Absolute Maximum Ratings*
Parameter Sym. Min. Max. Units
1 Supply voltage V
DD_R
-0.5 4.6 V
2 Voltage on any digital pin V
PIN
-0.5 V
DD
V
3 Soldering temperature T 260 °C
4 Storage temperature T
ST
-55 125 °C
5 Junction temperature T
j
125 °C
6 Voltage on input pin V
input
V
DD
V
7 Input capacitance each pin C
p
500 fF
ZL40217 Data Sheet
16
Microsemi Corporation
4.0 AC and DC Electrical Characteristics
* Exceeding these values may cause permanent damage. Functional operation under these conditions is not implied.
* Voltages are with respect to ground (GND) unless otherwise stated
Recommended Operating Conditions*
Characteristics Sym. Min. Typ. Max. Units
1 Supply voltage 2.5 V mode V
DD25
2.375 2.5 2.625 V
2 Supply voltage 3.3 V mode V
DD33
3.135 3.3 3.465 V
3 Operating temperature T
A
-40 25 85 °C
* Voltages are with respect to ground (GND) unless otherwise stated
DC Electrical Characteristics - Current Consumption
Characteristics Sym. Min. Typ. Max. Units Notes
1 Supply current LVDS drivers -
loa
ded (all outputs are active)
I
dd_load
97 mA
DC Electrical Characteristics - Inputs and outputs - for 2.5/3.3 V supply
Characteristics Sym. Min. Typ. Max. Units Notes
1 CMOS control logic high-level
input V
CIH
0.7*V
DD
V
2 CMOS control logic low
-level input V
CIL
0.3*V
DD
V
3 CMOS control logic Input leakage
current
I
IL
1 µA V
I
= V
DD
or 0 V
4 Differential common mode voltage V
ICM
1.1 1.6 V for 2.5 V
5 Differential common mode voltage V
ICM
1.1 2.0 V for 3.3 V
6 Differential input voltage difference V
ID
0.25 1 V
7 Differential input resistance V
IR
80 100 120 ohm
8 LVDS output differential voltage* V
OD
0.25 0.30 0.40 V
9 LVDS Common Mode voltage V
CM
1.1 1.25 1.375 V
2*V
OD
V
OD
AC Electrical Characteristics* - Inputs and Outputs (see Figure 20) - for 2.5/3.3 V supply.
Characteristics Sym. Min. Typ. Max. Units Notes
1 Maximum Operating Frequency 1/t
p
750 MHz
2 input to output clock propagation delay t
pd
0 1 2 ns
3 output to output skew t
out2out
80 150 ps
4 part to part output skew t
part2part
120 300 ps
5 Output clock Duty Cycle degradation t
PWH
/ t
PWL
-5 0 5 %
6 LVDS Output slew rate r
SL
0.55 V/ns
ZL40217 Data Sheet
17
Microsemi Corporation
* The VOD parameter was measured between 125 and 750 MHz
Figure 19 - Differential Voltage Parameter
* Supply voltage and operating temperature are as per Recommended Operating Conditions
Input
t
P
t
REFW
t
pd
t
REFW
Output
Figure 20 - Input To Output Timing
Additive Jitter at 2.5 V*
Output Frequency (MHz)
Jitter
Measurement
Filter
Typical
RMS (fs)
Notes
1 125 12 kHz - 20 MHz 184
2 212.5 12 kHz - 20 MHz 174
3 311.04 12 kHz - 20 MHz 157
4 425 12 kHz - 20 MHz 152
5 500 12 kHz - 20 MHz 139
6 622.08 12 kHz - 20 MHz 138
7 750 12 kHz - 20 MHz 135
Additive Jitter at 3.3 V*
Output Frequency (MHz)
Jitter
Measurement
Filter
Typical
RMS (fs)
Notes
1 125 12 kHz - 20 MHz 187
2 212.5 12 kHz - 20 MHz 176
3 311.04 12 kHz - 20 MHz 156
4 425 12 kHz - 20 MHz 153
5 500 12 kHz - 20 MHz 140
6 622.08 12 kHz - 20 MHz 139
7 750 12 kHz - 20 MHz 137
ZL40217 Data Sheet
18
Microsemi Corporation
5.0 Performance Characterization
*The values in this table were taken with an approximate slew rate of 0.8 V/ns.
*The values in this table were taken with an approximate slew rate of 0.8 V/ns.
Additive jitter from a power supply tone*
Carrier
f
requency
Parameter Typical Units Notes
125 25 mV
at 100 kHz
33 fs RMS
750 25 mV
at 100 kHz
33 fs RMS
* The values in this table are the additive periodic jitter caused by an interfering tone typically caused by a switching power supply. For this test,
measurements were taken over the full temperature and voltage range for V
DD
= 3.3 V. The magnitude of the interfering tone is measured at the
DUT.

ZL40217LDF1

Mfr. #:
Manufacturer:
Microchip / Microsemi
Description:
Clock Buffer 1:6 LVDS Fanout Buffer w/Int. Term.
Lifecycle:
New from this manufacturer.
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