邏輯系列:74ABT 邏輯類型:BiCMOS 高電平輸出電流:- 15 mA 低電平輸出電流:20 mA 傳播延遲時間:2.2 ns 電源電壓-最大:5.5 V 電源電壓-最小:4.5 V 最大工作溫度:+ 85 C 最小工作溫度:- 40 C 工作溫度范圍: 封裝 / 箱體:DIP-14 封裝:Tube