AD8302ARUZ-RL7

AD8302ARUZ-RL7
Mfr. #:
AD8302ARUZ-RL7
Hersteller:
Analog Devices Inc.
Beschreibung:
Logarithmic Amplifiers 2.7GHz RF/IF GAIN PHASE DETECTOR
Lebenszyklus:
Neu von diesem Hersteller.
Datenblatt:
AD8302ARUZ-RL7 Datenblatt
Die Zustellung:
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ECAD Model:
Mehr Informationen:
AD8302ARUZ-RL7 Mehr Informationen AD8302ARUZ-RL7 Product Details
Produkteigenschaft
Attributwert
Tags
AD8302ARUZ-R, AD8302ARUZ, AD8302ARU, AD8302AR, AD8302A, AD8302, AD830, AD83, AD8
Service Guarantees

We guarantee 100% customer satisfaction.

Quality Guarantees

We provide 90-360 days warranty.

If the items you received were not in perfect quality, we would be responsible for your refund or replacement, but the items must be returned in their original condition.
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Step1: Vacuum Packaging with PL
Step1:
Vacuum Packaging with PL
Step2: Anti-Static Bag
Step2:
Anti-Static Bag
Step3: Packaging Boxes
Step3:
Packaging Boxes
***et Europe
RF/IF Gain and Phase Detector 14-Pin TSSOP T/R
***ical
RF Detector 0MHz to 2700MHz 14-Pin TSSOP T/R
***i-Key
IC RF DETECT 2.7GHZ 14TSSOP
***ark
Ic,Phase/Frequency Detector,Bipolar,Tssop,14Pin,Plastic
*** Source Electronics
IC DETECT GAIN PHASE 14-TSSOP TR
***ponent Sense
87G18-AD8302ARU INTEGRATED CIRCUIT, DETE
***log Devices
The AD8302 is a fully integrated system for measuring gain/loss and phase in numerous receive, transmit, and instrumentation applications. It requires few external components and a single supply of 2.7 V–5.5 V. The ac-coupled input signals can range from –60 dBm to 0 dBm in a 50 Ω system, from low frequencies up to 2.7 GHz. The outputs provide an accurate measurement of either gain or loss over a ±30 dB range scaled to 30 mV/dB, and of phase over a 0°–180° range scaled to 10 mV/degree. Both subsystems have an output bandwidth of 30 MHz, which may optionally be reduced by the addition of external filter capacitors. The AD8302 can be used in controller mode to force the gain and phase of a signal chain toward predetermined setpoints. The AD8302 comprises a closely matched pair of demodulating logarithmic amplifiers, each having a 60 dB measurement range. By taking the difference of their outputs, a measurement of the magnitude ratio or gain between the two input signals is available. These signals may even be at different frequencies, allowing the measurement of conversion gain or loss. The AD8302 may be used to determine absolute signal level by applying the unknown signal to one input and a calibrated ac reference signal to the other. With the output stage feedback connection disabled, a comparator may be realized, using the setpoint pins MSET and PSET to program the thresholds. The signal inputs are single-ended, allowing them to be matched and connected directly to a directional coupler. Their input impedance is nominally 3 kΩ at low frequencies. The AD8302 includes a phase detector of the multiplier type, but with precise phase balance driven by the fully limited signals appearing at the outputs of the two logarithmic amplifiers. Thus, the phase accuracy measurement is independent of signal level over a wide range. The phase and gain output voltages are simultaneously available at loadable ground referenced outputs over the standard output range of 0 V to 1.8 V. The output drivers can source or sink up to 8 mA. A loadable, stable reference voltage of 1.8 V is available for precise repositioning of the output range by the user. In controller applications, the connection between the gain output pin VMAG and the setpoint control pin MSET is broken. The desired setpoint is presented to MSET and the VMAG control signal drives an appropriate external variable gain device. Likewise, the feedback path between the phase output pin VPHS and its setpoint control pin PSET may be broken to allow operation as a phase controller. The AD8302 is fabricated on Analog Devices’ proprietary, high performance 25 GHz SOI complementary bipolar IC process. It is available in a 14-lead TSSOP package and operates over a –40°C to +85°C temperature range. An evaluation board is available.
RF, Microwave & Millimeter Wave ADI SLP
Teil # Mfg. Beschreibung Aktie Preis
AD8302ARU-REEL7Analog Devices IncAnalog Circuit, 1 Func, BIPolar, PDSO14
RoHS: Not Compliant
31606
  • 1000:$22.4400
  • 500:$23.6200
  • 100:$24.5900
  • 25:$25.6500
  • 1:$27.6200
AD8302ARU-REEL7REELAnalog Devices Inc 
RoHS: Not Compliant
669
  • 1000:$22.4400
  • 500:$23.6200
  • 100:$24.5900
  • 25:$25.6500
  • 1:$27.6200
Bild Teil # Beschreibung
AD8302ARUZ-REEL

