NJM2130
LOW POWER SINGLE OPERATIONAL AMPLIFIER
■
GENERAL DESCRIPTION
■
PACKAGE OUTLINE
The NJM2130 is a general-purpose low power single
operational amplifier.
The features of low power, low operating voltage, and ultra mini
package are most suitable for portable items.
The NJM2130 incorporates frequency compensation and
NJM2130F
short-circuit protection as same as NJM022 and the
characteristics are also same as NJM022.
■
FEATURES
●
Operating Voltage
( ±2V~±18V )
●
Low Supply Current
( 80µA typ. )
●
Short-Circuit Protection
( ±6mA typ. )
●
Mounted in Ultra Miniature Package 2.0 x 1.25mm
( 1/8 of DMP8 package )
●
Bipolar Technology
●
Package Outline
SOT
−
23
−
5,SC88A
■
PIN CONFIGURATION
PIN FUNCTION
1.+INPUT
2.V
-
3.-INPUT
4.OUTPUT
5.V
+
NJM2130F
NJM2130F3
NJM2130F3
■
EQUIVALENT CIRCUIT
Ver.2012-11-02
-1-
NJM2130
■
ABSOLUTE MAXIMUM RATINGS
( Ta=25˚C )
PARAMETER
Supply Voltage
Input Voltage
Differential Input Voltage
Power Dissipation
Operating Temperature Range
Storage Temperature Range
SYMBOL
V
+
/V
-
V
IC
V
ID
P
D
T
opr
T
stg
RATINGS
± 18
± 15 ( note1 )
± 30
(SOT−23−5 ) 200
( SC88A ) 250 ( note2 )
-40~+85
-40~+125
UNIT
V
V
V
mW
˚C
˚C
( note1 ) When the supply voltage is less than ±15V,the absolute maximum input voltage is equal to the supply voltage.
( note2 ) On EIA/JEDEC board. ( 76.2x114.3x1.6mm, 2layer, FR-4 )
■
ELECTRICAL CHARACTERISTICS
( V
+
/V
-
=±15V
,
Ta=25˚C )
PARAMETER
Input Offset Voltage
Input Offset Current
Input Bias Current
Large Signal Voltage Gain
Common Mode Rejection Ratio
Response Time ( Rise Time )
Slew Rate
Input Common Mode Voltage Range
Supply Voltage Rejection Ratio
Equivalent Input Noise Voltage
Short-circuit Output Current
Operating Current
Maximum Output Voltage Swing
SYMBOL
V
IO
I
IO
I
B
A
V
CMR
t
R
SR
V
ICM
SVR
e
n
I
OS
I
CC
V
OM
TEST CONDITION
R
S
≤
10kΩ
R
L
≥10kΩ,V
O
=±10V
R
S
≤
10kΩ
V
IN
=20mV,R
L
=10kΩ,C
L
=100
P
F
V
IN
=10V,R
L
=10kΩ,C
L
=100
P
F
R
S
≤
10kΩ
A
V
=20dB,f=1kHz
R
L
=10kΩ
MIN.
-
-
-
60
60
-
-
± 12
74
-
-
-
± 10
TYP.
1
1
15
88
90
0.3
0.5
± 13
110
50
±6
80
± 14
MAX.
5
80
250
-
-
-
-
-
-
-
-
170
-
UNIT
mV
nA
nA
dB
dB
µs
V/µs
V
dB
nV/√Hz
mA
µA
V
-2-
Ver.2012-11-02
NJM2130
■
TYPICAL CHARACTERISTICS
Voltage gain phase vs. Frequency
Maximum Output voltage V
opp
(V)
Maximum Output voltage
vs. Load Resistance
(V /V =±15V,Ta=25℃)
+
−
Voltage gain Av (dB)
Frequency
f (Hz)
Phase φ(deg)
Load Resistance R
L
(kΩ)
Maximum Output Voltage
vs. Operating Voltage
(R
L
=10kΩ,Ta=25℃)
Maximum Output voltage V
opp
(V)
(V /V =±15V,RL=10kΩ,Ta=25℃)
+
Maximum Output Voltage
vs. Frequency
−
0
±2
±4
±6
±8
±10 ±12 ±14 ±16 ±18
+
−
Operating Voltage V /V (V)
Maximum
Output voltage V
opp
(V)
Frequency f (Hz)
Operating Current
vs. Operating Voltage
(No input Signal,RL=10kΩ,Ta=25℃)
Operating Current Icc (uA)
Operating Current Icc (uA)
Operating Current
vs. Temperature
(V /V =±15V)
+
−
0
±2
±4 ±6 ±8
±10 ±12 ±14 ±16 ±18 ±20
+
−
Operating Voltage V /V (V)
Ambient Temperature Ta (℃)
Ver.2012-11-02
-3-
NJM2130
Maximum Output Voltage Swing
vs. Temperature
Maximum Output voltage Swing
±V
OM
(V)
(V /V =±15V,RL=10kΩ)
+
Input Bias Current vs. Temperature
(V /V =±15V,RL=10kΩ)
+
−
−
Input Bias Current I
B
(nA)
Ambient Temperature Ta (℃)
Ambient Temperature Ta (℃)
Input offset Voltage vs. Temperature
(V /V =±15V)
+
Voltage gain phase vs. Temperature
−
Input offset voltage V
io
(mV)
Voltage gain Av (dB)
Ambient Temperature Ta (℃)
Ambient Temperature Ta (℃)
[CAUTION]
The specifications on this databook are only
given for information , without any guarantee
as regards either mistakes or omissions. The
application circuits in this databook are
described only to show representative usages
of the product and not intended for the
guarantee or permission of any right including
the industrial rights.
-4-
Ver.2012-11-02