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Электронный компонент: 4230

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Page 1 of 7
Document No. 70-0029-02
www.psemi.com
2005 Peregrine Semiconductor Corp. All rights reserved.
Parameter Conditions
Minimum
Typical
Maximum
Units
Operation Frequency
1
DC
3000
MHz
Insertion Loss
1000 MHz
2000 MHz
0.35
0.55
0.45
0.65
dB
dB
Isolation RFC to RF1/RF2
1000 MHz
2000 MHz
38
28
39
30
dB
dB
Isolation RF1 to RF2
1000 MHz
2000 MHz
33.5
26.5
35
28
dB
dB
Return Loss
1000 MHz
2000 MHz
23.5
14.5
25.5
15.4
dB
dB
`ON' Switching Time
CTRL to 0.1 dB final value, 2 GHz
200
ns
`OFF' Switching Time
CTRL to 25 dB isolation, 2 GHz
90
ns
Video Feedthrough
2
15
mV
pp
Input 1 dB Compression
2000 MHz
30
32
dBm
Input IP3
2000 MHz, 17 dBm
50
dBm
RFC
RF1
RF2
CMOS
Control
Driver
CTRL
The PE4230 UltraCMOSTM RF Switch is designed to cover a
broad range of applications from DC through 3000 MHz. This
single-supply reflective switch integrates on-board CMOS
control logic driven by a simple, single-pin CMOS or TTL
compatible control input. Using a nominal +3-volt power supply,
a typical input 1 dB compression point of +32 dBm can be
achieved. The PE4230 also exhibits input-output isolation of
better than 39 dB at 1000 MHz and is offered in a small 8-lead
MSOP package.

The PE4230 SPDT High Power UltraCMOSTM RF Switch 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
SPDT High Power UltraCMOSTM
RF Switch
Product Description
Figure 1. Functional Diagram
PE4230
Features
Single 3-volt power supply
Low insertion loss: 0.35 dB at
1000 MHz, 0.55 dB at 2000 MHz
High isolation of 39 dB at 1000 MHz,
30 dB at 2000 MHz
Typical input 1 dB compression point
of +32 dBm
Single-pin CMOS or TTL logic control
Low cost
Notes: 1. Device linearity will begin to degrade below 10 MHz.
2. The DC transient at the output of any port of the switch when the control voltage is switched from Low to
High or High to Low in a 50
test set-up, measured with 1ns risetime pulses and 500 MHz bandwidth.
Table 1. Electrical Specifications @ +25 C, V
DD
= 3 V (Z
S
= Z
L
= 50
)
Figure 2. Package Type
8-lead MSOP
Product Specification
PE4230
Page 2 of 7
2005 Peregrine Semiconductor Corp. All rights reserved.
Document No. 70-0029-02
UltraCMOSTM RFIC Solutions
Note 1: All RF pins must be DC blocked with an external
series capacitor or held at 0 V
DC
.
Table 2. Pin Descriptions
Table 4. Absolute Maximum Ratings
Electrostatic Discharge (ESD) Precautions
When handling this UltraCMOSTM 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 4.
Latch-Up Avoidance
Unlike conventional CMOS devices, UltraCMOSTM
devices are immune to latch-up.
Table 3. DC Electrical Specifications
Figure 3. Pin Configuration (Top View)
4230
1
2
3
4
8
7
6
5
V
DD
CTRL
GND
RFC
RF1
GND
GND
RF2
Pin
No.
Pin
Name
Description
1 V
DD
Nominal +3V supply connection.
2
CTRL
CMOS or TTL logic level:
High = RFC to RF1 signal path
Low = RFC to RF2 signal path
3
GND
Ground connection. Traces should be
physically short and connected to ground
plane for best performance.
4
RFC
Common RF port for switch.
1
5 RF2
RF2
port.
1
6
GND
Ground Connection. Traces should be
physically short and connected to ground
plane for best performance.
7
GND
Ground Connection. Traces should be
physically short and connected to ground
plane for best performance.
8 RF1
RF1
port.
1
Symbol Parameter/Conditions Min Max Units
V
DD
Power
supply
voltage
-0.3
4.0 V
V
I
Voltage on any input
except for the CTRL input
-0.3
V
DD
+
0.3
V
V
CTRL
Voltage on CTRL input
5.0
V
T
ST
Storage temperature range
-65
150
C
T
OP
Operating temperature
range
-40 85 C
P
IN
Input power (50
)
35
dBm
V
ESD
ESD voltage (Human Body
Model)
250
V
Parameter Min
Typ
Max
Units
V
DD
Power Supply Voltage
2.7
3.0
3.3
V
I
DD
Power Supply Current
(V
DD
= 3V, V
CNTL
= 3V)
29
35
A
Control Voltage High
0.7xV
DD
V
Control Voltage Low
0.3xV
DD
V
Control Voltage
Signal Path
CTRL = CMOS or TTL High
RFC to RF1
CTRL = CMOS or TTL Low
RFC to RF2
Table 5. Control Logic Truth Table
The control logic input pin (CTRL) is typically
driven by a 3-volt CMOS logic level signal, and
has a threshold of 50% of V
DD
. For flexibility to
support systems that have 5-volt control logic driv-
ers, the control logic input has been designed to
handle a 5-volt logic HIGH signal. (A minimal cur-
rent will be sourced out of the V
DD
pin when the
control logic input voltage level exceeds V
DD
.)
Absolute Maximum Ratings are those values
listed in the above table. Exceeding these values
may cause permanent device damage.
Functional operation should be restricted to the
limits in the DC Electrical Specifications table.
Exposure to absolute maximum ratings for
extended periods may affect device reliability.
Product Specification
PE4230
Page 3 of 7
2005 Peregrine Semiconductor Corp. All rights reserved.
Document No. 70-0029-02
www.psemi.com
Typical Performance Data @ 25 C (Unless Otherwise Noted)
Figure 4. Insertion Loss RFC to RF1
Figure 5. Input 1dB Compression Point
Figure 6. Insertion Loss RFC to RF2
Figure 7. Isolation RFC to RF1
-2
-1.6
-1.2
-0.8
-0.4
0
0
500
1000
1500
2000
2500
3000
I
n
s
e
rt
i
o
n
L
o
s
s

