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9308 bảng dữ liệu(PDF) 2 Page - Peregrine Semiconductor Corp.

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Giải thích chi tiết về linh kiện  13.5 GHz Low Power UltraCMOS??Divide-by-4 Prescaler for RAD-Hard Space Applications
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Advance Information
PE9308
Page 2 of 7
©2005 Peregrine Semiconductor Corp. All rights reserved.
Document No. 70-0187-01
│ UltraCMOS™ RFIC Solutions
Table 2. Pin Descriptions
Table 3. Absolute Maximum Ratings
Electrostatic Discharge (ESD) Precautions
When handling this UltraCMOS™ device, observe
the same precautions that you would use with
other ESD-sensitive devices. Although this device
contains circuitry to protect it from damage due to
ESD, precautions should be taken to avoid
exceeding the rating specified in Table 3.
Latch-Up Avoidance
Unlike conventional CMOS devices, UltraCMOS™
devices are immune to latch-up.
Figure 3. Pin Configuration (Top View)
PE9308
1
2
3
4
8
7
6
5
VDD1
NC
RF IN
NC
NC
VDD1
RF OUT
VDD2
Pin
No.
Pin
Name
Description
1
VDD1
DC Supply Voltage
2
VDD1
DC Supply Voltage
3
RF IN
RF Input
4
NC
Not connected
5
VDD2
DC Supply Voltage
6
RF OUT
RF Output.
7
NC
Not connected
8
NC
Not connected
Symbol
Parameter/
Conditions
Min
Max
Units
VDD
DC Supply voltage
3.0
V
TST
Storage temperature
range
-65
150
°C
TOP
Operating temperature
range
-40
85
°C
VESD
ESD voltage (Human
Body Model)
250
V
PINMAX
Maximum input power
14
dBm
Device Functional Considerations
The PE9308 takes an input signal frequency from
between 4.0 GHz to 13.5 GHz and produces an
output signal frequency one-fourth that of the
supplied input. In order for the prescaler to work
properly, several conditions need to be adhered
to. It is crucial that pins 1, 2 and 5 be supplied
with a bypass capacitor to ground. In addition, the
output signal (pins 6) needs to be ac coupled via
an external capacitor as shown in the test circuit
below.
The ground pattern on the board should be made
as wide as possible to minimize ground
impedance.
Absolute Maximum Ratings are those values
listed in the above table. Exceeding these values
may cause permanent device damage. Exposure
to absolute maximum ratings for extended periods
may affect device reliability.


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