Mfr.#: AD8302ARUZ-REEL

OMO.#: OMO-AD8302ARUZ-REEL

RF Detector 2.7GHz RF/IF GAIN PHASE DETECTOR
AD8302ARU

Mfr.#: AD8302ARU

OMO.#: OMO-AD8302ARU-ANALOG-DEVICES-INC-ADI

Logarithmic Amplifiers 2.7GHz RF/IF GAIN PHASE DETECTOR
AD8302ARUZ-RL7

Mfr.#: AD8302ARUZ-RL7

OMO.#: OMO-AD8302ARUZ-RL7-ANALOG-DEVICES-INC-ADI

Logarithmic Amplifiers 2.7GHz RF/IF GAIN PHASE DETECTOR
AD8302ARUZ

Mfr.#: AD8302ARUZ

OMO.#: OMO-AD8302ARUZ-ANALOG-DEVICES-INC-ADI

Logarithmic Amplifiers 2.7GHz RF/IF GAIN PHASE DETECTOR
AD8302AR

Mfr.#: AD8302AR

OMO.#: OMO-AD8302AR-1190

Neu und Original
AD8302ARU-REEL

Mfr.#: AD8302ARU-REEL

OMO.#: OMO-AD8302ARU-REEL-1190

Analog Circuit, 1 Func, BIPolar, PDSO14
AD8302ARU-REEL7

Mfr.#: AD8302ARU-REEL7

OMO.#: OMO-AD8302ARU-REEL7-ANALOG-DEVICES

IC RF DETECT 2.7GHZ 14TSSOP
AD8302ARUZ-REEL7

Mfr.#: AD8302ARUZ-REEL7

OMO.#: OMO-AD8302ARUZ-REEL7-1190

Neu und Original
AD8302ARUZ-RL7 AD8302ARU

Mfr.#: AD8302ARUZ-RL7 AD8302ARU

OMO.#: OMO-AD8302ARUZ-RL7-AD8302ARU-1190

Neu und Original
AD8302AUR

Mfr.#: AD8302AUR

OMO.#: OMO-AD8302AUR-1190

Neu und Original
Verfügbarkeit
Aktie:
Available
Auf Bestellung:
3000
Menge eingeben:
Der aktuelle Preis von AD8302ARUZ-RL7 dient nur als Referenz. Wenn Sie den besten Preis erhalten möchten, senden Sie bitte eine Anfrage oder senden Sie eine direkte E-Mail an unser Verkaufsteam [email protected]
Referenzpreis (USD)
Menge
Stückpreis
ext. Preis
1
24,27 $
24,27 $
10
23,06 $
230,56 $
100
21,84 $
2 184,30 $
500
20,63 $
10 314,75 $
1000
19,42 $
19 416,00 $
Aufgrund von Halbleiterknappheit ab 2021 ist der untere Preis der Normalpreis vor 2021. Bitte senden Sie eine Anfrage zur Bestätigung.
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