(d
B
)
Frequency (MHz)
-40
8C
85
8
C
25
8C
0
10
20
30
40
500
1000
1500
2000
2500
3000
1d
B
C
o
m
p
r
e
s
s
i
o
n

P
o
i
n
t
(
d
B
m
)
Frequency (MHz)
-2
-1.6
-1.2
-0.8
-0.4
0
0
500
1000
1500
2000
2500
3000
In
s
e
rt
i
o
n
L
o
s
s

(d
B
)
Frequency (MHz)
-40
8C
85
8
C
25
8C
-100
-80
-60
-40
-20
0
0
500
1000
1500
2000
2500
3000
I
s
ol
at
i
o
n (
d
B
)

Frequency (MHz)
T = -40 C to 85 C
T = -40 C to 85 C
Product Specification
PE4230
Page 4 of 7
2005 Peregrine Semiconductor Corp. All rights reserved.
Document No. 70-0029-02
UltraCMOSTM RFIC Solutions
Typical Performance Data @ 25C
Figure 8. Isolation RFC to RF2
Figure 9. Isolation RF1 to RF2, RF2 to RF1
Figure 10. Return Loss RFC
Figure 11. Return Loss RF1, RF2
-100
-80
-60
-40
-20
0
0
500
1000
1500
2000
2500
I
s
ol
at
i
o
n (
d
B
)

Frequency (MHz)
-100
-80
-60
-40
-20
0
0
500
1000
1500
2000
2500
3000
I
s
ol
at
i
o
n
(
d
B
)

Frequency (MHz)
RF1
RF2
-40
-30
-20
-10
0
0
500
1000
1500
2000
2500
3000
Re
t
u
r
n
L
o
s
s

(
d
B
)
Frequency (MHz)
-40
-30
-20
-10
0
0
500
1000
1500
2000
2500
R
e
t
u
rn

L
o
s
s
(d
B
)
Frequency (MHz)
RF1
RF2
Product Specification
PE4230
Page 5 of 7
2005 Peregrine Semiconductor Corp. All rights reserved.
Document No. 70-0029-02
www.psemi.com
Evaluation Kit
The SPDT Switch Evaluation Kit board was
designed to ease customer evaluation of the
PE4230 SPDT switch. The RF common port is
connected through a 50
transmission line to the
top left SMA connector, J1. Port 1 and Port 2 are
connected through 50
transmission lines to the
top two SMA connectors on the right side of the
board, J3 and J4. A through transmission line
connects SMA connectors J6 and J8. This
transmission line can be used to estimate the loss
of the PCB over the environmental conditions
being evaluated.

The board is constructed of a two metal layer FR4
material with a total thickness of 0.031". The
bottom layer provides ground for the RF
transmission lines. The transmission lines were
designed using a coplanar waveguide with ground
plane model using a trace width of 0.030", trace
gaps of 0.007", dielectric thickness of 0.028",
metal thickness of 0.0014" and
r
of 4.4.

J2 provides a means for controlling DC and digital
inputs to the device. Starting from the lower left
pin, the second pin to the right (J2-3) is connected
to the device CNTL input. The fourth pin to the
right (J2-7) is connected to the device V
DD
input.
A decoupling capacitor (100 pF) is provided on
both CNTL and V
DD
traces. It is the responsibility
of the customer to determine proper supply
decoupling for their design application. Removing
these components from the evaluation board has
not been shown to degrade RF performance.
Figure 12. Evaluation Board Layouts
Figure 13. Evaluation Board Schematic
Peregrine Specification 102/0035
Peregrine Specification 101/0037