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Электронный компонент: EID0910-12

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EID0910-12
UPDATED
06/14/2005
9.50-10.50 GHz 12-Watt Internally Matched Power FET
Specifications are subject to change without notice.
Excelics Semiconductor, Inc. 310 De Guigne Drive, Sunnyvale, CA 94085
page 1 of 1
Phone: 408-737-1711 Fax: 408-737-1868 Web:
www.excelics.com
Revised June 2005
YYWW
.827.010
.421
.004
.669
.105.008
.168.010
ALL DIMENSIONS IN INCHES
.125
.508.008
.442
SN
.004
.063
.024
.120 MIN
Excelics
.120 MIN

FEATURES
9.50
10.50GHz
Bandwidth
Input/Output Impedance Matched to 50 Ohms
+41 dBm Output Power at 1dB Compression
8.0 dB Power Gain at 1dB Compression
28% Power Added Efficiency
-38 dBc IM3 at Po = 30.0 dBm SCL
Hermetic Metal Flange Package
100% Tested for DC, RF, and R
TH

ELECTRICAL CHARACTERISTICS (T
a
= 25
C)
Caution! ESD sensitive device.
SYMBOL PARAMETERS/TEST
CONDITIONS
1
MIN
TYP
MAX
UNITS
P
1dB
Output Power at 1dB Compression f = 9.50-10.50GHz
V
DS
= 10 V, I
DSQ
3200mA
40 41 dBm
G
1dB
Gain at 1dB Compression f = 9.50-10.50GHz
V
DS
= 10 V, I
DSQ
3200mA
7.0 8.0 dB
G
Gain Flatness f = 9.50-10.50GHz
V
DS
= 10 V, I
DSQ
3200mA
0.6
dB
PAE
Power Added Efficiency at 1dB Compression
V
DS
= 10 V, I
DSQ
3200mA f = 9.50-10.50GHz
28 %
Id
1dB
Drain Current at 1dB Compression f = 9.50-10.50GHz
3800
4300
mA
IM3
Output 3rd Order Intermodulation Distortion
f = 10 MHz 2-Tone Test; Pout = 30.0 dBm S.C.L
2
V
DS
= 10 V, I
DSQ
65% IDSS f = 10.50GHz
-33 -38
dBc
I
DSS
Saturated Drain Current
V
DS
= 3 V, V
GS
= 0 V
6400
8000
mA
V
P
Pinch-off Voltage
V
DS
= 3 V, I
DS
= 64 mA
-1.2
-2.5
V
R
TH
Thermal Resistance
2
2.5
3.0
o
C/W
Note: 1) Tested with 50 Ohm gate resistor. 2) Overall Rth depends on case mounting.
ABSOLUTE MAXIMUM RATING
1,2
SYMBOL CHARACTERISTIC
VALUE
V
DS
Drain to Source Voltage
10 V
V
GS
Gate to Source Voltage
-3.0 V
I
DS
Drain
Current
IDSS
I
GSF
Forward Gate Current
220 mA
P
IN
Input Power
@ 3dB compression
P
T
Total Power Dissipation
50 W
T
CH
Channel
Temperature
175C
T
STG
Storage
Temperature -65/+175C
Notes: 1. Exceeding any of the above ratings may result in permanent damage.
2. Exceeding any of the above ratings may reduce MTTF below design goals.
EID0910-12