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THS4502 Datasheet(PDF) 21 Page - Texas Instruments |
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THS4502 Datasheet(HTML) 21 Page - Texas Instruments |
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21 / 40 page ![]() THS4502 THS4503 SLOS352D − APRIL 2002 − REVISED JANUARY 2004 www.ti.com 21 Figure 94 VOCM +VS VS RS Rg1 Rg2 Rf1 Rf2 + − RT − + −VS Application Circuit for the THS4500 and THS4501, Featuring Split-Supply Operation With an Input Signal Referenced at the Midrail Equations 1−5 allow for calculation of the required input common-mode range for a given set of input conditions. The equations allow calculation of the input common- mode range requirements given information about the input signal, the output voltage swing, the gain, and the output common-mode voltage. Calculating the maximum and minimum voltage required for VN and VP (the amplifier’s input nodes) determines whether or not the input common-mode range is violated or not. Four equations are required. Two calculate the output voltages and two calculate the node voltages at VN and VP (note that only one of these needs calculation, as the amplifier forces a virtual short between the two nodes). V OUT ) + V IN )(1–β)–VIN–(1–β) ) 2VOCMβ 2 β V OUT– + –V IN )(1–β) ) VIN–(1–β) ) 2VOCMβ 2 β (1) (2) V N + VIN–(1–β) ) V OUT )β Where: β + R G R F ) RG V P + VIN )(1–β) ) VOUT–β (3) (4) (5) NOTE: The equations denote the device inputs as VN and VP, and the circuit inputs as VIN+ and VIN−. Figure 95 VOCM Rg Rg Rf Rf + − − + Vp Vn VOUT− VOUT+ VIN+ VIN− Diagram For Input Common-Mode Range Equations The two tables below depict the input common-mode range requirements for two different input scenarios, an input referenced around the negative rail and an input referenced around midrail. The tables highlight the differing requirements on input common-mode range, and illustrate reasoning for choosing either the THS4500/1 or the THS4502/3. For signals referenced around the negative power supply, the THS4500/1 should be chosen since its input common-mode range includes the negative supply rail. For all other situations, the THS4502/3 offers slightly improved distortion and noise performance for applications with input signals centered between the power supply rails. Table 1. Negative-Rail Referenced Gain (V/V) VIN+ (V) VIN− (V) VIN (VPP) VOCM (V) VOD (VPP) VNMIN (V) VNMAX (V) 1 −2.0 to 2.0 0 4 2.5 4 0.75 1.75 2 −1.0 to 1.0 0 2 2.5 4 0.5 1.167 4 −0.5 to 0.5 0 1 2.5 4 0.3 0.7 8 −0.25 to 0.25 0 0.5 2.5 4 0.167 0.389 NOTE: This table assumes a negative-rail referenced, single-ended input signal on a single 5-V supply as shown in Figure 93. VNMIN = VPMIN and VNMAX = VPMAX. Table 2. Midrail Referenced Gain (V/V) VIN+ (V) VIN− (V) VIN (VPP) VOCM (V) VOD (VPP) VNMIN (V) VNMAX (V) 1 0.5 to 4.5 2.5 4 2.5 4 2 3 2 1.5 to 3.5 2.5 2 2.5 4 2.16 2.83 4 2.0 to 3.0 2.5 1 2.5 4 2.3 2.7 8 2.25 to 2.75 2.5 0.5 2.5 4 2.389 2.61 NOTE: This table assumes a midrail referenced, single-ended input signal on a single 5-V supply. VNMIN = VPMIN and VNMAX = VPMAX. |
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