3512-0 Peregrine Semiconductor, 3512-0 Datasheet - Page 3

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3512-0

Manufacturer Part Number
3512-0
Description
EVAL KIT FOR 3512
Manufacturer
Peregrine Semiconductor
Series
UltraCMOS™r
Type
Prescalerr
Datasheet

Specifications of 3512-0

Frequency
0Hz ~ 1.5GHz
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
For Use With/related Products
PE3512
Other names
3512-00
PE3512
Product Specification
Figure 3. Pin Configuration (Top View)
Table 5. Pin Descriptions
Table 6. Absolute Maximum Ratings
Exceeding absolute maximum ratings may cause
permanent damage. Operation should be
restricted to the limits in the Operating Ranges
table. Operation between operating range
maximum and absolute maximum for extended
periods may reduce reliability.
Document No. 70-0107-06 │ www.psemi.com
Symbol
No.
Pin
V
V
T
1
2
3
4
5
6
T
P
ESD
DD
OP
ST
in
GND
NC
IN
Name
GND
GND
OUT
Parameter/Conditions
Supply voltage
Input Power
Storage temperature
range
Operating temperature
range
ESD voltage (Human
Body Model)
Pin
N/C
V
pin 1
IN
DD
1
2
3
No Connect. This pin should be left open.
Ground pin. Ground pattern on the board
should be as wide as possible to reduce
ground impedance.
Input signal pin. DC blocking capacitor
required (100 pF typical).
Power supply pin. Bypassing is required.
Ground pin.
Divided frequency output pin. DC blocking
capacitor required (100 pF typical).
SC-70
6
5
4
Description
GND
V
OUT
DD
Min
-65
-40
Max
2000
150
4.0
13
85
Units
dBm
°C
°C
V
V
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 6.
Latch-Up Avoidance
Unlike conventional CMOS devices, UltraCMOS™
devices are immune to latch-up.
Device Functional Considerations
The PE3512 divides an input signal, up to a
frequency of 1500 MHz, by a factor of four thereby
producing an output frequency at one-fourth the
input frequency. To work properly with low
impedance, ground referenced interfaces, the
input and output signals (pins 3 & 6) must be AC
coupled via an external capacitor, as shown in the
test circuit in Figure 4.
The ground pattern on the board should be made
as wide as possible to minimize ground
impedance. See Figure 9 for a layout example.
©2003-2008 Peregrine Semiconductor Corp. All rights reserved.
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