KKA2616 [KODENSHI]

2 x 12 W Hi-Fi Audio Power Amplifiers with Mute; 2× 12 W HI- FI音频功率,静音放大器
KKA2616
型号: KKA2616
厂家: KODENSHI KOREA CORP.    KODENSHI KOREA CORP.
描述:

2 x 12 W Hi-Fi Audio Power Amplifiers with Mute
2× 12 W HI- FI音频功率,静音放大器

放大器
文件: 总3页 (文件大小:108K)
中文:  中文翻译
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TECHNICAL DATA  
2 x 12 W Hi-Fi Audio Power Amplifiers with Mute  
GENERAL DESCRIPTION  
The KKA2616 are dual power amplifiers. The KKA2616 is supplied in a 9-lead single-in-line (SIL9) plastic power package  
(SOT131). They have been especially designed for mains fed applications, such as stereo radio and stereo TV.  
FEATURES  
• Requires very few external components  
• No switch-on/switch-off clicks  
• Input mute during switch-on and switch-off  
• Low offset voltage between output and ground  
• Excellent gain balance of both amplifiers  
• Hi-fi in accordance with IEC 268 and DIN 45500  
• Short-circuit proof and thermal protected  
• Mute possibility.  
QUICK REFERENCE DATA Stereo application  
SYMBOL  
±Vp  
PO  
PARAMETER  
supply voltage range  
output power  
internal voltage gain  
channel unbalance  
channel separation  
supply voltage ripple rejection  
noise output voltage  
CONDITIONS  
MIN.  
7.5  
TYP.  
-
MAX.  
21  
-
-
-
-
-
- •  
UNIT  
V
W
dB  
dB  
dB  
dB  
nV  
Vp = ±16 V; THD = 0.5%  
-
-
-
-
-
-
12  
30  
0.2  
70  
60  
70  
GV  
lGyl  
a
SVRR  
Vno  
ORDERING INFORMATION  
EXTENDED TYPE  
PACKAGE  
NUMBER  
KKA2616  
PINS  
9
PIN POSITION  
SIL  
MATERIAL  
plastic  
CODE  
SOT131^  
PINING  
SYMBOL  
-INV1  
MUTE  
1/2Vp/GND  
OUT1  
PIN  
1
2
3
4
DESCRIPTION  
non-inverting input 1  
mute input  
1/2 supply voltage or ground  
output 1  
-Vp  
OUT2  
5
6
supply voltage (negative)  
output 2  
+Vp  
INV1,2  
-INV2  
7
8
9
supply voltage (positive)  
inverting inputs 1 and 2  
non-inverting input 2  
CHARACTERISTICS  
CONDITIONS  
SYMBOL PARAMETER  
MIN.  
TYP.  
MAX. UNIT  
Supply  
±Vp  
IORM  
supply voltage range  
repetitive peak output current  
-
-
16  
2.2  
21  
-
V
A
Operating position; note 1  
±Vp  
IP  
PO  
supply voltage range  
total quiescent current  
output power  
7.5  
18  
10  
12  
-
16  
40  
12  
15  
0.15  
20 to  
21  
70  
-
-.  
0.2  
-
V
R =  
mA  
W
W
%
L
THD = 0.5%  
THD = 10%  
Po=6W  
THD  
B
total harmonic distortion  
power bandwidth  
THD = 0.5%; note 2  
-
Hz  
20000  
Gv  
voltage gain.  
29  
30  
31  
dB  
1
KKA2616  
SYMBOL PARAMETER  
CONDITIONS  
MIN.  
-
-
14  
40  
46  
-
-
-
TYP.  
0.2  
70  
20  
60  
70  
0.3  
30  
MAX. UNIT  
lGvl  
gain unbalance  
1
dB  
nV  
kl2  
dB  
dB  
nA  
mV  
mV  
Vno  
IZil  
noise output voltage  
input impedance  
note3  
140  
26  
-
SVRR  
a
Ibias  
lAVeNol  
lAV^I  
supply voltage ripple rejection  
channel separation  
input bias current  
DC output offset voltage  
DC output offset voltage  
note 4  
RS=O  
-
-
200  
150  
between two channels  
4
MUTE POSITION (AT IMUTE 300 mA)  
VQ  
output voltage  
VI = 600 mV  
note 7  
-
0.3  
9
1.0  
11.3  
70  
140  
-
200  
150  
mV  
k^  
