Ci IN Zi Z
參數(shù)資料
型號(hào): TPA3100D2IRGZRQ1
廠商: Texas Instruments
文件頁數(shù): 15/38頁
文件大小: 0K
描述: IC AMP AUDIO PWR 21.8W D 48QFN
標(biāo)準(zhǔn)包裝: 1
類型: D 類
輸出類型: 2 通道(立體聲)
在某負(fù)載時(shí)最大輸出功率 x 通道數(shù)量: 21.8W x 2 @ 8 歐姆
電源電壓: 10 V ~ 26 V
特點(diǎn): 差分輸入,靜音,短路和熱保護(hù),關(guān)機(jī)
安裝類型: 表面貼裝
供應(yīng)商設(shè)備封裝: 48-VQFN 裸露焊盤(7x7)
封裝/外殼: 48-VFQFN 裸露焊盤
包裝: 標(biāo)準(zhǔn)包裝
配用: 296-21138-ND - EVALUATION MODULE FOR TPA3100D2
其它名稱: 296-24154-6
Input Resistance
Ci
IN
Zi
Zf
Input
Signal
f=
1
2
Z C
p
i
(1)
Input Capacitor, CI
f
=
c
1
2
Z C
p
i
-3dB
fc
(2)
C =
i
1
2
Z f
p
i
c
(3)
TPA3100D2-Q1
SLOS557 – SEPTEMBER 2008 ......................................................................................................................................................................................... www.ti.com
Changing the gain setting can vary the input resistance of the amplifier from its smallest value, 16 k
± 20%, to
the largest value, 32 k
± 20%. As a result, if a single capacitor is used in the input high-pass filter, the –3-dB or
cutoff frequency may change when changing gain steps.
The –3-dB frequency can be calculated using Equation 1. Use the ZI values given in Table 1.
In the typical application, an input capacitor (CI) is required to allow the amplifier to bias the input signal to the
proper dc level for optimum operation. In this case, CI and the input impedance of the amplifier (ZI) form a
high-pass filter with the corner frequency determined in Equation 2.
The value of CI is important, as it directly affects the bass (low-frequency) performance of the circuit. Consider
the example where ZI is 20 k and the specification calls for a flat bass response down to 20 Hz. Equation 2 is
reconfigured as Equation 3.
In this example, CI is 0.4 F; so, one would likely choose a value of 0.47 F as this value is commonly used. If
the gain is known and is constant, use ZI from Table 1 to calculate CI. A further consideration for this capacitor is
the leakage path from the input source through the input network (CI) and the feedback network to the load. This
leakage current creates a dc offset voltage at the input to the amplifier that reduces useful headroom, especially
in high gain applications. For this reason, a low-leakage tantalum or ceramic capacitor is the best choice. When
polarized capacitors are used, the positive side of the capacitor should face the amplifier input in most
applications as the dc level there is held at 2 V, which is likely higher than the source dc level. Note that it is
important to confirm the capacitor polarity in the application. Additionally, lead-free solder can create dc offset
voltages and it is important to ensure that boards are cleaned properly.
22
Copyright 2008, Texas Instruments Incorporated
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