U4083B-MFPY 19 Atmel, U4083B-MFPY 19 Datasheet - Page 4

IC AMP AUDIO LP TELEPHONE 8SOIC

U4083B-MFPY 19

Manufacturer Part Number
U4083B-MFPY 19
Description
IC AMP AUDIO LP TELEPHONE 8SOIC
Manufacturer
Atmel
Datasheet

Specifications of U4083B-MFPY 19

Function
Audio Amplifier
Number Of Circuits
1
Voltage - Supply
2 V ~ 16 V
Current - Supply
5mA
Power (watts)
440mW
Operating Temperature
-20°C ~ 70°C
Mounting Type
Surface Mount
Package / Case
8-SOIC (3.9mm Width)
Includes
Chip Disable
Operational Class
Class-AB
Audio Amplifier Output Configuration
1-Channel Mono
Output Power (typ)
0.4(Min)x1@100OhmW
Audio Amplifier Function
Speaker
Single Supply Voltage (typ)
3/5/9/12/15V
Dual Supply Voltage (typ)
Not RequiredV
Supply Current (max)
5@16VmA
Power Supply Requirement
Single
Power Dissipation
440mW
Unity Gain Bandwidth Product (typ)
1.5MHz
Rail/rail I/o Type
No
Power Supply Rejection Ratio
52dB
Single Supply Voltage (min)
2V
Single Supply Voltage (max)
16V
Dual Supply Voltage (min)
Not RequiredV
Dual Supply Voltage (max)
Not RequiredV
Operating Temp Range
-20C to 70C
Operating Temperature Classification
Commercial
Mounting
Surface Mount
Pin Count
8
Package Type
SOIC
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Interface
-
Lead Free Status / Rohs Status
Compliant
3.3
3.4
4
Pin 4: Amplifier Input V
Pin 6: Supply and Power Dissipation
U4083B
There are two identical operational amplifiers. Amplifier 1 has an open-loop gain
100Hz
R
approximately 1.5 MHz. A closed-loop gain of 46 dB is recommended for a frequency range of
300Hz to 3400Hz (voice band). Amplifier 2 is internally set to a gain of –1.0 dB (0 dB). The out-
puts of both amplifiers are capable of sourcing and sinking a peak current of 200 mA. Output
voltage swing is between 0.4V and V
Figure 8-19 on page
The output DC offset voltage between Pins 5 and 8 (V
back resistor, R
Bias current of Amplifier 1 which is constant with respect to V
through R
amount.
The output offset voltage specified in the electrical characteristics is measured with the feedback
resistor (R
account the bias current as well as internal offset voltages of the amplifiers.
Power dissipation is shown in
Distortion characteristics are given in
where
T
T
R
Power dissipated within the IC in a given application is found from the following equation:
P
I
I
The IC's operating range is defined by a peak operating load current of ±200 mA
page 9
ure 8-14 on page
power level at which 10% distortion occurs. The center flat portion of each curve is defined by
the maximum output current capability of the integrated circuit. The right (descending) portion of
each curve is defined by the maximum internal power dissipation of the IC at 25°C. At higher
ambient temperatures, the maximum load power must be reduced according to the above men-
tioned equation.
P
S
RMS
jmax
amb
tot
i
thJA
totmax
is obtained from
(Figure 8-3 on page
= (V
is the RMS current at the load R
= Ambient temperature
= Junction temperature = 140°C
= Thermal resistance, junction-ambient
(Figure 8-2 on page
to
S
=
f
Figure 8-13 on page
, forcing V
f
T
-------------------------------- -
= 75 k ) shown in the typical application circuit,
i
, Pin 5: Amplifier Output 1 V
I
jmax
S
) + (I
R
f
, because the input offset voltages of the two amplifiers neutralize each other.
thJA
12). The left (ascending) portion of each of the three curves is defined by the
T
RMS
Figure 8-15 on page
amb
O1
13).
to shift negative by an amount equal to R
8). The amplifier is unity gain stable, and has a unity gain frequency of
V
S
) – (R
7), whereas the closed-loop gain is set by external resistors, R
Figure 8-8 on page 9
11). It is further specified with respect to different loads (see
L
L
I
S
Figure 8-11 on page 10
RMS
.
– 1.3V at maximum current
12.
2
)
O1
, Pin 8: Amplifier Output 2 V
to
Figure 8-10 on page 10
O1
– V
Figure 8-20 on page
O2
to
) is mainly a function of the feed-
Figure 8-13 on page
f
I
IB
s
, flows out of Pin 4 (V
(Figure 8-18 on page 13
and V
O2
positive to an equal
for different loads.
14. It takes into
4655C–CORD–03/06
(Figure 8-8 on
11.
O2
80 dB at
i
) and
f
Fig-
and
and

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