DATA SH EET
Product specification
File under Integrated Circuits, IC01 June 1989
INTEGRATED CIRCUITS
TDA7050
Low voltage mono/stereo power
amplifier
June 1989 2
Philips Semiconductors Product specification
Low voltage mono/stereo power amplifier TDA7050
GENERAL DESCRIPTION
The TDA7050 is a low voltage audio amplifier for small radios with headphones (such as watch, pen and pocket radios)
in mono (bridge-tied load) or stereo applications.
Features
Limited to battery supply application only (typ. 3 and 4 V)
Operates with supply voltage down to 1,6 V
No external components required
Very low quiescent current
Fixed integrated gain of 26 dB, floating differential input
Flexibility in use mono BTL as well as stereo
Small dimension of encapsulation (see package design example)
QUICK REFERENCE DATA
PACKAGE OUTLINE
8-lead DIL; plastic (SOT97); SOT97-1; 1996 July 23.
Supply voltage range VP1,6 to 6,0 V
Total quiescent current (at VP = 3 V) Itot typ. 3,2 mA
Bridge tied load application (BTL)
Output power at RL = 32
VP = 3 V; dtot = 10% Potyp. 140 mW
D.C. output offset voltage between the outputs |V| max. 70 mV
Noise output voltage (r.m.s. value)
at f = 1 kHz; RS = 5 kVno(rms) typ. 140 µV
Stereo application
Output power at RL = 32
dtot = 10%; VP = 3 V Potyp. 35 mW
dtot = 10%; VP = 4,5 V Potyp. 75 mW
Channel separation at RS = 0 ; f = 1 kHz αtyp. 40 dB
Noise output voltage (r.m.s. value)
at f = 1 kHz; RS = 5 kVno(rms) typ. 100 µV
June 1989 3
Philips Semiconductors Product specification
Low voltage mono/stereo power amplifier TDA7050
RATINGS
Limiting values in accordance with the Absolute Maximum System (IEC 134)
THERMAL RESISTANCE
Supply voltage VPmax. 6 V
Peak output current IOM max. 150 mA
Total power dissipation see derating curve Fig.1
Storage temperature range Tstg 55 to + 150 °C
Crystal temperature Tcmax. 100 °C
A.C. and d.c. short-circuit duration
at VP = 3,0 V (during mishandling) tsc max. 5 s
From junction to ambient Rthj-a = 110 K/W
Fig.1 Power derating curve.
June 1989 4
Philips Semiconductors Product specification
Low voltage mono/stereo power amplifier TDA7050
CHARACTERISTICS
VP = 3 V; f = 1 kHz; RL = 32 ; Tamb = 25 °C; unless otherwise specified
Note
1. Output power is measured directly at the output pins of the IC. It is shown as a function of the supply voltage in Fig.2
(BTL application) and Fig.3 (stereo application).
PARAMETER SYMBOL MIN. TYP. MAX. UNIT
Supply
Supply voltage VP1,6 6,0 V
Total quiescent current Itot 3,2 4 mA
Bridge-tied load application (BTL); see Fig.4
Output power; note 1
VP = 3,0 V; dtot = 10% Po140 mW
VP = 4,5 V; dtot = 10% (RL = 64 )P
o
150 mW
Voltage gain Gv32 dB
Noise output voltage (r.m.s. value)
RS= 5 k; f = 1 kHz Vno(rms) 140 −µV
RS = 0 ; f = 500 kHz; B = 5 kHz Vno(rms) tbf −µV
D.C. output offset voltage (at RS= 5 k)|V| −−70 mV
Input impedance (at RS =)|Z
i
|1 −−M
Input bias current Ii40 nA
Stereo application; see Fig.5
Output power; note 1
VP = 3,0 V; dtot = 10% Po35 mW
VP = 4,5 V; dtot = 10% Po75 mW
Voltage gain Gv24.5 26 27.5 dB
Noise output voltage (r.m.s. value)
RS = 5 k; f = 1 kHz Vno(rms) 100 −µV
RS = 0 ; f = 500 kHz; B = 5 kHz Vno(rms) tbf −µV
Channel separation
RS = 0 ; f = 1 kHz α30 40 dB
Input impedance (at RS = )|Z
i
|2 −−M
Input bias current Ii20 nA
June 1989 5
Philips Semiconductors Product specification
Low voltage mono/stereo power amplifier TDA7050
Fig.2 Output power across the load impedance (RL) as a function of supply voltage (VP) in BTL application.
