ZL30414QGC ZARLINK [Zarlink Semiconductor Inc], ZL30414QGC Datasheet - Page 16

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ZL30414QGC

Manufacturer Part Number
ZL30414QGC
Description
SONET/SDH Clock Multiplier PLL
Manufacturer
ZARLINK [Zarlink Semiconductor Inc]
Datasheet

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Part Number:
ZL30414QGC
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DC Electrical Characteristics
10
12
13
14
15
16
17
18
19
20
11
7
8
9
-
-
-
-
-
-
† : Voltages are with respect to ground unless otherwise stated.
Supply voltage and operating temperature are as per Recommended Operating Conditions
Note 1: The I
flows outside the chip and it does not contribute to the internal power dissipation.
Note 2: LVPECL outputs terminated with Z
Note 3: CML outputs terminated with Z
CMOS: Input bias current for
pulled-down inputs:
C622oEN-A, C622oEN-C,
C622oEN-D, OC-CLKoEN
CMOS: Input bias current for
pulled-up inputs: , C622oEN-B,
C19oEN
CMOS: High-level output
voltage
CMOS: Low-level output
voltage
LOCK pin: High-level output
voltage
LOCK pin: Low-level output
voltage
CMOS: C19o output rise time
CMOS: C19o output fall time
LVPECL: Differential output
voltage (622.08 MHz)
LVPECL: Offset voltage
(622.08 MHz)
LVPECL: Output rise/fall times
(622.08 MHz)
CML: Differential output
voltage (155.52 MHz)
CML: Offset voltage
(155.52 MHz)
CML: Output rise/fall times
(155.52 MHz)
:Typical figures are for design aid only: not guaranteed and not subject to production testing.
Characteristics
LVPECL
current is determined by the termination network connected to LVPECL outputs. More than 25% of this current
(continued)
T
= 50 Ω resistors connected to low impedance DC bias voltage source (see Figure 9)
IV
T
V
= 50 Ω resistors biased to V
IV
OD_LVPECL
OS_LVPECL
V
OD_CML
OS_CML
Sym.
I
I
V
V
V
V
B-PU
B-PD
T
T
T
T
Zarlink Semiconductor Inc.
OH
OH
OL
OL
RF
RF
R
F
ZL30414
I
I
16
Min.
Vcc-
1.31
Vcc-
0.58
2.4
2.4
CC
-2V (see Figure 8)
Typ.
1.17
Vcc-
1.20
0.73
Vcc-
0.54
300
170
220
1.8
1.1
90
Max.
Vcc-
Vcc-
1.09
0.50
0.4
0.4
3.3
1.4
Units
uA
uA
ns
ns
ps
ps
V
V
V
V
V
V
I
I
OH
OL
I
I
18 pF load
18 pF load
Data Sheet
OH
OL
V
V
Note 2
Note 2
Note 2
Note 3
Note 3
Note 3
Notes
I
= 0.5 mA
= 0.5 mA
I
= 4 mA
= V
= 8 mA
= 0V
DD

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