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    LMH6522 Search Results

    LMH6522 Result Highlights (2)

    Part ECAD Model Manufacturer Description Download Buy
    LMH6522SQ/NOPB Texas Instruments High Performance Quad DVGA 54-WQFN -40 to 85 Visit Texas Instruments Buy
    LMH6522SQE/NOPB Texas Instruments High Performance Quad DVGA 54-WQFN -40 to 85 Visit Texas Instruments Buy
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    LMH6522 Price and Stock

    Texas Instruments LMH6522SQE-NOPB

    IC VGAIN AMP 54WQFN
    Distributors Part Package Stock Lead Time Min Order Qty Price Buy
    DigiKey LMH6522SQE-NOPB Digi-Reel 71 1
    • 1 $22.54
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    • 100 $15.7063
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    LMH6522SQE-NOPB Cut Tape 71 1
    • 1 $22.54
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    • 100 $15.7063
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    LMH6522SQE-NOPB Reel 250
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    Texas Instruments LMH6522EVAL-NOPB

    EVAL BOARD FOR LMH6522
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    DigiKey LMH6522EVAL-NOPB Box 1 1
    • 1 $598.8
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    Texas Instruments LMH6522SQ-NOPB

    IC VGAIN AMP 54WQFN
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    DigiKey LMH6522SQ-NOPB Cut Tape 1
    • 1 $19.08
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    LMH6522SQ-NOPB Digi-Reel 1
    • 1 $19.08
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    LMH6522SQ-NOPB Reel 2,000
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    Texas Instruments LMH6522SQE/NOPB

    RF Amplifier High Perf Quad DVGA
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    Mouser Electronics LMH6522SQE/NOPB 18
    • 1 $22.54
    • 10 $18.06
    • 100 $15.71
    • 1000 $14.76
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    Rochester Electronics LMH6522SQE/NOPB 9,125 1
    • 1 $14.94
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    • 100 $14.04
    • 1000 $12.7
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    Ameya Holding Limited LMH6522SQE/NOPB 3,771
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    Texas Instruments LMH6522EVAL/NOPB

    Amplifier IC Development Tools LMH6522 Eval Mod
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    Mouser Electronics LMH6522EVAL/NOPB 3
    • 1 $663.65
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    LMH6522 Datasheets (5)

    Part ECAD Model Manufacturer Description Curated Datasheet Type PDF
    LMH6522EVAL/NOPB Texas Instruments Development Boards, Kits, Programmers - Evaluation Boards - Op Amps - BOARD EVAL FOR LMH6522 Original PDF
    LMH6522SQ Texas Instruments LMH6522 - IC TELECOM, CELLULAR, RF AND BASEBAND CIRCUIT, QCC54, 10 X 5.50 MM, 0.80 MM HEIGHT, 0.50 MM PITCH, LLP-54, Cellular Telephone Circuit Original PDF
    LMH6522SQE Texas Instruments LMH6522 - IC TELECOM, CELLULAR, RF AND BASEBAND CIRCUIT, QCC54, 10 X 5.50 MM, 0.80 MM HEIGHT, 0.50 MM PITCH, LLP-54, Cellular Telephone Circuit Original PDF
    LMH6522SQE/NOPB Texas Instruments LMH6522 - High Performance Quad DVGA 54-WQFN -40 to 85 Original PDF
    LMH6522SQ/NOPB Texas Instruments LMH6522 - High Performance Quad DVGA 54-WQFN -40 to 85 Original PDF

    LMH6522 Datasheets Context Search

    Catalog Datasheet MFG & Type Document Tags PDF

    Untitled

    Abstract: No abstract text available
    Text: LMH6522 www.ti.com SNOSB53D – JULY 2011 – REVISED MARCH 2013 LMH6522 High Performance Quad DVGA Check for Samples: LMH6522 • OIP3: 49dBm @ 200MHz Noise Figure: 8.5dB Voltage Gain: 26dB 1dB Gain Steps −3dB Bandwidth of 1400 MHz Gain Step Accuracy: 0.2 dB


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    LMH6522 SNOSB53D LMH6522 49dBm 200MHz PDF

    L6522

    Abstract: No abstract text available
    Text: LMH6522 LMH6522 High Performance Quad DVGA Literature Number: SNOSB53B LMH6522 High Performance Quad DVGA General Description Features The LMH6522 contains four, high performance, digitally controlled variable gain amplifiers DVGA . It has been designed for use in narrowband and broadband IF sampling applications. Typically, the LMH6522 drives a high performance ADC


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    LMH6522 LMH6522 SNOSB53B L6522 PDF

    l6522

    Abstract: No abstract text available
    Text: LMH6522 High Performance Quad DVGA General Description Features The LMH6522 contains four, high performance, digitally controlled variable gain amplifiers DVGA . It has been designed for use in narrowband and broadband IF sampling applications. Typically, the LMH6522 drives a high performance ADC


    Original
    LMH6522 LMH6522 l6522 PDF

    Untitled

    Abstract: No abstract text available
    Text: LMH6522 www.ti.com SNOSB53D – JULY 2011 – REVISED MARCH 2013 LMH6522 High Performance Quad DVGA Check for Samples: LMH6522 • OIP3: 49dBm @ 200MHz Noise Figure: 8.5dB Voltage Gain: 26dB 1dB Gain Steps −3dB Bandwidth of 1400 MHz Gain Step Accuracy: 0.2 dB


