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TPA2005D1-Q1 Fiches technique(PDF) 9 Page - Texas Instruments |
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TPA2005D1-Q1 Fiches technique(HTML) 9 Page - Texas Instruments |
9 / 29 page _ + IN– IN+ PWM H– Bridge VO+ VO– Internal Oscillator CS To Battery VDD GND Bias Circuitry RI RI + – Differential Input TPA2005D1 Filter-Free Class D SHUTDOWN TPA2005D1-Q1 www.ti.com SLOS474C – AUGUST 2005 – REVISED MARCH 2010 APPLICATION INFORMATION FULLY DIFFERENTIAL AMPLIFIER The TPA2005D1 is a fully differential amplifier with differential inputs and outputs. The fully differential amplifier consists of a differential amplifier and a common-mode amplifier. The differential amplifier ensures that the amplifier outputs a differential voltage on the output that is equal to the differential input times the gain. The common-mode feedback ensures that the common-mode voltage at the output is biased around VDD/2, regardless of the common-mode voltage at the input. The fully differential TPA2005D1 can still be used with a single-ended input; however, the TPA2005D1 should be used with differential inputs when in a noisy environment, like a wireless handset, to ensure maximum noise rejection. Advantages of Fully Differential Amplifiers • Input-coupling capacitors not required: – The fully differential amplifier allows the inputs to be biased at a voltage other than mid-supply. For example, if a codec has a mid-supply lower than the mid-supply of the TPA2005D1, the common-mode feedback circuit adjusts, and the TPA2005D1 outputs still is biased at mid-supply of the TPA2005D1. The inputs of the TPA2005D1 can be biased from 0.5 V to VDD – 0.8 V. If the inputs are biased outside of that range, input-coupling capacitors are required. • Mid-supply bypass capacitor, C(BYPASS), not required: – The fully differential amplifier does not require a bypass capacitor. This is because any shift in the mid-supply affects both positive and negative channels equally and cancels at the differential output. • Better RF immunity: – GSM handsets save power by turning on and shutting off the RF transmitter at a rate of 217 Hz. The transmitted signal is picked up on input and output traces. The fully differential amplifier cancels the signal much better than the typical audio amplifier. COMPONENT SELECTION Figure 26 shows the TPA2005D1 typical schematic with differential inputs, and Figure 27 shows the TPA2005D1 with differential inputs and input capacitors, and Figure 28 shows the TPA2005D1 with single-ended inputs. Differential inputs should be used whenever possible, because the single-ended inputs are much more susceptible to noise. Table 1. Typical Component Values REF DES VALUE EIA SIZE MANUFACTURER PART NUMBER RI 150 k Ω (±0.5%) 0402 Panasonic ERJ2RHD154V CS 1 mF (+22%, –80%) 0402 Murata GRP155F50J105Z CI (1) 3.3 nF (±10%) 0201 Murata GRP033B10J332K (1) CI is needed only for single-ended input or if VICM is not between 0.5 V and VDD – 0.8 V. CI = 3.3 nF (with RI = 150 kΩ) gives a high-pass corner frequency of 321 Hz. Figure 26. Typical TPA2005D1 Application Schematic With Differential Input for a Wireless Phone Copyright © 2005–2010, Texas Instruments Incorporated Submit Documentation Feedback 9 Product Folder Link(s): TPA2005D1-Q1 |
Numéro de pièce similaire - TPA2005D1-Q1_15 |
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Description similaire - TPA2005D1-Q1_15 |
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