sy100ep14u Micrel Semiconductor, sy100ep14u Datasheet - Page 8

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sy100ep14u

Manufacturer Part Number
sy100ep14u
Description
Sy100ep14u 2.5v/3.3v/5v 1 5 Lvpecl/pecl/ecl/hstl 2ghz Clock Driver With 2 1 Differential Input Mux
Manufacturer
Micrel Semiconductor
Datasheet

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Micrel, Inc.
LVPECL: V
ECL: V
Note 1.
Note 2.
Note 3.
M9999-111605
hbwhelp@micrel.com or (408) 955-1690
Symbol
f
t
t
t
t
t
t
V
t
MAX
PLH
PHL
SKEW
S
H
JITTER
r
AC ELECTRICAL CHARACTERISTICS
, t
PP
f
(2)
EE
f
Skew is measured between outputs under identical transitions.
Set-up and hold times apply to synchronous applications that intend to enable/disable before then ext clock cycle. For asynchronous applica-
tions, set-up and hold time does not apply.
MAX
= –4.50V to –5.5V, V
Maximum Frequency
PECL/ECL (V
PropagationDelay to Output
IN (Differential)
IN (Single-Ended)
LVPECL/LVECL (V
Propagation Delay to Output
IN (Differential)
IN (Single-Ended)
PECL/ECL (V
Within-Device Skew (Diff.)
Part-to-Part Skew (Diff.)
LVPECL/LVECL (V
Within-Device Skew (Diff.)
Part-to-Part Skew (Diff.)
Set-Up Time
Hold Time
Cycle-to-Cycle Jitter (rms)
Minimum Input Swing
PECL/ECL Output Rise/Fall Times
(20% to 80%)
LVPECL/LVECL (V
CC
is defined as the maximum toggle frequency. Measured with 750mV input signal, 50% duty cycle, all loading with 50W to V
= 2.37V to 2.625V, V
(3)
Parameter
(3)
CC
CC
= 5V)
= 5V)
CC
CC
CC
(1)
= 2.37V to 3.8V)
= 2.37V to 3.8V)
= 2.37V to 3.8V)
CC
/EN to CLK
/EN to CLK
= 0V; LVECL:V
EE
= 0V; PECL: V
Min.
250
275
100
200
150
100
90
2
T
EE
A
= –40
Typ.
330
350
100
100
800
140
180
130
= –2.37V to –3.8V, V
0.2
25
10
50
CC
= 4.50V to 5.50V, V
°
C
8
Max.
1200
400
425
125
125
240
225
<1
35
25
Min.
250
275
100
200
150
105
95
2
T
CC
A
= +25
EE
Typ.
= 0V
330
355
350
375
150
150
140
800
180
130
0.2
30
15
50
= 0V;
°
C
Max.
1200
450
475
175
175
270
250
45
25
<1
Min.
250
275
100
200
150
110
100
2
T
A
= +85
Typ.
330
350
175
200
140
800
225
150
0.2
40
15
50
Precision Edge
°
C
Max.
1200
SY100EP14U
600
525
200
225
300
275
CC
50
25
<1
–2V.
Unit
GHz
mV
ps
ps
ps
ps
ps
ps
ps
ps
ps
ps
ps
ps
ps
®

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