Features: • Maximum Input Clock Frequency > 8 GHz Typical• Maximum Input Data 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• ...
NBSG86A: Features: • Maximum Input Clock Frequency > 8 GHz Typical• Maximum Input Data Rate > 8 Gb/s Typical• 165 ps Typical Propagation Delay• 40 ps Typical Rise and Fall Times•...
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Symbol |
Parameter | Condition 1 | Condition 2 |
Rating |
Units |
VCC |
Positive Power Supply | VEE = 0 V |
3.6 |
V | |
VEE |
Negative Power Supply | VCC = 0 V |
-3.6 |
V | |
VI |
Positive Input Negative Input |
VEE = 0 V VCC = 0 V |
VI VCC VI VEE |
3.6 -3.6 |
V V |
VINPP |
Differential Input Voltage |Dn - DN | | VCC - VEE 2.8 V VCC - VEE < 2.8 V |
2.8 |VCC - VEE| |
V V | |
IIN |
Input Current Through RT (50 Resistor) | Continuous Surge |
45 80 |
mA mA | |
Iout |
Output Current | Static Surge |
25 50 |
mA mA | |
TA |
Operating Temperature Range | 16−FCBGA 16−QFN |
-40 to +70 -40 to +85 |
| |
Tstg |
Storage Temperature Range |
-65 to +150 |
|||
JA |
Thermal Resistance (Junction-to-Ambient) (Note 8) |
0 LFPM 500 LFPM 0 LFPM 500 LFPM |
16 FCBGA 16 FCBGA 16 QFN 16 QFN |
108 86 41.6 35.2 |
/W /W /W /W |
JC |
Thermal Resistance (Junction-to-Case) | 2S2P (Note 8) 2S2P (Note 9) |
16 FCBGA 16 QFN |
5.0 4.0 |
/W /W |
Tsol |
Wave Solder | < 15 Sec |
225 |
The NBSG86A is a multi−function differential Logic Gate which an be configured as an AND/NAND, OR/NOR, XOR/XNOR, or 2:1 UX. This device is part of the GigaComm] family of high erformance Silicon Germanium products. The NBSG86A is housed in a ow profile 4x4 mm, 16−pin, flip−chip BGA or a 3x3 mm 16 pin QFN ackage.Differential inputs incorporate internal 50 termination resistors nd 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.
The NBSG86A employs input default circuitry so that under open input conditions (Dx, DX , VTDX , VTDx, VTSEL) the outputs of the device will remain stable.