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3502

Part # 3502
Description
Category CONNECTOR
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Technical Document


DISCLAIMER: The information provided herein is solely for informational purposes. Customers must be aware of the suitability of this product for their application, and consider that variable factors such as Manufacturer, Product Category, Date Codes, Pictures and Descriptions may differ from available inventory.

Page 1 of 7
Document No. 70-0046-04 www.psemi.com ©2005 Peregrine Semiconductor Corp. All rights reserved.
V
DD
= 3.0 V, -40° C T
A
85° C, unless otherwise specified
The PE3502 is a high performance monolithic UltraCMOS™
prescaler with a fixed divide ratio of 4. Its operating frequency
range is 1500 MHz to 3500 MHz. The PE3502 operates on a
nominal 3 V supply and draws only 12 mA. It is packaged in a
small 8-lead MSOP and is ideal for microwave PLL synthesis
solutions.
The PE3502 is manufactured in Peregrine’s patented Ultra
Thin Silicon (UTSi©) CMOS process, offering the performance
of GaAs with the economy and integration of conventional
CMOS.
Product Specification
3500 MHz Low Power UltraCMOS™
Divide-by-4 Prescaler
Product Description
Figure 1. Functional Schematic Diagram
PE3502
Features
High-frequency operation: 1500 MHz
to 3500 MHz
Fixed divide ratio of 4
Low-power operation: 12 mA typical
@ 3 V across frequency
Small package: 8-lead MSOP
Table 1. Electrical Specifications
(Z
S
= Z
L
= 50 )
Figure 2. Package Type
8-lead MSOP
D
QB
Q
CLK
D
QB
Q
CLK
Pre-Amp
Output
Buffer
IN
OUT
Parameter Minimum Typical Maximum Units
Supply Voltage 2.85 3.0 3.15 V
Supply Current 12 17 mA
Input Frequency (F
IN) 1500 3500 MHz
Input Power (P
IN) 1500 MHz F
in
3200 MHz -10 +5 dBm
3200 MHz < F
in
3500 MHz 0 +5 dBm
Output Power -5 dBm
Product Specification
PE3502
Page 2 of 7
©2005 Peregrine Semiconductor Corp. All rights reserved. Document No. 70-0046-04 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)
Device Functional Considerations
The PE3502 takes an input signal frequency from
1500 MHz to 3500 MHz 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 pin 3 be supplied with a bypass
capacitor to ground. In addition, the input and
output signals (pins 2 & 7, respectively) need to
be AC coupled via an external capacitor as shown
in the test circuit in Figure 7.
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.
3502
1
2
3
4
8
7
6
5
IN
GND
DEC
GND
OUT
V
DD
GND
GND
Pin
No.
Pin
Name
Description
1 V
DD
Power supply pin. Bypassing is required.
2 IN Input signal pin. Should be coupled with a
capacitor (eg 15 pF)
3 DEC Power supply decoupling pin. Place a ca-
pacitor as close as possible and connect
directly to the ground plane (eg 10 nF and
10 pF).
4 GND Ground pin. Ground pattern on the board
should be as wide as possible to reduce
ground impedance.
5 GND Ground pin.
6 GND Ground pin.
7 OUT Divided frequency output pin. This pin
should be coupled with a capacitor (eg 100
pF).
8 GND Ground pin.
Symbol Parameter/Conditions Min Max Units
V
DD
Supply voltage 4.0 V
T
ST
Storage temperature
range
-65 150 °C
T
OP
Operating temperature
range
-40 85 °C
V
ESD
ESD voltage (Human
Body Model)
250 V
P
INMAX
Maximum input power 10 dBm
Product Specification
PE3502
Page 3 of 7
©2005 Peregrine Semiconductor Corp. All rights reserved. Document No. 70-0046-04 www.psemi.com
Figure 4. Input Sensitivity
Figure 5. Device Current
Typical Performance Data
Figure 6. Output Power
-30
-25
-20
-15
-10
-5
0
0.51.52.53.54.5
Fr e q ue ncy (GHz)
Sensitivity (dBm)
25C -40C 85C
8
9
10
11
12
13
14
15
0.5 1.5 2.5 3.5 4.5
Frequency (GHz)
Current (mA)
25C -40C 85C
-3.0
-2.0
-1.0
0.0
1.0
2.0
3.0
0.5 1.5 2.5 3.5 4.5
Fr e que nc y ( GHz)
Power (dBm)
25C -40C 85C
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