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AMMC-6440 PDF预览

AMMC-6440

更新时间: 2024-02-28 02:18:59
品牌 Logo 应用领域
安捷伦 - AGILENT 射频和微波射频放大器微波放大器功率放大器
页数 文件大小 规格书
8页 430K
描述
37 - 42 GHz Power Amplifier

AMMC-6440 技术参数

是否Rohs认证: 符合生命周期:Active
包装说明:0.100 X 0.069 INCH, DIEReach Compliance Code:compliant
风险等级:5.1特性阻抗:50 Ω
构造:COMPONENT增益:12 dB
最大输入功率 (CW):23 dBm最大工作频率:42000 MHz
最小工作频率:37000 MHz射频/微波设备类型:WIDE BAND MEDIUM POWER
Base Number Matches:1

AMMC-6440 数据手册

 浏览型号AMMC-6440的Datasheet PDF文件第1页浏览型号AMMC-6440的Datasheet PDF文件第3页浏览型号AMMC-6440的Datasheet PDF文件第4页浏览型号AMMC-6440的Datasheet PDF文件第5页浏览型号AMMC-6440的Datasheet PDF文件第6页浏览型号AMMC-6440的Datasheet PDF文件第7页 
[1]  
AMMC-6440 DC Specifications/Physical Properties  
Symbol  
Parameters and Test Conditions  
Units  
Min.  
Typ.  
Max.  
Id  
Drain Supply Current  
mA  
950  
1050  
(under any RF power drive and temperature)  
(Vd=5.5 V, Vg set for Id Typical)  
Vg  
Gate Supply Operating Voltage  
(Id(Q) = 950 (mA))  
V
-0.85  
-0.7  
6.ꢀ  
-0.65  
[2]  
Thermal Resistance  
°C/W  
θch-b  
(Backside temperature, Tb = 25°C)  
Notes:  
1. Ambient operational temperature T =25°C unless otherwise noted.  
A
2. Channel-to-backside Thermal Resistance (θ ) = 7.5°C/W at T  
(T ) = 100°C as measured using infrared microscopy. Thermal Resistance at  
c
ch-b  
channel  
backside temperature (T ) = 25°C calculated from measured data.  
b
[3, 4, 5]  
AMMC-6440 RF Specifications  
T = 25°C, V =5.5V, I  
950 mA, Z =50 Ω  
A
d
d(Q)=  
o
Symbol Parameters and Test Conditions  
Units  
dB  
Minimum  
Typical Maximum  
Sigma  
0.5  
Gain  
P-1dB  
P-3dB  
OIP3  
Small-signal Gain[ꢀ]  
12  
26  
1ꢀ  
Output Power at 1dB Gain Compression  
Output Power at 3dB Gain Compression  
dBm  
dBm  
dBm  
28  
0.39  
0.36  
0.86  
28.5  
38  
Third Order Intercept Point;  
f=100MHz; Pin=-20dBm  
RLin  
Input Return Loss[ꢀ]  
Output Return Loss[ꢀ]  
dB  
dB  
dB  
-16  
-18  
-ꢀ7  
0.70  
0.71  
3.00  
RLout  
Isolation Min. Reverse Isolation  
Notes:  
3. Small/Large -signal data measured in wafer form T = 25°C.  
A
ꢀ. 100% on-wafer RF test is done at frequency = 38, ꢀ0, and ꢀ2 GHz. Statistics based on 1500 part sample  
5. Specifications are derived from measurements in a 50 test environment. Aspects of the amplifier performance may be improved over a more  
narrow bandwidth by application of additional conjugate, linearity, or power matching.  
LSL  
LSL  
LSL  
27  
28  
12  
12.5  
13  
13.5  
1ꢀ  
1ꢀ.5  
15  
26  
27  
28  
29  
Gain at 40 GHz  
P-1dB at 40 GHz  
P-1dB at 42 GHz  
Typical distribution of Small Signal Gain and Output Power @P-1dB. Based on 1500 part sampled  
over several production lots.  
2

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