ANPEC APA2020RI-TU, APA2020RI-TR, APA2020KI-TY, APA2020KI-TU, APA2020KI-TR Datasheet

APA2020
Stereo 2-W Audio Power Amplifier
Features
••
Depop Circuitry Integrated
••
••
Thermal Shutdown Circuitry Integrated
••
••
Output Power at 1% THD+N, V
••
DD
=5V
- 1.8 W/Ch (typ) into a 4 Ω Load
- 1.2 W/Ch (typ) into a 8 Ω Load
••
Bridge-Tied Load (BTL) or Single-Ended
••
(SE) Modes Operation
••
Various 24-Pin Power Packages Available
••
SOP, TSSOP-P
••
Shutdown Control Mode , I
••
= 0.5µA
DD
Applications
••
Stereo Audio Power Amplifier for Notebook
••
Computer
General Description
The APA2020 is a stereo bridge-tied audio power am­plifier in various 24-pin power packages , including SOP , TSSOP-P. When connecting to a 5V voltage supply , the APA2020 is capable of delivering 1.8W/
1.2W of continuous RMS power per channel into 4Ω/ 8loads with less than 1% THD+N , respectively.
The APA2020 simplifies design and frees up board space for other features.
The APA2020 also served well in low-voltage applications , which provides 800-mW per channel
into 4 loads with a 3.3V supply voltage. Both of the
depop circuitry and the thermal shutdown protection circuitry are integrated in the APA2020 , that reduces pops and clicks noise during power up and when using the shutdown or mute modes and protects the chip from being destroyed by over-temperature failure. To simplify the audio system design in notebook computer applications , the APA2020 combines a stereo bridge-tied loads (BTL) mode for speaker drive and a stereo single-end (SE) mode for headphone drive into a single chip , where both modes are easily switched by the SE/BTL input control pin signal. For power sensitive applications , the APA2020 also features a shutdown function which keeps the supply current only 0.5 µA (typ).
Ordering Information
APA2020
Handling Code
Temp. Range
Package Code
* TSSOP-P is a standard TSSOP package with a thermal pad exposure on the bottom of the package.
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.7 - Feb., 2002
Package Code K : SOP R : TSSOP-P *
Temp. Range I: - 40 to 85 C
Handling Code TU : Tube TR : Tape & Reel TY : Tray
°
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APA2020
Block Diagram
MUX
MUX
MUX SE/BTL
Absolute Maximum Ratings
(Over operating free-air temperature range unless otherwise noted.)
Symbol Parameter Rating Unit
V
CC
T
A
T
J
T
STG
T
S
V
ESD
Note: 1. Human body model : C=100pF , R=1500, 3 positive pulses plus 3 negative pulses
2. Machine model : C=200pF , L=0.5mH , R=0, 3 positive pulses plus 3 negative pulses
Supply Voltage 6 V
Operating Ambient Temperature Range -40 to 85 Maximum Junction Temperature 150 Storage Temperature Range -65 to +150 Soldering Temperature,10 seconds 300 Electrostatic Discharge -3000 to 3000
-200 to 200
*1
*2
C
°
C
°
C
°
C
°
V
Copyright ANPEC Electronics Corp. Rev. A.7 - Feb., 2002
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APA2020
Recommended Operating Conditions
Min. Typ. Max. Unit
Supply Voltage, V
DD
VDD=5V, 4-Ω stereo BTL drive,
Operating free-air temperature, T
250mW/Ch average power, with proper PCB
A
design
VDD=5V, 3-Ω stereo BTL drive,
2 W/Ch average power, with proper PCB design and 300 CFM forced-air cooling
Common mode input voltage, V
VDD=5 V 1.25 4.5
ICM
VDD=3.3V 1.25 2.7
Electrical Characteristics (Cont.)
AC Operating Characteristics , VDD= 5V , TA= 25°C , R
Symbol Parameter Test Condition
P(out) Output power (each channel )
see Note 1
THD + N Total harmonic distortion plus
noise
= 4(unless otherwise noted)
L
THD = 10% , BTL , RL=4
R
THD = 1% , BTL , RL=4
R
THD = 10% , SE , RL=4
R
THD = 1% , SE , R
R
THD = 0.5% , SE , R
PO = 1.6W , BTL , RL=4
P
= 1W , BTL , RL=8
O
P
= 78mW , SE ,RL=32
O
L
L
L
=4
L
=8
L
=32
L
=8
=8
=8
355.5V
-20 85
-20 85
APA2020
Min. Typ.Max.
