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LTC5505-2ES5#TRMPBF

产品描述IC RF DETECT 300MZ-3.5GHZ TSOT23
产品类别无线/射频/通信    射频和微波   
文件大小34KB,共2页
制造商Linear ( ADI )
官网地址http://www.analog.com/cn/index.html
标准
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LTC5505-2ES5#TRMPBF概述

IC RF DETECT 300MZ-3.5GHZ TSOT23

LTC5505-2ES5#TRMPBF规格参数

参数名称属性值
Brand NameLinear Technology
是否Rohs认证符合
厂商名称Linear ( ADI )
零件包装代码SOT
针数5
制造商包装代码S5
Reach Compliance Codecompliant
ECCN代码EAR99
特性阻抗50 Ω
构造COMPONENT
最大输入功率 (CW)12 dBm
输入功率最小值(CW)-32 dBm
JESD-609代码e3
最大工作频率3500 MHz
最小工作频率300 MHz
最高工作温度85 °C
最低工作温度-40 °C
输出极性POSITIVE
射频/微波设备类型LINEAR DETECTOR
端子面层Matte Tin (Sn)

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September 12, 2002
DC391A DEMO BOARD QUICK START GUIDE
INTRODUCTION
The DC391A demo board is set up to evaluate the LTC5505-1 and LTC5505-2 RF power detectors
performance. Demo board DC391A-A contains LTC5505-1 IC, and DC391A-A contains LTC5505-2
IC. LTC5505-1 and LTC5505-2 are RF power detector ICs with integrated output buffer and voltage
reference. The LTC5505 converts an RF input signal at pin 1(RF) to a DC voltage at pin 4(Vout). The
RF input frequency range is 300MHz to 2700MHz. Maximum input power is 18dBm. The output
voltage at Vout will start at an initial DC value of typically 260mV +/- 90 mV. When the RF signal is
applied, the output voltage will increase.
Additional solder pads have been added for evaluation of input tuning techniques. R1 and C5 are not
included on the board and are not required for typical applications. R2 is included on the board but again
is not required for typical applications. C1 is used for DC isolation of the LTC5505 RF input pin 1.
In typical applications a logic HIGH on the SHDN pin 3 enables the part.
Follow the procedures outlined below with connections as shown on the attached diagram for proper
operation.
1.
Connect the input DC power supply (2.7V to 6V) to E1. Connect the power supply ground to E3.
Connect J1 to the RF signal generator via an SMA cable. It is common practice to include a 3dB pad
to minimize reflections back into the signal generator.
2.
The part can be shutdown via switch SW1. When SW1 is connected to ground, the part will be in
shutdown. When SW1 is connected to VCC via the 22k resistor, the part will be enabled. The
shutdown terminal E4 can also be controlled by a pulse generator to characterize enable times from
the shutdown state. To do this, set SW1 to the enable position and connect a 50Ω termination from
E4 to ground. Connect a pulse generator to E4 via a coaxial cable.
With SW1 set to the enable position, apply an RF input signal and measure the DC voltage at E2.
3.
LTC CONFIDENTIAL
1

 
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