LM3916N-1 National Semiconductor, LM3916N-1 Datasheet - Page 11

LED BAR GRAPH DRIVER, 3916, DIP18

LM3916N-1

Manufacturer Part Number
LM3916N-1
Description
LED BAR GRAPH DRIVER, 3916, DIP18
Manufacturer
National Semiconductor
Datasheet

Specifications of LM3916N-1

Led Driver Application
VU Meter, Power Meters
No. Of Outputs
10
Output Current
30mA
Output Voltage
17V
Input Voltage
3V To 25V
Dimming Control Type
Analogue
Operating
RoHS Compliant
Topology
Linear

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0
Application Hints
adjusted for the correct output when a low-level AC signal
(10 to 20 mV) is applied, rather than adjusting for zero output
with zero input.
*DC Couple
D1, D2: 1N914 or 1N4148
For precision full-wave averaging use the circuit in Figure 5.
Using 1% resistors for R1 through R4, gain for positive and
negative signal differs by only 0.5 dB worst case. Substitut-
ing 5% resistors increases this to 2 dB worst case. (A 2 dB
gain difference means that the display may have a
error when the input is a nonsymmetrical transient). The
averaging time constant is R5 • C2. A simple modification
results in the precision full-wave detector of Figure 6. Since
the filter capacitor is not buffered, this circuit can drive only
high impedance loads such as the input of an LM3916.
FIGURE 4. Precision Half-Wave Rectifier
FIGURE 3. Half-Wave Peak Detector
R1 = R2 for A
R1 = R2/10 for A
C1 = 10/R1
R2
R3
Average
100k
1k
V
= 1
V
(Continued)
= 10
Peak
100k
1k
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1 dB
11
D1, D2: 1N914 or 1N4148
D1, D2, D3, D4: 1N914 OR 1N4148
Attack and decay time to DIN PPM spec. Response down 1 dB for 10 ms
tone burst. Decays 20 dB in 1.5s.
AUDIO METER STANDARDS
VU Meter
The audio level meter most frequently encountered is the VU
meter. Its characteristics are defined as the ANSI specifica-
tion C165. The LM3916’s outputs correspond to the meter
indications specified with the omission of the −2 VU indica-
tion. The VU scale divisions differ slightly from a linear scale
in order to obtain whole numbers in dB.
Some of the most important specifications for an AC meter
are its dynamic characteristics. These define how the meter
responds to transients and how fast the reading decays. The
VU meter is a relatively slow full-wave averaging type, speci-
fied to reach 99% deflection in 300 ms and overshoot by 1 to
1.5%. In engineering terms this means a slightly under-
FIGURE 5. Precision Full-Wave Average Detector
FIGURE 6. Precision Full-Wave Peak Detector
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