HA17358A Series
Dual Operational Amplifier
REJ03D0676-0400
Rev.4.00
Mar 10, 2006
Description
HA17358A series are dual operational amplifier that provide high gain and internal phase compensation, with single
power supply. They can be widely applied to control equipments and to general use.
Features
•
Wide range of supply voltage, and single power supply used
•
Wide range of common mode voltage, and possible to operate with an input about 0 V, and output around 0 V is
available
•
Frequency characteristics and input bias current are temperature compensated
•
Low electro-magnetic susceptibility level
Measurement Condition
Rf
Vcc = +7.5 V
Vee =
−7.5
V
Rs
Rs
Rf
0.01
µ
Vin
−10
dBm
RF signal source
(for quasi-RF noise)
Vout
V (= 100∗Vio)
_
5.0
Output Offset Voltage vs. Input Interference
Output offset voltage (arb. unit)
−
+
4.0
3.0
2.0
1.0
0
−1.0
100E+3
HA17358A series
HA17358 series
Improve-
ment
1E+6
10E+6
100E+6
1E+9
Input RF frequency (Hz)
10E+9
Ordering Information
Type No.
HA17358A
HA17358AF
HA17358ARP
HA17358AT
Application
Commercial use
Package Name
DIP-8 pin
SOP-8 pin (JEITA)
SOP-8 pin (JEDEC)
TSSOP-8 pin
Package Code
PRDP0008AF-B
PRSP0008DE-B
PRSP0008DD-C
PTSP0008JC-B
Rev.4.00 Mar 10, 2006 page 1 of 7
HA17358A Series
Pin Arrangement
Vout1
1
1
−
+
2
+
−
8
V
CC
Vout2
Vin(−)1
2
7
Vin(+)1
3
6
Vin(−)2
GND
4
5
Vin(+)2
(Top View)
Circuit Schematic
(1/2)
Q
5
Vin(−)
Q
1
Q
2
Q
3
Q
4
Q
6
C
Q
7
R
1
Vin(+)
Q
11
Q
10
Q
8
Q
9
Q
12
Q
13
Vout
Note: If Input/Output terminals voltage over the absolute maximum ratings, there is possibility of mis-operation,
characteristics deterioration and destruction, because of the current’s flowing to parasitic diode in IC.
The Input/Output terminals are recommended to be protected with the clamp circuit which using the diode with
low forward voltage (like schottky barrier diode) when there is a possibility for the Input/Output terminals
voltage exceeds the absolute maximum ratings.
Rev.4.00 Mar 10, 2006 page 2 of 7
HA17358A Series
Absolute Maximum Ratings
(Ta = 25°C)
Item
Power supply voltage
Output sink current
Common mode input voltage
Differential input voltage
Output voltage
Allowable power dissipation
Symbol
V
CC
Iosink
V
CM
Vin(diff)
Vout
P
T
Ratings
32
50
−0.3
to +V
CC
±V
CC
−0.3
to +V
CC
570 *
1
385 *
2
192 *
3
−40
to +85
−55
to +125
Unit
V
mA
V
V
V
mW
DIP
SOP
TSSOP
Operating temperature
Storage temperature
Topr
Tstg
°C
°C
Notes: 1. HA17358A:
This is the allowable values up to Ta = 50°C. Derate by 8.3 mW/°C.
2. HA17358AF/ARP:
These are the allowable values up to Ta = 25°C mounting in air.
When it is mounted on glass epoxy board of 40 mm
×
40 mm
×
1.5 mmt with 30% wiring density, the
allowable value is 570 mW up to Ta = 45°C. If Ta > 45°C, derate by 7.14 mW/°C.
3. HA17358AT:
These are the allowable values up to Ta = 25°C. Derate by 1.92 mW/°C above that temperature.
Electrical Characteristics
(V
CC
= +15 V, Ta = 25°C)
Item
Input offset voltage
Input offset current
Input bias current
Power source rejection ratio
Voltage gain
Common mode rejection ratio
Common mode input voltage range
Peak-to-peak output voltage
Output source current
Output sink current
Supply current
Slew rate
Channel separation *
1
Note: 1. Design spec.
