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THS4501CDG4 датащи(PDF) 27 Page - Texas Instruments |
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THS4501CDG4 датащи(HTML) 27 Page - Texas Instruments |
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27 / 48 page ![]() R =50kW R =50kW VS+ VS- VOCM IIN IIN = 2 VOCM V - S+ - VS- R VOCM =2.5V 5V VS RS RG1 RG2 RF1 RF2 + RT + RL 2.5-VDC 2.5-VDC DCCurrentPathtoGround DCCurrentPathtoGround I2 = VOCM RF2 +RG2 I1 = VOCM RF1+RG1+RS ||RT - - THS4500 THS4501 www.ti.com SLOS350F – APRIL 2002 – REVISED OCTOBER 2011 detrimental effect on the distortion performance. The capacitance is a reasonable value for eliminating a preferred method of filtering is to use the feedback great deal of broadband interference, but additional, network, as the typically smaller capacitances tuned decoupling capacitors should be considered if a required at these points in the circuit do not load the specific source of electromagnetic or radio frequency amplifier nearly as heavily in the passband. interference is present elsewhere in the system. Information on the ac performance (bandwidth, slew rate) of the VOCM circuitry is included in the Electrical SETTING THE OUTPUT COMMON-MODE Characteristics and Typical Characterisitcs sections. VOLTAGE WITH THE VOCM INPUT Since the VOCM pin provides the ability to set an The output common-mode voltage pin provides a output common-mode voltage, the ability for critical function to the fully differential amplifier; it increased power dissipation exists. While this accepts an input voltage and reproduces that input possibility does not pose a performance problem for voltage as the output common-mode voltage. In other the amplifier, it can cause additional power words, the VOCM input provides the ability to level-shift dissipation of which the system designer should be the outputs to any voltage inside the output voltage aware. The circuit shown in Figure 107 demonstrates swing of the amplifier. an example of this phenomenon. For a device A description of the input circuitry of the VOCM pin is operating on a single 5-V supply with an input signal shown in Figure 106 to facilitate an easier referenced around ground and an output understanding of the VOCM interface requirements. common-mode voltage of 2.5 V, a dc potential exists The VOCM pin has two 50-kΩ resistors between the between the outputs and the inputs of the device. The power supply rails to set the default output amplifier sources current into the feedback network in common-mode voltage to midrail. A voltage applied to order to provide the circuit with the proper operating the VOCM pin alters the output common-mode voltage point. While there are no serious effects on the circuit as long as the source has the ability to provide performance, the extra power dissipation may need to enough current to overdrive the two 50-k Ω resistors. be included in the system power budget. This phenomenon is depicted in the VOCM equivalent circuit diagram. Current drive is especially important when using the reference voltage of an analog-to-digital converter to drive VOCM. Output current drive capabilities differ from part to part, so a voltage buffer may be necessary in some applications. Figure 106. Equivalent Input Circuit for VOCM Figure 107. Depiction of DC Power Dissipation Caused By Output Level-Shifting in a DC-Coupled Circuit By design, the input signal applied to the VOCM pin propagates to the outputs as a common-mode signal. As shown in Figure 106, the VOCM input has a high impedance associated with it, dictated by the two 50-k Ω resistors. While the high impedance allows for relaxed drive requirements, it also allows the pin and any associated PCB traces to act as an antenna. For this reason, a decoupling capacitor is recommended on this node for the sole purpose of filtering any high-frequency noise that could couple into the signal path through the VOCM circuitry. A 0.1-μF or 1-μF Copyright © 2002–2011, Texas Instruments Incorporated Submit Documentation Feedback 27 Product Folder Link(s): THS4500 THS4501 |
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