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PDF APA0713 Data sheet ( Hoja de datos )

Número de pieza APA0713
Descripción 1.1W Mono Low-Voltage Audio Power Amplifier
Fabricantes ANPEC 
Logotipo ANPEC Logotipo



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APA0713
1.1W Mono Low-Voltage Audio Power Amplifier
Features
General Description
Operating Voltage : 2.6V-5.5V
APA0713 Compatible with TPA751
Supply Current
– I =1.3mA at V =5V ,BTL mode
DD DD
– IDD=0.9mA at VDD=3.3V ,BTL mode
Low Shutdown Current
– IDD=0.1µA
Low Distortion
– 630mW, at VDD=5V, BTL, RL=8
THD+N=0.15%
– 280mW, at VDD=3.3V, BTL, RL=8
THD+N=0.15%
Output Power
at 1% THD+N
– 900mW, at VDD=5V, BTL, RL=8
400mW,
at
V =3.3V,
DD
BTL,
RL=8
at 10% THD+N
1.1W
at
V =5V,
DD
BTL,
RL=8
– 480mW at VDD=3.3V, BTL, RL=8
Depop Circuitry Integrated
Thermal Shutdown Protection and
Over Current Protection Circuitry
High supply voltage ripple rejection
Surface-Mount Packaging
– 8 pin SOP
Lead Free Available (RoHS Compliant)
The APA0713 is a bridged-tied load (BTL) audio power
amplifier developed especially for low-voltage applica-
tions where internal speakers operation is required.
Operating with a 5V supply, the APA0713 can deliver 1.1W
of continuous power into a BTL 8load at 10% THD+N
throughout voice band frequencies. Although this device is
characterized out to 20kHz, its operation is optimized for
narrow band applications such as wireless
communications. The BTL configuration eliminates the
need for external coupling capacitors on the output in
most applications, which is particularly important for small
battery-powered equipment. This device features a shut-
down mode for power-sensitive applications with spe-
cial depop circuitry to eliminate speaker noise when exit-
ing shutdown mode. The APA0713 is available in8-pin
SOP.
Applications
Mobil Phones
PDAs
Digital Cameras
Portable Electronic Devices
Ordering and Marking Information
APA0713
Assembly Material
Handling Code
Temperature Range
Package Code
Package Code
K : SOP-8
Temperature Range
I : -40 to 85 oC
Handling Code
TR : Tape & Reel
Assembly Material
G : Halogen and Lead Free Device
APA0713 K :
APA0713
XXXXX
XXXXX - Date Code
Note : ANPEC lead-free products contain molding compounds/die attach materials and 100% matte tin plate termination finish; which
are fully compliant with RoHS. ANPEC lead-free products meet or exceed the lead-free requirements of IPC/JEDEC J-STD-020D for
MSL classification at lead-free peak reflow temperature. ANPEC defines “Green” to mean lead-free (RoHS compliant) and halogen
free (Br or Cl does not exceed 900ppm by weight in homogeneous material and total of Br and Cl does not exceed 1500ppm by
weight).
ANPEC reserves the right to make changes to improve reliability or manufacturability without notice, and advise
customers to obtain the latest version of relevant information to verify before placing orders.
Copyright © ANPEC Electronics Corp.
Rev. A.2 - Apr, 2012
1
www.anpec.com.tw
Free Datasheet http://www.datasheet4u.com/

1 page




APA0713 pdf
APA0713
Typical Operating Characteristics (Cont.)
THD+N vs. Frequency
10
VDD=3.3V
RL=8
AV=-2V/V
BTL
1
PO=50mW
PO=125mW
0.1 PO=250mW
THD+N vs. Output Power
10
VDD=3.3V
Fin=1KHz
AV=-2V/V
BTL
1
RL=8
0.1
0.01
20
10
100 1k
Frequency (Hz)
10k 20k
THD+N vs. Output Power
Fin=10KHz
1 Fin=20KHz
Fin=1KHz
0.1
0.01
VDD=3.3V
RL=8
CB=1µF
AV=-2V/V
BTL
Fin=20Hz
0.01
0.1
Output Power (W)
1
THD+N vs. Frequency
10
VDD=5V
RL=8
AV=-2V/V
BTL
1
PO=50mW
PO=700mW
0.1 PO=350W
0.01
0
0.1 0.2 0.3 0.4 0.5
Output Power (W)
0.6
THD+N vs. Frequency
10
AV=-20V/V
1
AV=-10V/V
0.1
VDD=5V
PO=700mW
RL=8
BTL
0.01
20
100
AV=-2V/V
1k 10k 20k
Frequency (Hz)
THD+N vs. Output Power
10
VDD=5V
Fin=1KHz
AV=-2V/V
BTL
1
RL=8
0.1
0.01
20
100 1k
Frequency (Hz)
Copyright © ANPEC Electronics Corp.
Rev. A.2 - Apr., 2012
10k 20k
5
0.01
0.1
0.3 0.5 0.7 0.9
Output Power (W)
1.1 1.2
www.anpec.com.tw
Free Datasheet http://www.datasheet4u.com/