    Original
    LMH6522 SNOSB53D LMH6522 49dBm 200MHz PDF

    Untitled

    Abstract: No abstract text available
    Text: LMH6522 www.ti.com SNOSB53D – JULY 2011 – REVISED MARCH 2013 LMH6522 High Performance Quad DVGA Check for Samples: LMH6522 • OIP3: 49dBm @ 200MHz Noise Figure: 8.5dB Voltage Gain: 26dB 1dB Gain Steps −3dB Bandwidth of 1400 MHz Gain Step Accuracy: 0.2 dB


    Original
    LMH6522 SNOSB53D LMH6522 49dBm 200MHz PDF

    ADC16DV160

    Abstract: No abstract text available
    Text: LMH6522 Evaluation Board LMH6522 Evaluation Board National Semiconductor Application Note 2072 Loren Siebert July 29, 2011 30127811 FIGURE 1. LMH6522EVAL Evaluation Board General Description The LMH6522EVAL evaluation board is designed to aid in the characterization of National Semiconductor’s High Speed


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    LMH6522 LMH6522EVAL AN-2072 ADC16DV160 PDF

    Untitled

    Abstract: No abstract text available
    Text: LMH6522 www.ti.com SNOSB53B – JULY 2011 – REVISED SEPTEMBER 2011 LMH6522 High Performance Quad DVGA Check for Samples: LMH6522 FEATURES 1 • • • • • • • • • 23 OIP3: 49dBm @ 200MHz Noise Figure: 8.5dB Voltage Gain: 26dB 1dB Gain Steps


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    LMH6522 SNOSB53B LMH6522 49dBm 200MHz PDF

    Untitled

    Abstract: No abstract text available
    Text: LMH6523 www.ti.com SNOSC88 – DECEMBER 2012 High Performance Quad DVGA Check for Samples: LMH6523 • OIP3: 49dBm at 200MHz Noise Figure: 8.5dB Voltage Gain: 26dB 1dB Gain Steps Enable Pins Active in SPI Mode −3dB Bandwidth of 1400 MHz Gain Step Accuracy: 0.2 dB


    Original
    LMH6523 SNOSC88 49dBm 200MHz LMH6523 PDF

    Untitled

    Abstract: No abstract text available
    Text: LMH6523 www.ti.com SNOSC88 – DECEMBER 2012 High Performance Quad DVGA Check for Samples: LMH6523 • OIP3: 49dBm at 200MHz Noise Figure: 8.5dB Voltage Gain: 26dB 1dB Gain Steps Enable Pins Active in SPI Mode −3dB Bandwidth of 1400 MHz Gain Step Accuracy: 0.2 dB


    Original
    LMH6523 SNOSC88 49dBm 200MHz LMH6523 PDF

    Untitled

    Abstract: No abstract text available
    Text: LMH6523 www.ti.com SNOSC88 – DECEMBER 2012 High Performance Quad DVGA Check for Samples: LMH6523 • OIP3: 49dBm at 200MHz Noise Figure: 8.5dB Voltage Gain: 26dB 1dB Gain Steps Enable Pins Active in SPI Mode −3dB Bandwidth of 1400 MHz Gain Step Accuracy: 0.2 dB


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    LMH6523 SNOSC88 49dBm 200MHz LMH6523 PDF

    120M

    Abstract: 140M ADC16DV160 AN-2188 output inductor filter design
    Text: Texas Instruments Application Note 2188 Loren Siebert October 26, 2011 Filtering plays an essential part in nearly all communications systems. Removing unwanted signals is part of system design to eliminate unwanted noise or distortion. The signal presented to the analog to digital converter should have no


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    AN-2188 120M 140M ADC16DV160 AN-2188 output inductor filter design PDF

    ADS7924

    Abstract: TRF3761-E CDCLVC1102 INA3221
    Text: Analog Signal Chain Guide Amplifiers Data Converters Interface Clocks and Timing Sensing Wireless Connectivity www.ti.com 2013 Analog Signal Chain Guide Table of Contents Overview. 3 Interface Amplifiers and Comparators


    Original
    PDF

    Untitled

    Abstract: No abstract text available
    Text: LMH6523 www.ti.com SNOSC88 – DECEMBER 2012 High Performance Quad DVGA Check for Samples: LMH6523 • OIP3: 49dBm at 200MHz Noise Figure: 8.5dB Voltage Gain: 26dB 1dB Gain Steps Enable Pins Active in SPI Mode −3dB Bandwidth of 1400 MHz Gain Step Accuracy: 0.2 dB


    Original
    LMH6523 SNOSC88 49dBm 200MHz LMH6523 PDF

    Untitled

    Abstract: No abstract text available
    Text: LMH6523 www.ti.com SNOSC88 – DECEMBER 2012 High Performance Quad DVGA Check for Samples: LMH6523 • OIP3: 49dBm at 200MHz Noise Figure: 8.5dB Voltage Gain: 26dB 1dB Gain Steps Enable pins active in SPI mode −3dB bandwidth of 1400 MHz Gain Step Accuracy: 0.2 dB


    Original
    LMH6523 SNOSC88 49dBm 200MHz LMH6523 PDF