IDT85304-01PGG8 IDT, Integrated Device Technology Inc, IDT85304-01PGG8 Datasheet - Page 10

IC CLK FAN BUFF MUX 1:5 20TSSOP

IDT85304-01PGG8

Manufacturer Part Number
IDT85304-01PGG8
Description
IC CLK FAN BUFF MUX 1:5 20TSSOP
Manufacturer
IDT, Integrated Device Technology Inc
Type
Fanout Buffer (Distribution), Multiplexerr
Datasheet

Specifications of IDT85304-01PGG8

Number Of Circuits
1
Ratio - Input:output
1:5
Differential - Input:output
Yes/Yes
Input
CML, HCSL, LVDS, LVHSTL, LVPECL, SSTL
Output
LVPECL
Frequency - Max
650MHz
Voltage - Supply
3.135 V ~ 3.465 V
Operating Temperature
0°C ~ 70°C
Mounting Type
Surface Mount
Package / Case
20-TSSOP
Frequency-max
650MHz
Number Of Clock Inputs
2
Mode Of Operation
Differential
Output Frequency
650MHz
Output Logic Level
LVPECL
Operating Supply Voltage (min)
3.135V
Operating Supply Voltage (typ)
3.3V
Operating Supply Voltage (max)
3.465V
Package Type
TSSOP
Operating Temp Range
0C to 70C
Operating Temperature Classification
Commercial
Mounting
Surface Mount
Pin Count
20
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
85304-01PGG8

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Company:
Part Number:
IDT85304-01PGG8
Quantity:
514
CALCULATIONS AND EQUATIONS
To calculate worst case power dissipation into the load, use the following equations, which assume a 50Ω load and a termination voltage of V
For Logic HIGH: V
(V
For Logic LOW: V
(V
Pd_H is power dissipation when the output drives HIGH.
Pd_L is power dissipation when the output drives LOW.
Pd_H = {[ V
1V = 20mW.
Pd_L = {[ V
1.7V = 10.2mW.
Total Power Dissipation per output pair = Pd_H + Pd_L = 30.2mW
IDT85304-01
LOW SKEW, 1-TO-5 DIFFERENTIAL-TO-3.3V LVPECL
DD
DD
_
_
MAX
MAX
– V
– V
OL
OH
OH
OL
_
_
MAX
_
MAX
_
MAX
MAX
OUT
OUT
– (V
– (V
) = 1.7V
) = 1V
= V
= V
DD
DD
OL
_
OH
_
MAX
_
MAX
_
MAX
MAX
– 2V)] / R
– 2V)] / R
= V
= V
DD
DD
_
_
MAX
L
MAX
L
} * (V
} * (V
– 1.7V.
– 1V.
DD
DD
_
_
LVPECL Output Driver Circuit and Termination
MAX
MAX
– V
– V
OL
OH
_
_
MAX
MAX
Q1
) = {[ 2V – (V
) = {[ 2V – (V
V
DD
10
DD
DD
_
_
MAX
MAX
COMMERCIAL AND INDUSTRIAL TEMPERATURE RANGES
– V
– V
OL
OH
_
_
MAX
MAX
RL
50
V
)] / R
)] / R
V
DD
OUT
L
} * (V
- 2V
L
} * (V
DD
DD
_
_
MAX
MAX
– V
– V
OL
OH
_
MAX
_
MAX
) = [( 2V – 1.7V) / 50Ω] *
) = [( 2V – 1V) / 50Ω] *
DD
– 2V.

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