LM2904DR Rohm Semiconductor, LM2904DR Datasheet - Page 3

IC OPAMP DUAL 26V 8-SOIC

LM2904DR

Manufacturer Part Number
LM2904DR
Description
IC OPAMP DUAL 26V 8-SOIC
Manufacturer
Rohm Semiconductor
Series
Trophyr
Datasheet

Specifications of LM2904DR

Slew Rate
0.3 V/µs
Amplifier Type
General Purpose
Number Of Circuits
2
Gain Bandwidth Product
700kHz
Current - Input Bias
20nA
Voltage - Input Offset
3000µV
Current - Supply
1mA
Current - Output / Channel
30mA
Voltage - Supply, Single/dual (±)
3 V ~ 26 V, ±1.5 V ~ 13 V
Operating Temperature
-40°C ~ 125°C
Mounting Type
Surface Mount
Package / Case
8-SOIC (3.9mm Width)
Op Amp Type
General Purpose
No. Of Amplifiers
2
Bandwidth
0.7MHz
Supply Voltage Range
± 1.5V To ± 16V
Amplifier Case Style
SOIC
No. Of Pins
8
Operating Temperature Range
-40°C To
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
5 V, 9 V, 12 V, 15 V
Supply Current
1.2 mA
Maximum Power Dissipation
450 mW
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
LM2904DRTR

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LM2904,LM2902 family (Unless otherwise specified, Vcc=+5[V])
(*3) Absolute value
(*4) Under high temperature, consider the power dissipation of the IC when selecting the output current.
(*5) The maximum supply voltage is 26V for the LM2904DR, LM2904PW, LM2904PWR, and LM2904DQKR
Input Offset
Voltage (*3)
Input Offset
Voltage Drift
Input Offset
Current (*3)
Input Offset
Current Drift
Input Bias Current (*3)
Input Common-mode
Voltage Range
High Level
Output Voltage
Low Level
Output Voltage
Large Signal
Voltage Gain
Common-
mode
Rejection
Ratio
Supply
Voltage
Rejection
Ratio
Cross-talk Attenuation
Output Current (*4)
Supply Current
(All Amps)
Slew Rate at
Unity Gain
Unity-Gain Bandwidth
Equivalent Input Noise
Voltage
When the output terminal is continuously shorted the output current is reduced to lower the temperature inside the IC.
The maximum supply voltage is 32V for the LM2904VQDR and LM2904VQPWR
Parameter
LM2904
LM2902
(*5)
LM2904V
LM2902V
(*5)
LM2904
LM2902
(*5)
LM2904V
LM2902V
(*5)
LM2904
LM2902
(*5)
LM2904V
LM2902V
(*5)
LM2904
LM2902
(*5)
LM2904V
LM2902V
(*5)
LM2904
LM2904V
M2902
(*5)
LM2902V
(*5)
VO1/VO2
Symbol
Source
CMRR
KSVR
VICR
VOH
VOL
AVD
Sink
VIO
ICC
IIO
SR
VIO
IIB
B1
Vn
IIO
Io
Temperature
Full range
Full range
Full range
Full range
Full range
Full range
Full range
Full range
Full range
Full range
Full range
Full range
range
25
25
25
25
25
25
25
25
25
25
25
25
25
25
25
25
25
25
Vcc-1.5
Min.
23
27
25
50
65
65
20
10
10
12
2
LM2904 family
Typ.
100
100
120
0.7
0.3
0.7
10
20
24
28
80
80
30
20
30
40
40
3
7
2
2
5
1
Vcc-1.5
Vcc-2.0
Max.
300
150
250
500
1.2
10
50
50
20
7
2
3/8
Limit
Vcc-1.5
Min.
23
27
25
50
60
50
60
20
10
10
12
2
LM2902 family
Typ.
100
100
100
120
0.7
1.4
0.5
1.2
10
20
24
80
80
30
20
30
40
35
3
7
2
2
5
Vcc-1.5
Vcc-2.0
Max.
300
150
250
500
1.2
10
50
50
20
60
7
3
TROPHY SERIES LM2904/2902/358/324 family
pA/
V/mV
V/ s
These Products are designed and produced by ROHM.
MHz
Unit
mV
mV
mA
mA
mA
nA
nA
dB
dB
dB
dB
V/
V
V
A
A
VO=1.4[V],VIC=VICR(min)
Vcc=5[V] to MAX(*8)
VO=1.4[V]
VO=1.4[V]
Vcc=5[V] to MAX(*8)
RL 10[k ]
Vcc=MAX(*8),RL 10[k ]
Vcc=MAX(*8),RL 10[k ]
RL 10[k ]
Vcc=15[V],VO=1[V] to 11[V]
RL 2[k ]
Vcc=5[V] to MAX(*8)
VIC=VICR(min)
Vcc=5[V] to MAX(*8)
f=1[kHz] to 20[kHz]
Vcc=15[V],VO=0[V]
VID=1[V]
Vcc=15[V],VO=0[V]
VID=-1[V]
VO=200[mV],VID=-1[V]
VO=2.5[V],No Load
Vcc=MAX(*8),VO=0.5[V]
No Load
RL=1[M ],CL=30[pF],
VI= 10[V]
Vcc=15[V],GND=-15[V]
(reference to Fig1)
RL=1[M ],CL=20[pF]
Vcc=15[V],GND=-15[V]
(reference to Fig1)
Vcc=15[V],GND=-15[V]
RS=100[ ]VI=0[V]
f=1[kHz],
( reference to Fig2)
Condition
Under development
Fig.No
2
2
2
2
3
3
2
2
2
5
3
3
3
3
3

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