Ω Ω
Ω Ω Ω
2.3
1.5
1.8
1.2
650
400
500
320
90
300
150
20
C
°
V
Unit
W
mW
m%
= 1V , RL=4
V
1
B
Maximum output power
OM
bandwidth
Phase margin
G = 10 , THD < 1% >20
RL = 4Ω , BTL
Ω ,
G = 1
RL = 4Ω , Open Load
R
= 4Ω , SE
L
Notes 1 : Output power is meaured at the output teminals of the IC at 1 KHz.
Copyright ANPEC Electronics Corp. Rev. A.7 - Feb., 2002
10
72
71
52
KHz
°
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APA2020
Electrical Characteristics (Cont.)
AC Operating Characteristics , VDD= 5V , TA= 25°C , R
= 4(unless otherwise noted)
L
Symbol Parameter Test Condition
APA2020
Min. Typ.Max.
PSRR Power supply ripple rejection f =100 Hz 80 dB
Mute attenuation
Channel-to-channel output separation
Line HP input separation
BTL attenuation in SE mode
ZI Input impedance
Signal-to-noise ratio Po = 500 mW , BTL
Vn Output noise voltage
85 dB
85 dB
75 dB
80 dB
2MW
90 dB
80 μV(rms)
Notes 1 : Output power is meaured at the output teminals of the IC at 1 KHz.
Electrical Characteristics (Cont.)
AC Operating Characteristics , VDD= 5V , TA= 25°C , R
Symbol Parameter Test Condition
P(out) Output power (each channel )
see Note 2
THD = 0.5% , SE , R
THD + N Total harmonic distortion plus
noise
= 4(unless otherwise noted)
L
THD = 10% , BTL , RL=4
R
L
=8
THD = 1% , BTL , RL=4
R
L
=8
THD = 10% , SE , RL=4
R
THD = 1% , SE , R
R
L
=4
L
=8
L
=32
L
=8
PO = 1.6W , BTL , RL=4
P
= 1W , BTL , RL=8
O
= 78mW , SE ,RL=32
P
O
APA2020
Min. Typ.Max.
Ω Ω
1
0.6
0.8
0.5
290
180
230
140
43
270
150
20
Unit
Unit
W
mW
m%
= 1V , RL=4
V
1
B
Maximum output power
OM
bandwidth
Phase margin
G = 10 , THD < 1% >20 KHz
RL = 4Ω , BTL
Ω ,
G = 1
RL = 4Ω , Open Load
R
= 4Ω , SE
L
Notes 2 : Output power is meaured at the output teminals of the IC at 1 KHz.
Copyright ANPEC Electronics Corp. Rev. A.7 - Feb., 2002
10
92
70
57
°
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APA2020
Electrical Characteristics (Cont.)
AC Operating Characteristics , VDD= 5V , TA= 25°C , R
Symbol Parameter Test Condition
PSRR Power supply ripple rejection f =100 Hz 70 dB
Mute attenuation
Channel-to-channel output
f =1 KHz
separation
Line HP input separation
BTL attenuation in SE mode
ZI Input impedance
Signal-to-noise ratio Po = 500 mW , BTL
Vn Output noise voltage
Notes 2 : Output power is meaured at the output teminals of the IC at 1 KHz.
DC Electrical Characteristic , TA=25 °C
= 4(unless otherwise noted)
L
APA2020
Min. Typ.Max.
85 dB
85 dB
75 dB
80 dB
2MW
90 dB
50 μV(rms)
Unit
= 5V
DD
I
DD
Supply Current
V
DD
= 3.3 V
Stereo BTL 8 11 mAV Stereo SE 4 6.5 mA Stereo BTL 7 9 mA Stereo SE 3.5 5.6 mA
V
O (DIFF)
DC Differential Output
=5V, Gain = 2, see Note3 5 25 mV
V
DD
Voltage
I
DD(MUTE)
I
SD
Supply Current in Mute Mode V IDD in Shutdown V
= 5V 8 11 mA
DD
= 5V 0.5 5
DD
Note 3 : at 3V<VDD<5V , the DC output voltage is approximately V
DD
/ 2.
APA2020Symbol Parameter Test Conditions
Typ. Max.
Unit
A
µ
Copyright ANPEC Electronics Corp. Rev. A.7 - Feb., 2002
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APA2020
Pin Description
GND/HS
LOUT+
LLINEIN
LHPIN
LBYPASS
LV
SHUTDOWN
MUTE OUT
LOUT-
MUTE IN
GND/HS
T
J
DD
1
2
3 4
5
6 7
8
9
10 11 12
Top View
For SOP and TSSOP-P
Pin
Name No
GND/HS 1,12,
13,24
TJ 2 O
24
23 22 21
20 19
18
17
16
15 14 13
GND/HS
NC ROUT+
RLINEIN
RHPIN
RBYPASS RV
DD
NC
HP/LINE ROUT-
SE/BTL GND/HS
Thermal
Pad
Bottom View
For TSSOP-P Only
I/O
Description
Ground connection for circuitry, directly connected to thermal pad (only in TSSOP-P package).
