an7196z Panasonic Corporation of North America, an7196z Datasheet

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an7196z

Manufacturer Part Number
an7196z
Description
Dual 15 W Btl Power Ic For Car Audio
Manufacturer
Panasonic Corporation of North America
Datasheet
ICs for Audio Common Use
AN7196Z
Dual 15 W BTL power IC for car audio
sound output of car audio (dual 15 W). Especially, this
circuit has solved the problem of heat radiation design
inherent to a single chip IC with 4-channel audio ouput
and realized a corresponding space saving at the same
time.
cuits to protect the IC from destruction by GND-open
short-circuit to GND and power supply surge which are
the most important subjects of power IC protection, and
the IC will largely contribute to a high reliability design
of equipment.
muting circuit, which is free from shock noise, so that a
shock noise design under the set transient condition can
be made easily when the muting circuit is used together
with its standby function.
(dual 20 W), so that the identical pattern design is allowed
for high-class types as well as popular types.
method.
Built-in various protection circuits (realizing high breakdown voltage against destruction )
Power supply surge breakdown voltage of 100 V or more
Ground open breakdown voltage of 16 V or more
Built-in standby function (free from shock noise at standby on/off)
Built-in muting function (the industry's first)
Free from shock noise at mute-on/off
Adapting attenuator method so that abnormal sound due to waveform deformation is not generated
Attack time, recovery time of 50 ms or less
Space saving design is possible with a small size package
A heat radiation design that has been a problem particularly in a 4-ch. single chip IC can be done by the conventional
Reduction in external components (parts reduction to half compared with the AN7176K)
It eliminates the need for NF and BS electrolytic capacitors,
Muting function is unnecessary
Power supply choke coil is unnecessary
Provided with beep sound input pin
Pin compatible with the AN7191NZ (dual 20 W)
Car audio
Overview
Features
Applications
The AN7196Z is an audio power IC developed for the
In addition, it is incorporating various protection cir-
It is also incorporating the industry's first perfect
The AN7196Z is pin compatible with the AN7191NZ
1
3.60±0.10
18.00±0.30
13.50±0.30
19.00±0.30
19.30±0.30
1.27
HZIP015-P-0745A
0.50
+0.20
–0.10
15
(0.61)
1.50±0.10
(1.80)
(2.54)
4.00±0.20
Unit : mm
0.25
(1.95)
+0.15
–0.05
R0.55
1

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an7196z Summary of contents

Page 1

... AN7196Z Dual 15 W BTL power IC for car audio Overview The AN7196Z is an audio power IC developed for the sound output of car audio (dual 15 W). Especially, this circuit has solved the problem of heat radiation design inherent to a single chip IC with 4-channel audio ouput and realized a corresponding space saving at the same time ...

Page 2

... AN7196Z Block Diagram 3 Ch.1 GND 4 Ch.1 Out ( ) Att. 2 Ch.1 Out ( ) Att. Pin Descriptions Pin No. Description 1 Power supply 2 Ch.1 output ( ) 3 Grounding (output ch.1) 4 Ch.1 output ( ) 5 Standby 6 Ch.1 input 7 Muting 8 Grounding (sub) Absolute Maximum Ratings Parameter * 2 Supply voltage * 3 Peak supply voltage Supply current *4 Power dissipation * 1 Operating ambient temperature * 1 Storage temperature Note All items are except for the operating ambient temperature and storage temperature ...

Page 3

... THD 4 on/off HPF-on STB THD kHz 4 120 ms 120 ms AN7196Z Unit V Min Typ Max Unit 120 250 0.22 0.5 mV[rms 0.07 0 ...

Page 4

... AN7196Z Terminal Equivalent Circuits Pin No. Equivalent circuit Drive circuit 2 Drive circuit Drive circuit 4 Drive circuit 200 400 Supply voltage pin Supply connection pin Ch.1 output pin ( ) Pre-amp. Ch.1 positive-phase output pin V 6.6 V REF ...

Page 5

... Beep sound signal input pin 15 Input impedance Ch.2 input pin Approx. Approx. Ch. 2 input signal applied pin Input impedance 30 k Ripple filter pin V CC Output current 200 A AN7196Z Description DC Voltage 2 to10 mV 13 ...

Page 6

... AN7196Z Terminal Equivalent Circuits (continued) Pin No. Equivalent circuit 13 1 Drive circuit 13 Drive circuit Drive circuit 14 Drive circuit Usage Notes 1. Always attach an outside heat sink to use the chip. In addition, the outside heat sink must be fastened onto a chassis for use. ...

Page 7

... Ambient temperature Terminal state Terminal voltage Open Low High Higher than STB 0 V Sub AN7196Z 150 Table 1 Power 0 V Standby state 1.0 V Standby state Operating state Protection Constant RF circuit current source 3.5 k 3.5 k 3.5 k 3.5 k Figure 1 ...

Page 8

... AN7196Z Technical Information (continued) [2] Application note (continued) 2. Oscillation countermeasures 1) In order to increase the oscillation allowance, connect a capacitor and a resistor in series between each output terminal and GND as shown in figure 2. 2) The use of polyester film capacitor having a little fluctuation with temperature and frequency is recommended as the 0.1 F capacitor for oscillation prevention ...

Page 9

... In such a case, insert a capacitor of approx. 0.01 F between the standby terminal and GND. 2) Mute on/off No shock noise is released. Refer to the section on the mute function Constant Protection current source circuit REF 10 k 3.5 k 3.5 k Figure 5 AN7196Z 1 3 Figure 6 AN7196Z Detection circuit Quick discharge circuit To muting circuit GND of input 9 ...

Page 10

... AN7196Z Technical Information (continued) [2] Application note (continued) 8. Mute Function 1) The mute-on/off is possible by making pin 7 (the muting terminal) high or low. 2) The muting circuit is as shown in figure 7. The amplifier gain including attenuator block is given in the following equation : Original gain ...

Page 11

... Power supply 2 200 F Standby 2.2 k Mute In(RR In(FR In(RL In(FL S-GND 0.022 F In(FL 2.1 V REF 0.022 2.1 V REF Figure 8 4.7 k 4.7 k 4.7 k 4.7 k Figure 9 AN7196Z 600 600 28 dB Out(RR) 0.1 F 0.1 F 2.2 Out(FR) 0.1 F 0.1 F 2.2 Out(RL) 0.1 F 0.1 F 2.2 Out(FL) 0.1 F 0.1 F 2.2 11 ...

Page 12

... AN7196Z Technical Information (continued) [2] Application note (continued) 11. Two IC use (continued) 1) Supply terminal Short-circuiting each other, insert an electrolytic capacitor of approx. 2 200 F into the supply terminals. However, if sufficient characteristics of the ripple rejection can not be obtained, use an even larger capacitor or insert a 2 200 F capacitor into each IC. ...

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