mA  
uV  
dB  
mV  
mV  
22-7  
IP  
mute input impedance  
total quiescent current  
noise output voltage  
supply voltage ripple rejection  
DC output offset voltage  
offset voltage with respect to operating  
position  
6.7  
18  
-
40  
-
RL=  
note3  
40  
70  
55  
40  
4
Vno  
SVRR  
lVGND  
lVoffI  
note 4  
l
-
I2  
current if pin 2 is connected to pin 5  
-
-
8.2  
mA  
Mute position; note 5  
±Vp  
IP  
VQ  
Vno  
SVRR  
lVGND  
supply voltage range  
total quiescent current.  
output voltage  
noise output voltage  
supply voltage ripple rejection  
DC output offset voltage  
2
9
-
-
40  
-
-
5.8  
40  
1.0  
140  
-
V
RL=  
VI = 600 mV  
note 3  
30  
0.3  
70  
55  
40  
mA  
mV  
uV  
dB  
mV  
note 4  
l
200  
Operating position; note 6  
IP  
total quiescent current  
18  
40  
70  
mA  
PO  
output power  
THD = 0.5%  
THD = 10%  
THD = 0.5%; RL = 4 Q  
THD = 10%; RL = 4 1.2  
Po=4W  
5
6.5  
-
-
-
-
6
8
10  
14  
0.13  
40 to  
20000  
30  
0.2  
70  
-
-
-
-
W
W
W
W
%
THD  
B
total harmonic distortion  
power bandwidth  
0.2  
-
THD = 0.5%; note 2  
Hz  
GV  
voltage gain  
29  
-
-
14  
35  
-
31  
1
140  
26  
-
dB  
dB  
HV  
kQ  
dB  
dB  
lGvl  
Vno  
IZil  
gain unbalance  
noise output voltage  
input impedance  
note3  
20  
44  
45  
SVRR  
a
supply voltage ripple rejection  
channel separation  
-
MUTE POSITION (IMUTE300 )mA)  
VQ  
Z2-7  
IP  
Vno  
SVRR  
lVoffI  
output voltage  
VI = 600 mV  
note?  
-
0.3  
9
40  
70  
44  
4
1.0  
11.3  
70  
140  
-
mV  
kΩ  
mA  
mV  
dB  
mute input impedance  
total quiescent current  
noise output voltage  
supply voltage ripple rejection .  
offset voltage with respect to operating  
position  
6.7  
18  
-
35  
-
note 3  
note 4  
150  
mV  
I2  
current if pin 2 is connected to pin 5  
-
-
8.2  
mA  
Notes to the characteristics  
1. Vp = ±16 V; RI. = 8 Q; Tamb = 25 °C; f =1 kHz; symmetrical power supply IMUTE < 30 [LIA. SEE Fig.4  
2. The power bandwidth is measured at an output power of PQ max -3 dB  
3. The noise output voltage (RMS value) is measured at Rg = 2 kl2, unweighted (20 Hz to 20 kHz)  
4. The ripple rejection is measured at Rs = 0 and f = 100 Hz to 20 kHz. The ripple voltage (200 mV) is applied in phase  
to the positive and the negative supply rails'. With asymmetrical power supplies, the ripple rejection is'measured at  
f=1 kHz  
5. ±Vp = 4 V; RL =• 8 Q; Tamb = 25 °C; f =1 kHz; symmetrical power supply. See Fig.4  
6. Vp = 24 V; R)_ = 8 Q; Tamb = 25 °C; f =1 kHz; asymmetrical power supply IMUTE < 30 )LIA. See Fig.5  
7. The internal network at pin 2 is a resistor devider of typical 4 kQ and 5 kiltothe positive supply rail. At the connection  
of the 4 ki2 and 5 kQ resistor a zener diode of typical 6.6 V is also connected to the positive supply rail. The spread  
of the zener voltage is 6.1 to 7.1 V.  
2
KKA2616  
9-Pin Plastic Power Single-in-Line (SIL-9MPF, SOT 131-2)  
24-0.21  
4.4  
0.15  
19.8 0.026  
3.2 0.15  
2
0.06  
1
9
0.4 0.05  
2.54  
0.65 0.05  
M
0.25  
3

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