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50 MHz to 4 GHz Integrated Circuit Chip TruPwr Detector ADL5501AKSZ

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Anterwell Technology Ltd.

50 MHz to 4 GHz Integrated Circuit Chip TruPwr Detector ADL5501AKSZ

Country/Region china
City & Province shenzhen guangdong
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Product Details

 

50 MHz to 4 GHz

TruPwr™ Detector

 

FEATURES

True rms response

Excellent temperature stability

Up to 30 dB input dynamic range at 4 GHz

50 Ω input impedance

1.25 V rms, 15 dBm, maximum input

Single-supply operation: 2.7 V to 5.5 V

Low power: 3.3 mW at 3 V supply

RoHS-compliant

 

APPLICATIONS

Measurement of CDMA2000-, W-CDMA-, and QPSK-/QAM  based OFDM, and other complex modulation waveforms RF transmitter or receiver power

measurement      

 

 

Parameter Rating
Supply Voltage VS 5.5 V
VRMS 0 V, VS
RFIN 1.25 V rms
Equivalent Power, re 50 Ω 15 dBm
Internal Power Dissipation 80 mW
θJA (SC-70) 494°C/W
Maximum Junction Temperature125°C
Operating Temperature Range  −40°C to +85°C
Storage Temperature Range −65°C to +150°C

 

 

 

 

GENERAL DESCRIPTION 

The ADL5501 is a mean-responding power detector for use in high frequency receiver and transmitter signal chains from 50 MHz to 4 GHz. It is easy to apply, requiring only a single supply between 2.7 V and 5.5 V and a power supply decoupling capacitor. The input is internally ac-coupled and has a nominal input impedance of 50 Ω. The output is a linear-responding dc voltage with a conversion gain of 6.3 V/V rms at 900 MHz. The ADL5501 is intended for true power measurement of simple and complex waveforms. The device is particularly useful for measuring high crest factor (high peak-to-rms ratio) signals, such as CDMA-, CDMA2000-, W-CDMA-, and QPSK-/QAMbased OFDM waveforms. The on-chip modulation filter provides adequate averaging for most waveforms. The on-chip, 100 Ω series resistance at the output, combined with an external shunt capacitor, creates a low-pass filter response that reduces the residual ripple in the dc output voltage. For more complex waveforms, an external capacitor at the FLTR pin can be used for supplementary signal demodulation. The ADL5501 offers excellent temperature stability across a 30 dB range and near 0 dB measurement error across temperature over the top portion of the dynamic range. In addition to its temperature stability, the ADL5501 offers low process variations that further reduce calibration complexity. The ADL5501 operates from −40°C to +85°C and is available in a small 6-lead SC-70 package. It is fabricated on a proprietary high fT silicon bipolar process.

 

 

 

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