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产品型号BD37522FS-E2的Datasheet PDF文件预览

Sound Processor Series for Car Audio  
Sound Processors with Built-in  
2-band Equalizer  
BD37522FS,BD37523FS  
No.10085EAT04  
Description  
BD37522FS, BD37523FS are sound processors built-in 2-band equalizer for car audio. The functions are stereo 5ch input  
selector, input-gain control, main volume, loudness, 5ch fader volume (About BD37522FS, 4ch fader volume are available).  
Moreover, “Advanced switch circuit”, that is ROHM original technology, can reduce various switching noise (ex. No-signal,  
low frequency likes 20Hz & large signal inputs). “Advanced switch” makes control of microcomputer easier, and can  
construct high quality car audio system.  
Features  
1) Reduce switching noise of input gain control, mute, main volume, fader volume, bass, treble, loudness by using  
advanced switch circuit [Possible to control all steps]  
2) Built-in 1 differential input selector and 4 single-ended input selectors  
3) Built-in ground isolation amplifier inputs, ideal for external stereo input.  
4) Built-in input gain controller reduces switching noise for volume of a portable audio input.  
5) Decrease the number of external components by built-in 2-band equalizer filter, LPF for subwoofer (BD37523FS),  
loudness filter. And, possible to control Q, Gv, fo of 2-band equalizer and fc(BD37523FS) of LPF, Gv of loudness by  
I2C BUS control freely  
6) It is possible for the bass, treble to the gain adjustment quantity of ±20dB and 1 dB step gain adjustment.  
7) Terminals for the subwoofer outputs are equipped.  
8) Bi-CMOS process is suitable for the design of low current and low energy. And it provides more quality for small  
scale regulator and heat in a set.  
9) Package is SSOP-A24. Putting input-terminals together and output-terminals together can make PCB layout easier  
and can makes area of PCB smaller.  
10) It is possible to control by 3.3V / 5V for I2C BUS.  
Applications  
It is the optimal for the car audio. Besides, it is possible to use for the audio equipment of mini Compo, micro Compo, TV  
etc with all kinds.  
www.rohm.com  
© 2010 ROHM Co., Ltd. All rights reserved.  
2010.03 - Rev.A  
1/26  
Technical Note  
BD37522FS,BD37523FS  
Line up matrix  
Function  
BD37522FS BD37523FS  
Specifications  
Stereo 4 input  
Differential 1 input  
020dB1dB step)  
Possible to use “Advanced switch” for prevention of switching noise.  
Possible to use “Advanced switch” for prevention of switching noise.  
+15dB-79dB1dB step, -  
Possible to use “Advanced switch” for prevention of switching noise.  
-20+20dB1dB step)  
Input selector  
Input gain  
Mute  
Volume  
Q=0.5, 1, 1.5, 2 variable  
fo=60, 80, 100, 120Hz  
Possible to use “Advanced switch” at changing gain  
-20+20dB1dB step)  
Q=0.75, 1.25 variable  
Bass  
Treble  
fo=7.5k, 10k, 12.5k, 15kHz  
Possible to use “Advanced switch” at changing gain  
+15dB-79dB(1dB step), -dB(BD37522FS : 0dB-79dB, -dB)  
Possible to use “Advanced switch” for prevention of switching noise.  
0dB20dB(1dB step)  
Fader  
Loudness  
LPF  
×
fo=800Hz  
Possible to use “Advanced switch” for prevention of switching noise.  
fc=55/85/120/160Hz, pass  
Phase shift (0°/180°)  
Absolute maximum ratings (Ta=25)  
Item  
Symbol  
VCC  
Vin  
Rating  
10.0  
Unit  
V
Power supply Voltage  
Input voltage  
VCC+0.3GND-0.3  
1000 1  
V
Power Dissipation  
Storage Temperature  
Pd  
mW  
Tastg  
-55+150  
This value decreases 8mW/for Ta=25or more.  
ROHM standard board shall be mounted.  
Thermal resistance θja = 125(/W)  
ROHM Standard board  
Size70×70×1.6()  
MaterialA FR4 grass epoxy board(3% or less of copper foil area)  
Operating conditions  
Item  
Symbol  
VCC  
MIN  
7.0  
TYP  
MAX  
9.5  
Unit  
V
Power supply Voltage  
Temperature  
Topr  
-40  
+85  
www.rohm.com  
© 2010 ROHM Co., Ltd. All rights reserved.  
2010.03 - Rev.A  
2/26  
Technical Note  
BD37522FS,BD37523FS  
Electrical characteristics  
(Unless specified particularly, Ta=25, VCC=8.5V, f=1kHz, Vin=1Vrms, Rg=600, RL=10k, A1 input, Input gain 0dB,  
Mute off, Volume 0dB, Tone control 0dB, Loudness 0dB, LPF OFF(BD37523FS), Fader 0dB)  
Limit  
Item  
Symbol  
Unit  
Condition  
Min.  
Typ.  
Max.  
Current upon no signal  
Voltage gain  
IQ  
38  
0
48  
mA  
dB  
dB  
No signal  
GV  
CB  
-1.5  
-1.5  
+1.5  
+1.5  
Gv=20log(VOUT/VIN)  
CB = GV1-GV2  
Channel balance  
0
Total harmonic distortion 1  
(FRONT,REAR)  
VOUT=1Vrms  
BW=400-30KHz  
0.001  
0.05  
Total harmonic distortion 2  
(SUBWOOFER)  
(BD37523FS)  
Output noise voltage 1  
(FRONT,REAR)*  
Output noise voltage 2  
(SUBWOOFER)*  
(BD37523FS)  
VOUT=1Vrms  
BW=400-30KHz  
THD+N2  
VNO1  
0.002  
3.8  
0.05  
15  
Rg = 0Ω  
BW = IHF-A  
μVrms  
μVrms  
Rg = 0Ω  
BW = IHF-A  
VNO2  
4.8  
15  
Fader = -dB  
Residual output noise voltage*  
Cross-talk between channels*  
Ripple rejection  
VNOR  
CTC  
RR  
1.8  
-100  
-70  
10  
-90  
-40  
μVrms Rg = 0Ω  
BW = IHF-A  
Rg = 0Ω  
dB  
dB  
CTC=20log(VOUT/VIN)  
BW = IHF-A  
f=1kHz  
VRR=100mVrms  
RR=20log(VCC IN/VOUT)  
Input impedance(A, B)  
Input impedance (C,D,E)  
RIN_S  
RIN_D  
70  
175  
100  
250  
130  
325  
kΩ  
kΩ  
VIM at THD+N(VOUT)=1%  
BW=400-30KHz  
Rg = 0Ω  
Maximum input voltage  
VIM  
2.1  
2.3  
Vrms  
Cross-talk between selectors*  
CTS  
-100  
-90  
dB  
CTS=20log(VOUT/VIN)  
BW = IHF-A  
CP1 and CN input  
CP2 and CN input  
CMRR=20log(VIN/VOUT)  
BW = IHF-A  
Input gain 0dB  
VIN=100mVrms  
Gin=20log(VOUT/VIN)  
Input gain +20dB  
VIN=100mVrms  
Gin=20log(VOUT/VIN)  
GAIN=+20+1dB  
Mute ON  
Common mode rejection ratio*  
CMRR  
GIN MIN  
50  
-2  
65  
0
dB  
dB  
Minimum input gain  
+2  
Maximum input gain  
Gain set error  
GIN MAX  
GIN ERR  
GMUTE  
+18  
-2  
+20  
0
+22  
+2  
dB  
dB  
dB  
Mute attenuation*  
-105  
-85  
Gmute=20log(VOUT/VIN)  
BW = IHF-A  
Volume = +15dB  
VIN=100mVrms  
Gv=20log(VOUT/VIN)  
Volume = -dB  
Maximum gain  
GV MAX  
+13  
+15  
+17  
-85  
dB  
dB  
Gv=20log(VOUT/VIN)  
Maximum attenuation*  
GV MIN  
-100  
BW = IHF-A  
Attenuation set error 1  
Attenuation set error 2  
Attenuation set error 3  
GV ERR1  
GV ERR2  
GV ERR3  
-2  
-3  
-4  
0
0
0
+2  
+3  
+4  
dB  
dB  
dB  
GAIN & ATT=+15dB-15dB  
ATT=-16dB-47dB  
ATT=-48dB-79dB  
www.rohm.com  
© 2010 ROHM Co., Ltd. All rights reserved.  