Shutdown mode control signal input, sources a current proportional to the junction temperature. This pin should be left unconnected during normal operation. For more information, see the junction temperature measurement section of this document.
LOUT + 3 O Left channel + output in BTL mode, + output in SE mode.
L LINE IN 4 I
LHP IN
5I
Left channel line input, selected when HP/
pin (16) is held low.
LINE
Left channel headphone input, selected when HP/
LINE
pin (16) is
held high.
LBYPASS 6 Connect to voltage divider for left channel internal mid-supply bias.
LV
DD
7 I Supply voltage input for left channel and for primary bias circuits.
SHUTDOWN 8 I Shutdown mode control signal input, places entire IC in shutdown
mode when held high, I
= 0.5µA.
DD
MUTE OUT 9 O Follows MUTE in pin (11), provides buffered output.
LOUT - 10 O Left channel - output in BTL mode, high-impedance state in SE
mode.
MUTE IN 11 I
Mute control signal input, hold low for normal operation, hold high to mute.
SE/BTL
14 I Mode control signal input, hold low for BTL mode, hold high for SE
mode.
ROUT- 15 O
Right channel - output in BTL mode, high impedance state in SE mode.
HP/
LINE
16 I MUX control input, hold high to select headphone inputs (5,20),
hold low to select line inputs (4,21).
Copyright ANPEC Electronics Corp. Rev. A.7 - Feb., 2002
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APA2020
Pin Description (Cont.)
Pin
Name No
I/O
Description
NC 17,23 No internal connection.
RV
DD
RBYPASS 19
18 I Supply voltage input for right channel.
Connect to voltage divider for right channel internal mild-supply bias.
RHP IN 20 I
Right channel headphone input, selected when HP/ held high.
RLINE IN 21 I
Right channel line input, selected when HP/
pin (16) is held
LINE
low.
ROUT+ 22 O Right channel + output in BTL mode, + output in SE mode.
Test Information
R
F
CIR
I
4.7µFC
B
MUX
SE/BTL
HP/LINE
RL=4 Ω , 8Ω or
32 Ω
CIR
4.7µF
R
F
MUX
I
C
B
SE/BTL
HP/LINE
LINE
V
pin (16) is
C
O
RL= 4 or 32
DD
Ω , 8 Ω
Figure 2. BTL Test Circuit
Customer Service
Anpec Electronics Corp.
Head Office :
5F, No. 2 Li-Hsin Road, SBIP, Hsin-Chu, Taiwan, R.O.C. Tel : 886-3-5642000 Fax : 886-3-5642050
Taipei Branch :
7F, No. 137, Lane 235, Pac Chiao Rd., Hsin Tien City, Taipei Hsien, Taiwan, R. O. C. Tel : 886-2-89191368 Fax : 886-2-89191369
Copyright ANPEC Electronics Corp. Rev. A.7 - Feb., 2002
Figure 3. SE Test Circuit
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APA2020
Typical Characteristics
10
VDD=5V
5
f=1 KHz BTL
2
1
%
0.5
0.2
0.1
0.06
0 3500m 1 1.5 2 2.5
THD+N- Total Harmonic Distortion + Noise
Po - Output Power
RL=8
ΩΩ
ΩΩ
W
RL=3
ΩΩ
ΩΩ
Figure 4
10
VDD=5V
5
PO=1.5W
ΩΩ
RL=4
ΩΩ
BTL
2
AV=20
1
%
0.5
0.2
0.1
0.06
20 20k50 100 200 500 1k 2k 5k
THD+N- Total Harmonic Distortion + Noise
AV=10 AV=2
PO=1.8W, RL=3
AV=2
Hz
f - Frequency
Figure 5
10
VDD=5V
5
AV=2
ΩΩ
RL=4
2
1
%
0.5
0.2
0.1
0.06
THD+N- Total Harmonic Distortion + Noise
ΩΩ
BTL
PO=1.8W, RL=3
20 20k50 100 200 500 1k 2k 5k
PO=0.75W PO=1.5W
Hz
PO=0.25W
f - Frequency
Figure 6
10
VDD=5V
5
RL=3
ΩΩ
ΩΩ
BTL
2
1
%
0.5
0.2
0.1
0.06
100m 10200m 500m 1 2 5
THD+N- Total Harmonic Distortion + Noise
f=20KHz
f=20Hzf=1KHz
W
Po - Output Power
Figure 7
Copyright ANPEC Electronics Corp. Rev. A.7 - Feb., 2002
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