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SY10EP58VZITR Datasheet(PDF) 5 Page - Micrel Semiconductor

Part # SY10EP58VZITR
Description  3.3V/5V 3GHz PECL/ECL 2:1 MULTIPLEXER
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Manufacturer  MICREL [Micrel Semiconductor]
Direct Link  http://www.micrel.com
Logo MICREL - Micrel Semiconductor

SY10EP58VZITR Datasheet(HTML) 5 Page - Micrel Semiconductor

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5
ECL Pro™
SY10EP58V
SY100EP58V
Micrel, Inc.
M9999-070105
hbwhelp@micrel.com or (408) 955-1690
TA = –40°CTA = +25°CTA = +85°C
Symbol
Parameter
Min.
Typ.
Max.
Min.
Typ.
Max.
Min.
Typ.
Max.
Unit
Condition
fMAX
Max. Toggle Frequency(1)
3—
—3—
3—
GHz
tPLH
Propagation Delay (Differential)
tPHL
SEL to Q, /Q; D to Q, /Q
170
380
190
230
410
210
420
ps
tSKEW
Part-to-Part Skew(2)
——
200
——
200
200
ps
tJITTER
Cycle-to-Cycle Jitter (rms)(3)
0.2
<1
0.2
<1
0.2
<1
psPP
Random Jitter(4)
—————
<1
———
psPP
Note 3
Deterministic Jitter(5)
@1.25Gbps
————
7
<15
———
psPP
Note 4
@2.5Gbps
————
10
<25
———
Total Jitter(6)
—<1
—<1
—<1
psPP
V
IN
Differential Input Voltage Range
150
800
1200
150
800
1200
150
800
1200
mV
t
r, tf
Output Rise/Fall Time Q, /Q
170
140
180
200
ps
(20% to 80%)
Notes:
1. Measured with 750mV input signal, 50% duty cycle. Output swing ≥ 400mV. All loading with a 50Ω to VCC –2.0V.
2. Skew is measured between outputs under identical transitions. Duty cycle skew is defined only for differential operation when the delays are
measured from the cross point of the inputs to the cross point of the outputs.
3. The variation in period between adjacent cycles over a random sample of adjacent cycle pairs. tJITTER_CC = tn– tn + 1, where t is the time between
rising edges of the output signal.
4. Random jitter is measured with a K28.7 comma detect character pattern, measured at 1.25Gbps and 2.5Gbps.
5. Deterministic jitter is measured at 1.25Gbps and 2.5Gbps, with both K28.5 and 223–1 PRBS pattern.
6. Total Jitter is defined as an ideal clock input, no more than 1 output edge in 1012 output edges will deviate by more than specifed peak-to-peak jitter
value.
AC ELECTRICAL CHARACTERISTICS
VCC = 3.0V to 5.5V, VEE = 0V or VCC = 0V; VEE = –3.0V to –5.5V.


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