MC100ES6111FAR2 IDT, Integrated Device Technology Inc, MC100ES6111FAR2 Datasheet - Page 6

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MC100ES6111FAR2

Manufacturer Part Number
MC100ES6111FAR2
Description
Manufacturer
IDT, Integrated Device Technology Inc
Type
Clock Driverr
Datasheet

Specifications of MC100ES6111FAR2

Number Of Clock Inputs
2
Mode Of Operation
Differential
Output Frequency
2700MHz
Output Logic Level
ECL/PECL
Operating Supply Voltage (min)
-2.375/2.375V
Operating Supply Voltage (typ)
-2.5/-3.3/2.5/3.3V
Operating Supply Voltage (max)
-3.465/3.465V
Package Type
LQFP
Operating Temp Range
0C to 110C
Operating Temperature Classification
Commercial
Signal Type
ECL/HSTL/PECL
Mounting
Surface Mount
Pin Count
32
Quiescent Current
100mA
Lead Free Status / RoHS Status
Not Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
MC100ES6111FAR2
Manufacturer:
Freescale Semiconductor
Quantity:
10 000
MPC100ES6111 Data Sheet
MPC100ES6111 REVISION 6 OCTOBER 1, 2009
Table 7. AC Characteristics (ECL: V
Clock Input Pair CLKA, CLKA (PECL or ECL differential signals)
Clock Input Pair CLKB, CLKB (HSTL/PECL differential signals)
ECL Clock Outputs (Q0-9, Q0-9)
1. AC characteristics apply for parallel output termination of 50 Ω to V
2. V
3. V
4. The MC100ES6111 is fully operational up to 3.0 GHz and is characterized up to 2.7 GHz.
5. V
6. V
7. Output pulse skew is the absolute difference of the propagation delay times: | t
Symbol
V
t
t
JIT(CC)
V
t
device-to-device skew.
V
propagation delay, device and part-to-part skew.
skew.
range and the input swing lies within the V
device and part-to-part skew.
sk(PP)
t
V
f
f
O(P-P)
V
sk(O)
sk(P)
t
t
t
CLK
V
CLK
CMR
r
PP
CMR
CMR
DIF
X
PD
PD
DIF
, t
PP
X
(AC) is the crosspoint of the differential HSTL input signal. Normal AC operation is obtained when the crosspoint is within the V
f
(AC) is the minimum differential ECL/PECL input voltage swing required to maintain AC characteristics including tpd and
(AC) is the minimum differential HSTL input voltage swing required to maintain AC characteristics including t
(AC) is the crosspoint of the differential ECL/PECL input signal. Normal AC operation is obtained when the crosspoint is within the
(AC) range and the input swing lies within the V
Differential Input Voltage
Differential Input Crosspoint Voltage
Input Frequency
Propagation Delay CLKA or CLKB to Q0–9
Differential Input Voltage (peak-to-peak)
Differential Input Crosspoint Voltage
Input Frequency
Propagation Delay CLKB to Q0-9
Differential Output Voltage (peak-to-peak)
Output-to-Output Skew
Output-to-Output Skew (part-to-part) f
Output Cycle-to-Cycle Jitter
Output Pulse Skew
Output Rise/Fall Time
Differential Pulse
Generator
Z = 50Ω
(4)
Characteristics
(7)
(HSTL/PECL: V
V
TT
Figure 3. MC100ES6111 AC Test Reference
Z
O
(2)
= GND
= 50Ω
R
(peak-to-peak)
T
EE
= 50Ω
= –3.3 V ± 5% or V
DIF
(AC) specification. Violation of V
(3)
(6)
f
CC
O
f
f
f
O
O
O
O
< 300 MHz
(5)
< 1.5 GHz
< 2.7 GHz
< 1.5 GHz
> 1.5 GHz
= 3.3 V ± 5% or V
RMS (1σ)
PP
PECL
(AC) specification. Violation of V
MC100ES6111
DUT
EE
V
V
EE
EE
TT
= –2.5 V ± 5%, V
0.15
0.45
0.18
0.05
6
Min
280
280
0.4
0.3
+ 1.0
+ 0.1
.
LOW VOLTAGE 2.5V/3.3V DIFFERENTIAL ECL/PECL/HSTL FANOUT BUFFER
CC
= 2.5 V ± 5%, V
Z
O
R
T
= 50Ω
X
PLH
V
V
= 50Ω
(AC) or V
EE
EE
0.72
0.55
0.37
Typ
400
400
– t
+ 0.68
+ 0.9
PHL
CC
CMR
|.
DIF
= GND) or
EE
(AC) impacts the device propagation delay,
(AC) or V
V
V
CC
EE
= GND, T
Max
0.95
0.95
0.95
530
530
150
250
1.3
2.7
1.0
2.7
0.3
35
75
1
+ 2.1
– 0.3
V
TT
= GND
PP
(AC) impacts the device
J
©2009 Integrated Device Technology, Inc.
= 0°C to +110°C)
Unit
GHz
GHz
ps
ps
ps
ps
ps
ps
ps
ns
V
V
V
V
V
V
V
PD
and device-to-device
Differential
Differential
Differential
Differential
Differential
Differential
20% to 80%
Condition
(1)
X
(AC)

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