LMH6553MR National Semiconductor, LMH6553MR Datasheet
LMH6553MR
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LMH6553MR Summary of contents
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... PSOP and 8-pin LLP packages, and is part of our LMH ® high speed amplifier family. Typical Application LMH ® registered trademark of National Semiconductor Corporation. © 2008 National Semiconductor Corporation Features ■ 900 MHz −3 dB small signal bandwidth @ A ■ 670 MHz −3 dB large signal bandwidth @ A ■ ...
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... Absolute Maximum Ratings If Military/Aerospace specified devices are required, please contact the National Semiconductor Sales Office/ Distributors for availability and specifications. ESD Tolerance (Note 5) Human Body Model Machine Model Supply Voltage Common Mode Input Voltage Maximum Input Current (pins Maximum Output Current (pins 4, 5) ...
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Symbol Parameter Input Characteristics I Input Bias Current (Note 11 Input Bias Current Differential Boffset (Note 7) CMRR Common Mode Rejection Ratio (Note 7) R Input Resistance IN C Input Capacitance IN CMVR Input Common Mode Voltage Range ...
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Symbol Parameter Input Bias Current Voltage Range CMRR Input Resistance Gain Miscellaneous Performance Z Open Loop Transimpedance T PSRR Power Supply Rejection Ratio I Supply Current ±2.5V Electrical Characteristics S Unless otherwise specified, all limits are guaranteed ...
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Symbol Parameter Noise Figure (See Figure 5) Input Characteristics I Input Bias Current (Note 11 Input Bias Current Differential Boffset (Note 7) CMRR Common Mode Rejection Ratio (Note 7) R Input Resistance IN C Input Capacitance IN CMVR ...
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Symbol Parameter Input Bias Current Voltage Range CMRR Input Resistance Gain Miscellaneous Performance Z Open Loop Transimpedance T PSRR Power Supply Rejection Ratio I Supply Current S Note 1: Absolute Maximum Ratings indicate limits beyond which damage to the device ...
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... Top View 8-Pin LLP 30043771 Top View Package Marking Transport Media 95 Units/Rails LMH6553MR 250 Units Tape and Reel 2.5k Units Tape and Reel 1k Units Tape and Reel 6553 250 Units Tape and Reel 4.5k Units Tape and Reel 7 NSC Drawing ...
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Typical Performance Characteristics V for single ended in, differential out, unless specified). Frequency Response vs. Gain Frequency Response vs. V Frequency Response vs. Supply Voltage with R www.national.com = ± 25° Frequency Response vs. Gain ...
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Frequency Response vs. Capacitive Load Frequency Response vs. Resistive Load Frequency Response vs Suggested R 30043721 Frequency Response vs. Resistive Load 30043759 1 V Pulse Response Single-Ended Input PP 30043761 9 vs. Capacitive Load O 30043722 30043760 30043726 ...
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V Pulse Response Single-Ended Input PP Pulse Response with 0% and 100% Overdrive Overdrive Recovery with V www.national.com 4 V Pulse Response Single-Ended Input PP 30043727 Pulse Response with 0% and 100% Overdrive 30043774 = ±5V Overdrive Recovery with ...
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Output Common Mode Pulse Response Distortion vs. Supply Voltage Distortion vs. Output Common Mode Voltage Distortion vs. Frequency Single-Ended Input 30043724 Distortion vs. Supply Voltage 30043743 Distortion vs. Output Common Mode Voltage 30043738 11 30043729 30043737 30043767 www.national.com ...
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Maximum V OUT Closed Loop Output Impedance Open Loop Transimpedance www.national.com vs. I OUT 30043730 30043717 30043741 12 Minimum V vs. I OUT OUT 30043731 Closed Loop Output Impedance 30043718 Open Loop Transimpedance 30043742 ...
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PSRR 30043719 CMRR 30043733 Noise Figure 30043745 13 PSRR 30043720 Balance Error 30043713 Noise Figure 30043746 www.national.com ...
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Differential S-Parameter Magnitude vs. Frequency 3rd Order Intermodulation Products vs. V 3rd Order Intermodulation Products vs. Center Frequency www.national.com Differential S-Parameter Phase vs. Frequency 30043755 3rd Order Intermodulation Products vs. V OUT 30043751 3rd Order Intermodulation Products vs. Center Frequency ...
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Order Intermodulation Products vs. Center Frequency 3rd Order Intermodulation Products vs. V 3rd Order Intermodulation Products vs. Center Frequency 30043778 CLAMP 30043780 15 30043779 www.national.com ...
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Application Information The LMH6553, a fully differential current feedback amplifier with integrated output common mode control and output lim- iting clamp, is designed to provide protection of following input stages. The common mode feedback circuit sets the output common mode ...
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FIGURE 3. Single-Ended Input with Differential Output When using the LMH6553 in single-to-differential mode, the complementary output is forced to a phase inverted replica of the driven output by the common mode feedback circuit as opposed to being driven by ...
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SPLIT SUPPLY OPERATION For optimum performance, split supply operation is recom- mended using +5V and −5V supplies; however, operation is possible on split supplies as low as +2.25V and −2.25V and as high as +6V and −6V. Provided the total ...
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OUTPUT NOISE PERFORMANCE AND MEASUREMENT Unlike differential amplifiers based on voltage feedback ar- chitectures, noise sources internal to the LMH6553 refer to the inputs largely as current sources, hence the low input re- ferred voltage noise and relatively higher input ...
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High Speed Differential Amplifiers to Drive ADCs. For more information regarding a particular ADC, refer to the particular ADC datasheet for details. TABLE 3. DIFFERENTIAL INPUT ADCs COMPATIBLE WITH LMH6553 DRIVER Product Number Max Resolution Sampling Rate (MSPS) ADC1173 15 ...
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... EVALUATION BOARD National Semiconductor suggests the following evaluation boards to be used with the LMH6553 Device AMP CC is not mid-rail.) LMH6553MR LMH6553SD ) * rms ((V OUT S These evaluation boards can be shipped when a device sam- are the voltage OUT ple request is placed with National Semiconductor. ...
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Physical Dimensions www.national.com inches (millimeters) unless otherwise noted 8-Pin PSOP NS Package Number MRA08A 8-Pin LLP NS Package Number SDA08C 22 ...
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Notes 23 www.national.com ...
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