Symbol
V
IO
I
IO
I
IB
PSRR
A
VD
CMR
V
CM (+)
V
CM (–)
V
OP-P
Iosource
Iosink
I
CC
SR
CS
Min
—
—
—
—
75
—
13.5
—
—
20
10
15
—
—
—
Typ
3
5
30
93
90
80
—
—
13.6
40
20
50
0.8
0.2
(120)
Max
7
50
250
—
—
—
—
–0.3
—
—
—
—
2
—
—
Unit
mV
nA
nA
dB
dB
dB
V
V
V
mA
mA
µA
mA
V/µs
dB
Test Conditions
V
CM
= 7.5V, R
S
= 50Ω, Rf = 50kΩ
V
CM
= 7.5V, I
IO
=
|
I
I (+)
– I
I (–)
|
V
CM
= 7.5V
R
S
= 1kΩ, Rf = 100kΩ
R
L
=
∞,
R
S
= 1kΩ, Rf = 100kΩ
R
S
= 50Ω, Rf = 5kΩ
R
S
= 1kΩ, Rf = 100kΩ
R
S
= 1kΩ, Rf = 100kΩ
f = 100Hz, R
L
= 20kΩ, R
S
= 1kΩ,
Rf = 100kΩ
V
IN+
= 1V, V
IN–
= 0V, V
OH
= 10V
V
IN–
= 1V, V
IN+
= 0V, V
OL
= 2.5V
V
IN–
= 1V, V
IN+
= 0V, Vout = 200mV
V
IN
= GND, R
L
=
∞
R
L
=
∞,
V
CM
= 7.5V, f = 1.5kHz
f = 1kHz
Rev.4.00 Mar 10, 2006 page 3 of 7
HA17358A Series
Characteristic Curves
Output source current Iosource (mA)
Input bias current I
IB
(nA)
Output Source Current vs. Ambient Temperature
80
V
CC
= 15 V
70
V
OH
= 10 V
60
50
40
30
20
10
0
−20
0
20
40
60
Ambeint temperature Ta (°C)
80
Input Bias Current vs. Ambient Temperature
80
70
60
50
40
30
20
10
0
−20
0
20
40
60
Ambeint temperature Ta (°C)
80
V
CC
= 15 V
V
CM
= 7.5 V
Supply Current vs. Supply Voltage
4
Supply current I
CC
(mA)
Input bias current I
IB
(nA)
Input Bias Current vs. Supply Voltage
80
Ta = 25°C
Ta = 25°C
3
60
2
40
1
20
0
8
16
24
32
Supply voltage V
CC
(V)
40
0
8
16
24
32
Supply voltage V
CC
(V)
40
Voltage Gain vs. Supply Voltage
Maximum output voltage V
OP
-
P
(V)
Maxlmum Output Voltage vs. Frequency
20
16
12
8
4
0
1k
V
CC
= 15 V
Ta = 25°C
R
L
= 20 kΩ
160
Voltage gain A
VD
(dB)
Ta = 25°C
R
L
=
∞
120
80
40
0
8
16
24
32
Supply voltage V
CC
(V)
40
3k
10 k 30 k 100 k 300 k
Frequency f (Hz)
1M
Rev.4.00 Mar 10, 2006 page 4 of 7
HA17358A Series
Voltage Gain vs. Frequency
120
100
Voltage gain A
VD
(dB)
V
CC
= 15V
Ta = 25°C
R
L
=
∞
80
60
40
20
0
1
3
10
30
100
300
1k
3k
Frequency f (Hz)
10 k
30 k
100 k 300 k
1M
Common Mode Rejection Ratio vs. Frequency
120
Common mode rejection ratio CMR (dB)
100
V
CC
= 15V
Ta = 25°C
R
S
= 50
Ω
80
60
40
20
0
100
300
1k
3 k 10 k 30 k 100 k 300 k
Frequency f (Hz)
1M
Rev.4.00 Mar 10, 2006 page 5 of 7