Analog Devices AD602JNZ

ROHS3Compliant R-PDIP-T16 MATTE TIN Tube op amp buffer circuit 5.33mm 350nA 4.75V 35MHz
$ 18.18

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データシート & ドキュメント

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Arrow Electronics

Datasheet32ページ17年前

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Analog Devices

SHENGYU ELECTRONICS

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代替部品

Price @ 1000
$ 18.18
$ 21.43
$ 21.43
Stock
62,702
69,056
69,056
Authorized Distributors
1
1
1
Case/Package
PDIP
PDIP
PDIP
Number of Pins
16
16
16
Number of Circuits
2
2
2
Slew Rate
275 V/µs
275 V/µs
275 V/µs
Gain Bandwidth Product
35 MHz
-
-
Input Offset Voltage (Vos)
-
-
-
Power Supply Rejection Ratio (PSRR)
-
-
-
Common Mode Rejection Ratio
30 dB
30 dB
30 dB
Min Supply Voltage
-4.75 V
-
-
Max Supply Voltage
5.25 V
-
-
Operating Supply Current
14 mA
-
-

関連部品

Analog DevicesAD600JNZ
ROHS3Compliant EAR99 AD600 Tube op amp buffer circuit 20.07mm 350nA 5V 41.07dB
Analog DevicesAD600JN
Non-RoHS Compliant R-PDIP-T16 TIN LEAD Tube op amp buffer circuit 5.33mm 350nA 4.75V 35MHz
Analog DevicesAD605BN
Contains Lead Lead Tin Through Hole Variable Gain Variable Gain Amplifier 20dB 170V/mus -40C~85C 175Ohm
Texas InstrumentsLM13700N/NOPB
Dual Transconductance Amplifier with Linearizing Diodes and Buffers 16-PDIP 0 to 70
onsemiNE5517ANG
RoHS Compliant EAR99 NE5517 Tin (Sn) op amp buffer circuit 19.55mm 4mA 2mV 2000kHz
Texas InstrumentsINA2126PA
Micropower Instrumentation Amplifier Single and Dual Versions 16-PDIP

説明

Analog Devices AD602JNZの詳細は販売業者から提供されます。

ROHS3Compliant R-PDIP-T16 MATTE TIN Tube op amp buffer circuit 5.33mm 350nA 4.75V 35MHz
SP Amp Variable Gain Amp Dual ±5.25V 16-Pin PDIP N Tube
ANALOG CIRCUIT; Temperature Grade: COMMERCIAL; No. of Terminals: 16; Package Code: DIP; Package Shape: RECTANGULAR; Surface Mount: NO;
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

メーカーの別名

Analog Devicesは世界中でいくつかのブランドを持っており、販売業者が代替名として使用するかもしれません。 Analog Devices は以下の名前でも知られているかもしれません:

  • Analog Devices Inc
  • ANALOG
  • ADI
  • ANALOG DEVICE
  • ANALOG DEV
  • AD
  • ANA
  • PMI
  • Analog Devices Inc/Maxim Integrated
  • ADV
  • ADA
  • ANALOG DEVIC
  • PMI/AD
  • ANALOG DEVI
  • AD/PMI
  • STOCK
  • Analog Devices / Linear Technology
  • ANALOG INTERGRATIONS CORP
  • AD - Analog Devices
  • PRECISION MONOLITIC INC
  • ADI (Analog Devices Inc)
  • ANADEV
  • Analog Devices / Hittite
  • ANALOG DEVICES (ADI)
  • ANLOGDEVIC
  • Analog Devices Inc.
  • Maxim Analog Devices
  • Analog Devices / Maxim Integrated