BA2904F-E2 Rohm Semiconductor, BA2904F-E2 Datasheet - Page 18

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BA2904F-E2

Manufacturer Part Number
BA2904F-E2
Description
IC OP AMP DUAL 0.7MA SOP8
Manufacturer
Rohm Semiconductor
Datasheets

Specifications of BA2904F-E2

Slew Rate
0.2 V/µs
Amplifier Type
General Purpose
Number Of Circuits
2
Gain Bandwidth Product
500kHz
Current - Input Bias
20nA
Voltage - Input Offset
2000µV
Current - Supply
700µA
Current - Output / Channel
30mA
Voltage - Supply, Single/dual (±)
3 V ~ 32 V, ±1.5 V ~ 16 V
Operating Temperature
-40°C ~ 125°C
Mounting Type
Surface Mount
Package / Case
8-SOP
Op Amp Type
General Purpose
No. Of Amplifiers
2
Supply Voltage Range
3V To 32V
Amplifier Case Style
SOP
No. Of Pins
8
Operating Temperature Range
-40°C To +125°C
Svhc
No SVHC
Number Of Channels
2
Common Mode Rejection Ratio (min)
50 dB
Input Offset Voltage
7 mV
Input Bias Current (max)
250 nA
Operating Supply Voltage
3 V to 32 V
Supply Current
2 mA
Maximum Operating Temperature
+ 125 C
Minimum Operating Temperature
- 40 C
Dual Supply Voltage
+/- 3 V, +/- 5 V, +/- 9 V
Maximum Dual Supply Voltage
+/- 16 V
Minimum Dual Supply Voltage
+/- 1.5 V
Mounting Style
SMD/SMT
Shutdown
No
Supply Voltage (max)
32 V
Supply Voltage (min)
3 V
Technology
Bipolar
Voltage Gain Db
100 dB
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Output Type
-
-3db Bandwidth
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
Other names
BA2904F-E2TR

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BA10358F/FV, BA10324AF/FV, BA2904SF/FV/FVM, BA2904F/FV/FVM
BA2902SF/FV/KN, BA2902F/FV/KN, BA3404F/FVM
● Test Circuit 2 Switch Condition
● Measurement Circuit 3 Amplifier To Amplifier Coupling
© 2010 ROHM Co., Ltd. All rights reserved.
SW1
www.rohm.com
RS
Supply Current
High Level Output Voltage
Low Level Output Voltage
Output Source Current
Output Sink Current
Slew Rate
Gain Bandwidth Product
Equivalent Input Noise Voltage
SW2
R1
SW3
VIN-
SW6
SW No.
Fig.122 Test Circuit 2 (each Op-Amp)
VIN+
SW7
R1//R2
SW4
SW5
VIN
R1
SW8
R2
VCC
VEE
A
R2
OFF OFF OFF ON OFF ON OFF OFF OFF OFF OFF OFF OFF OFF
OFF OFF ON OFF OFF ON OFF OFF ON OFF OFF OFF ON OFF
OFF OFF ON OFF OFF ON OFF OFF OFF OFF OFF OFF ON OFF
OFF OFF ON OFF OFF ON OFF OFF OFF OFF OFF OFF OFF ON
OFF OFF ON OFF OFF ON OFF OFF OFF OFF OFF OFF OFF ON
OFF OFF OFF ON OFF OFF OFF ON
OFF ON OFF OFF ON
SW
ON OFF OFF OFF ON
1
SW9
VEE
VCC
RL
SW
SW10
2
CL
SW11
SW
V
3
VOUT1
=0.5[Vrms]
V
SW12
Fig. 124 Test Circuit 3
SW
4
18/25
SW13
SW
5
V
SW14
SW
ON OFF OFF ON
ON OFF OFF OFF OFF ON OFF OFF OFF
6
A
VOUT
R1//R2
SW
7
R1
Output voltage
CS = 20 × log
Input voltage
VH
VH
VL
VL
Fig. 123 Slew Rate Input Waveform
SW
8
OTHER
SW
ON
100 × VOUT1
9
CH
R2
VOUT2
VEE
Output wave
VCC
SW
Input wave
ON OFF OFF OFF OFF
ON OFF OFF OFF OFF
10
SR=ΔV/Δt
Δt
SW
11
V
SW
Technical Note
12
2010.11 - Rev.A
VOUT2
ΔV
SW
13
t
t
SW
14

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