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CMM0530-LC-00ST PDF预览

CMM0530-LC-00ST

更新时间: 2024-11-30 19:14:19
品牌 Logo 应用领域
MIMIX 射频微波
页数 文件大小 规格书
4页 95K
描述
Wide Band Medium Power Amplifier, 824MHz Min, 928MHz Max, PLASTIC, LCC-8

CMM0530-LC-00ST 技术参数

生命周期:ObsoleteReach Compliance Code:unknown
风险等级:5.17特性阻抗:50 Ω
构造:COMPONENT增益:24 dB
最大输入功率 (CW):10 dBm最大工作频率:928 MHz
最小工作频率:824 MHz最高工作温度:80 °C
最低工作温度:-30 °C射频/微波设备类型:WIDE BAND MEDIUM POWER
最大电压驻波比:2Base Number Matches:1

CMM0530-LC-00ST 数据手册

 浏览型号CMM0530-LC-00ST的Datasheet PDF文件第2页浏览型号CMM0530-LC-00ST的Datasheet PDF文件第3页浏览型号CMM0530-LC-00ST的Datasheet PDF文件第4页 
CMM0530-LC  
Ad va n c e d P ro d u c t In fo rm a t io n  
824 to 928 MHz  
3.0V, 30.5 dBm Multi-Mode  
Plastic LCC-8 Power Amplifier  
Ma y 1 9 9 9  
(1 of 4)  
Features  
Multi-Mode Operation as Low as 3.0V  
42% Linear Power Added Efficiency  
55% Analog Power Added Efficiency  
New Low-Cost, Plastic LCC-8 Package  
29 dB Gain  
Functional Block Diagram  
Ground Tab  
8 N/C  
V
V
1
2
g2  
Tested Under Digital Modulation  
PHEMT Material Technology  
Applications  
IS-98/AMPS Handsets  
IS-136/AMPS Cellular Handsets  
900 MHz ISM Band Products  
Wireless Local Loop Subscriber Terminals  
7 RF OUT/V  
6 RF OUT/V  
d2  
g1  
RF IN 3  
N/C 4  
d2  
5 V  
d1  
Ground Tab  
of the new Triniti DX Proamplifier family whose members  
are pin-compatible and all operate under 3.5V bias voltage. The  
CMM0530-LC is packaged in a low-cost, plastic, LCC-8 power  
package. It has low thermal impedance and low RF loss. The  
device requires minimum amount of external biasing and RF  
matching circuits.  
Description  
The CMM0530-LC is a highly efficient multi-mode  
power amplifier GaAs MMIC intended for use in portable tele-  
phone handsets and data communications products for wireless  
communications. It meets the handset requirements for cellular  
AMPS, and the CDMA and TDMA digital standards for the US  
cellular wireless communications. CMM0530-LC is a member  
Absolute Maximum Ratings  
Parameter  
Rating  
Parameter  
Rating  
Parameter  
Rating  
Drain Voltage (+V )  
+5.5 V*  
1.8 A  
+10 dBm*  
-3.0 V*  
Power Dissipation  
Thermal Resistance  
Storage Temperature  
5 W  
20°C/W  
-65°C to +150°C  
Operating Temperature  
Channel Temperature  
Soldering Temperature  
-40°C to +90°C  
150°C  
260°C for 5 Sec.  
d
Drain Current (I )  
d
RF Input Power  
DC Gate Voltage (-V )  
g
* Max (+V ) and (-V ) under linear operation. Max potential difference across the device at 1 dB gain compression point (2V + |-V |) not to exceed the minimum breakdown voltage (V ) of +12V.  
d
g
d
g
br  
Recommended Operating Conditions  
Parameter  
Typ  
Units  
Parameter  
Typ  
Units  
Drain Voltage (+V )  
d
3.0 to 4.2  
Volts  
Operating Temperature (PC Board)  
-30 to +80  
°C  
with appropriate resistor divider networks, when necessary, in  
order to adjust the quiescent currents to within 10 mA of the  
targeted values. As an example, for CDMA applications the tar-  
get quiescent current of the second FET is 120 mA, while that  
of the first is 50 mA. The total quiescent is 170 mA. It is also  
recommend that the quiescent currents be set in the following  
sequence: the second stage FET is set first, followed by the first  
stage FET. The negative supply voltages control the quiescent  
currents through each FET and, therefore, control the output  
power, adjacent channel power ratio, and the currents at full  
output power.  
Application Information  
The CMM0530-LC is a two-stage amplifier that requires  
both positive and negative power supplies for proper operation.  
It is essential that the negative supply be applied first during  
turn-on and last during turn-off. Otherwise, the device may be  
damaged.  
The CMM0530-LC can be operated over a wide range of  
positive and negative voltages to obtain various power, linearity  
and efficiency performance. However, it is important to keep  
the maximum DC power and the bias voltages within the speci-  
fied absolute maximum rating to prevent over stressing the  
device either electrically or thermally.  
The positive supply voltages are applied to Pins 5, 6 and 7.  
It is very important to provide adequate de-coupling  
between the RF and the DC signals in designing the DC bias  
circuit. Inadequate by-pass capacitance around the DC supply  
lines and inductance can compromise the adjacent channel  
power ratio (ACPR), or reduce power gain and/or create oscil-  
lations. The recommend DC by-pass capacitance and low-pass  
Design Considerations  
Biasing Negative gate voltages are necessary to set the bias  
currents of the two FET stages in the CMM0530-LC. The first  
stage gate bias voltage is applied to Vg1 (Pin 2). The second  
stage gate bias voltage is applied to Vg2 (Pin 1). It is desirable  
to use one or more DACs (digital to analog converters) along  
– Continued on Page 2 –  
3236 Scott Boulevard  
Santa Clara, California 95054  
Phone: (408) 986-5060  
Fax: (408) 986-5095  

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