2010.03 - Rev.A  
3/26  
Technical Note  
BD37522FS,BD37523FS  
Limit  
Typ.  
Item  
Symbol  
GB BST  
Unit  
dB  
Condition  
Min.  
18  
Max.  
22  
Gain=+20dB f=100Hz  
VIN=100mVrms  
Maximum boost gain  
20  
GB=20log (VOUT/VIN)  
Gain=-20dB f=100Hz  
VIN=2Vrms  
GB=20log (VOUT/VIN)  
Gain=-20+20dB f=100Hz  
Gain=+20dB f=10kHz  
VIN=100mVrms  
Maximum cut gain  
Gain set error  
-22  
-2  
-20  
0
-18  
2
dB  
dB  
dB  
GB CUT  
GB ERR  
GT BST  
Maximum boost gain  
17  
20  
23  
GT=20log (VOUT/VIN)  
Gain=-20dB f=10kHz  
VIN=2Vrms  
GT=20log (VOUT/VIN)  
Gain=-20+20dB f=10kHz  
Maximum cut gain  
Gain set error  
-23  
-2  
-20  
0
-17  
2
dB  
dB  
dB  
GT CUT  
GT ERR  
Fader=+15dB  
Maximum boost gain  
(BD37523FS)  
GF BST  
+13  
+15  
+17  
VIN=100mVrms  
GF=20log(VOUT/VIN)  
Fader = -dB  
Maximum attenuation*  
GF MIN  
-100  
0
-90  
+2  
dB  
dB  
GF=20log(VOUT/VIN)  
BW = IHF-A  
Gain set error  
(BD37523FS)  
GF ERR  
-2  
Gain=+15+1dB  
GF ERR1  
GF ERR2  
GF ERR3  
ROUT  
-2  
-3  
-4  
-
0
0
2
3
dB  
dB  
dB  
ATT=-1-15dB  
ATT=-16-47dB  
ATT=-48-79dB  
VIN=100mVrms  
Attenuation set error 1  
Attenuation set error 2  
Attenuation set error 3  
Output impedance  
0
4
50  
THD+N=1%  
BW=400-30KHz  
Gain 20dB  
VOM  
2
2.2  
Vrms  
Maximum output voltage  
Maximum gain  
Gain set error  
GL MAX  
GL ERR  
17  
-2  
20  
0
23  
2
dB  
dB  
VIN=100mVrms  
GL=20log(VOUT/VIN)  
GAIN=+20+1dB  
VP-9690A(Average value detection, effective value display) filter by Matsushita Communication is used for measurement.  
Phase between input / output is same.  
www.rohm.com  
© 2010 ROHM Co., Ltd. All rights reserved.  
2010.03 - Rev.A  
4/26  
Technical Note  
BD37522FS,BD37523FS  
Electrical characteristic curves (Reference data)  
10  
1
10  
50  
40  
30  
20  
10  
0
5
4
3
2
1
0
1
10kHz  
1kHz  
Gain=0dB  
100Hz  
0.1  
0.1  
0.01  
0.001  
-1  
10  
100  
1k  
10k  
100k  
-2  
-3  
-4  
-5  
0.01  
0.001  
0
2
4
6
8
10  
0.001 0.01 0.1  
1
10  
Frequency [Hz]  
Vout [Vrms]  
VCC[V]  
Fig.3 Gain vs Freq  
vs Vo  
Fig.2Thd  
Fig.1 Iq vs Vcc  
25  
20  
15  
25  
20  
15  
10  
5
25  
20  
15  
10  
5
BASS GAIN : -20+20dB  
/1dB step  
fo : 100Hz Q : 1.0  
fo : 60/80/100/120Hz  
BASS GAIN : ±20dB  
Q : 0.5  
Q : 0.5/1/1.5/2  
BASS GAIN : ±20dB  
fo : 60Hz  
10  
5
0
0
-5  
0
-5  
-5  
-10  
-15  
-20  
-25  
-10  
-15  
-20  
-25  
-10  
-15  
-20  
-25  
10  
100  
1k  
10k  
100k  
10  
100  
1k  
10k  
100k  
10  
100  
1k  
10k  
100k  
Frequency [Hz]  
Frequency [Hz]  
Fig.4 Bass Gain vs Freq  
Fig.5 Bass fo vs Freq  
Fig.6 Bass Q vs Freq  
25  
20  
15  
10  
5
25  
20  
15  
10  
5
25  
20  
15  
10  
5
fo : 7.5k/10k/12.5k/15kHz  
TREBLE GAIN : ±20dB  
Q : 0.75  
TREBLE GAIN:-20+20dB  
/1dB step  
fo : 10kHz Q : 0.75  
Q : 0.75/1.25  
TREBLE GAIN : ±20dB  
fo : 7.5kHz  
0
0
0
-5  
-5  
-5  
-10  
-15  
-20  
-25  
-10  
-15  
-20  
-25  
-10  
-15  
-20  
-25  
10  
100  
1k  
10k  
100k  
10  
100  
1k  
10k  
100k  
10  
100  
1k  
10k  
100k  
Frequency [Hz]  
Fig.7 Treble Gain vs Freq  
Frequency [Hz]  
Frequency [Hz]  
Fig.9TrebleQvsFreq  
Fig.8 Treble fo vs Freq  
1000  
1000  
100  
10  
1000  
DIN-Audio  
IHF-A  
DIN-Audio  
IHF-A  
Din-Audio  
IHF-A  
100  
10  
1
100  
10  
1
1
-20 -15 -10 -5  
0
5
10 15 20  
-80 -70 -60 -50 -40 -30 -20 -10  
Volume Gain[dB]  
0
10 20  
-20 -15 -10 -5  
0
5
10 15 20  
Treble Gain [dB]  
Bass Gain [dB]  
Fig.12 Treble Gain vs Noise  
Fig.10 Volume Gain vs Noise  
Fig.11 Bass Gain vs Noise  
www.rohm.com  
2010.03 - Rev.A  
5/26  
© 2010 ROHM Co., Ltd. All rights reserved.  
Technical Note  
BD37522FS,BD37523FS  
0
-10  
-20  
-30  
-40  
-50  
-60  
-70  
2.5  
2.0  
1.5  
1.0  
0.5  
0.0  
10  
100  
Frequency [Hz]  
1k  
10k  
100k  
100  
1000  
10000  
100000  
Rload [ohm]  
Fig.13 CMRR vs Freq  
Fig.14 Rload vs Vo  
Fig.15 Advanced Switch 1  
Fig.16Advanced Switch 2  
www.rohm.com  
© 2010 ROHM Co., Ltd. All rights reserved.  
2010.03 - Rev.A  
6/26  
Technical Note  
BD37522FS,BD37523FS  
Block diagram and pin configuration  
24  
23  
22  
21  
20  
19  
18  
17  
16  
15  
14  
13  
VCC  
GND  
I2C BUS LOGIC  
■Fader  
Gain:0dB~-79dB/1dB step  
★no pop noise  
■Loudness  
20dB~0dB/1dB step  
★no pop noise  
・f0=800  
・Hicut1/2/3/4  
■2 Band P-EQ (Tone control)  
Gain:+20dB~-20dB/1dB  
★no pop noise  
・Bass:f0=60/80/100/120Hz,  
Q=0.5/1.0/1.5/2.0  
Loudness  
・Treble:f0=7.5k/10k/12.5k/15kHz  
Q=0.75/1.25  
■Volume  
Gain:+15dB~-79dB/1dB step  
★no pop noise  
■Input Gain  
2 Band P-EQ  
(Tone control)  
Volume/Mute  
Input Gain  
Gain:+20dB~0dB/1dB step  
★no pop noise  
Input selector (4 single-end and 1 stereo ISO)  
GND  
ISO amp  
GND  
ISO amp  
VCC/2  
100k  
100k  
100k  
100k  
250k  
250k  
250k  
250k  
250k  
250k  
250k  
1
2
3
4
5
6
7
8
9
10  
11  
12  
Fig.17 BD37522FS  
Terminal Terminal  
Descriptions of terminal  
Terminal Terminal  
Description  
VCC/2 terminal  
Description  
No.  
