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PDF BD3465FV Data sheet ( Hoja de datos )

Número de pieza BD3465FV
Descripción General-Purpose 4ch Electronic Volume
Fabricantes ROHM Semiconductor 
Logotipo ROHM Semiconductor Logotipo



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Datasheet
General-Purpose 4ch Electronic Volume
with Built-in Advanced Switch
BD3465FV
General Description
BD3465FV is a 4ch electronic volume which has the
best audio efficiency in the industry. It has an external
sound mixing function (with volume) in the favorite
channel for mixing of portable audio and car
navigation’s guide sound. Also, BD3465FV has a
volume switching shock sound prevention technique
called “Advanced Switch,” supporting the construction
of high quality car audio space by simple control.
Features
Reduce switching noise of volume by using
Advanced Switch circuit.
Mixing for external sound monaural 3ch. It is
possible that is mixed to front/Rear output Lch/Rch
independently.
Built-in 3ch ATT for external sound mixing that can
be controlled independently.
Energy saving design resulting in low-current
consumption by utilizing the Bi-CMOS process. It
has the advantage in quality over scaling down the
power heat control of the internal regulators.
Arranges all I/O terminals together for easier PCB
layout and smaller PCB area.
I2C BUS can be controlled by 3.3V / 5V.
Applications
It is optimal for car audio. It can also be used for car
navigation, audio equipment of mini Compo, micro
Compo, DVD, TV, etc.
Key Specifications
Power Supply Voltage Range:
Circuit Current (no signal):
Total Harmonic Distortion:
Maximum Input Voltage:
Cross-talk Between Selectors:
Volume Control Range:
Output Noise Voltage:
Residual Output Noise Voltage:
Operating Temperature Range:
7.0V to 9.5V
25mA(Typ)
0.0004%(Typ)
2.35Vrms(Typ)
-105dB(Typ)
+23dB to -79dB
1.9µVrms(Typ)
1.6µVrms(Typ)
-40°C to +85°C
Package
W(Typ) x D(Typ) x H(Max)
SSOP-B20
6.50mm x 6.40mm x 1.45mm
Typical Application Circuit
FIL GND
10μ
SDA
SCL
CS VCC OUTF1 OUTF2 OUTR1 OUTR2
10μ
0.1μ
2.2K
4.7μ
4.7μ
4.7μ
4.7μ
20 19 18 17 16 15 14 13 12 11
VCC
VCC/2 GND
I2C BUS LOGIC
4ch Volume
++2233ddBBto-79-dB7/19dB Bste/p,1-dB step,-
★:Advanced switch circuit
Mixing ATT
++00ddBB to -3-23d2B/d8BdB/s8tedpB step,
--3322ddBBto-6-4d6B4/1d6BdB/s1t6epd, B-step,-
Independent
control
100k
100k
100k
100k
1 23 4 5
1μ
INF1
1μ
1μ
1μ
INF2
INR1
INR2
100k
100k
100k
6 7 8 9 10
1μ
1μ
1μ
EXT1
EXT2
EXT3
Unit
R : [Ω]
C : [F]
Product structureSilicon monolithic integrated circuit
www.rohm.com
© 2015 ROHM Co., Ltd. All rights reserved.
TSZ2211114001
This product has no designed protection against radioactive rays
1/28
TSZ02201-0C2C0E100380-1-2
16.Dec.2015 Rev.001

1 page




BD3465FV pdf
BD3465FV
Electrical Characteristics - continued
(Unless specified, Ta=25°C, VCC=8.5V, f=1kHz, VIN=1Vrms, Rg=600Ω, RL=10kΩ, INF1 input, Volume 0dB)
Parameter
Limit
Symbol
Unit
Min Typ Max
Conditions
Input Impedance
RIN_V
70 100 130 kΩ
Maximum Input Voltage
Maximum Gain
Maximum Attenuation
Step Resolution
VIM 2 2.35 Vrms VIM at THD+N(VOUT)=1%
BW=400Hz-30KHz
Gain=23dB
GV_BST
21
23
25
dB VIN=100mVrms
GV=20log(VOUT/VIN)
Volume=-dB
GV_MIN
-109 -90
dB GV=20log(VOUT/VIN)
BW=IHF-A
GV_STEP
1
dB GAIN&ATT=+23dB to -79dB
Gain Set Error
GV_ERR
-2
0
+2 dB Gain=+1dB to +23dB
Attenuation Set Error 1
GV_ERR1
-2
0
+2 dB ATT=-1dB to -15dB
Attenuation Set Error 2
GV_ERR2
-3
0
+3 dB ATT=-16dB to -47dB
Attenuation Set Error 3
Output Impedance
Maximum Output Voltage
Input Impedance
Maximum Attenuation
Step Resolution 1
GV_ERR3
ROUT
VOM
RIN_M
GM_MIN
GM_STEP1
-4
-
2
70
0 +4 dB ATT=-48dB to -79dB
50 Ω VIN =100mVrms
2.35 Vrms THD+N=1%
BW=400Hz-30kHz
100 130
kΩ
-90
dB
GM=20log(VOUT/VIN)
BW=IHF-A, ATT=-dB
8 dB ATT=0dB to -32dB
Step Resolution 2
GM_STEP2
16
dB ATT=-32dB to -64dB
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
© 2015 ROHM Co., Ltd. All rights reserved.
TSZ2211115001
5/28
TSZ02201-0C2C0E100380-1-2
16.Dec.2015 Rev.001

5 Page





BD3465FV arduino
BD3465FV
(2) I2C BUS FORMAT
MSB
LSB
S Slave Address
1bit 8bit
S
Slave Address
A
Select Address
Data
P
MSB
LSB MSB
LSB
A Select Address A
Data
AP
1bit 8bit 1bit 8bit 1bit 1bit
= Start condition (Recognition of start bit)
= Recognition of slave address. The first 7 bits correspond to the slave address.
The least significant bit is Lwhich corresponds to write mode.
= ACKNOWLEDGE bit (Recognition of acknowledgement)
= Select address corresponding to volume, bass or treble.
= Data on every volume and tone.
= Stop condition (Recognition of stop bit)
(3) I2C BUS Interface Protocol
(a) Basic format
S Slave Address
MSB
LSB
A Select Address
MSB
LSB
A Data A P
MSB LSB
(b) Automatic increment (Select Address increases (+1) according to the number of data.)
S Slave Address A Select Address A Data1 A Data2 A ・・・・ DataN
MSB
(Example)
LSB MSB
LSB MSB LSB MSB LSB
Data1 shall be set as data of address specified by Select Address.
Data2 shall be set as data of address specified by Select Address +1.
DataN shall be set as data of address specified by Select Address +N-1.
MSB LSB
A
P
(c) 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
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.
P
(4) Slave Address
Because the slave address can be changed by the setting of CS, it is possible to use two chips at the same time
on identical BUS.
MSB
LSB
SEL Voltage Condition
A6 A5 A4 A3 A2 A1 A0 R/W
GND to 0.2 x VCC
0.8 x VCC to VCC
1 0 0 0 0 0 0 0 80H
1 0 0 0 0 1 0 0 84H
Establish the CS voltage to define the setting.
www.rohm.com
© 2015 ROHM Co., Ltd. All rights reserved.
TSZ2211115001
11/28
TSZ02201-0C2C0E100380-1-2
16.Dec.2015 Rev.001

11 Page







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