Measurements were made at f = 1 kHz; dtot = 10%; Tamb = 25 °C.
Fig.3 Output power across the load impedance (RL) as a function of supply voltage (VP) in stereo application.
Measurements were made at f = 1 kHz; dtot = 10%; Tamb = 25 °C.
June 1989 6
Philips Semiconductors Product specification
Low voltage mono/stereo power amplifier TDA7050
APPLICATION INFORMATION
Fig.4 Application diagram (BTL); also used as test circuit.
Fig.5 Application diagram (stereo); also used as test circuit.
June 1989 7
Philips Semiconductors Product specification
Low voltage mono/stereo power amplifier TDA7050
PACKAGE OUTLINE
REFERENCES
OUTLINE
VERSION EUROPEAN
PROJECTION ISSUE DATE
IEC JEDEC EIAJ
SOT97-1 92-11-17
95-02-04
UNIT A
max. 12 b
1(1) (1) (1)
b2cD E e M Z
H
L
mm
DIMENSIONS (inch dimensions are derived from the original mm dimensions)
A
min. A
max. bmax.
w
ME
e1
1.73
1.14 0.53
0.38 0.36
0.23 9.8
9.2 6.48
6.20 3.60
3.05 0.2542.54 7.62 8.25
7.80 10.0
8.3 1.154.2 0.51 3.2
inches 0.068
0.045 0.021
0.015 0.014
0.009
1.07
0.89
0.042
0.035 0.39
0.36 0.26
0.24 0.14
0.12 0.010.10 0.30 0.32
0.31 0.39
0.33 0.0450.17 0.020 0.13
b2
050G01 MO-001AN
MH
c
(e )
1
ME
A
L
seating plane
A1
wM
b1
e
D
A2
Z
8
1
5
4
b
E
0 5 10 mm
scale
Note
1. Plastic or metal protrusions of 0.25 mm maximum per side are not included.
pin 1 index
DIP8: plastic dual in-line package; 8 leads (300 mil) SOT97-1
June 1989 8
Philips Semiconductors Product specification
Low voltage mono/stereo power amplifier TDA7050
SOLDERING
Introduction
There is no soldering method that is ideal for all IC
packages. Wave soldering is often preferred when
through-hole and surface mounted components are mixed
on one printed-circuit board. However, wave soldering is
not always suitable for surface mounted ICs, or for
printed-circuits with high population densities. In these
situations reflow soldering is often used.
This text gives a very brief insight to a complex technology.
A more in-depth account of soldering ICs can be found in
our
“IC Package Databook”
(order code 9398 652 90011).
Soldering by dipping or by wave
The maximum permissible temperature of the solder is
260 °C; solder at this temperature must not be in contact
with the joint for more than 5 seconds. The total contact
time of successive solder waves must not exceed
5 seconds.
The device may be mounted up to the seating plane, but
the temperature of the plastic body must not exceed the
specified maximum storage temperature (Tstg max). If the
printed-circuit board has been pre-heated, forced cooling
may be necessary immediately after soldering to keep the
temperature within the permissible limit.
Repairing soldered joints
Apply a low voltage soldering iron (less than 24 V) to the
lead(s) of the package, below the seating plane or not
more than 2 mm above it. If the temperature of the
soldering iron bit is less than 300 °C it may remain in
contact for up to 10 seconds. If the bit temperature is
between 300 and 400 °C, contact may be up to 5 seconds.
DEFINITIONS
LIFE SUPPORT APPLICATIONS
These products are not designed for use in life support appliances, devices, or systems where malfunction of these
products can reasonably be expected to result in personal injury. Philips customers using or selling these products for
use in such applications do so at their own risk and agree to fully indemnify Philips for any damages resulting from such
improper use or sale.
Data sheet status
Objective specification This data sheet contains target or goal specifications for product development.
Preliminary specification This data sheet contains preliminary data; supplementary data may be published later.
Product specification This data sheet contains final product specifications.
Limiting values
Limiting values given are in accordance with the Absolute Maximum Rating System (IEC 134). Stress above one or
more of the limiting values may cause permanent damage to the device. These are stress ratings only and operation
of the device at these or at any other conditions above those given in the Characteristics sections of the specification
is not implied. Exposure to limiting values for extended periods may affect device reliability.
Application information
Where application information is given, it is advisory and does not form part of the specification.