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RFMA1415-0.5W-Q7 PDF预览

RFMA1415-0.5W-Q7

更新时间: 2022-12-21 02:46:13
品牌 Logo 应用领域
EXCELICS /
页数 文件大小 规格书
4页 146K
描述
14.40- 15.40GHz High Gain Surface-Mounted PA

RFMA1415-0.5W-Q7 数据手册

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RFMA1415-0.5W-Q7  
UPDATED: 04-24-2008  
14.40– 15.40GHz High Gain Surface-Mounted PA  
FEATURES  
14.40 – 15.40GHz Operating Frequency Range  
26.5dBm Output Power @1dB Compression  
29.0dB Typical Power Gain @1dB Compression  
-41dBc OIMD3 @Pout 16.5dBm/tone  
7X7mm QFN Package  
APPLICATIONS  
Point-to-point and point-to-multipoint radio  
Military Radar Systems  
ELECTRICAL CHARACTERISTICS (TB=25 °C)  
SYMBOL  
PARAMETER/TEST CONDITIONS  
MIN  
14.4  
25.5  
26.0  
TYP  
MAX  
UNITS  
GHz  
dBm  
dB  
F
Operating Frequency Range  
15.4  
P1dB  
Output Power @1dB Gain Compression  
Gain @1dB Gain Compression  
26.5  
29.0  
G1dB  
Output 3rd Order Intermodulation Distortion  
@f=10MHz, Pout = 16.5dBm/tone  
OIMD3  
-41  
-10  
-8  
-38  
-8  
dBc  
dB  
Input RL  
Input Return Loss  
Output RL Output Return Loss  
dB  
ID1  
ID2  
Drain Current1  
180  
400  
7
220  
460  
8
mA  
mA  
V
Drain Current1  
VD1, VD2  
VG1, VG2  
Rth  
Drain Voltage  
Gate Voltage  
-2.5  
-30  
-0.25  
V
Thermal Resistance2  
13  
oC/W  
oC  
Tb  
Operating Base Plate Temperature  
+80  
1. Recommended to bias each amplifier stage separately using a gate voltage range, starting from -2.5 to -0.3V to achieve typical current levels.  
2. Rth is mounting dependent. Measured result when used with Excelics recommended evaluation board.  
MAXIMUM RATINGS AT 25°C3,4  
SYMBOL  
CHARACTERISTIC  
ABSOLUTE  
CONTINOUS  
VD1, VD2 Drain to Source Voltage  
VG1, VG2 Gate to Source Voltage  
12V  
-5V  
8 V  
-2.5 V  
ID1, ID2  
PIN  
Drain Current  
Idss  
220, 460mA  
@ 3dB compression  
150°C  
Input Power  
20dBm  
175°C  
-65/175°C  
8.8W  
TCH  
Channel Temperature  
Storage Temperature  
Total Power Dissipation  
TSTG  
-65/150°C  
PT  
7.4W  
3. Operation beyond absolute or continuous ratings may result in permanent damage or reduction of MTTF respectively.  
4. Bias conditions must also satisfy the following equation VDS*IDS < (TCH –TB)/RTH; where TB = Temperature of Base Plate  
Specifications are subject to change without notice.  
Excelics Semiconductor, Inc. 310 De Guigne Drive, Sunnyvale, CA 94085  
Phone: 408-737-1711 Fax: 408-737-1868 Web: www.excelics.com  
page 1 of 4  
Revised May 2008  

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