NBSG86ABA ON Semiconductor, NBSG86ABA Datasheet - Page 7

IC SMART GATE SIGE DIFF 16FCBGA

NBSG86ABA

Manufacturer Part Number
NBSG86ABA
Description
IC SMART GATE SIGE DIFF 16FCBGA
Manufacturer
ON Semiconductor
Datasheet

Specifications of NBSG86ABA

Logic Type
Configurable Multiple Function
Number Of Circuits
2
Number Of Inputs
2
Schmitt Trigger Input
No
Output Type
Differential
Voltage - Supply
2.375 V ~ 3.465 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
16-FCBGA
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Current - Output High, Low
-
Other names
NBSG86ABAOS

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Manufacturer
Quantity
Price
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Manufacturer:
ON Semiconductor
Quantity:
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Manufacturer:
ON Semiconductor
Quantity:
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NOTE: GigaComm circuits are designed to meet the DC specifications shown in the above table after thermal equilibrium has been established.
15. Input and output parameters vary 1:1 with V
16. All loading with 50 W to V
17. V
18. V
19. V
*Typicals used for testing purposes.
**When an output level of 400 mV is desired and V
***The device packaged in FCBGA−16 have maximum ambient temperature specification of 70°C and devices packaged in QFN−16 have
Table 11. DC CHARACTERISTICS, INPUT WITH PECL OUTPUT
Symbol
maximum ambient temperature specification of 85°C.
I
V
V
V
V
V
V
R
I
I
EE
IH
IL
OH
OL
OUTPP
IH
IL
IHCMR
TIN
input signal.
IHCMR
IH
IL
always w V
cannot exceed V
The circuit is in a test socket or mounted on a printed circuit board and transverse airflow greater than 500 lfpm is maintained.
min varies 1:1 with V
Negative Power Supply Current
Output HIGH Voltage (Note 16)
Output LOW Voltage (Note 16)
Output Amplitude Voltage
Input HIGH Voltage (Single−Ended)
(Note 18)
Input LOW Voltage (Single−Ended)
(Note 19)
Input HIGH Voltage Common Mode
Range (Differential Configuration)
(Note 17)
Internal Input Termination Resistor
Input HIGH Current (@V
Input LOW Current (@V
(OLS = V
(OLS = V
EE
.
CC
Characteristic
CC
CC
.
− 0.8 V, OLS = FLOAT)
− 0.8 V, OLS = FLOAT)
CC
(OLS = V
(OLS = V
(OLS = V
(OLS = V
EE
− 2.0 V.
, V
IL
IHCMR
IH
**(OLS = V
**(OLS = V
)
)
(OLS = V
(OLS = V
CC
CC
CC
CC
max varies 1:1 with V
− 0.4 V)
− 1.2 V)
− 0.4 V)
− 1.2 V)
D, D
D, D
D, D
D, D
CC
SEL
SEL
CC
CC
EE
EE
. V
CC
)
)
)
)
EE
− V
V
2260
1320
2030
1550
2260
1785
1275
2600
V
Min
705
130
535
345
EE
1.2
can vary +0.925 V to −0.165 V.
23
45
IH
0
EE
+
http://onsemi.com
> 3.0 V, a 2 kW resistor should be connected from OLS to V
−40°C
V
1000*
1400*
V
2310
1470
2090
1670
2310
1875
Typ
815
220
640
435
CC
CC
30
CC
50
30
20
0
5
5
. The V
7
2360
1620
2180
1790
2390
1995
V
Max
V
150
100
100
3.3
39
55
50
50
IH
CC
IHCMR
V
CC
V
2290
1360
2065
1585
2290
1820
1275
2600
V
range is referenced to the most positive side of the differential
Min
695
125
530
340
1.2
EE
23
45
= 3.3 V; V
IH
0
+
V
1000*
1400*
25°C
V
2340
1510
2125
1705
2340
1910
Typ
805
215
635
430
CC
30
50
30
20
CC
0
5
5
EE
= 0 V (Note 15)
2390
1660
2215
1825
2420
2030
V
Max
V
150
100
100
3.3
39
55
50
50
IH
CC
70°C(BGA)/85°C(QFN)***
V
2315
1390
2090
1615
2315
1850
1275
2600
V
Min
690
125
525
335
1.2
EE
23
45
IH
0
+
V
1000*
1400*
V
2365
1540
2150
1735
2365
1940
Typ
800
215
630
425
CC
30
CC
50
30
20
0
5
5
EE
.
2415
1690
2240
1855
2445
2060
V
Max
V
150
100
100
3.3
39
55
50
50
IH
CC
Unit
mA
mV
mV
mV
mV
mV
mA
mA
V
W

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