5 Page





APA0713 arduino
APA0713
Application Information (Cont.)
Effective Bypass Capacitor, Cbypass (Cont.)
PSRR due to increased half-supply stability. Typical ap-
plication employs a 5V regulator with 1.0µF and a 0.1µF
bypass as supply filtering. This does not eliminate the
need for bypassing the supply nodes of the APA0713.
The selection of bypass capacitors, especially Cbypass, thus
depends upon desired PSRR requirements, click- and-
pop performance.
To avoid start-up pop noise occurred, the bypass volt-
age should rise slower than the input bias voltage and
the relationship shown in equation (4) should be
maintained.
1
Cbypass × 80K
<< 1
(RI + RF)× CI
(3)
The bypass capacitor is fed from a 80Kresistor inside
the amplifier. Bypass capacitor, Cbypass, values of 0.1µF
to 2.2µF ceramic or tantalum low-ESR capacitors
are recommended for the best THD+N and noise
performance.
The bypass capacitance also effects to the start up time. It
is determined in the following equation :
Tstartup = 5 × (Cbypass × 80K)
(4)
Power Supply Decoupling, CS
The APA0713 is a high-performance CMOS audio ampli-
fier that requires adequate power supply decoupling to
ensure the output total harmonic distortion (THD+N)
is as low as possible. Power supply decoupling also pre-
vents the oscillations causing by long lead length be-
tween the amplifier and the speaker. The optimum
decoupling is achieved by using two different types of
capacitors that target on different types of noise on the
power supply leads. For higher frequency transients,
spikes, or digital hash on the line, a good low equivalent-
series-resistance (ESR) ceramic capacitor, typically 0.1µF,
is placed as close as possible to the device’s VDD lead,
which is for the best performance. For filtering lower-fre-
quency noise signals, a large aluminum electrolytic ca-
pacitor of 10µF or greater placed near the audio power
amplifier is recommended.
Optimizing Depop Circuitry
Circuitry has been included in the APA0713 to mini-
mize the amount of popping noise at power-up and when
coming out of shutdown mode. Popping occurs when-
ever a voltage step is applied to the speaker. In order to
eliminate click-and-pop, all capacitors must be fully dis-
charged before turn-on. Rapid on/off switching of the de-
vice or the shutdown function will cause the click-and-
pop circuitry. The value of C will also affect turn-on pops
I
(refer to Effective Bypass Capacitance). The bypass volt-
age rise up should be slower than input bias voltage.
Although the bypass pin current source cannot be
modified, the size of C can be changed to alter the
bypass
device turn-on time and the amount of click-and-pop. By
increasing the value of Cbypass, turn-on pop can be reduced.
However, the tradeoff for using a larger bypass capacitor
is to increase the turn-on time for this device. There is a
linear relationship between the size of C and the turn-
bypass
on time.
In the most cases, choosing a small value of CI in the
range
of
0.33µF
to
1µF,
C
bypass
being
equal
to
1µF
should
produce a virtually clickless and popless turn-on.
A high gain amplifier intensifies the problem as the small
delta in voltage is multiplied by the gain. Hence, it is ad-
vantageous to use low-gain configurations.
Shutdown Function
In order to reduce power consumption while not in using,
the APA0713 contains a shutdown function to externally
turn off the amplifier bias circuitry. This shutdown feature
turns the amplifier off when a logic low on the Shutdown
pin for APA0713.
The trigger point between a logic high and logic low level
is typically 0.4VDD. It’s better to switch between ground
and the supply voltage VDD to provide maximum device
performance.
By switching the Shutdown pin to high level, the amplifier
enters a low-current state, I for APA0713. APA0713 is
DD
in shutdown mode. In normal operation, APA0713’s
Shutdown pin should be pulled to low level to keep the IC
Copyright © ANPEC Electronics Corp.
Rev. A.2 - Apr., 2012
11
www.anpec.com.tw
Free Datasheet http://www.datasheet4u.com/

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