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TDA7370BV Datasheet(PDF) 11 Page - STMicroelectronics |
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TDA7370BV Datasheet(HTML) 11 Page - STMicroelectronics |
11 / 17 page Offset Control The quiescent output voltage must be as close as possible to its nominal value, so that less undis- torted power would be available. For this reason an input bias current compensa- tion is implemented to reduce the voltage drop across the input resistors, which appears ampli- fied at the outputs. Gain Internally Fixed to 20dB in Single Ended, 26dB in Bridge Advantages of this design choice are in terms of: components and space saving output noise, supply voltage rejection and dis- tortion optimization. Silent Turn On/Off and Muting/Stand-by Func- tion The stand-by can be easily activated by means of a CMOS level applied to pin 7 through a RC filter. Under stand-by condition the device is turned off completely (supply current= 1 µA TYP ; output at- tenuation= 90 dB TYP). Every ON/OFF operation is virtually pop free. Furthermore, at turn-on the device stays in muting condition for a time determined by the value as- signed to the SVR capacitor (T= Csvr * 7,000). While in muting the device outputs becomes in- sensitive to any kinds of signal that may be pre- sent at the input terminals. In other words every transient coming from previous stages produces no unpleasant acoustic effect to the speakers. Another situation under which the device is totally muted is whenever the supply voltage drops lower than 7V. This is helpful to pop suppression during the turn-off by battery switch. Easy Single Ended to Bridge Transition. The change from single ended to bridge configu- rations is made simply by means of a short circuit across the inputs, that is no need of further exter- nal components. High Application Flexibility The availability of 4 independent channels makes it possible to accomplish several kinds of applica- tions ranging from 4 speakers stereo (F/R) to 2 speakers bridge solutions. In case of working in single ended conditions the polarity of the speakers driven by the inverting amplifier must be reversed respect to those driven by non inverting channels. This is to avoid phase inconveniences causing sound alterations especially during the reproduc- tion of low frequencies. BUILT-IN PROTECTION SYSTEMS Full Protection of Device and Loudspeakers Against AC/DC Short Circuits (to Gnd, to Vs, across the Speakers). Reliable and safe operation in presence of all kinds of short circuit involving the outputs is as- sured by a built-in protection system that operates in the following way: In case of overload, a SCR is activated as soon as the current flowing through the output transis- tors overcomes a preset threshold value depend- ing on the chip temperature. The SCR causes an interruption of the supply current of the power transistor. The normal working is restored by a re- start circuit going into action as soon as the short circuit is removed. Load Dump Voltage Surge The TDA7370B has a circuit which enables it to withstand a voltage pulse train on pins 3 and 13, of the type shown in fig. 22. If the supply voltage peaks to more than 50V, then an LC filter must be inserted between the supply and pins 3 and 13, in order to assure that the pulses at pins 3 and 13 will be held within the limits shown. A suggested LC network is shown in fig. 21. With this network, a train of pulses with amplitude up to 120V and width of 2ms can be applied at point A. This type of protection is ON when the supply voltage (pulse or DC) exceeds 18V. For this reason the maximum operating supply volt- age is 18V. Figure 21 Figure 22 TDA7370B 11/17 Obsolete Product(s) - Obsolete Product(s) |
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