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PL123E-05SC Datasheet, PDF (4/10 Pages) Micrel Semiconductor – Low Skew Zero Delay Buffer
Absolute Maximum Conditions
Supply Voltage to Ground Potential ...... –0.5V to 4.6V
DC Input Voltage.............................VSS – 0.5V to 4.6V
Storage Temperature ......................... –65°C to 150°C
(P P reliminary) L123E-05
Low Skew Zero Delay Buffer
Junction Temperature ....................................... 150°C
Static Discharge Voltage
(per MIL-STD-883, Method 3015)………………> 2000V
Operating Condition
Description
Parameter
Min
Max
Unit
Supply Voltage
VDD
2.25
3.63
V
Load Capacitance, <100 MHz, 3.3V
CL [4 ]
–
30
pF
Load Capacitance, <100 MHz, 2.5V with High Drive
–
30
pF
Load Capacitance, <133.3 MHz, 3.3V
–
22
pF
Load Capacitance, <133.3 MHz, 2.5V with High Drive
–
22
pF
Load Capacitance, <133.3 MHz, 2.5V with Standard Drive
–
15
pF
Load Capacitance, >133.3 MHz, 3.3V
–
15
pF
Load Capacitance, >133.3 MHz, 2.5V with High Drive
–
15
pF
Input Capacitance[5]
CIN
–
5
pF
Closed-loop bandwidth (typical), 3.3V
BW
1
MHz
Closed-loop bandwidth (typical), 2.5V
0.5
MHz
Output Impedance (typical), 3.3V Hi gh Drive
ROUT
23
Ω
Output Impedance (typical), 3.3V Standard Drive
33
Ω
Output Impedance (typical), 2.5V High Drive
26
Ω
Output Impedance (typical), 2.5V Standard Drive
39
Ω
Power-up time for all VDD’s to reach minimum specified
voltage (power ramps must be monotonic)
tPU
0.01
250
ms
Notes:
4. Applies to Test Circuit #1.
5. Applies to both REF Clock and internal feedback path on CLKOUT.
6. Theta Ja, EIA JEDEC 51 test board conditions, 2S2P; Theta Jc Mil -Spec 883E Method 1012.1.
Micrel Inc. • 2180 Fortune Drive • San Jose, CA 95131 • USA • tel +1(408) 944 -0800 • fax +1(408) 474-1000 • www.micrel.com Rev 12/13/11 Page 4