AD600JRZ-R7

AD600JRZ-R7
Mfr. #:
AD600JRZ-R7
Hersteller:
Analog Devices Inc.
Beschreibung:
Differential Amplifiers DUAL VARIABLE GAIN AMP IC
Lebenszyklus:
Neu von diesem Hersteller.
Datenblatt:
AD600JRZ-R7 Datenblatt
Die Zustellung:
DHL FedEx Ups TNT EMS
Zahlung:
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ECAD Model:
Mehr Informationen:
AD600JRZ-R7 Mehr Informationen AD600JRZ-R7 Product Details
Produkteigenschaft
Attributwert
Hersteller
ADI
Produktkategorie
Linear – Verstärker – Instrumentierung, OP-Verstärker, Pufferverstärker
Serie
AD600
Produkt
Verstärker mit variabler Verstärkung
Verpackung
Spule
Gewichtseinheit
0.023492 oz
Montageart
SMD/SMT
Anzahl der Kanäle
2 Channel
Verstärker-Typ
VGA
Maximale-Betriebstemperatur
+ 70 C
Mindest-Betriebstemperatur
0 C
Betriebs-Versorgungs-Strom
14 mA
Versorgungsspannung-Max
5.25 V
Versorgungsspannung-Min
- 4.75 V
Paket-Koffer
SOIC-16
Ib-Input-Bias-Current
1 uA at +/- 5 V
GBP-Gain-Bandwidth-Produkt
35 MHz
Spannungsverstärkung-dB
41.07 dB
Maximaler Eingangswiderstand
102 Ohms at +/- 5 V
Tags
AD600JRZ, AD600JR, AD600J, AD600, AD60, AD6
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.
Our experienced sales team and tech support team back our services to satisfy all our customers.

we buy and manage excess electronic components, including excess inventory identified for disposal.
Email us if you have excess stock to sell.

Email: [email protected]

Step1: Vacuum Packaging with PL
Step1:
Vacuum Packaging with PL
Step2: Anti-Static Bag
Step2:
Anti-Static Bag
Step3: Packaging Boxes
Step3:
Packaging Boxes
***roFlash
SP Amp Variable Gain Amp Dual ±5.25V 16-Pin SOIC W T/R
***i-Key
IC OPAMP VGA 2 CIRCUIT 16SOIC
***ark
VARIABLE GAIN AMP IC, REEL7
***log Devices
The AD600/AD602 dual channel, low noise, variable gain amplifiers are optimized for use in ultrasound imaging systems, but are applicable to any application requiring precise gain, low noise and distortion, and wide bandwidth. Each independent channel provides a gain of 0 dB to +40 dB in the AD600 and -10 dB to +30 dB in the AD602. The lower gain of the AD602 results in an improved signal-to-noise ratio (SNR) at the output. However, both products have the same 1.4 nV/√Hz input noise spectral density. The decibel gain is directly proportional to the control voltage, accurately calibrated, and supply and temperature-stable. To achieve the difficult performance objectives, a proprietary circuit form, the X-AMP®, was developed. Each channel of the X-AMP comprises a variable attenuator of 0 dB to -42.14 dB followed by a high speed fixed gain amplifier. In this way, the amplifier never has to cope with large inputs, and can benefit from the use of negative feedback to precisely define the gain and dynamics. The attenuator is realized as a 7-stage R-2R ladder network having an input resistance of 100 W, laser trimmed to ±2%. The attenuation between tap points is 6.02 dB; the gain-control circuit provides continuous interpolation between these taps. The resulting control function is linear in dB. The gain-control interfaces are fully differential, providing an input resistance of ~15 M W and a scale factor of 32 dB/V (that is, 31.25 mV/dB) defined by an internal voltage reference. The response time of this interface is less than 1 µs. Each channel also has an independent gating facility that optionally blocks signal transmission and sets the dc output level to within a few millivolts of the output ground. The gating control input is TTL- and CMOS-compatible. The maximum gain of the AD600 is 41.07 dB, and the maximum gain of the AD602 is 31.07 dB; the -3 dB bandwidth of both models is nominally 35 MHz, essentially independent of the gain. The SNR for a 1 V rms output and a 1 MHz noise bandwidth is typically 76 dB for the AD600 and 86 dB for the AD602. The amplitude response is flat within ±0.5 dB from 100 kHz to 10 MHz; over this frequency range, the group delay varies by less than ±2 ns at all gain settings. Each amplifier channel can drive 100 W load impedances with low distortion. For example, the peak specified output is ±2.5 V minimum into a 500 W load, or ±1 V into a 100 W load. For a 200 W load in shunt with 5 pF, the total harmonic distortion for a ±1 V sinusoidal output at 10 MHz is typically -60 dBc. The AD600J/AD602J are specified for operation from 0°C to 70°C and are available in 16-lead PDIP (N) and 16-lead SOIC packages. The AD600A/AD602A are specified for operation from -40°C to +85°C and are available in 16-lead CERDIP (Q) and 16-lead SOIC packages. The AD600S/AD602S are specified for operation from -55°C to +125°C, are available in a 16-lead CERDIP (Q) package, and are MIL-STD-883 compliant. The AD600S/AD602S are also available under DESC SMD 5962-94572. AD600 - Gain Range: 0 dB to 40 dB AD602 - Gain Range: -10 dB to + 30 dB
Amplifiers ADI SLP
Amplifier ICs
Analog Devices Amplifier ICs focus on amplifiers that deliver high performance and high value. ADI combines circuit design, manufacturing process innovation, and applications expertise to create products that simplify the signal-conditioning design.
Teil # Mfg. Beschreibung Aktie Preis
AD600JRZ-R7
DISTI # V72:2272_06209256
Analog Devices IncSP Amp Variable Gain Amp Dual ±5.25V 16-Pin SOIC W T/R
RoHS: Compliant
395
  • 250:$31.9400
  • 100:$33.6500
  • 25:$37.4700
  • 10:$39.0000
  • 1:$42.2100
AD600JRZ-R7
DISTI # AD600JRZ-R7TR-ND
Analog Devices IncIC OPAMP VGA 35MHZ 16SOIC
RoHS: Compliant
Min Qty: 400
Container: Tape & Reel (TR)
Temporarily Out of Stock
  • 400:$25.5345
AD600JRZ-R7
DISTI # 31675237
Analog Devices IncSP Amp Variable Gain Amp Dual ±5.25V 16-Pin SOIC W T/R
RoHS: Compliant
395
  • 1:$42.2100
AD600JRZ
DISTI # 584-AD600JRZ
Analog Devices IncSpecial Purpose Amplifiers DUAL VARIABLE GAIN AMP IC
RoHS: Compliant
50
  • 1:$31.7000
  • 5:$30.6300
  • 10:$29.5400
  • 25:$28.1200
  • 50:$27.1000
  • 100:$25.6500
  • 250:$23.7100
AD600JRZ-RL
DISTI # 584-AD600JRZ-R
Analog Devices IncSpecial Purpose Amplifiers DUAL VARIABLE GAIN AMP IC
RoHS: Compliant
0
  • 1000:$21.5700
AD600JRZ-R7
DISTI # 584-AD600JRZ-R7
Analog Devices IncSpecial Purpose Amplifiers DUAL VARIABLE GAIN AMP IC
RoHS: Compliant
0
  • 400:$22.4200
AD600JR-REEL7
DISTI # 584-AD600JR-R7
Analog Devices IncSpecial Purpose Amplifiers DUAL VARIABLE GAIN AMP IC
RoHS: Not compliant
0
    Bild Teil # Beschreibung
    AD600JRZ

