Product Information

DC539A

DC539A electronic component of Analog Devices

Datasheet
RF Development Tools LTC5508ESC6 - 7GHz RF Power Detector

Manufacturer: Analog Devices
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1: USD 66.4431 ea
Line Total: USD 66.44

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Pack Size: 1
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DC539A
Analog Devices

1 : USD 260.7328

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Ships to you between Mon. 06 May to Fri. 10 May

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DC539A
Analog Devices

1 : USD 103.1108

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DC539A
Analog Devices

1 : USD 162.7951

     
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September 22, 2002 DC539A DEMO BOARD QUICK START GUIDE INTRODUCTION The DC539A demo board is used to evaluate the LTC5508, RF power detector with integrated output buffer and voltage reference. The LTC5508 converts an RF input signal at pin 6 (RF) to a DC voltage at pin 3 (Vout). The RF input frequency range is 300 MHz to 6000 MHz. Maximum input power is 12 dBm. The output voltage at Vout will start at an initial DC value of typically 250mV. When the RF signal is applied the output voltage will increase. The optional 68 (R1) termination resistor is not placed on PCB. The optional C5 shunt capacitor is not installed. R2 and C5 forming a low pass filter at Vout. Capacitor C1 is 18 pF for high frequency tests and evaluations, 3000 to 7000 MHz. For frequencies at 300 to 3000 MHz a 51 pF value is suggested. A logic high at pin 1 enables the part. It is controlled by a jumper JP1. The DC539A demo board is easily set up for evaluating the LTC5508 RF power detector performance. Follow the procedures outlined below and connections 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 or E5. Connect J1 to the RF signal generator via coaxial cable with an SMA connector. It is common practice to include a 3dB pad to minimize reflections back into the signal generator. 2. The part can be shutdown via jumper switch JP1. When JP1 is connected to ground the part will be in shutdown. When JP1 is connected to VCC via the 22k resistor the part will be enabled. The shutdown terminal E4 can also be controlled externally by a pulse, or function generator, to characterize enable times from the shutdown state. To do this set JP1 to the enable position. Connect a 50 termination from E4 to ground. Connect a pulse generator to E4 via a coaxial cable. 3. With JP1 set to the enable position, apply an RF input signal and measure the Vout DC voltage at E2. LTC CONFIDENTIAL 1 DC DC Power Voltmeter Supply GND V+ Plus Minus Function Generator GND Vcc Vout Shdn JP1 GND RF in SMA RF Signal Generator DC539A Demo Board Connection Diagram LTC CONFIDENTIAL 2

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9027.10.00 Instruments and apparatus for physical or chemical analysis (eg, polarimeters, refractometers, spectrometers, gas or smoke analysis apparatus); instruments and apparatus for measuring or checking viscosity, porosity, expansion, surface tension or the like; instruments and apparatus for measuring or checking quantities of heat, sound or light (including exposure meters); microtomes Free

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9030.31.00 Oscilloscopes, spectrum analysers and other instruments and apparatus for measuring or checking electrical quantities, excluding meters of 9028; instruments and apparatus for measuring or detecting alpha, beta, gamma, x-ray, cosmic or other ionising radiations.
Other instruments and apparatus, for measuring or checking voltage, current, resistance or power Multimeters without a recording device Free

8473.30.00 Parts and accessories of the machines of 8471 AUTOMATIC DATA PROCESSING MACHINES AND UNITS THEREOF; MAGNETIC OR OPTICAL READERS, MACHINES FOR TRANSCRIBING DATA ONTO DATA MEDIA IN CODED FORM AND MACHINES FOR PROCESSING SUCH DATA, NOT ELSEWHERE SPECIFIED OR INCLUDED:
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