ICS851010AYLF IDT, Integrated Device Technology Inc, ICS851010AYLF Datasheet - Page 4

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ICS851010AYLF

Manufacturer Part Number
ICS851010AYLF
Description
IC FANOUT BUFFER HCSL 32TQFP
Manufacturer
IDT, Integrated Device Technology Inc
Type
Fanout Buffer (Distribution)r
Datasheet

Specifications of ICS851010AYLF

Number Of Circuits
1
Ratio - Input:output
1:10
Differential - Input:output
Yes/Yes
Input
HCSL, LVDS, LVHSTL, LVPECL
Output
HCSL
Frequency - Max
250MHz
Voltage - Supply
3.135 V ~ 3.465 V
Operating Temperature
0°C ~ 70°C
Mounting Type
Surface Mount
Package / Case
32-TQFP, 32-VQFP
Frequency-max
250MHz
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
800-1912

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ICS851010 Data Sheet
AC Electrical Characteristics
Table 3. HCSL AC Characteristics, V
NOTE: Electrical parameters are guaranteed over the specified ambient operating temperature range, which is established when the device is
mounted in a test socket with maintained transverse airflow greater than 500 lfpm. The device will meet specifications after thermal equilibrium
has been reached under these conditions.
NOTE: Current adjust set for V
NOTE: Characterized using an R
NOTE 1: Measured from the differential input cross point to the differential output crossing point.
NOTE 2: Defined as skew between outputs at the same supply voltage and with equal load conditions. Measured at the differential output
cross point.
NOTE 3: This parameter is defined in accordance with JEDEC Standard 65.
NOTE 4: Defined as skew between outputs on different devices operating at the same supply voltage, same frequency, same temperature and
with equal load conditions. Using the same type of inputs on each device, the outputs are measured at the differential cross point.
NOTE 5: Output Drift is measured as the change in the time placement of the differential cross point for each output on a given device due to
a change in temperature and supply voltage. Measured at the differential cross point.
NOTE 6: Measurement using R
NOTE 7: Measurement taken from single-ended waveform.
NOTE 8: Measured at crossing point where the instantaneous voltage value of the rising edge of Qx equals the falling edge of nQx.
See Parameter Measurement Information Section.
NOTE 9: Refers to the total variation from the lowest crossing point to the highest, regardless of which edge is crossing. Refers to all crossing
points for this measurement. See Parameter Measurement Information Section.
NOTE 10: Defined as the total variation of all crossing voltage of rising Qx and falling nQx. This is the maximum allowed variance in the
V
NOTE 11: Measurement taken from differential waveform.
NOTE 12: Measurement from -150mV to +150mV on the differential waveform (derived from Qx minus nQx). The signal must be monotonic
through the measurement region for rise and fall time. The 300mV measurement window is centered on the differential zero crossing.
NOTE 13: Assuming 50% input duty cycle. Data taken at ƒ ≤ 200MHz, unless otherwise specified.
ICS851010AY REVISION A AUGUST 2, 2010
Symbol
f
t
tsk(o)
tsk(pp)
tjit
tsk(drift)
V
V
V
∆V
t
odc
CROSS
MAX
PD
R
MAX
MIN
CROSS
/ t
CROSS
F
for any particular system. See Parameter Measurement Information Section.
Parameter
Output Frequency
Propagation Delay, NOTE 1
Output Skew; NOTE 2, 3
Part-to-Part Skew; NOTE 3, 4
Buffer Additive Phase Jitter, RMS
Output Drift; NOTE 5
Absolute Max Output Voltage; NOTE 6
Absolute Min Output Voltage; NOTE 6
Absolute Crossing Voltage;
NOTE 7, 8, 9
Total Variation of V
edges; NOTE 7, 8, 10
Rise/Fall Edge Rate; NOTE 11, 12
Output Duty Cycle; NOTE 13
OH
REF
CROSS
REF
= 0.7V. Measurements refer to PCIEX outputs only.
= to 950Ω, R
value of 950
over all
DD
= 3.3V±5%, T
LOAD
resistor.
= to 50Ω.
CLK = 200MHz, Integration
Range: 12kHz – 30MHz
A
Measured on at V
Measured on at V
= 0°C to 70°C
Test Conditions
ƒ ≤ 150MHz
ƒ ≤ 150MHz
4
OX
OX
Minimum
-150
500
250
0.6
1.5
47
1-to-10, DIFFERENTIAL HCSL FANOUT BUFFER
Typical
0.24
©2010 Integrated Device Technology, Inc.
Maximum
2.75
250
165
250
140
850
150
550
140
4.0
53
Units
MHz
V/ns
mV
mV
mV
mV
ns
ps
ps
ps
ps
%

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