    Mfr.#: AD600JRZ

    OMO.#: OMO-AD600JRZ

    Special Purpose Amplifiers DUAL VARIABLE GAIN AMP IC
    AD600SQ/883B

    Mfr.#: AD600SQ/883B

    OMO.#: OMO-AD600SQ-883B-ANALOG-DEVICES-INC-ADI

    Differential Amplifiers DUAL VARIABLE GAIN AMP IC
    AD600ARZ-R7

    Mfr.#: AD600ARZ-R7

    OMO.#: OMO-AD600ARZ-R7-ANALOG-DEVICES-INC-ADI

    Differential Amplifiers DUAL VARIABLE GAIN AMP IC
    AD600JRZ-R7

    Mfr.#: AD600JRZ-R7

    OMO.#: OMO-AD600JRZ-R7-ANALOG-DEVICES-INC-ADI

    Differential Amplifiers DUAL VARIABLE GAIN AMP IC
    AD600JNZ

    Mfr.#: AD600JNZ

    OMO.#: OMO-AD600JNZ-ANALOG-DEVICES-INC-ADI

    IC OPAMP VGA 35MHZ 16DIP
    AD60003X

    Mfr.#: AD60003X

    OMO.#: OMO-AD60003X-1190

    Neu und Original
    AD60003XGA1313.1

    Mfr.#: AD60003XGA1313.1

    OMO.#: OMO-AD60003XGA1313-1-1190

    Neu und Original
    AD6001R

    Mfr.#: AD6001R

    OMO.#: OMO-AD6001R-1190

    Neu und Original
    AD600ANZ

    Mfr.#: AD600ANZ

    OMO.#: OMO-AD600ANZ-1190

    Neu und Original
    AD600SQ883B

    Mfr.#: AD600SQ883B

    OMO.#: OMO-AD600SQ883B-1190

    Neu und Original
    Verfügbarkeit
    Aktie:
    Available
    Auf Bestellung:
    2000
    Menge eingeben:
    Der aktuelle Preis von AD600JRZ-R7 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
    33,63 $
    33,63 $
    10
    31,95 $
    319,48 $
    100
    30,27 $
    3 026,70 $
    500
    28,59 $
    14 292,75 $
    1000
    26,90 $
    26 904,00 $
    Aufgrund von Halbleiterknappheit ab 2021 ist der untere Preis der Normalpreis vor 2021. Bitte senden Sie eine Anfrage zur Bestätigung.
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