Product Overview

Product Overview
NBSG86A: SiGe Differential Smart Gate, 2.5 V / 3.3 V, with Output Level
Select
For complete documentation, see the data sheet
Product Description
The NBSG86A is a multi-function differential Logic Gate which can be configured as an AND/NAND, OR/NOR, XOR/XNOR, or 2:1
MUX. This device is part of the GigaComm family of high performance Silicon Germanium products. The device is housed in a low
profile 4x4 mm, 16-pin, flip-chip BGA or a 3x3 mm 16 pin QFN package.
</bR>Differential inputs incorporate internal 50-ohm termination resistors and accept NECL (Negative ECL), PECL (Positive ECL),
LVCMOS/LVTTL, CML, or LVDS. The OLS input is used to program the peak-to-peak output amplitude between 0 and 800 mV in
five discrete steps.
</bR>The NBSG86A employs input clamping circuitry so that under open input conditions (Dx, Dbarx, VTDx, VTDbarx, VTSEL) the
outputs of the device will remain stable.
Features
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Maximum Input Clock Frequency > 8 GHz Typical
Maximum Data Input Rate > 8 Gb/s Typical
165 ps Typical Propagation Delay
40 ps Typical Rise and Fall Times
Selectable Swing PECL Output with Operating Range: VCC = 2.375 V to 3.465 V with VEE = 0 V
Selectable Swing NECL Output with NECL Inputs with Operating Range: VCC = 0 V with VEE = -2.375 V to -3.465 V
50Ω Internal Input Termination Resistors
Selectable Output Level Select (0 V, 200 mV, 400 mV, 600 mV, or 800 mV Peak-to-Peak Output)
End Products
Part Electrical Specifications
Product
Compliance
Status
Type
Channel
s
Input
Level
Output
Level
VCC Typ
(V)
fToggle
Max
(MHz)
tpd Typ
(ns)
tJitter Typ
(ps)
tR & tF
Max (ps)
Package
Type
NBSG86AMNG
Pb-free
Active
SmartGa
te
1
TTL
RSECL
3.3
8000
0.165
0.5
65
QFN-16
8000
0.165
0.5
65
QFN-16
8000
0.165
0.5
65
QFN-16
Halide free
CMOS
2.5
LVDS
CML
ECL
NBSG86AMNHTBG
Pb-free
Active
Halide free
SmartGa
te
1
TTL
RSECL
CMOS
3.3
2.5
LVDS
ECL
CML
NBSG86AMNR2G
Pb-free
Halide free
Active
SmartGa
te
1
LVDS
CML
RSECL
2.5
3.3
TTL
CMOS
ECL
For more information please contact your local sales support at www.onsemi.com
Created on: 6/30/2016