Datasheet TDA8566 (NXP) - 8

HerstellerNXP
Beschreibung2 x 40 W/2 ohm stereo BTL car radio power amplifier with differential inputs and diagnostic outputs
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NXP Semiconductors. TDA8566. 40 W/2. stereo BTL car radio power amplifier. 7.6 Differential inputs. Limiting values. Table 5. Symbol

NXP Semiconductors TDA8566 40 W/2 stereo BTL car radio power amplifier 7.6 Differential inputs Limiting values Table 5 Symbol

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NXP Semiconductors TDA8566 2
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40 W/2

stereo BTL car radio power amplifier 7.6 Differential inputs
The input stage is a high-impedance fully differential balanced input stage that is also capable of operating in a single-ended mode with one of the inputs capacitively coupled to an audio ground. It should be noted that if a source resistance is added (input voltage dividers) the CMRR degrades to lower values.
8. Limiting values Table 5. Limiting values
In accordance with the Absolute Maximum Rating System (IEC 60134).
Symbol Parameter Conditions Min Max Unit
VP supply voltage operating - 18 V non-operating - 30 V load dump protection; - 45 V during 50 ms; t ≥ r 2.5 ms IOSM non-repetitive peak output - 10 A current IORM repetitive peak output - 7.5 A current Tstg storage temperature −55 +150 °C Tvj virtual junction temperature - 150 °C Tamb ambient temperature −40 +85 °C Vpsc short-circuit safe voltage - 18 V Vrp reverse polarity voltage - 6.0 V Ptot total power dissipation - 60 W
9. Thermal characteristics Table 6. Thermal characteristics
Thermal characteristics in accordance with IEC 60747-1.
Symbol Parameter Conditions Typ Unit
Rth(j-c) thermal resistance from junction to case see Figure 7 1.3 K/W Rth(j-a) thermal resistance from junction to ambient in free air 40 K/W output 1 output 2 virtual junction 2.2 K/W 2.2 K/W 0.2 K/W case 001aaa155
Fig 7. Equivalent thermal resistance network
TDA8566_6 © NXP B.V. 2007. All rights reserved.
Product data sheet Rev. 06 — 15 October 2007 8 of 21
Document Outline 1. General description 2. Features 3. Quick reference data 4. Ordering information 5. Block diagram 6. Pinning information 6.1 Pinning 6.2 Pin description 7. Functional description 7.1 Mode select switch (pinMODE) 7.2 Clip detection (pinCLIP) 7.3 Short-circuit diagnostic (pinDIAG) 7.4 Temperature pre-warning (pinDIAG) 7.5 Open-collector diagnostic outputs 7.6 Differential inputs 8. Limiting values 9. Thermal characteristics 10. Static characteristics 11. Dynamic characteristics 12. Application information 12.1 Diagnostic output 12.2 Mode select switch 13. Test information 14. Package outline 15. Soldering 15.1 Introduction to soldering 15.2 Wave and reflow soldering 15.3 Wave soldering 15.4 Reflow soldering 16. Revision history 17. Legal information 17.1 Data sheet status 17.2 Definitions 17.3 Disclaimers 17.4 Trademarks 18. Contact information 19. Contents