nb6lq572m ON Semiconductor, nb6lq572m Datasheet - Page 6

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nb6lq572m

Manufacturer Part Number
nb6lq572m
Description
2.5v / 3.3v Differential 4 1 Mux W/input Equalizer To 1 2 Cml Clock/data Fanout / Translator
Manufacturer
ON Semiconductor
Datasheet

Available stocks

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Part Number
Manufacturer
Quantity
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Part Number:
nb6lq572mNR4G
Manufacturer:
ON Semiconductor
Quantity:
250
NOTE: Device will meet the specifications after thermal equilibrium has been established when mounted in a test socket or printed circuit
11. Measured using a 100 mVpk−pk source, 50% duty cycle clock source. All output loading with external 50 W to V
12. Output voltage swing is a single−ended measurement operating in differential mode.
13. Skew is measured between outputs under identical transitions and conditions. Duty cycle skew is defined only for differential operation when
14. Additive RMS jitter with 50% duty cycle clock signal.
15. Additive Peak−to−Peak data dependent jitter with input NRZ data at PRBS23.
16. Crosstalk is measured at the output while applying two similar clock frequencies that are asynchronous with respect to each other at the
17. Input voltage swing is a single−ended measurement operating in differential mode.
Table 6. AC CHARACTERISTICS
f
f
f
V
t
t
t
Tempco
tskew
t
F
t
t
V
t
Symbol
MAX
DATAMAX
SEL
PLH
PHL
PD
DC
JITTER
r,
OUTPP
FN
INPP
, t
N
40 ps (20% − 80%).
the delays are measured from cross−point of the inputs to the cross−point of the outputs.
inputs.
f
,
board with maintained transverse airflow greater than 500 lfpm. Electrical parameters are guaranteed only over the declared
operating temperature range. Functional operation of the device exceeding these conditions is not implied. Device specification limit
values are applied individually under normal operating conditions and not valid simultaneously.
Maximum Input Clock Frequency V
Maximum Operating Data Rate NRZ, (PRBS23)
Maximum Toggle Frequency, SELx
Output Voltage Amplitude (@ V
(Note 12) (Figure 12)
Propagation Delay to Differential Outputs
Measured at Differential Crosspoint
Differential Propagation Delay Temperature Coefficient
Output – Output skew (within device) (Note 13)
Device – Device skew (tpdmax – tpdmin)
Output Clock Duty Cycle (Reference Duty Cycle = 50%) f
Phase Noise, fin = 1 GHz
Integrated Phase Jitter (Figure x) fin = 1 GHz, 12 kHz * 20 MHz Offset
(RMS)
Random Clock Jitter, RJ(RMS) (Note 14)
Deterministic Jitter, DJ (Note 15) (FR4 ≤ 12’)
Crosstalk Induced Jitter (Adjacent Channel) (Note 16)
Input Voltage Swing (Differential Configuration) (Note 17)
Output Rise/Fall Times @ 1 GHz; (20% − 80%), V
V
CC
Characteristic
INPPmin
= 2.375 V to 3.6 V, GND = 0 V, T
OUT
) f
w 250 mV
in
≤ 5 GHz
http://onsemi.com
@ 1 GHz INx/INx to Qx/Qx
@ 50 MHz SELx to Qx
IN
= 400 mV Qx, Qx
6
in
f
in
= 1 GHz
f
≤ 6.5 Gbps
in
100 kHz
≤ 5 GHz
10 MHz
20 MHz
40 MHz
A
10 kHz
1 MHz
= −40°C to +85°C (Note 11)
Min
250
125
100
6.5
20
45
20
5
−134
−136
−149
−150
−150
−150
0.35
Typ
400
200
100
0.2
40
50
35
35
6
8
4
0
5
1
CC
1200
Max
250
0.8
0.7
10
15
25
55
50
. Input edge rates
5
ps pk−pk
ps RMS
ps RMS
Dfs/°C
Gbps
GHz
MHz
Unit
dBc
mV
mV
ps
ns
ps
ps
%
fs

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