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NE567 Datasheet(PDF) 4 Page - NXP Semiconductors

Part No. NE567
Description  Tone decoder/phase-locked loop
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Maker  PHILIPS [NXP Semiconductors]
Homepage  http://www.nxp.com
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Philips Semiconductors Linear Products
Product specification
NE/SE567
Tone decoder/phase-locked loop
April 15, 1992
406
DC ELECTRICAL CHARACTERISTICS
V +=5.0V; TA=25°C, unless otherwise specified.
SYM-
BOL
PARAMETER
TEST CONDITIONS
SE567
NE567
UNIT
Min
Typ
Max
Min
Typ
Max
Center frequency1
fO
Highest center frequency
500
500
kHz
fO
Center frequency stability2
-55 to +125
°C
35
±140
35
±140
ppm/
°C
0 to +70
°C
35
±60
35
±60
ppm/
°C
fO
Center frequency distribution
f
O + 100kHz +
1
1.1R
1C1
-10
0
+10
-10
0
+10
%
fO
Center frequency shift with supply
voltage
f
O + 100kHz +
1
1.1R
1C1
0.5
1
0.7
2
%/V
Detection bandwidth
BW
Largest detection bandwidth
f
O + 100kHz +
1
1.1R
1C1
12
14
16
10
14
18
% of fO
BW
Largest detection bandwidth skew
2
4
3
6
% of fO
BW
Largest detection bandwidth—
VI=300mVRMS
±0.1
±0.1
%/
°C
variation with temperature
BW
Largest detection bandwidth—
VI=300mVRMS
±2
±2
%/V
variation with supply voltage
Input
RIN
Input resistance
15
20
25
15
20
25
k
VI
Smallest detectable input voltage4
IL=100mA, fI=fO
20
25
20
25
mVRMS
Largest no-output input voltage4
IL=100mA, fI=fO
10
15
10
15
mVRMS
Greatest simultaneous out-band
+6
+6
dB
signal-to-in-band signal ratio
Minimum input signal to wide-band
noise ratio
Bn=140kHz
-6
-6
dB
Output
Fastest on-off cycling rate
fO/20
fO/20
“1” output leakage current
V8=15V
0.01
25
0.01
25
µA
“0” output voltage
IL=30mA
0.2
0.4
0.2
0.4
V
IL=100mA
0.6
1.0
0.6
1.0
V
tF
Output fall time3
RL=50Ω
30
30
ns
tR
Output rise time3
RL=50Ω
150
150
ns
General
VCC
Operating voltage range
4.75
9.0
4.75
9.0
V
Supply current quiescent
6
8
7
10
mA
Supply current—activated
RL=20kΩ
11
13
12
15
mA
tPD
Quiescent power dissipation
30
35
mW
NOTES:
1. Frequency determining resistor R1 should be between 2 and 20kΩ
2. Applicable over 4.75V to 5.75V. See graphs for more detailed information.
3. Pin 8 to Pin 1 feedback RL network selected to eliminate pulsing during turn-on and turn-off.
4. With R2=130kΩ from Pin 1 to V+. See Figure 1.




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