Name  
No.  
Name  
1
FIL  
13  
MUTE  
External compulsory mute terminal  
Test Pin  
2
3
A1  
A2  
A input terminal of 1ch  
A input terminal of 2ch  
B input terminal of 1ch  
B input terminal of 2ch  
C positive input terminal of 1ch  
C negative input terminal  
C positive input terminal of 2ch  
D input terminal of 1ch  
D input terminal of 2ch  
E input terminal of 1ch  
E input terminal of 2ch  
14  
15  
16  
17  
18  
19  
20  
21  
22  
23  
24  
TEST1  
TEST2  
TEST3  
OUTR2  
OUTR1  
OUTF2  
OUTF1  
VCC  
Test Pin  
4
B1  
Test Pin  
5
B2  
Rear output terminal of 2ch  
Rear output terminal of 1ch  
Front output terminal of 2ch  
Front output terminal of 1ch  
Power supply terminal  
I2C Communication clock terminal  
I2C Communication data terminal  
GND terminal  
6
CP1  
CN  
7
8
CP2  
D1  
9
10  
11  
12  
D2  
SCL  
E1  
SDA  
E2  
GND  
www.rohm.com  
2010.03 - Rev.A  
7/26  
© 2010 ROHM Co., Ltd. All rights reserved.  
Technical Note  
BD37522FS,BD37523FS  
24  
23  
22  
21  
20  
19  
18  
17  
16  
15  
14  
13  
VCC  
GND  
I2C BUS LOGIC  
■Fader  
Gain:+15dB~-79dB/1dB step  
★no pop noise  
■Loudness  
20dB~0dB/1dB step  
★no pop noise  
・f0=800  
・Hicut1/2/3/4  
LPF  
■2 Band P-EQ (Tone control)  
Gain:+20dB~-20dB/1dB  
★no pop noise  
・Bass:f0=60/80/100/120Hz,  
Q=0.5/1.0/1.5/2.0  
Loudness  
・Treble:f0=7.5k/10k/12.5k/15kHz  
Q=0.75/1.25  
■Volume  
Gain:+15dB~-79dB/1dB step  
★no pop noise  
2 Band P-EQ  
(Tone control)  
■Input Gain  
Gain:+20dB~0dB/1dB step  
★no pop noise  
Volume/Mute  
Input Gain  
Input selector (4 single-end and 1 stereo ISO)  
GND  
ISO amp  
GND  
ISO amp  
VCC/2  
100k  
100k  
100k  
100k  
250k  
250k  
250k  
250k  
250k  
250k  
250k  
1
2
3
4
5
6
7
8
9
10  
11  
12  
Fig.18 BD37523FS  
Terminal Terminal  
Descriptions of terminal  
Terminal Terminal  
Description  
Description  
No.  
Name  
No.  
Name  
1
FIL  
VCC/2 terminal  
13  
MUTE  
External compulsory mute terminal  
Test Pin  
2
3
A1  
A2  
A input terminal of 1ch  
A input terminal of 2ch  
B input terminal of 1ch  
B input terminal of 2ch  
C positive input terminal of 1ch  
C negative input terminal  
C positive input terminal of 2ch  
D input terminal of 1ch  
D input terminal of 2ch  
E input terminal of 1ch  
E input terminal of 2ch  
14  
15  
16  
17  
18  
19  
20  
21  
22  
23  
24  
TEST1  
TEST2  
OUTS  
OUTR2  
OUTR1  
OUTF2  
OUTF1  
VCC  
Test Pin  
4
B1  
Subwoofer output terminal  
Rear output terminal of 2ch  
Rear output terminal of 1ch  
Front output terminal of 2ch  
Front output terminal of 1ch  
Power supply terminal  
I2C Communication clock terminal  
I2C Communication data terminal  
GND terminal  
5
B2  
6
CP1  
CN  
7
8
CP2  
D1  
9
10  
11  
12  
D2  
SCL  
E1  
SDA  
E2  
GND  
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2010.03 - Rev.A  
8/26  
© 2010 ROHM Co., Ltd. All rights reserved.  
Technical Note  
BD37522FS,BD37523FS  
Timming Chart  
CONTROL SIGNAL SPECIFICATION  
(1) Electrical specifications and timing for bus lines and I/O stages  
SDA  
tBUF  
tF  
tHD;STA  
tSP  
tR  
tLOW  
SCL  
tSU;STO  
tHD;STA  
tSU;DAT tSU;STA  
tHD;DAT  
tHIGH  
Sr  
S
P
P
Fig.19 Definition of timing on the I2C-bus  
Table 1 Characteristics of the SDA and SCL bus lines for I2C-bus devices  
(Unless specified particularly, Ta=25℃, VCC=8.5V)  
Fast-mode I2C-bus  
Parameter  
Symbol  
Unit  
Min.  
0
Max.  
400  
kHz  
μS  
1 SCL clock frequency  
fSCL  
tBUF  
2 Bus free time between a STOP and START condition  
1.3  
Hold time (repeated) START condition. After this period, the first  
3
tHD;STA  
0.6  
μS  
clock pulse is generated  
4 LOW period of the SCL clock  
5 HIGH period of the SCL clock  
6 Set-up time for a repeated START condition  
7 Data hold time:  
tLOW  
1.3  
0.6  
μS  
μS  
μS  
μS  
ns  
tHIGH  
tSU;STA  
tHD;DAT  
tSU;DAT  
tSU;STO  
0.6  
0.06*  
120  
8 Data set-up time  
9 Set-up time for STOP condition  
0.6  
μS  
All values referred to VIH min. and VIL max. Levels (see Table 2).  
* A device must internally provide a hold time of at least 300 ns for the SDA signal (referred to the VIH min. of the SCL  
signal) in order to bridge the undefined region of the falling edge of SCL.  
About 7(tHD;DAT), 8(tSU;DAT), make it the setup which a margin is fully in .  
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© 2010 ROHM Co., Ltd. All rights reserved.  
2010.03 - Rev.A  
9/26  
Technical Note  
BD37522FS,BD37523FS  
Table 2 Characteristics of the SDA and SCL I/O stages for I2C-bus devices  
Fast-mode devices  
Parameter  
Symbol  
Unit  
Min.  
-0.3  
2.3  
0
Max.  
1
10  
11  
12  
13  
LOW level input voltage:  
VIL  
VIH  
V
V
HIGH level input voltage:  
5
Pulse width of spikes which must be suppressed by the input filter.  
LOW level output voltage: at 3mA sink current  
Input current each I/O pin with an input voltage between 0.4V and  
4.5V.  
tSP  
50  
0.4  
ns  
V
VOL1  
0
14  
Ii  
-10  
10  
μA  
tHD;STA  
:2us  
tHD;DAT  
:1us  
tSU;DAT  
:1us  
tSU;STO  
:2us  
SCL  
SDA  
tBUF  
:4us  
tLOW  
:3us  
tHIGH  
:1us  
SCL clock frequency:250kHz  
Fig.20 A command timing example in the I2C data transmission  
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© 2010 ROHM Co., Ltd. All rights reserved.  
2010.03 - Rev.A  
10/26  
Technical Note  
BD37522FS,BD37523FS  
(2)I2C BUS FORMAT  
MSB  
LSB  
Slave Address  
8bit  
MSB  
Select Address  
8bit  
LSB  
MSB  
LSB  
S
A
A
Data  
8bit  
A
P
1bit  
1bit  
1bit  
1bit 1bit  
S
= Start conditions (Recognition of start bit)  
Slave Address = Recognition of slave address. 7 bits in upper order are voluntary.  
The least significant bit is “L” due to writing.  
A
= ACKNOWLEDGE bit (Recognition of acknowledgement)  
Select Address = Select every of volume, bass and treble.  
