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Table 3. ATTRIBUTES
Characteristics Value
ESD Protection Human Body Model
Machine Model
> 2 kV
> 200 V
Moisture Sensitivity 16-QFN Level 1
Flammability Rating Oxygen Index: 28 to 34 UL 94 V-0 @ 0.125 in
Transistor Count
Meets or exceeds JEDEC Spec EIA/JESD78 IC Latchup Test
For additional information, see Application Note AND8003/D.
Table 4. MAXIMUM RATINGS
Symbol Parameter Condition 1 Condition 2 Rating Unit
V
CC
Positive Power Supply GND = 0 V 4.0 V
V
IO
Positive Input/Output Voltage GND = 0 V -0.5 v V
IO
v V
CC
+ 0.5 4.5 V
V
INPP
Differential Input Voltage |D - D| V
CC
- GND V
I
IN
Input Current Through R
T
(50 W Resistor)
Static
Surge
45
80
mA
mA
I
OUT
Output Current (LVPECL Output) Continuous
Surge
50
100
mA
mA
T
A
Operating Temperature Range QFN-16 -40 to +85 °C
T
stg
Storage Temperature Range -65 to +150 °C
q
JA
Thermal Resistance
(Junction-to-Ambient) (Note 3)
0 lfpm
500 lfpm
QFN-16
QFN-16
42
35
°C/W
°C/W
q
JC
Thermal Resistance (Junction-to-Case) (Note 3) QFN-16 4 °C/W
T
sol
Wave Solder Pb-Free 265 °C
Stresses exceeding Maximum Ratings may damage the device. Maximum Ratings are stress ratings only. Functional operation above the
Recommended Operating Conditions is not implied. Extended exposure to stresses above the Recommended Operating Conditions may affect
device reliability.
3. JEDEC standard multilayer board - 2S2P (2 signal, 2 power) with 8 filled thermal vias under exposed pad.
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Table 5. DC CHARACTERISTICS, Multi-Level Inputs V
CC
= 2.375 V to 3.63 V, GND = 0 V, TA = -40°C to +85°C
Symbol Characteristic Min Typ Max Unit
POWER SUPPLY CURRENT
I
CC
Power Supply Current (Inputs and Outputs Open) 40 60 80 mA
LVPECL OUTPUTS (Notes 4 and 5)
V
OH
Output HIGH Voltage
V
CC
= 3.3 V
V
CC
= 2.5 V
V
CC
- 1075
2225
1425
V
CC
- 950
2350
1550
V
CC
- 825
2475
1675
mV
V
OL
Output LOW Voltage
V
CC
= 3.3 V
V
CC
= 2.5 V
V
CC
- 1825
1475
675
V
CC
- 1725
1575
775
V
CC
- 1625
1675
875
mV
DIFFERENTIAL INPUT DRIVEN SINGLE-ENDED (see Figures 4 and 5) (Note 6)
V
th
Input Threshold Reference Voltage Range (Note 7) 1125 V
CC
- 150 mV
V
IH
Single-ended Input HIGH Voltage V
th
+ 150 V
CC
mV
V
IL
Single-ended Input LOW Voltage GND V
th
- 150 mV
V
ISE
Single-ended Input Voltage Amplitude (V
IH
- V
IL
) 300 V
CC
- GND mV
DIFFERENTIAL INPUTS DRIVEN DIFFERENTIALLY (see Figures 7 and 9)
V
IHD
Differential Input HIGH Voltage 1050 V
CC
mV
V
ILD
Differential Input LOW Voltage GND V
CC
- 150 mV
V
ID
Differential Input Voltage (Dn, Dn) (V
IHD
- V
ILD
) 150 V
CC
- GND mV
V
CMR
Input Common Mode Range (Differential Configuration) (Note 9) 950 V
CC
– 75 mV
I
IH
Input HIGH Current Dn/Dn, (VTDn/VTDn Open) -150 +150
mA
I
IL
Input LOW Current Dn/Dn, (VTDn/VTDn Open) -150 +150
mA
SINGLE-ENDED LVCMOS/LVTTL CONTROL INPUTS
V
IH
Single-ended Input HIGH Voltage 2000 V
CC
mV
V
IL
Single-ended Input LOW Voltage GND 800 mV
I
IH
Input HIGH Current -10 10
mA
I
IL
Input LOW Current -150 0
mA
TERMINATION RESISTORS
R
TIN
Internal Input Termination Resistor 40 50 60
W
NOTE: Device will meet the specifications after thermal equilibrium has been established when mounted in a test socket or printed circuit
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.
4. LVPECL outputs loaded with 50 W to V
CC
- 2.0 V for proper operation.
5. Input and output parameters vary 1:1 with V
CC
.
6. V
th
, V
IH
, V
IL,,
and V
ISE
parameters must be complied with simultaneously.
7. V
th
is applied to the complementary input when operating in single-ended mode.
8. V
IHD
, V
ILD,
V
ID
and V
CMR
parameters must be complied with simultaneously.
9. V
CMR
minimum varies 1:1 with GND, V
CMR
max varies 1:1 with V
CC
. The V
CMR
range is referenced to the most positive side of the differential
input signal.
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Table 6. AC CHARACTERISTICS V
CC
= 2.375 V to 3.63 V, V
EE
= 0 V, or V
CC
= 0 V, V
EE
= -2.375 V to -3.63 V,
T
A
= -40°C to +85°C; (Note 10)
Symbol
Characteristic Min Typ Max Unit
V
OUTPP
Output Voltage Amplitude (@ V
INPPmin
)f
in
1.5 GHz
(Note 14) (See Figure 16) f
in
2.5 GHz
f
in
3.0 GHz
520
380
320
800
650
500
mV
t
PLH
,
t
PHL
Propagation Delay (@0.5GHz) Dn to Qn
SELn to Qn
325 425 525 ps
t
SKEW
Duty Cycle Skew (Note 11)
Within Device Skew
Device to Device Skew (Note 12)
5
20
20
80
ps
t
DC
Output Clock Duty Cycle f
in
3.0 GHz
(Reference Duty Cycle = 50%)
40 50 60 %
t
JITTER
RMS Random Clock Jitter (Note 13) f
in
= 2.5 GHz
f
in
= 3.0 GHz
Data Dependent Jitter f
DATA
= 2.5 Gb/s
f
DATA
= 3.0 Gb/s
0.2
0.3
12
15
0.5
1
ps
V
INPP
Input Voltage Swing/Sensitivity
(Differential Configuration) (Note 14)
150 V
CC
- GND mV
t
r
,t
f
Output Rise/Fall Times @ 0.5 GHz (20% - 80%) Q, Q 100 160 ps
NOTE: Device will meet the specifications after thermal equilibrium has been established when mounted in a test socket or printed circuit
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.
10.Measured by forcing V
INPP
(minimum) from a 50% duty cycle clock source. All loading with an external R
L
= 50 W to V
CC
– 2.0 V. Input edge
rates 40 ps (20% - 80%).
11. Duty cycle skew is measured between differential outputs using the deviations of the sum of T
pw
- and T
pw
+ @ 0.5 GHz.
12.Device to device skew is measured between outputs under identical transition @ 0.5 GHz.
13.Additive RMS jitter with 50% duty cycle clock signal.
14.Input and output voltage swing is a single-ended measurement operating in differential mode.

NB6L72MNR2G

Mfr. #:
Manufacturer:
ON Semiconductor
Description:
Analog & Digital Crosspoint ICs 2X2 PECL CROSSPOINT
Lifecycle:
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