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SKY65052-372LF Datasheet(PDF) 3 Page - Skyworks Solutions Inc.

Part No. SKY65052-372LF
Description  0.45-6.0 GHz Low Noise Transistor
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Maker  SKYWORKS [Skyworks Solutions Inc.]
Homepage  http://www.skyworksinc.com
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SKY65052-372LF Datasheet(HTML) 3 Page - Skyworks Solutions Inc.

   
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PRELIMINARY DATA SHEET • SKY65052-372LF LOW NOISE TRANSISTOR
Skyworks Solutions, Inc. • Phone [781] 376-3000 • Fax [781] 376-3100 • sales@skyworksinc.com • www.skyworksinc.com
201088A • Skyworks Proprietary and Confidential information • Products and Product Information are Subject to Change Without Notice • June 2, 2009
3
Table 4. SKY65052-372LF Electrical Specifications
(TOP = +25
°C, Characteristic Impedance [ZO] = 50 Ω, VDD = 5 V, IDD = 55 mA, Parameters Include Recommended Matching Networks,
Unless Otherwise Noted)
Parameter
Symbol
Test Condition
Min
Typical
Max
Units
Saturated drain current
IDSS
VDS = 6 V, VGS = 0 V
80
100
120
mA
Pinchoff voltage
VP
VDS = 6 V, IDS = 2.5% of
IDSS
–0.95
–0.80
–0.65
V
Transconductance
gM
VDS = 6 V,
gM =
ΔIDS/ΔVGS,
measured at IDS = 20% of
IDSS
80
120
160
mS
Gate leakage current
IGSS
VGD = VGS = –3 V
1
200
μA
Noise Figure
NF1 (Note 1)
NF2 (Note 2)
0.60
0.85
dB
dB
Gain
|S21|
16
dB
Input return loss
|S11|
–15
dB
Output return loss
|S22|
–9
dB
Reverse isolation
|S12|
–25
dB
3rd Order Output Intercept Point
OIP3
POUT = +5 dBm/tone,
1 MHz spacing
+34
dBm
3rd Order Input Intercept Point
IIP3
POUT = +5 dBm/tone,
1 MHz spacing
+18
dBm
1 dB Output Compression Point
OP1dB
+19
dBm
1 dB Input Compression Point
IP1dB
+4
dBm
Stability
Unconditionally stable up
to 18 GHz
>1
K
Note 1: NF of device only. Input RF connector, board, and input matching network loss de-embedded from measurement.
Note 2: NF of device and matching network. Input RF connector and board loss de-embedded from measurement.
Typical Performance Characteristics
(TOP = +25
°C, Characteristic Impedance [ZO] = 50 Ω, VDD = 5 V, IDD = 55 mA, Includes Recommended 2.4 GHz Matching Network, Unless
Otherwise Noted)
14
15
16
17
13
12
18
2000
2200
2400
2600
2800
3000
Frequency (MHz)
Figure 3. Small Signal Gain vs Frequency Over Temperature
(PIN = –20 dBm)
–14
–10
–6.0
–2.0
–18
2.0
2000
2200
2400
2600
2800
3000
Frequency (MHz)
Figure 4. Input Return Loss vs Frequency Over Temperature
(PIN = –20 dBm)


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