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OPA835 датащи(PDF) 8 Page - Texas Instruments |
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OPA835 датащи(HTML) 8 Page - Texas Instruments |
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8 / 21 page ![]() Frequency (Hz) -9 -6 -3 0 3 6 9 12 15 18 21 24 10k 100k 1M 10M 100M Gain RF = 1 k: RF = 2 k: RF = 3.6 k: RF = 5 k: RF = 10 k: RF = 100 k: 8 OPA2834 SBOS973 – JUNE 2019 www.ti.com Product Folder Links: OPA2834 Submit Documentation Feedback Copyright © 2019, Texas Instruments Incorporated Feature Description (continued) 8.3.2 Output Voltage Range The OPA2834 is a rail-to-rail output (RRO) op amp. Rail-to-rail output typically means that the output voltage swings within a couple hundred millivolts of the supply rails. There are different ways to specify this: one is with the output still in linear operation and another is with the output saturated. Saturated output voltages are closer to the power-supply rails than linear outputs, but the signal is not a linear representation of the input. Linear output is a better representation of how well a device performs when used as a linear amplifier. Saturation and linear operation limits are affected by the output current, where higher currents lead to more loss in the output transistors. The specification tables list the saturated output voltage specifications with a 5-kΩ load. Given a light load, the output voltage limits have nearly constant headroom to the power rails and track the power-supply voltages. For example, with a 5-kΩ load and a single 5-V supply, the saturation output voltage ranges from 0.1 V to 4.9 V and ranges from 0.1 V to 2.6 V for a 2.7-V supply. The delta from each power-supply rail is the same in either case: 0.1 V and 0.1 V. With a device such as the OPA2834 where the input range is lower than the output range, typically the input limits the available signal swing only in a noninverting gain of 1. Signal swing in noninverting configurations in gains greater than +1 and inverting configurations in any gain is typically limited by the output voltage limits of the op amp. 8.3.3 Low-Power Applications and the Effects of Resistor Values on Bandwidth The OPA2834 is designed for the nominal value of RF to be 3.6 kΩ in gains other than +1. This setting gives excellent distortion performance, maximum bandwidth, best flatness, and best pulse response. This feedback resistor also loads the amplifier. For example, in a gain of 2 with RF = RG = 3.6 kΩ, RG to ground, and VOUT = 4 V, 555 µA of current flows through the feedback path to ground. In a gain of +1, RG is open and no current flows to ground. In low-power applications, reduce the current in the feedback path by increasing the gain-setting resistors values. Using larger value gain resistors has two primary side effects (other than lower power) because of their interaction with parasitic circuit capacitance: • Lowers the bandwidth • Lowers the phase margin – Causes peaking in the frequency response – Causes overshoot and ringing in the pulse response Figure 3 shows the small-signal frequency response for a noninverting gain of 2 with RF and RG equal to 2 kΩ, 3.6 kΩ, 5 kΩ, 10 kΩ, and 100 kΩ. The test was done with RL = 5 kΩ. Because of the loading effects of RL, lower RL values can reduce the peaking, but higher values do not have a significant effect. Figure 3. Frequency Response With Various Gain-Setting Resistor Values |
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