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LMP8350MA/NOPB Datasheet(PDF) 21 Page - Texas Instruments |
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LMP8350MA/NOPB Datasheet(HTML) 21 Page - Texas Instruments |
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21 / 39 page ![]() V + V - VOCM Input 60 k: 60 k: Internal Circuitry LMP8350 www.ti.com SNOSB80C – FEBRUARY 2011 – REVISED OCTOBER 2015 Values of RA and RB can be calculated to achieve the voltages in Table 2, however their sum should be below 50 k Ω to keep the voltage at the enable pin stable. Recommended values for RA and RB are given in Table 3. Table 3. Recommended RA and RB for Mode Selection MODE 10 V 6.6 V 5 V VEN High Power RA = 0 RA = 0 RA = 0 > 7/8 VS RB = inf RB = inf RB = inf Mid Power RA = 18 K RA = 18 K RA = 18 K 5/8 VS RB = 30 K RB = 30 K RB = 30 K Low Power RA = 33 K RA = 33 K RA = 33 K 3/8 VS RB = 18 K RB = 18 K RB = 18 K Shutdown RA = Inf RA = Inf RA = Inf < 1/8 VS RB = 0 RB = 0 RB = 0 7.4.2 VOCM Pin and Output Common-Mode Setting Output common-mode voltage is set by the VOCM pin. Both outputs will be offset in the same direction (phase) by an amount equal to the applied VOCM voltage. The VOCM pin, if left unconnected, will self-bias to mid-supply. Two internal 60-kΩ resistors set this midpoint. These resistors are shown in Figure 28. Figure 28. VOCM Internal Bias Circuit The equivalent resistance looking into the VOCM pin will look like 30 kΩ to mid-supply, plus about ±700 nA for internal base currents (which scales with power mode and supply current). If left floating, the VOCM input should be bypassed to ground with a 0.1-µF ceramic capacitor. If a different output common-mode voltage is desired, the VOCM pin should be driven by a clean, low impedance source to override the internal divider resistors. The VOCM pin should be bypassed to ground with a 0.1-µF ceramic capacitor. It should be noted that any signal or noise-coupling into the VOCM will be passed as common- mode noise and may result in the loss of dynamic range, degraded CMRR, degraded balance and higher distortion. The VOCM pin is primarily intended as a DC bias path and is not intended for use as a signal path. For applications that can tolerate slight shifts in the VOCMvoltage over temperature, it is also possible to use a single resistor to program the VOCM voltage by paralleling one of the internal resistors to change the ratio. Copyright © 2011–2015, Texas Instruments Incorporated Submit Documentation Feedback 21 Product Folder Links: LMP8350 |
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