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NB3V1103CDTR2G Datasheet(PDF) 5 Page - ON Semiconductor

Part # NB3V1103CDTR2G
Description  3.3V/2.5V/1.8V LVCMOS Low Skew Fanout Buffer Family
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Manufacturer  ONSEMI [ON Semiconductor]
Direct Link  http://www.onsemi.com
Logo ONSEMI - ON Semiconductor

NB3V1103CDTR2G Datasheet(HTML) 5 Page - ON Semiconductor

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NB3V110xC Series
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Table 6. DEVICE CHARACTERISTICS (continued)
Over recommended operating free−air temperature range (unless otherwise noted) (Note 4)
Symbol
Parameter
Condition
Min
Typ
Max
Unit
OUTPUT PARAMETERS FOR VDD = 2.5 V + 0.2 V
VOH
High−level output voltage
VDD = 2.3 V, IOH = –0.1 mA
2.2
V
VDD = 2.3 V, IOH = –8 mA
1.7
VOL
Low−level output voltage
VDD = 2.3 V, IOL = 0.1 mA
0.1
V
VDD = 2.3 V, IOL = 8 mA
0.5
tPLH, tPHL
Propagation delay (Note 9)
CLKIN to Qn
1.8
ns
tsk(o)
Output skew (Note 9)
Equal load of each output 85
°C
50
ps
Equal load of each output 105
°C
60
tr/tf
Rise and fall time
20%–80% (VOH − VOL)
0.2
1.2
ns
tDIS
Output disable time (Note 9)
OE to Qn
10
ns
tEN
Output enable time (Note 9)
OE to Qn
10
ns
tsk(p)
Pulse skew ; tPLH(Qn) – tPHL(Qn)
(Note 8)
To be measured with input duty cycle of 50%
220
ps
tsk(pp)
Part−to−part skew
Under equal operating conditions for two
parts
1.2
ns
tjit(f)
Additive jitter rms
12 kHz...20 MHz fOUT = 100 MHz
150
fs
12 kHz...20 MHz fOUT = 156.25 MHz
100
OUTPUT PARAMETERS FOR VDD = 1.8 V + 5%
VOH
High−level output voltage
VDD = 1.71 V, IOH = –0.1 mA
1.6
V
VDD = 1.71 V, IOH = –4 mA
0.75xVDD
VOL
Low−level output voltage
VDD = 1.71 V, IOL = 0.1 mA
0.1
V
VDD = 1.71 V, IOL = 4 mA
0.25xVDD
tPLH, tPHL
Propagation delay (Note 9)
CLKIN to Qn
1.8
3.5
ns
tsk(o)
Output skew (Note 9)
Equal load of each output
75
ps
tr/tf
Rise and fall time
20%–80% (VOH − VOL)
0.17
1.2
ns
tDIS
Output disable time (Note 9)
OE to Qn
10
ns
tEN
Output enable time (Note 9)
OE to Qn
10
ns
tsk(p)
Pulse skew ; tPLH(Qn) – tPHL(Qn)
(Note 8)
To be measured with input duty cycle of 50%
450
ps
tsk(pp)
Part−to−part skew
Under equal operating conditions for two
parts
1.2
ns
tjit(f)
Additive jitter rms
12 kHz...20 MHz, fOUT = 100 MHz
200
fs
Product parametric performance is indicated in the Electrical Characteristics for the listed test conditions, unless otherwise noted. Product
performance may not be indicated by the Electrical Characteristics if operated under different conditions.
8. tsk(p) depends on output rise− and fall−time (tr/tf). The output duty−cycle can be calculated: odc = (tw(OUT) ± tsk(p))/tperiod; tw(OUT) is
pulse−width of ideal output waveform and tperiod is 1/fOUT.
9. With rail to rail input clock.


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