HA17458 Series
Dual Operational Amplifier
REJ03D0680-0100
(Previous: ADE-204-040)
Rev.1.00
Jun 15, 2005
Description
HA17458 is dual operational amplifiers which provides internal phase compensation and high performance. It can be
applied widely to measuring control equipment and to general use.
Features
•
•
•
•
High voltage gain: 100dB (Typ)
Wide output amplitude: ±13V (Typ) [at R
L
≥
2kΩ]
Protected from output shortcircuit
Internal phase compensation
Ordering Information
Type No.
HA17485FP
HA17458F
HA17458
HA17458PS
Application
Industrial use
Commercial use
Commercial use
Industrial use
Package Code (Previous Code)
PRSP0008DE-B (FP-8DGV)
PRSP0008DE-B (FP-8DGV)
PRDP0008AF-A (DP-8B)
PRDP0008AF-A (DP-8B)
Rev.1.00 Jun 15, 2005 page 1 of 8
HA17458 Series
Pin Arrangement
Vout1 1
Vin(−)1 2
Vin(+)1 3
V
EE
4
1
−
+
+
−
2
8 V
CC
7 Vout2
6 Vin(−)2
5 Vin(+)2
(Top View)
Circuit Schematic
(1/2)
V
CC
Vin(+)
Vin(
−
)
Vout
to V
EE
to V
CC
to V
CC
V
EE
Rev.1.00 Jun 15, 2005 page 2 of 8
HA17458 Series
Absolute Maximum Ratings
(Ta = 25°C)
Ratings
Item
Supply voltage
Intput voltage
Differential input voltage
Power dissipation
Operating temperature
Symbol
V
CC
V
EE
V
IN
*
V
IN(diff)
P
T
Topr
3
HA17458
HA17458PS
HA17458F
HA17458FP
Unit
V
V
V
V
+18
–18
±15
±30
670*
–20 to +75
1
+18
–18
±15
±30
670*
–20 to +75
1
+18
–18
±15
±30
385*
–20 to +75
2
+18
–18
±15
±30
385*
–20 to +75
2
mW
°C
Storage temperature
Tstg
–55 to +125
–55 to +125
–55 to +125
–55 to +125
°C
Notes: 1. These are the allowable values up to Ta = 45 °C. Derate by 8.3mW/°C above that temperature.
2. These are the allowable values up to Ta = 31 °C mounting on 30% wiring density glass epoxy board. Derate
by 7.14mW/°C above that temperature.
3. If the supply voltage is less than ±15V, input voltage should be less than supply voltage.
Electrical Characteristics 1
(V
CC
= –V
EE
= 15V, Ta = 25°C)
Item
Input offset voltage
Input offset current
Input bias current
Line regulation
Voltage gain
Common mode rejection ratio
Common mode input voltage range
Peak-to-peak output voltage
Power dissipation
Slew rate
Input resistance
Input capacitance
Output resistance
Symbol
V
IO
I
IO
I
IB
∆V
IO
/∆V
CC
∆V
IO
/∆V
EE
A
VD
CMR
V
CM
Vop-p
P
d
SR
Rin
Cin
Rout
Min
—
—
—
—
—
86
70
±12
±12
—
—
0.3
—
—
Typ
2.0
6
30
30
30
100
90
±13
±14
90
0.6
1.0
6.0
75
Max
6.0
200
500
150
150
—
—
—
—
200
—
—
—
—
Unit
mV
nA
nA
µV/V
µV/V
dB
dB
V
V
mW
V/µs
MΩ
pF
Ω
Test conditions
R
S
≤
10kΩ
R
S
≤
10kΩ
R
S
≤
10kΩ
R
L
≥
2kΩ, Vout = ±10V
R
S
≤
10kΩ
R
L
= 10kΩ
No load, 2 channel
A
VD
= 1
Electrical Characteristics 2
(V
CC
= –V
EE
= 15V, Ta = –20 to +75°C)
Item
Input offset voltage
Input offset current
Input bias current
Voltage gain
Peak-to-peak output voltage
Symbol
V
IO
I
IO
I
IB
A
VD
Vop-p
Min
—
—
—
80
±10
Typ
—
—
—
—
±13
Max
9.0
400
1100
—
—
Unit
mV
nA
nA
dB
V
Test conditions
R
S
≤
10kΩ
R
L
≥
2kΩ, Vout = ±10V
R
L
= 2kΩ
Rev.1.00 Jun 15, 2005 page 3 of 8
HA17458 Series
Characteristic Curves
Input Offset Voltage
vs. Ambient Temperature
5
Input Offset Voltage V
IO
(mV)
Input Bias Current I
IB
(nA)
Input Bias Current
vs. Ambient Temperature
100
V
CC
= + 15 V
V
EE
=
−15
V
80
4
V
CC
= + 15 V
V
EE
=
−15
V
R
S
<
10 kΩ
=
3
60
2
40
1
20
0
−20
0
20
40
60
80
0
−20
0
20
40
60
80
Ambient Temperature Ta (°C)
Ambient Temperature Ta (°C)
Input Offset Current
vs. Ambient Temperature
20
Input Offset Current I
IO
(nA)
Power Dissipation Pd (mW)
Power Dissipation
vs. Ambient Temperature
200
V
CC
= + 15 V
V
EE
=
−15
V
No Load
Both Amplifiers
V
CC
= + 15 V
V
EE
=
−15
V
16
12
100
8
4
0
−20
0
20
40
60
80
0
−20
0
20
40
60
80
Ambient Temperature Ta (°C)
Ambient Temperature Ta (°C)
Rev.1.00 Jun 15, 2005 page 4 of 8
HA17458 Series
Voltage Gain
vs. Ambient Temperature
120
Output Short Current
vs. Ambient Temperature
50
Voltage Gain A
VD
(dB)
110
Output Short Current I
OS
(mA)
V
CC
= + 15 V
V
EE
=
−15
V
R
L
= 2 kΩ
40
V
CC
= + 15 V
V
EE
=
−15
V
V
OP-P
= 0 V
100
30
Source
20
90
Sink
10
80
70
−
20
0
20
40
60
80
0
−
20
0
20
40
60
80
Ambient Temperature Ta (
°
C)
Ambient Temperature Ta (
°
C)
200
Maximum Output Voltage Swing V
OP-P
(V)
Power Dissipation
vs. Supply Voltage
Ta = 25°C
No Load
Both Amplifiers
Maximum Output Voltage Swing
vs. Supply Voltage
20
Ta = 25°C
R
L
= 2 kΩ
16
Power Dissipation Pd (mW)
150
12
O
+V
P-
P
P-
P
100
8
O
ÐV
50
4
0
±3
±6
±9
±12
±15
Supply Voltage V
CC
, V
EE
(V)
±18
0
±3
±6
±9
±12
±15
Supply Voltage V
CC
, V
EE
(V)
±18
Rev.1.00 Jun 15, 2005 page 5 of 8