Data  
P
= Data on every volume and tone.  
= Stop condition (Recognition of stop bit)  
(3)I2C BUS Interface Protocol  
1)Basic form  
S
Slave Address  
MSB LSB  
A
Select Address  
LSB  
A
Data  
MSB LSB  
A
P
MSB  
2)Automatic increment (Select Address increases (+1) according to the number of data.  
Slave Address Select Address Data1 Data2 A ・・・・ DataN  
MSB LSB MSB LSB LSB MSB LSB LSB  
(Example)①Data1 shall be set as data of address specified by Select Address.  
S
A
A
A
A P  
MSB  
MSB  
②Data2 shall be set as data of address specified by Select Address +1.  
③DataN shall be set as data of address specified by Select Address +N-1.  
3)Configuration unavailable for transmission (In this case, only Select Address1 is set.  
S Slave Address A Select Address1 A Data A Select Address 2 A Data A P  
MSB LSB MSB LSB MSB LSB MSB LSB MSB LSB  
(Note)If any data is transmitted as Select Address 2 next to data, it is  
recognized as data, not as Select Address 2.  
(4)Slave address  
MSB  
LSB  
R/W  
A6  
1
A5  
A4  
0
A3  
0
A2  
0
A1  
0
A0  
0
0
0
80H  
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2010.03 - Rev.A  
11/26  
© 2010 ROHM Co., Ltd. All rights reserved.  
Technical Note  
BD37522FS,BD37523FS  
(5)Select Address & Data  
BD37522FS  
Select  
Address  
(hex)  
MSB  
Data  
LSB  
Items  
D7  
D6  
0
D5  
D4  
D3  
0
D2  
0
D1  
D0  
Advanced  
switch  
ON/OFF  
Advanced switch time  
of Input Gain/Volume  
Tone/Fader/Loudness  
Advanced switch time  
of Mute  
Initial setup 1  
01  
Initial setup 2  
Initial setup 3  
Input Selector  
02  
03  
05  
0
0
0
0
0
0
0
0
0
1
0
0
0
0
0
0
1
0
0
Input selector  
Mute  
ON/OFF  
Input gain  
06  
0
0
Input Gain  
Volume gain  
20  
28  
29  
2A  
2B  
2C  
41  
44  
47  
Volume / Attenuation  
Fader Attenuation  
Fader Attenuation  
Fader Attenuation  
Fader Attenuation  
Fader 1ch Front  
Fader 2ch Front  
Fader 1ch Rear  
Fader 2ch Rear  
Test mode 1  
1
1
0
0
0
1
0
1
1
0
0
0
1
0
0
0
1
1
0
Bass setup  
0
Bass fo  
Bass Q  
Test mode 2  
0
0
0
0
0
Treble setup  
Treble fo  
Treble Q  
Bass  
Boost/  
Cut  
0
Bass gain  
51  
54  
57  
0
0
0
0
0
0
Bass Gain  
0
Test mode 3  
Treble gain  
0
0
0
0
0
0
Treble  
Boost/  
Cut  
0
Treble Gain  
Loudness Gain  
System Reset  
75  
FE  
Loudness Hicut  
Loudness Gain  
0
1
0
0
0
1
Advanced switch  
Note  
1.In function changing of the hatching part, it works Advanced switch.  
2.Upon continuous data transfer, the Select Address is circulated by the automatic increment function, as  
shown below.  
→01→02→03→05→06→20→28→29→2A→2B→2C  
→41→44→47→51→54→57→75  
.
For the function of input selector etc, it is not corresponded for advanced switch. Therefore, please apply mute on  
the side of a set when changes these setting.  
4.When using mute function of this IC at the time of changing input selector, please switch mute ON/OFF  
for waiting advanced-mute time.  
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2010.03 - Rev.A  
12/26  
© 2010 ROHM Co., Ltd. All rights reserved.  
Technical Note  
BD37522FS,BD37523FS  
BD37523FS  
Select  
Address  
(hex)  
MSB  
Data  
LSB  
Items  
D7  
D6  
0
D5  
D4  
D3  
0
D2  
0
D1  
D0  
Advanced  
switch  
ON/OFF  
Advanced switch time  
of Input Gain/Volume  
Tone/Fader/Loudness  
Advanced switch time  
of Mute  
Initial setup 1  
Initial setup 2  
01  
02  
LPF  
Phase  
0
0
0
0
1
0
0
Subwoofer LPF fc  
Initial setup 3  
Input Selector  
03  
05  
0
0
0
0
0
0
1
0
Input selector  
Mute  
ON/OFF  
Input gain  
06  
0
0
Input Gain  
Volume gain  
20  
28  
29  
2A  
2B  
2C  
41  
44  
47  
Volume Gain / Attenuation  
Fader Gain / Attenuation  
Fader Gain / Attenuation  
Fader Gain / Attenuation  
Fader Gain / Attenuation  
Fader Gain / Attenuation  
Fader 1ch Front  
Fader 2ch Front  
Fader 1ch Rear  
Fader 2ch Rear  
Fader Subwoofer  
Bass setup  
0
0
0
0
Bass fo  
0
0
0
0
0
0
Bass Q  
Test mode 1  
0
0
0
0
0
0
0
0
0
Treble Q  
Treble setup  
Treble fo  
Bass  
Boost/  
Cut  
0
Bass gain  
51  
54  
57  
0
0
0
0
0
0
Bass Gain  
0
Test mode 2  
Treble gain  
0
0
0
0
Treble  
Boost/  
Cut  
0
Treble Gain  
Loudness Gain  
System Reset  
75  
FE  
Loudness Hicut  
Loudness Gain  
0
1
0
0
0
1
Advanced switch  
Note  
1.In function changing of the hatching part, it works Advanced switch.  
2.Upon continuous data transfer, the Select Address is circulated by the automatic increment function, as  
shown below.  
→01→02→03→05→06→20→28→29→2A→2B→2C  
→41→44→47→51→54→57→75  
.
For the function of input selector etc, it is not corresponded for advanced switch. Therefore, please apply mute on  
the side of a set when changes these setting.  
4.When using mute function of this IC at the time of changing input selector, please switch mute ON/OFF  
for waiting advanced-mute time.  
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2010.03 - Rev.A  
13/26  
© 2010 ROHM Co., Ltd. All rights reserved.  
Technical Note  
BD37522FS,BD37523FS  
Select address 01 (hex)  
MSB Advanced switch time of Mute LSB  
Time  
D7  
D6  
D5  
D4  
D3  
D2  
D1  
0
D0  
0
0.6msec  
1.0msec  
1.4msec  
3.2msec  
Advanced  
Switch  
Advanced switch time  
of Input gain/Volume  
Tone/Fader/Loudness  
0
1
0
0
0
1
0
ON/OFF  
1
1
Advanced switch time of  
Input gain/Volume/Tone/Fader/Loudness  
MSB  
LSB  
Time  
D7  
D6  
D5  
0
D4  
0
D3  
D2  
D1  
D0  
4.7 msec  
7.1 msec  
11.2 msec  
14.4 msec  
Advanced  
Switch  
0
1
Advanced switch Time  
of Mute  
0
0
0
1
0
ON/OFF  
1
1
MSB  
D7  
Advanced switch ON/OFF  
D2  
LSB  
D0  
Mode  
D6  
0
D5  
D4  
D3  
D1  
Advanced switch time  
of Input gain/Volume  
Tone/Fader/Loudness  
OFF  
ON  
0
1
Advanced switch  
Time of Mute  
0
0
Select address 02(hex)  
fc  
MSB  
D7  
Subwoofer LPF fc  
LSB  
D0  
0
D6  
0
D5  
0
D4  
D3  
D2  
0
D1  
OFF  
55Hz  
85Hz  
0
0
0
1
0
1
0
LPF Phase  
0
0
120Hz  
160Hz  
0
1
1
1
0
0
Prohibition  
Other setting  
(Available only BD37523FS)  
MSB  
LPF Phase  
D3  
LSB  
D0  
Phase  
D7  
D6  
0
D5  
0
D4  
D2  
D1  
0°  
0
1
0
0
Subwoofer LPF fc  
180°  
(Available only BD37523FS)  
Select address 05(hex)  
MSB  
D7  
Input Selector  
LSB  
OUT  
OUT  
Mode  
F1/R1  
F2/R2  
D6  
0
D5  
D4  
D3  
0
D2  
D1  
0
D0  
1
A
A1  
A2  
B2  
0
0
1
0
0
0
B
B1  
0
1
0
C diff  
CP1  
D1  
CP2  
D2  
0
1
0
D
E
0
0
0
1
1
0
E1  
E2  
1
1
1
Input SHORT  
Prohibition  
1
0
1
Other setting  
Input SHORT:The input impedance of each input terminal is lowered from 100kΩ(TYP) to 6 kΩ(TYP).  
