MC100ES6111FA Freescale Semiconductor, MC100ES6111FA Datasheet - Page 4

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MC100ES6111FA

Manufacturer Part Number
MC100ES6111FA
Description
IC FANOUT BUFFER LV 1:10 32-LQFP
Manufacturer
Freescale Semiconductor
Series
100ESr
Type
Fanout Buffer (Distribution), Multiplexerr
Datasheet

Specifications of MC100ES6111FA

Number Of Circuits
1
Ratio - Input:output
2:10
Differential - Input:output
Yes/Yes
Input
ECL, HSTL, PECL
Output
ECL, PECL
Frequency - Max
2.7GHz
Voltage - Supply
2.375 V ~ 3.465 V
Operating Temperature
-40°C ~ 110°C
Mounting Type
Surface Mount
Package / Case
32-LQFP
Frequency-max
2.7GHz
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
MC100ES6111FA
Manufacturer:
IDT, Integrated Device Technology Inc
Quantity:
10 000
Part Number:
MC100ES6111FAR2
Manufacturer:
Freescale Semiconductor
Quantity:
10 000
Table 5. PECL/HSTL DC Characteristics (V
MC100ES6111
4
Control Input CLK_SEL
Clock Input Pair CLKA, CLKA (PECL differential signals)
Clock Input Pair CLKB, CLKB (HSTL differential signals)
PECL Clock Outputs (Q0-9, Q0-9)
Supply Current and V
1. Input have internal pullup/pulldown resistors which affect the input current.
2. V
3. V
4. V
5. V
6. Equivalent to a termination of 50 Ω to V
7. I
Symbol
V
V
V
V
V
V
range and the input swing lies within the V
range and the input swing lies within the V
V
V
I
CC
I
CMR
I
V
I
EE
IN
IN
DIF
IN
OH
PP
CMR
DIF
X
PP
OL
BB
IH
IL
X
(DC) is the crosspoint of the differential HSTL input signal. Functional operation is obtained when the crosspoint is within the V
calculation:
(DC) is the minimum differential input voltage swing required to maintain device functionality.
(DC) is the minimum differential HSTL input voltage swing required for device functionality.
(DC) is the crosspoint of the differential input signal. Functional operation is obtained when the crosspoint is within the V
Input Voltage Low
Input Voltage High
Input Current
Differential Input Voltage
Differential Cross Point Voltage
Input Current
Differential Input Voltage
Differential Cross Point Voltage
Input Current
Output High Voltage
Output Low Voltage
Maximum Quiescent Supply Current without
Output Termination Current
Output Reference Voltage
BB
I
I
CC
CC
(1)
(1)
= (number of differential output pairs used) x (I
= (number of differential output pairs used) x (V
Characteristics
(2)
(4)
(7)
V
V
TT
CC
CC
(3)
(5)
.
PP
PP
V
V
= 3.3 V
= 2.5 V
CC
CC
(DC) specification.
(DC) specification.
CC
= 3.3 V
= 2.5 V
= 2.5 V ± 5% or V
±
±
5%
5%
V
V
V
V
V
V
CC
CC
CC
CC
CC
CC
Min
0.1
1.0
0.4
0.4
– 1.810
– 1.165
0
– 1.4
– 1.2
– 1.9
– 1.9
OH
CC
OH
+ I
= 3.3 V ± 5%, V
– V
V
V
V
0.68 – 0.9
OL
CC
CC
CC
TT
) + I
Typ
– 1.005
– 1.705
– 1.705
)/R
EE
load
+ (V
V
V
OL
EE
V
V
V
V
V
V
CC
CC
CC
CC
CC
CC
CC
CC
– V
Max
100
100
200
100
= GND, T
– 1.475
– 0.880
1.3
– 0.3
– 1.1
– 1.2
– 0.7
– 1.5
– 1.3
TT
)/R
Advanced Clock Drivers Devices
load
J
+ I
= 0°C to +110°C)
Unit
mA
µA
µA
µA
V
V
V
V
V
V
V
V
V
V
EE
Freescale Semiconductor
V
Differential operation
Differential operation
V
V
I
I
V
I
OH
OL
BB
IN
IN
IN
EE
= –5 mA
= 200 µA
= V
= V
= V
= –30 mA
pin
Condition
IL
IL
X
± 0.2 V
or V
or V
CMR
(6)
IN
IN
(6)
X
(DC)
= V
= V
(DC)
IH
IH

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