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TS34119 Datenblatt(PDF) 6 Page - Taiwan Semiconductor Company, Ltd

Teilenummer TS34119
Bauteilbeschribung  Low Power Audio Amplifier
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Hersteller  TSC [Taiwan Semiconductor Company, Ltd]
Direct Link  http://www.taiwansemi.com
Logo TSC - Taiwan Semiconductor Company, Ltd

TS34119 Datenblatt(HTML) 6 Page - Taiwan Semiconductor Company, Ltd

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TS34119
Low Power Audio Amplifier
6/12
Version: B13
Design Guideline (Continue)
POWER DISSIPATION
Figure 8 to 10 indicate the device dissipation (within the IC) for various combinations of VCC, RL, and load power.
The maximum power which can safely be dissipated within the TS34119 is found from the following equation:
PD= (140oC - Ta) / Өja
Where Ta is the ambient temperature; and Өja is the package thermal resistance (100
oC/W for the standard DIP
package, and 180
oC/W for the surface mount package.) The power dissipated within the TS34119, in a given
application, it is found from the following equation: PD= (VCC
× ICC) + (IRMS × VCC) - (RL × IRMS2)
Where ICC is obtained from Figure 15; and IRMS is the RMS current at the load; and RL is load resistance.
Figure 8 to 10, along with Figure 11 to 13 (distortion curves), and a peak working load current of ±200mA, define
the operating range for the TS34119. The operating range is further defined in terms of allowable load power in
Figure 14 for loads of 8Ω, 16Ω and 32Ω. The left (ascending) portion of each of the three curves is defined by the
power level at which 10% distortion occurs. The center flat portion of each curve is defined by the maximum
output current capability of the TS34119. The right (descending) portion of each curve is defined by the maximum
internal power dissipation of the IC at 25
oC. At higher ambient temperatures, the maximum load power must be
reduced according to the above equations. Operating the device beyond the current and junction temperature
limits will degrade long-term reliability.
Electrical Characteristics Curve
Figure 1. Turn-On Time vs. C2, C2 at Power-On
Figure 2. Amplifier #1 Open Loop Gain and
Phase
Figure 3. Differential Gain vs. Frequency
Figure 4. PSRR vs. Frequency (C2=10uF)


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