(For quick charge of coupling capacitor)  
: Initial condition  
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© 2010 ROHM Co., Ltd. All rights reserved.  
2010.03 - Rev.A  
14/26  
Technical Note  
BD37522FS,BD37523FS  
Select address 06 (hex)  
MSB  
D7  
Input Gain  
LSB  
Gain  
D6  
D5  
D4  
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
1
1
1
1
1
1
1
D3  
0
0
0
0
0
0
0
0
1
1
1
1
1
1
1
1
0
0
0
0
0
1
1
D2  
0
0
0
0
1
1
1
1
0
0
0
0
1
1
1
1
0
0
0
0
1
0
1
D1  
0
0
1
1
0
0
1
1
0
0
1
1
0
0
1
1
0
0
1
1
0
1
1
D0  
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
1
0dB  
1dB  
2dB  
3dB  
4dB  
5dB  
6dB  
7dB  
8dB  
9dB  
10dB  
11dB  
12dB  
13dB  
14dB  
15dB  
16dB  
17dB  
18dB  
19dB  
20dB  
Mute  
0
0
ON/OFF  
Prohibition  
MSB  
D7  
0
Mute ON/OFF  
D3  
LSB  
Mode  
D6  
0
D5  
0
D4  
D2  
D1  
D0  
OFF  
ON  
Input Gain  
1
Select address 20, 28, 29, 2A, 2B, 2C (hex)  
MSB Vol, Fader Gain / Attenuation LSB  
Gain & ATT  
D7  
0
D6  
0
D5  
0
D4  
0
D3  
0
D2  
0
D1  
0
D0  
0
0
0
0
0
0
0
0
1
Prohibition  
0
1
1
1
0
0
0
0
15dB  
14dB  
13dB  
0
1
1
1
0
0
0
1
0
1
1
1
0
0
1
0
0
1
1
1
0
0
1
1
1
1
0
0
1
1
0
1
-77dB  
-78dB  
-79dB  
1
1
0
0
1
1
1
0
1
1
0
0
1
1
1
1
1
1
0
1
0
0
0
0
Prohibition  
-∞dB  
1
1
1
1
1
1
1
0
1
1
1
1
1
1
1
1
(About BD37522FS, only 0dB~-∞dB are available at address 28, 29, 2A, 2B)  
: Initial condition  
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© 2010 ROHM Co., Ltd. All rights reserved.  
2010.03 - Rev.A  
15/26  
Technical Note  
BD37522FS,BD37523FS  
Select address 41(hex)  
MSB  
D7  
Bass Q factor  
D3  
LSB  
Q factor  
D6  
0
D5  
D4  
D2  
0
D1  
0
D0  
0
0.5  
1.0  
1.5  
2.0  
0
1
0
Bass fo  
0
1
0
1
1
MSB  
D7  
Bass fo  
LSB  
D0  
fo  
D6  
0
D5  
0
D4  
0
D3  
D2  
0
D1  
60Hz  
80Hz  
0
1
Bass  
Q factor  
0
0
100Hz  
120Hz  
1
0
1
1
Select address 47 (hex)  
Q factor  
MSB  
D7  
Treble Q factor  
D3  
LSB  
D6  
0
D5  
D4  
D2  
0
D1  
0
D0  
0
0.75  
1.25  
0
Treble fo  
0
1
MSB  
D7  
Treble fo  
LSB  
D0  
fo  
D6  
0
D5  
0
D4  
0
D3  
D2  
0
D1  
0
7.5kHz  
10kHz  
0
1
Treble  
Q factor  
0
0
12.5kHz  
15kHz  
1
0
1
1
: Initial condition  
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© 2010 ROHM Co., Ltd. All rights reserved.  
2010.03 - Rev.A  
16/26  
Technical Note  
BD37522FS,BD37523FS  
Select address 51, 57 (hex)  
MSB  
D7  
Bass/ Treble Gain  
LSB  
Gain  
D6  
D5  
D4  
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
1
1
1
1
1
1
1
1
D3  
0
0
0
0
0
0
0
0
1
1
1
1
1
1
1
1
0
0
0
0
0
0
1
1
D2  
0
0
0
0
1
1
1
1
0
0
0
0
1
1
1
1
0
0
0
0
1
1
1
1
D1  
0
0
1
1
0
0
1
1
0
0
1
1
0
0
1
1
0
0
1
1
0
0
1
1
D0  
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0dB  
1dB  
2dB  
3dB  
4dB  
5dB  
6dB  
7dB  
8dB  
9dB  
10dB  
11dB  
12dB  
13dB  
14dB  
15dB  
16dB  
17dB  
18dB  
19dB  
20dB  
Bass/  
Treble  
Boost  
/cut  
0
0
Prohibition  
MSB  
D7  
0
Bass/ Treble Boost/Cut  
D2  
LSB  
D0  
Mode  
D6  
0
D5  
D4  
D3  
D1  
Boost  
Cut  
0
Bass/Treble Gain  
1
: Initial condition  
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© 2010 ROHM Co., Ltd. All rights reserved.  
2010.03 - Rev.A  
17/26  
Technical Note  
BD37522FS,BD37523FS  
Select address 75 (hex)  
MSB  
D7  
Loudness Hicut  
D3  
LSB  
D0  
Mode  
D6  
0
D5  
0
D4  
D2  
D1  
Hicut1  
Hicut2  
Hicut3  
Hicut4  
0
1
0
Loudness Gain  
1
0
1
1
MSB  
D7  
Loudness Gain  
LSB  
Gain  
D6  
D5  
D4  
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
1
1
1
1
1
1
1
D3  
0
0
0
0
0
0
0
0
1
1
1
1
1
1
1
1
0
0
0
0
0
0
1
D2  
0
0
0
0
1
1
1
1
0
0
0
0
1
1
1
1
0
0
0
0
1
1
1
D1  
0
0
1
1
0
0
1
1
0
0
1
1
0
0
1
1
0
0
1
1
0
0
1
D0  
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
1
0dB  
1dB  
2dB  
3dB  
4dB  
5dB  
6dB  
7dB  
8dB  
9dB  
10dB  
11dB  
12dB  
13dB  
14dB  
15dB  
16dB  
17dB  
18dB  
19dB  
20dB  
0
Loudness Hicut  
Prohibition  
: Initial condition  
(6)About power on reset  
At on of supply voltage circuit made initialization inside IC is built-in. Please send data to all address  
as initial data at supply voltage on. And please supply mute at set side until this initial data is sent.  
Limit  
Item  
Symbol  
Unit  
Condition  
Min.  
33  
Typ.  
Max.  
Rise time of VCC  
VCC voltage of release  
power on reset  
Trise  
Vpor  
usec  
V
VCC rise time from 0V to 5V  
4.1  
(7)About external compulsory mute terminal  
Mute is possible forcibly than the outside after input again department, by the setting of the MUTE terminal.  
Mute Voltage Condition  
Mode  
GND~1.0V  
2.3V~VCC  
MUTE ON  
MUTE OFF  
Establish the voltage of MUTE in the condition to have been defined.  
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© 2010 ROHM Co., Ltd. All rights reserved.  
