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LTC6754 Datasheet(PDF) 27 Page - Analog Devices |
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LTC6754 Datasheet(HTML) 27 Page - Analog Devices |
27 / 34 page LTC6563 27 Rev. 0 For more information www.analog.com APPLICATIONS INFORMATION Figure 12. TIA 75Ω Matched Load Equivalent Circuit Figure 13. CM Half-Circuit Equivalent Circuit for 75Ω Load As in the previous cases, for analysis purposes, it is useful to break the output load circuit into its equivalent half- circuit to compute how the CM voltage is affected, as shown in Figure 13. 6563 F12 I1 I2 50 50 RCM RADC 200 R1 300 R2 300 OUT OUT TERM TERM LTC6563 VCC VCC 2 TO OPEN RS1 24.9 RS2 24.9 VCC I1 50 2 • RCM 4 TO OPEN OUT TERM LTC6563 6563 F13 RS1 24.9 Table 6. CM Minimum Voltage and Other Operating Performance Values for Various ADJ Settings of Figure 11 ADJ1 ADJ0 CM/AVERAGE OUTPUT CURRENT IO (mA) RT (kΩ) ADC FS DIFF VOLTAGE SWING WITH FULL TILT (mVP-P) MIN CM VOLTAGE (mV) 0 0 7 8.3 750 553 0 1 14 16.7 1500 1106 1 0 21 25.0 2250* 1659 1 1 28 33.3 3000* 2212* *Limited by output voltage compliance So, in addition to raising the TIA output impedance, RS1 and RS2 also contribute to an increase in the minimum output CM voltage. Table 6 shows the computed minimum CM voltage, TIA gain (RT), and ADC FS diff voltage swing for various ADJ settings applied to the Figure 11 configuration. Here is a sample calculation of the values in Table 6, related to the Figure 11 schematic, for ADJ 00 as an illustration: a. Output current values (ADJ 00) with max input current of 90µA (from Table 2): 12mA, 2mA b. Net diff output load: 75Ω (37.5Ω on each output) c. RT Calculation: RT(k Ω) = 37.5 Ω[(12mA – 2mA) – (2mA – 12mA)] 90µA = 8.3kΩ d. ADC FS diff voltage calculation = 90µA • 8.3kΩ = 750mVP-P e. IO CM / Average Output Current (from Table 1): 7mA f. VCMO (minimum) = IO • (24.9Ω + 50Ω + 2 • 2Ω) = 553mV, where IO = 7mA, 24.9Ω is the resistors in series with the TERM pin, 50Ω is the TERM internal resistance, and the 2Ω is the internal RCM minimum value In the Figure 11 schematic and tabulated results in Table 6, the ADJ 11 setting’s Min CM voltage is too high to be usable. Thus, the technique of lowering CM voltage (Detailed Example 2) discussed earlier can be employed As before, the CM circuit is not affected by the R1, R2 or the ADC differential input impedance of 200Ω. The output CM will be given by: VCMO = IO • (24.9Ω + 50Ω + 2RCM) (5) |
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