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LMV321A Datasheet(PDF) 20 Page - Texas Instruments |
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LMV321A Datasheet(HTML) 20 Page - Texas Instruments |
20 / 48 page IN F BGW 2 F F C C f 324 kHz 2 R C t t u S u u IN PD CM D C C C C 47 pF 5 pF 1 pF 53 pF F F 3dB 1 1 C 10.3 pF 10 pF 2 R f 2 309 k 50 kHz | u S u u u S u : u OUT REF F IN V V 3.2 V 0.1 V kV R 310 309 k I 10 A A | : P REF V 0.1 V 0.0303 V 3.3 V 1 2 REF 1 2 R R V V R R § · u u ¨ ¸ © ¹ OUT IN F REF V I R V u 20 LMV321A, LMV324A, LMV358A SBOS923F – DECEMBER 2017 – REVISED JANUARY 2020 www.ti.com Product Folder Links: LMV321A LMV324A LMV358A Submit Documentation Feedback Copyright © 2017–2020, Texas Instruments Incorporated Typical Application (continued) 8.2.2.1 Design Requirements The design requirements for this design are: • Supply voltage: 3.3 V • Input: 0 µA to 10 µA • Output: 0.1 V to 3.2 V • Bandwidth: 50 kHz 8.2.2.2 Detailed Design Procedure The transfer function between the output voltage (VOUT), the input current, (IIN) and the reference voltage (VREF) is defined in Equation 5. (5) Where: (6) Set VREF to 100 mV to meet the minimum output voltage level by setting R1 and R2 to meet the required ratio calculated in Equation 7. (7) The closest resistor ratio to meet this ratio sets R1 to 11.5 kΩ and R2 to 357 Ω. The required feedback resistance can be calculated based on the input current and desired output voltage. (8) Calculate the value for the feedback capacitor based on RF and the desired –3-dB bandwidth, (f–3dB) using Equation 9. (9) The minimum op amp bandwidth required for this application is based on the value of RF, CF, and the capacitance on the INx– pin of the LMV358A which is equal to the sum of the photodiode shunt capacitance, (CPD) the common-mode input capacitance, (CCM) and the differential input capacitance (CD) as Equation 10 shows. (10) The minimum op amp bandwidth is calculated in Equation 11. (11) The 1-MHz bandwidth of the LMV3xxA meets the minimum bandwidth requirement and remains stable in this application configuration. |
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Similar Description - LMV321A_V02 |
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