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LMP7721 датащи(PDF) 20 Page - Texas Instruments |
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LMP7721 датащи(HTML) 20 Page - Texas Instruments |
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20 / 35 page ![]() + - Guard OUT +1 IN VREF + - Guard Input Rleak Cstray Ground 2.5V ûV = 2.5V! 2.5V ûV = 0V! Cstray Rleak 0V High Impedance Input Amplifer Guard Driver Vcm Leakage Path Leakage Path LMP7721 SNOSAW6E – JANUARY 2008 – REVISED DECEMBER 2014 www.ti.com 8 Application and Implementation NOTE Information in the following applications sections is not part of the TI component specification, and TI does not warrant its accuracy or completeness. TI’s customers are responsible for determining suitability of components for their purposes. Customers should validate and test their design implementation to confirm system functionality. 8.1 Application Information The LMP7721 is specified for operation from 1.8 V to 5.5 V. Many of the specifications apply from –40°C to 125°C. Parameters that can exhibit significant variance with regard to operating voltage or temperature are presented in the Typical Characteristics section. 8.1.1 Using a Guard In order to take full advantage of the LMP7721’s ultra-low input bias current, a "Guard" trace is recommended when designing sub-nanoamp systems. Figure 46. Guarding Theory A "Guard" is a driven trace or shield that physically surrounds the input trace and feedback circuitry that is held at a potential equal to the average input signal potential. Since the input circuitry and the guard are kept at the same potential, the leakage current between the two nodes is practically zero. The guard is a low-impedance node, so any external leakages will "leak" into the guard and not into the protected input. One benefit of using a guard is it cancels the effect of the added stray and cable capacitance at low frequencies (but cannot cancel the sensor or amplifier input capacitance). The guard potential may be taken from the inverting input (summing node) in noninverting and buffer applications. An example of this is shown in Figure 47 If the guarding needs to extend beyond the immediate local area around the IC, then a buffer should be used to drive the guard to prevent adding additional capacitance to the inverting node. Figure 47. Guarding the Noninverting Configuration The guard potential may be taken from the noninverting input or reference voltage in inverting or transimpedance applications. An example of this is shown in Figure 48 20 Submit Documentation Feedback Copyright © 2008–2014, Texas Instruments Incorporated Product Folder Links: LMP7721 |
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