2010.03 - Rev.A  
18/26  
Technical Note  
BD37522FS,BD37523FS  
Volume / Fader volume attenuation of the details  
(dB)  
+15  
+14  
+13  
+12  
+11  
+10  
+9  
(dB)  
-33  
-34  
-35  
-36  
-37  
-38  
-39  
-40  
-41  
-42  
-43  
-44  
-45  
-46  
-47  
-48  
-49  
-50  
-51  
-52  
-53  
-54  
-55  
-56  
-57  
-58  
-59  
-60  
-61  
-62  
-63  
-64  
-65  
-66  
-67  
-68  
-69  
-70  
-71  
-72  
-73  
-74  
-75  
-76  
-77  
-78  
-79  
-∞  
D7 D6 D5 D4 D3 D2 D1 D0  
D7 D6 D5 D4 D3 D2 D1 D0  
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
0
0
0
0
0
0
0
0
1
1
1
1
1
1
1
1
0
0
0
0
0
0
0
0
1
1
1
1
1
1
1
1
0
0
0
0
0
0
0
0
1
1
1
1
1
1
1
1
0
0
0
0
1
1
1
1
0
0
0
0
1
1
1
1
0
0
0
0
1
1
1
1
0
0
0
0
1
1
1
1
0
0
0
0
1
1
1
1
0
0
0
0
1
1
1
1
0
0
1
1
0
0
1
1
0
0
1
1
0
0
1
1
0
0
1
1
0
0
1
1
0
0
1
1
0
0
1
1
0
0
1
1
0
0
1
1
0
0
1
1
0
0
1
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
1
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
0
1
0
0
0
0
0
0
0
1
1
1
1
1
1
1
1
0
0
0
0
0
0
0
0
1
1
1
1
1
1
1
1
0
0
0
0
0
0
0
0
1
1
1
1
1
1
1
1
1
0
0
0
1
1
1
1
0
0
0
0
1
1
1
1
0
0
0
0
1
1
1
1
0
0
0
0
1
1
1
1
0
0
0
0
1
1
1
1
0
0
0
0
1
1
1
1
1
0
1
1
0
0
1
1
0
0
1
1
0
0
1
1
0
0
1
1
0
0
1
1
0
0
1
1
0
0
1
1
0
0
1
1
0
0
1
1
0
0
1
1
0
0
1
1
1
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
0
1
1
+8  
+7  
+6  
+5  
+4  
+3  
+2  
+1  
0
-1  
-2  
-3  
-4  
-5  
-6  
-7  
-8  
-9  
-10  
-11  
-12  
-13  
-14  
-15  
-16  
-17  
-18  
-19  
-20  
-21  
-22  
-23  
-24  
-25  
-26  
-27  
-28  
-29  
-30  
-31  
-32  
About BD37522FS, Fader Volume only 0dB~-∞dB are available.  
:Initial condition  
www.rohm.com  
© 2010 ROHM Co., Ltd. All rights reserved.  
2010.03 - Rev.A  
19/26  
Technical Note  
BD37522FS,BD37523FS  
Application circuit  
GND  
SDA  
SCL  
VCC  
10μ  
OUTF1 OUTF2 OUTR1 OUTR2  
0.1μ  
MUTE  
10μ  
10μ  
10μ  
10μ  
TEST3 TEST2 TEST1  
16 15 14  
24  
23  
22  
21  
20  
19  
18  
17  
13  
VCC  
GND  
I2C BUS LOGIC  
■Fader  
Gain:0dB~-79dB/1dB step  
★no pop noise  
■Loudness  
20dB~0dB/1dB step  
★no pop noise  
・f0=800  
・Hicut1/2/3/4  
■2 Band P-EQ (Tone control)  
Gain:+20dB~-20dB/1dB  
★no pop noise  
・Bass:f0=60/80/100/120Hz,  
Q=0.5/1.0/1.5/2.0  
Loudness  
・Treble:f0=7.5k/10k/12.5k/15kHz  
Q=0.75/1.25  
■Volume  
Gain:+15dB~-79dB/1dB step  
★no pop noise  
■Input Gain  
2 Band P-EQ  
(Tone control)  
Volume/Mute  
Input Gain  
Gain:+20dB~0dB/1dB step  
★no pop noise  
Input selector (4 single-end and 1 stereo ISO)  
GND  
ISO amp  
GND  
ISO amp  
VCC/2  
100k  
100k  
2.2μ  
100k  
100k  
2.2μ  
250k  
250k  
250k  
250k  
250k  
250k  
250k  
1
2
3
4
5
6
7
8
9
10  
11  
12  
Unit  
10μ  
2.2μ  
2.2μ  
2.2μ  
2.2μ  
1μ  
1μ  
1μ  
1μ  
R : []  
C : [F]  
10μ  
Single4  
GND Isolation  
Single1  
Single2  
Single3  
Fig.21 BD37522FS  
Notes on wiring  
① Please connect the decoupling capacitor of a power supply in the shortest distance as much as possible to GND.  
② Lines of GND shall be one-point connected.  
③ Wiring pattern of Digital shall be away from that of analog unit and cross-talk shall not be acceptable.  
④ ILines of SCL and SDA of I2C BUS shall not be parallel if possible.  
The lines shall be shielded, if they are adjacent to each other.  
⑤ Lines of analog input shall not be parallel if possible. The lines shall be shielded, if they are adjacent  
to each other.  
⑥ About TEST pin(14,15,16pin), please use with OPEN.  
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2010.03 - Rev.A  
20/26  
© 2010 ROHM Co., Ltd. All rights reserved.  
Technical Note  
BD37522FS,BD37523FS  
GND  
SDA  
SCL  
VCC  
10μ  
OUTF1 OUTF2 OUTR1 OUTR2 OUTS  
0.1μ  
MUTE  
10μ  
10μ  
10μ  
10μ  
10μ  
TEST2 TEST1  
15 14  
24  
23  
22  
21  
20  
19  
18  
17  
16  
13  
VCC  
GND  
I2C BUS LOGIC  
■Fader  
Gain:+15dB~-79dB/1dB step  
★no pop noise  
■Loudness  
20dB~0dB/1dB step  
★no pop noise  
・f0=800  
・Hicut1/2/3/4  
LPF  
■2 Band P-EQ (Tone control)  
Gain:+20dB~-20dB/1dB  
★no pop noise  
・Bass:f0=60/80/100/120Hz,  
Q=0.5/1.0/1.5/2.0  
Loudness  
・Treble:f0=7.5k/10k/12.5k/15kHz  
Q=0.75/1.25  
■Volume  
Gain:+15dB~-79dB/1dB step  
★no pop noise  
2 Band P-EQ  
(Tone control)  
■Input Gain  
Gain:+20dB~0dB/1dB step  
★no pop noise  
Volume/Mute  
Input Gain  
Input selector (4 single-end and 1 stereo ISO)  
GND  
ISO amp  
GND  
ISO amp  
VCC/2  
100k  
100k  
2.2μ  
100k  
100k  
2.2μ  
250k  
250k  
250k  
250k  
250k  
250k  
250k  
1
2
3
4
5
6
7
8
9
10  
11  
12  
Unit  
R : []  
10μ  
2.2μ  
2.2μ  
2.2μ  
2.2μ  
1μ  
1μ  
1μ  
1μ  
10μ  
C : [F]  
Single4  
GND Isolation  
Single1  
Single2  
Single3  
Fig.22 BD37523FS  
Notes on wiring  
① Please connect the decoupling capacitor of a power supply in the shortest distance as much as possible to GND.  
② Lines of GND shall be one-point connected.  
③ Wiring pattern of Digital shall be away from that of analog unit and cross-talk shall not be acceptable.  
④ ILines of SCL and SDA of I2C BUS shall not be parallel if possible.  
The lines shall be shielded, if they are adjacent to each other.  
⑤ Lines of analog input shall not be parallel if possible. The lines shall be shielded, if they are adjacent  
to each other.  
⑥ About TEST pin(14,15,16pin), please use with OPEN.  
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2010.03 - Rev.A  
21/26  
© 2010 ROHM Co., Ltd. All rights reserved.  
Technical Note  
BD37522FS,BD37523FS  
Interfaces  
Terminal Terminal Terminal  
Equivalent Circuit  
Terminal Description  
No.  
