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ICS8530 Fiches technique(PDF) 9 Page - Integrated Circuit Systems

No de pièce ICS8530
Description  LOW SKEW, 1-TO-16 DIFFERENTIAL-TO-2.5V LVPECL FANOUT BUFFER
PDF  12 Pages
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Fabricant  ICST [Integrated Circuit Systems]
Site Internet  http://www.icst.com
Logo ICST - Integrated Circuit Systems

ICS8530 Fiches technique(HTML) 9 Page - Integrated Circuit Systems

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ICS8530DY
www.icst.com/products/hiperclocks.html
REV. C AUGUST 7, 2001
9
Integrated
Circuit
Systems, Inc.
ICS8530
LOW SKEW, 1-TO-16
DIFFERENTIAL-TO-2.5V LVPECL FANOUT BUFFER
3. Calculations and Equations.
The purpose of this section is to derive the power dissipated into the load.
LVPECL output driver circuit and termination are shown in
Figure 9.
To calculate worst case power dissipation into the load, use the following equations which assume a 50
Ω load, and a termination
voltage of V
CC
- 2V.
Pd_H is power dissipation when the output drives high.
Pd_L is the power dissipation when the output drives low.
Pd_H = [(V
OH_MAX
– (V
CC_MAX
- 2V))/R
L
]*(V
CC_MAX
- V
OH_MAX
)
Pd_L = [(V
OL_MAX
– (V
CC_MAX
- 2V))/R
L
]*(V
CC_MAX
- V
OL_MAX
)
For logic high, V
OUT
= V
OH_MAX
= V
CC_MAX
– 1.0V
Using V
CC_MAX
= 2.625, this results in V
OH_MAX
= 1.625V
For logic low, V
OUT
= V
OL_MAX
= V
CC_MAX
– 1.7V
Using V
CC_MAX
= 2.625, this results in V
OL_MAX
= 0.925V
Pd_H = [(1.625V - (2.625V - 2V))/50
Ω]*(1V) = 20mW
Pd_L = [(0.925V - (2.625V - 2V))/50
Ω]*(1.7) = 10.2mW
Total Power Dissipation per output pair = Pd_H + Pd_L = 30.2mW
FIGURE 9 - LVPECL DRIVER CIRCUIT AND TERMINATION
Q1
V
OUT
V
CCO
RL
50
V
CCO - 2V



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