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OPA656 Datasheet(PDF) 21 Page - Texas Instruments |
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OPA656 Datasheet(HTML) 21 Page - Texas Instruments |
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21 / 37 page ![]() Closed-loop TIA Bandwidth (f-3dB) 24.00 MHz Feedback Resistance (RF) 100.00 kOhm Input Capacitance (CIN) 7.40 pF Opamp Gain Bandwidth Product (GBP) 2678.14 MHz Feedback Capacitance (CF) 0.092 pF Calculator II VO +5 V ±5 V + ± RF 100 k C1 2.2 pF VBIAS OPA818 Supply decoupling not shown CD 5 pF C2 2.2 pF CT 47 pF CDIFF 0.5 pF CCM 1.9 pF OPA818's input differential and common-mode capacitance 21 OPA818 www.ti.com SBOS940A – MAY 2019 – REVISED MARCH 2020 Product Folder Links: OPA818 Submit Documentation Feedback Copyright © 2019–2020, Texas Instruments Incorporated 9.2 Typical Applications 9.2.1 High Bandwidth, 100-kΩ Gain Transimpedance Design The high GBWP and low input voltage and current noise for the OPA818 make it an excellent wideband transimpedance amplifier for moderate to high transimpedance gains. Figure 51. Wideband, High-Sensitivity, Transimpedance Amplifier 9.2.1.1 Design Requirements Design a high-bandwidth, high-transimpedance-gain amplifier with the design requirements shown in Table 1. Table 1. Design Requirements TARGET BANDWIDTH (MHz) TRANSIMPEDANCE GAIN (kΩ) PHOTODIODE CAPACITANCE (pF) 24 100 5 9.2.1.2 Detailed Design Procedure Designs that require high bandwidth from a large area detector with relatively high transimpedance gain benefit from the low input voltage noise of the OPA818. This input voltage noise is peaked up over frequency by the diode source capacitance, and can, in many cases, become the limiting factor to input sensitivity. Figure 51 shows the transimpedance circuit with the parameters as defined in Design Requirements. To use the Microsoft Excel™ calculator available at What You Need To Know About Transimpedance Amplifiers – Part 1 to help with the component selection, total input capacitance, CTOT, needs to be determined. CTOT is referred as CIN in the calculator. CTOT is the sum of CD, CDIFF, and CCM which is 7.4 pF. Using this value of CTOT, and the targeted closed-loop bandwidth (f–3dB) of 24 MHz and transimpedance gain of 100 kΩ results in a need for an amplifier with approximately 2.68 GHz GBWP and a feedback capacitance (CF) of 0.092 pF as shown in Figure 52. These results are for a Butterworth response with a Q = 0.707 and a phase margin of approximately 65° which corresponds to 4.3% overshoot. Figure 52. Results of Inputting Design Parameters in the TIA Calculator |
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