Name  
Voltage  
A terminal for signal input.  
Vcc  
The input impedance is 100kΩ(typ).  
2
3
4
5
A1  
A2  
B1  
B2  
4.25  
100k  
GND  
Vcc  
A terminal for signal input.  
6
7
CP1  
CN  
The input impedance is 250kΩ(typ).  
8
CP2  
D1  
9
4.25  
10  
11  
12  
D2  
250k  
E1  
E2  
GND  
A terminal for external compulsory  
mute. If terminal voltage is High level,  
the mute is off. And if the terminal  
voltage is Low level, the mute is on.  
Vcc  
13  
MUTE  
1.65V  
GND  
VCC  
A terminal for fader and Subwoofer  
output.  
(16pin:OUTS is only in BD37523FS,)  
16  
17  
18  
19  
20  
OUTS  
OUTR2  
OUTR1  
OUTF2  
OUTF1  
4.25  
GND  
The figure in the pin explanation and input/output equivalent circuit is reference value, it doesn’t guarantee  
the value.  
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© 2010 ROHM Co., Ltd. All rights reserved.  
2010.03 - Rev.A  
22/26  
Technical Note  
BD37522FS,BD37523FS  
Terminal Terminal Terminal  
Equivalent Circuit  
Terminal Description  
Power supply terminal.  
No.  
Name  
Voltage  
21  
VCC  
8.5  
Vcc  
A terminal for clock input of I2C BUS  
communication.  
22  
SCL  
1.65V  
GND  
Vcc  
A terminal for data input of I2C BUS  
communication.  
23  
24  
1
SDA  
GND  
FIL  
1.65V  
GND  
Ground terminal.  
0
Vcc  
Voltage for reference bias of analog  
signal system. The simple precharge  
circuitandsimpledischargecircuitfor  
an external capacitor are built in.  
50k  
50k  
4.25  
GND  
TEST terminal  
14  
15  
16  
About BD37522FS, 14,15,16pin are TEST  
Pin. About BD37523FS, 14,15pin are TEST  
Pin.  
TEST  
-
The figure in the pin explanation and input/output equivalent circuit is reference value, it doesn’t guarantee  
the value.  
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© 2010 ROHM Co., Ltd. All rights reserved.  
2010.03 - Rev.A  
23/26  
Technical Note  
BD37522FS,BD37523FS  
Notes for use  
1. Absolute maximum rating voltage  
When it impressed the voltage on VCC more than the absolute maximum rating voltage, circuit currents increase  
rapidly, and there is absolutely a case to reach characteristic deterioration and destruction of a device.  
In particular in a serge examination of a set, when it is expected the impressing serge at VCC terminal (21pin),  
please do not impress the large and over the absolute maximum rating voltage (including a operating voltage  
+ serge ingredient (around 14V)).  
2. About a signal input part  
1) About constant set up of input coupling capacitor  
In the signal input terminal, the constant setting of input coupling capacitor C(F) be sufficient input  
impedance RIN(Ω) inside IC and please decide. The first HPF characteristic of RC is composed.  
GdB〕  
CF〕  
0
RIN  
〔Ω〕  
A(f)  
fHz〕  
INPUT  
(2πfCRIN)2  
A(f)  
2
1(2πfCRIN)  
2) About the input selector SHORT  
SHORT mode is the command which makes switch SSH =ON an input selector part and input impedance RIN of all  
terminals, and makes resistance small. Switch SSH is OFF when not choosing a SHORT command.  
A constant time becomes small at the time of this command twisting to the resistance inside the capacitor  
connected outside and LSI. The charge time of a capacitor becomes short. Since SHORT mode turns ON the  
switch of SSH and makes it low impedance, please use it at the time of a non-signal.  
3. About Mute terminal(13pin) when power supply is off  
Any voltage shall not be supplied to Mute terminal (13pin) when power-supply is off.  
Please insert a resistor (about 2.2kΩ) to Mute terminal in series, if voltage is supplied to mute terminal  
in case. (Please refer Application Circuit Diagram.)  
4. About TEST Pin  
About TEST Pin, please use with OPEN.  
About BD37522FS, 14,15,16pin are TEST Pin. About BD37523FS, 14,15pin are TEST Pin.  
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2010.03 - Rev.A  
24/26  
© 2010 ROHM Co., Ltd. All rights reserved.  
Technical Note  
BD37522FS,BD37523FS  
Thermal Derating Curve  
About the thermal design by the IC  
Characteristics of an IC have a great deal to do with the temperature at which it is used, and exceeding absolute  
maximum ratings may degrade and destroy elements. Careful consideration must be given to the heat of the IC from the  
two standpoints of immediate damage and long-term reliability of operation.  
Reference data  
SSOP-A24  
1.5  
Measurement condition: ROHM Standard board  
board Size:70×70×1.6(㎣)  
material:A FR4 grass epoxy board  
(3% or less of copper foil area)  
1.0W  
1.0  
θja = 125/W  
0.5  
0.0  
85  
0
25  
50  
75  
100  
125  
150  
Ambient Temperature Ta(℃)  
Fig.23 Temperature Derating Curve  
Note) Values are actual measurements and are not guaranteed.  
Power dissipation values vary according to the board on which the IC is mounted.  
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© 2010 ROHM Co., Ltd. All rights reserved.  
2010.03 - Rev.A  
25/26  
Technical Note  
BD37522FS,BD37523FS  
Ordering part number  
B D  
3
7
5
2
2
F S  
-
E
2
Part No.  
Part No.  
37522  
Package  
Packaging and forming specification  
E2: Embossed tape and reel  
FS : SSOP-A24  
37523  
SSOP-A24  
<Tape and Reel information>  
+6°  
10 0.2  
(MAX 10.35 include BURR)  
4°  
4°  
Tape  
Embossed carrier tape  
2000pcs  
24  
13  
Quantity  
E2  
Direction  
of feed  
The direction is the 1pin of product is at the upper left when you hold  
reel on the left hand and you pull out the tape on the right hand  
(
)
1
12  
+0.1  
0.05  
0.17  
0.1  
Direction of feed  
1pin  
0.38 0.1  
0.8  
Reel  
Order quantity needs to be multiple of the minimum quantity.  
(Unit : mm)  
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© 2010 ROHM Co., Ltd. All rights reserved.  
2010.03 - Rev.A  
26/26  
Daattaasshheeeett  
Notice  
Precaution on using ROHM Products  
1. Our Products are designed and manufactured for application in ordinary electronic equipments (such as AV equipment,  
OA equipment, telecommunication equipment, home electronic appliances, amusement equipment, etc.). If you  
intend to use our Products in devices requiring extremely high reliability (such as medical equipment (Note 1), transport  
equipment, traffic equipment, aircraft/spacecraft, nuclear power controllers, fuel controllers, car equipment including car  
accessories, safety devices, etc.) and whose malfunction or failure may cause loss of human life, bodily injury or  
serious damage to property (“Specific Applications”), please consult with the ROHM sales representative in advance.  
Unless otherwise agreed in writing by ROHM in advance, ROHM shall not be in any way responsible or liable for any  
damages, expenses or losses incurred by you or third parties arising from the use of any ROHM’s Products for Specific  
Applications.  
