参数资料
型号: TPA3005D2PHPR
厂商: Texas Instruments
文件页数: 6/31页
文件大小: 0K
描述: IC AMP AUDIO PWR 6W STER 48TQFP
标准包装: 1
类型: D 类
输出类型: 2 通道(立体声)
在某负载时最大输出功率 x 通道数量: 6W x 2 @ 8 欧姆
电源电压: 8.5 V ~ 18 V
特点: 差分输入,短路保护和热保护,关机
安装类型: 表面贴装
供应商设备封装: 48-HTQFP(7x7)
封装/外壳: 48-TQFP 裸露焊盘
包装: 标准包装
产品目录页面: 877 (CN2011-ZH PDF)
配用: 296-18924-ND - EVAL MODULE FOR TPA3005D2
其它名称: 296-17058-6
Efficiency (theoretical, %) +
R
L
R
L )
r
ds(on)
100% +
8
(8 ) 1.3)
100% + 86%
P
(total) +
P
O
Efficiency
+
6 W
0.86
+ 6.98 W
Other losses + P(total)(measured) * P(total) (theoretical) + 7.41 * 6.98 + 0.43 W
P
(dis) +
0.43 W * (12 V
22 mA) + 0.17 W
0.1
F
0.1
F
0.47
F
33
H
33
H
OUTP
OUTN
L1
L2
C1
C2
C3
SLOS427A – MAY 2004 – REVISED AUGUST 2010
www.ti.com
Damage may occur if the voice coil cannot handle the additional heat generated from the high-frequency
switching current. The amount of power dissipated in the speaker may be estimated by first considering the
overall efficiency of the system. If the on-resistance (rds(on)) of the output transistors is considered to cause the
dominant loss in the system, then the maximum theoretical efficiency for the TPA3005D2 with an 8-
load is as
follows:
(1)
The maximum measured output power is approximately 6 W with an 12-V power supply. The total theoretical
power supplied (P(total)) for this worst-case condition would therefore be as follows:
(2)
The efficiency measured in the lab using an 8-W speaker was 81%. The power not accounted for as dissipated
across the rDS(on) may be calculated by simply subtracting the theoretical power from the measured power:
(3)
The quiescent supply current at 12 V is measured to be 22 mA. It can be assumed that the quiescent current
encapsulates all remaining losses in the device, i.e., biasing and switching losses. It may be assumed that any
remaining power is dissipated in the speaker and is calculated as follows:
(4)
Note that these calculations are for the worst-case condition of 6 W delivered to the speaker. Because the 0.17
W is only 3% of the power delivered to the speaker, it may be concluded that the amount of power actually
dissipated in the speaker is relatively insignificant. Furthermore, this power dissipated is well within the
specifications of most loudspeaker drivers in a system, as the power rating is typically selected to handle the
power generated from a clipping waveform.
When to use an Output Filter
Design the TPA3005D2 without the filter if the traces from amplifier to speaker are short (< 50 cm). Powered
speakers, where the speaker is in the same enclosure as the amplifier, is a typical application for class-D without
a filter.
Most applications require a ferrite bead filter. The ferrite filter reduces EMI around 1 MHz and higher (FCC and
CE only test radiated emissions greater than 30 MHz). When selecting a ferrite bead, choose one with high
impedance at high frequencies, but low impedance at low frequencies.
Use a LC output filter if there are low frequency (<1 MHz) EMI-sensitive circuits and/or there are long wires from
the amplifier to the speaker.
When both a LC filter and a ferrite bead filter are used, the LC filter should be placed as close as possible to the
IC followed by the ferrite bead filter.
Figure 18. Typical LC Output Filter, Cutoff Frequency of 27 kHz, Speaker Impedance = 8
14
Copyright 2004–2010, Texas Instruments Incorporated
Product Folder Link(s): TPA3005D2
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