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MC14046BDW Arkusz danych(PDF) 2 Page - ON Semiconductor

Numer części MC14046BDW
Szczegółowy opis  Phase Locked Loop
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MC14046BDW Arkusz danych(HTML) 2 Page - ON Semiconductor

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MOTOROLA CMOS LOGIC DATA
MC14046B
2
MAXIMUM RATINGS* (Voltages Referenced to VSS)
Rating
Symbol
Value
Unit
DC Supply Voltage
VDD
– 0.5 to + 18
Vdc
Input Voltage, All Inputs
Vin
– 0.5 to VDD + 0.5
Vdc
DC Input Current, per Pin
Iin
± 10
mAdc
Power Dissipation, per Package†
PD
500
mW
Operating Temperature Range
TA
– 55 to + 125
_C
Storage Temperature Range
Tstg
– 65 to + 150
_C
* Maximum Ratings are those values beyond which damage to the device may occur.
†Temperature Derating:
Plastic “P and D/DW” Packages: – 7.0 mW/
_C From 65_C To 125_C
Ceramic “L” Packages: – 12 mW/
_C From 100_C To 125_C
ELECTRICAL CHARACTERISTICS (Voltages Referenced to VSS)
Ch
i i
Sb l
VDD
– 55
_C
25
_C
125
_C
Ui
Characteristic
Symbol
DD
Vdc
Min
Max
Min
Typ
Max
Min
Max
Unit
Output Voltage
“0” Level
Vin = VDD or 0
VOL
5.0
10
15
0.05
0.05
0.05
0
0
0
0.05
0.05
0.05
0.05
0.05
0.05
Vdc
“1” Level
Vin = 0 or VDD
VOH
5.0
10
15
4.95
9.95
14.95
4.95
9.95
14.95
5.0
10
15
4.95
9.95
14.95
Vdc
Input Voltage #
“0” Level
(VO = 4.5 or 0.5 Vdc)
(VO = 9.0 or 1.0 Vdc)
(VO = 13.5 or 1.5 Vdc)
VIL
5.0
10
15
1.5
3.0
4.0
2.25
4.50
6.75
1.5
3.0
4.0
1.5
3.0
4.0
Vdc
(VO = 0.5 or 4.5 Vdc)
“1” Level
(VO = 1.0 or 9.0 Vdc)
(VO = 1.5 or 13.5 Vdc)
VIH
5.0
10
15
3.5
7.0
11
3.5
7.0
11
2.75
5.50
8.25
3.5
7.0
11
Vdc
Output Drive Current
(VOH = 2.5 Vdc)
Source
(VOH = 4.6 Vdc)
(VOH = 9.5 Vdc)
(VOH = 13.5 Vdc)
IOH
5.0
5.0
10
15
– 1.2
– 0.25
– 0.62
– 1.8
– 1.0
– 0.2
– 0.5
– 1.5
– 1.7
– 0.36
– 0.9
– 3.5
– 0.7
– 0.14
– 0.35
– 1.1
mAdc
(VOL = 0.4 Vdc)
Sink
(VOL = 0.5 Vdc)
(VOL = 1.5 Vdc)
IOL
5.0
10
15
0.64
1.6
4.2
0.51
1.3
3.4
0.88
2.25
8.8
0.36
0.9
2.4
mAdc
Input Current
Iin
15
± 0.1
±0.00001
± 0.1
± 1.0
µAdc
Input Capacitance
Cin
5.0
7.5
pF
Quiescent Current
(Per Package) Inh =
PCAin = VDD,
Zener = VCOin = 0 V, PCBin = VDD
or 0 V, Iout = 0 µA
IDD
5.0
10
15
5.0
10
20
0.005
0.010
0.015
5.0
10
20
150
300
600
µAdc
Total Supply Current†
(Inh = “0”, fo = 10 kHz, CL = 50 pF,
R1 = 1.0 M
Ω, R2 = R RSF = ∞,
and 50% Duty Cycle)
IT
5.0
10
15
IT = (1.46 µA/kHz) f + IDD
IT = (2.91 µA/kHz) f + IDD
IT = (4.37 µA/kHz) f + IDD
mAdc
#Noise immunity specified for worst–case input combination.
Noise Margin for both “1” and “0” level = 1.0 Vdc min @ VDD = 5.0 Vdc
2.0 Vdc min @ VDD = 10 Vdc
2.5 Vdc min @ VDD = 15 Vdc
†To Calculate Total Current in General:
IT [ 2.2 x VDD
+ 1 x 10–3 (CL + 9) VDD f +
VCOin – 1.65
+
VDD – 1.35 3/4
R1
R2
VCOin – 1.65 3/4
+ 1.6 x
where: IT in µA, CL in pF, VCOin, VDD in Vdc, f in kHz, and
R1, R2, RSF in MΩ, CL on VCOout.
RSF
1 x 10–1 VDD2
100% Duty Cycle of PCAin
100
+ IQ


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