參數(shù)資料
型號: TPA3002D2PHPR
廠商: TEXAS INSTRUMENTS INC
元件分類: 音頻控制
英文描述: 2 CHANNEL(S), VOLUME CONTROL CIRCUIT, PQFP48
封裝: GREEN, PLASTIC, HTQFP-48
文件頁數(shù): 17/40頁
文件大小: 735K
代理商: TPA3002D2PHPR
TPA3002D2
SLOS402C DECEMBER 2002 REVISED JANUARY 2004
www.ti.com
24
MODE OPERATION
The MODE pin is an input for controlling the output mode of the TPA3002D2. A logic HIGH on this pin disables
the Class-D outputs. A logic LOW on this pin enables the class-D outputs. The VAROUT outputs are active in
both modes and can be used as line level inputs to an external powered subwoofer while driving internal stereo
speakers with the class-D outputs. The trip levels are defined in the specifications table.
For interfacing with an external headphone amplifier like the TPA6110A2, the MODE pin can be connected to
the switch on a headphone jack. When configured like Figure 30, the class-D outputs will be disabled when a
headphone plug is inserted into the headphone jack.
MODE_OUT OPERATION
for controlling the SHUTDOWN pin on an external headphone amplifier like the TPA6110A2 or for interfacing
with other logic. The output voltages for a given load condition are given in the specifications table.
This output is controlled by the MODE pin logic. When the MODE input is driven to a logic low, the MODE_OUT
output drives to a logic high. Conversely, when the MODE pin is driven to a logic high, the MODE_OUT output
drives LOW. The MODE_OUT output is simply the inverted state of the MODE input.
It is designed in this manner because the TPA6110A2 SHUTDOWN input is active high. This allows the
TPA3002D2 to place the TPA6110A2 into the shutdown state when driving internal speakers in the Class-D
mode. Conversely, the MODE_OUT pin drives low to enable the TPA6110A2 headphone amplifier when
headphones are plugged into the headphone jack and the MODE input is driven high.
SELECTION OF COSC AND ROSC
The switching frequency is determined using the values of the components connected to ROSC (pin 27) and
COSC (pin 28) and may be calculated with the following equation:
fOSC = 6.6 / (ROSC * COSC)
INTERNAL 2.5-V BIAS GENERATOR CAPACITOR SELECTION
The internal 2.5-V bias generator (V2P5) provides the internal bias for the preamplifier stages on both the
class-D amplifiers and the variable amplifiers. The external input capacitors and this internal reference allow
the inputs to be biased within the optimal common-mode range of the input preamplifiers.
The selection of the capacitor value on the V2P5 terminal is critical for achieving the best device performance.
During startup or recovery from the shutdown state, the V2P5 capacitor determines the rate at which the
amplifier starts up. When the voltage on the V2P5 capacitor equals 0.75xV2P5, or 75% of its final value, the
device turns on and the class-D outputs start switching. The startup time is not critical for the best depop
performance since any pop sound that is heard is the result of the class-D outputs switching on and not the
startup time. However, at least a 0.47-
F capacitor is recommended for the V2P5 capacitor.
A secondary function of the V2P5 capacitor is to filter high frequency noise on the internal 2.5-V bias generator.
INPUT RESISTANCE
Each gain setting is achieved by varying the input resistance of the amplifier, which can range from its smallest
value to over six times that value. As a result, if a single capacitor is used in the input high-pass filter, the 3 dB
or cutoff frequency also changes by over six times.
Ci
IN
Zi
Zf
Input
Signal
The 3-dB frequency can be calculated using equation 5. Input impedance (Zi) vs Gain can be found in
Figure 7.
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