(Note1) Medical Equipment Classification of the Specific Applications  
JAPAN  
USA  
EU  
CHINA  
CLASS  
CLASSⅣ  
CLASSb  
CLASSⅢ  
CLASSⅢ  
CLASSⅢ  
2. ROHM designs and manufactures its Products subject to strict quality control system. However, semiconductor  
products can fail or malfunction at a certain rate. Please be sure to implement, at your own responsibilities, adequate  
safety measures including but not limited to fail-safe design against the physical injury, damage to any property, which  
a failure or malfunction of our Products may cause. The following are examples of safety measures:  
[a] Installation of protection circuits or other protective devices to improve system safety  
[b] Installation of redundant circuits to reduce the impact of single or multiple circuit failure  
3. Our Products are designed and manufactured for use under standard conditions and not under any special or  
extraordinary environments or conditions, as exemplified below. Accordingly, ROHM shall not be in any way  
responsible or liable for any damages, expenses or losses arising from the use of any ROHM’s Products under any  
special or extraordinary environments or conditions. If you intend to use our Products under any special or  
extraordinary environments or conditions (as exemplified below), your independent verification and confirmation of  
product performance, reliability, etc, prior to use, must be necessary:  
[a] Use of our Products in any types of liquid, including water, oils, chemicals, and organic solvents  
[b] Use of our Products outdoors or in places where the Products are exposed to direct sunlight or dust  
[c] Use of our Products in places where the Products are exposed to sea wind or corrosive gases, including Cl2,  
H2S, NH3, SO2, and NO2  
[d] Use of our Products in places where the Products are exposed to static electricity or electromagnetic waves  
[e] Use of our Products in proximity to heat-producing components, plastic cords, or other flammable items  
[f] Sealing or coating our Products with resin or other coating materials  
[g] Use of our Products without cleaning residue of flux (even if you use no-clean type fluxes, cleaning residue of  
flux is recommended); or Washing our Products by using water or water-soluble cleaning agents for cleaning  
residue after soldering  
[h] Use of the Products in places subject to dew condensation  
4. The Products are not subject to radiation-proof design.  
5. Please verify and confirm characteristics of the final or mounted products in using the Products.  
6. In particular, if a transient load (a large amount of load applied in a short period of time, such as pulse. is applied,  
confirmation of performance characteristics after on-board mounting is strongly recommended. Avoid applying power  
exceeding normal rated power; exceeding the power rating under steady-state loading condition may negatively affect  
product performance and reliability.  
7. De-rate Power Dissipation (Pd) depending on Ambient temperature (Ta). When used in sealed area, confirm the actual  
ambient temperature.  
8. Confirm that operation temperature is within the specified range described in the product specification.  
9. ROHM shall not be in any way responsible or liable for failure induced under deviant condition from what is defined in  
this document.  
Precaution for Mounting / Circuit board design  
1. When a highly active halogenous (chlorine, bromine, etc.) flux is used, the residue of flux may negatively affect product  
performance and reliability.  
2. In principle, the reflow soldering method must be used; if flow soldering method is preferred, please consult with the  
ROHM representative in advance.  
For details, please refer to ROHM Mounting specification  
Notice - GE  
Rev.002  
© 2014 ROHM Co., Ltd. All rights reserved.  
Daattaasshheeeett  
Precautions Regarding Application Examples and External Circuits  
1. If change is made to the constant of an external circuit, please allow a sufficient margin considering variations of the  
characteristics of the Products and external components, including transient characteristics, as well as static  
characteristics.  
2. You agree that application notes, reference designs, and associated data and information contained in this document  
are presented only as guidance for Products use. Therefore, in case you use such information, you are solely  
responsible for it and you must exercise your own independent verification and judgment in the use of such information  
contained in this document. ROHM shall not be in any way responsible or liable for any damages, expenses or losses  
incurred by you or third parties arising from the use of such information.  
Precaution for Electrostatic  
This Product is electrostatic sensitive product, which may be damaged due to electrostatic discharge. Please take proper  
caution in your manufacturing process and storage so that voltage exceeding the Products maximum rating will not be  
applied to Products. Please take special care under dry condition (e.g. Grounding of human body / equipment / solder iron,  
isolation from charged objects, setting of Ionizer, friction prevention and temperature / humidity control).  
Precaution for Storage / Transportation  
1. Product performance and soldered connections may deteriorate if the Products are stored in the places where:  
[a] the Products are exposed to sea winds or corrosive gases, including Cl2, H2S, NH3, SO2, and NO2  
[b] the temperature or humidity exceeds those recommended by ROHM  
[c] the Products are exposed to direct sunshine or condensation  
[d] the Products are exposed to high Electrostatic  
2. Even under ROHM recommended storage condition, solderability of products out of recommended storage time period  
may be degraded. It is strongly recommended to confirm solderability before using Products of which storage time is  
exceeding the recommended storage time period.  
3. Store / transport cartons in the correct direction, which is indicated on a carton with a symbol. Otherwise bent leads  
may occur due to excessive stress applied when dropping of a carton.  
4. Use Products within the specified time after opening a humidity barrier bag. Baking is required before using Products of  
which storage time is exceeding the recommended storage time period.  
Precaution for Product Label  
QR code printed on ROHM Products label is for ROHM’s internal use only.  
Precaution for Disposition  
When disposing Products please dispose them properly using an authorized industry waste company.  
Precaution for Foreign Exchange and Foreign Trade act  
Since our Products might fall under controlled goods prescribed by the applicable foreign exchange and foreign trade act,  
please consult with ROHM representative in case of export.  
Precaution Regarding Intellectual Property Rights  
1. All information and data including but not limited to application example contained in this document is for reference  
only. ROHM does not warrant that foregoing information or data will not infringe any intellectual property rights or any  
other rights of any third party regarding such information or data. ROHM shall not be in any way responsible or liable  
for infringement of any intellectual property rights or other damages arising from use of such information or data.:  
2. No license, expressly or implied, is granted hereby under any intellectual property rights or other rights of ROHM or any  
third parties with respect to the information contained in this document.  
Other Precaution  
1. This document may not be reprinted or reproduced, in whole or in part, without prior written consent of ROHM.  
2. The Products may not be disassembled, converted, modified, reproduced or otherwise changed without prior written  
consent of ROHM.  
3. In no event shall you use in any way whatsoever the Products and the related technical information contained in the  
Products or this document for any military purposes, including but not limited to, the development of mass-destruction  
weapons.  
4. The proper names of companies or products described in this document are trademarks or registered trademarks of  
ROHM, its affiliated companies or third parties.  
Notice - GE  
Rev.002  
© 2014 ROHM Co., Ltd. All rights reserved.  
Daattaasshheeeett  
General Precaution  
1. Before you use our Pro ducts, you are requested to care fully read this document and fully understand its contents.  
ROHM shall not be in an y way responsible or liable for failure, malfunction or accident arising from the use of a ny  
ROHM’s Products against warning, caution or note contained in this document.  
2. All information contained in this docume nt is current as of the issuing date and subj ect to change without any prior  
notice. Before purchasing or using ROHM’s Products, please confirm the la test information with a ROHM sale s  
representative.  
3. The information contained in this doc ument is provi ded on an “as is” basis and ROHM does not warrant that all  
information contained in this document is accurate an d/or error-free. ROHM shall not be in an y way responsible or  
liable for any damages, expenses or losses incurred by you or third parties resulting from inaccuracy or errors of or  
concerning such information.  
Notice – WE  
Rev.001  
© 2014 ROHM Co., Ltd. All rights reserved.  
配单直通车
BD37522FS-E2产品参数
型号:BD37522FS-E2
是否无铅: 不含铅
是否Rohs认证: 符合
生命周期:Active
IHS 制造商:ROHM CO LTD
零件包装代码:SSOP
包装说明:SSOP, SOP24,.3,32
针数:24
Reach Compliance Code:compliant
HTS代码:8542.39.00.01
Factory Lead Time:9 weeks
风险等级:2.19
商用集成电路类型:CONSUMER CIRCUIT
JESD-30 代码:R-PDSO-G24
长度:10 mm
功能数量:1
端子数量:24
最高工作温度:85 °C
最低工作温度:-40 °C
封装主体材料:PLASTIC/EPOXY
封装代码:SSOP
封装等效代码:SOP24,.3,32
封装形状:RECTANGULAR
封装形式:SMALL OUTLINE, SHRINK PITCH
峰值回流温度(摄氏度):NOT SPECIFIED
电源:8.5 V
认证状态:Not Qualified
座面最大高度:2.1 mm
子类别:Audio Control ICs
最大压摆率:48 mA
最大供电电压 (Vsup):9.5 V
最小供电电压 (Vsup):7 V
表面贴装:YES
技术:BICMOS
温度等级:INDUSTRIAL
端子形式:GULL WING
端子节距:0.8 mm
端子位置:DUAL
处于峰值回流温度下的最长时间:NOT SPECIFIED
宽度:5.4 mm
Base Number Matches:1
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