HA17902 Series
Quad Operational Amplifier
REJ03D0685-0100
(Previous: ADE-204-045)
Rev.1.00
Jun 15, 2005
Description
The HA17902 is an internal phase compensation quad operational amplifier that operates on a single-voltage power
supply and is appropriate for use in a wide range of general-purpose control equipment.
Features
•
Wide usable power-supply voltage range and single-voltage supply operation
•
Internal phase compensation
•
Wide common-mode voltage range and operation for inputs close to the 0 level
Ordering Information
Type No.
HA17902PJ
HA17902FPJ
HA17902FPK
Car use
Application
Package Code (Previous Code)
PRDP0014AB-A (DP-14)
PRSP0014DF-B (FP-14DAV)
PRSP0014DF-B (FP-14DAV)
Rev.1.00 Jun 15, 2005 page 1 of 10
HA17902 Series
Pin Arrangement
Vout1
Vin(
–
)1
Vin(+)1
V
CC
Vin(+)2
Vin(
–
)2
Vout2
1
2
3
4
5
6
7
(Top view)
–
+
+
14 Vout4
1
–
+
+
4
–
13 Vin(
–
)4
12 Vin(+)4
11 GND
–
10 Vin(+)3
9
8
Vin(
–
)3
Vout3
2
3
Circuit Structure (1/4)
Q
5
Q
2
Vin(−)
Q
1
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
Rev.1.00 Jun 15, 2005 page 2 of 10
HA17902 Series
Absolute Maximum Ratings
(Ta = 25°C)
Item
Power supply voltage
Sink current
Allowable power dissipation
Common-mode input voltage
Differential-mode input voltage
Operating temperature
Storage temperature
Symbol
V
CC
Io sink
P
T
V
CM
Vin(diff)
Topr
Tstg
HA17902PJ
28
50
1
625*
–0.3 to V
CC
±V
CC
–40 to +85
–55 to +125
HA17902 FPJ
28
50
2
625*
–0.3 to V
CC
±V
CC
–40 to +85
–55 to +125
HA17902FPK
28
25
2
625*
–0.3 to V
CC
±V
CC
–40 to +125
–55 to +150
Unit
V
mA
mW
V
V
°C
°C
Notes: 1. These are the allowable values up to Ta = 50°C. Derate by 8.3mW/°C above that temperature.
2. See notes on SOP Package Usage in Reliability section.
Electrical Characteristics 1
(V
CC
= + 15V, Ta = 25°C)
Item
Input offset voltage
Input offset current
Input bias current
Power-supply rejection ratio
Voltage gain
Common-mode rejection
ratio
Common-mode input voltage
range
Maximum output voltage
amplitude
Output voltage
Symbol
V
IO
I
IO
I
IB
PSRR
A
VD
CMR
V
CM
V
OP-P
V
OH1
V
OH2
V
OL1
V
OL2
Output source current
Output sink current
Supply current
Slew rate
Channel separation
Io
source
Io sink
I
CC
SR
CS
Min
—
—
—
—
75
—
–0.3
—
13.2
12
—
—
15
3
—
—
—
Typ
3
5
30
93
90
80
—
13.6
13.6
13.3
0.8
1.1
—
9
0.8
0.19
120
Max
8
50
500
—
—
—
13.5
—
—
—
1
1.8
—
—
2
—
—
Unit
mV
nA
nA
dB
dB
dB
V
V
V
V
V
V
mA
mA
mA
V/µs
dB
Test Conditions
V
CM
= 7.5V, R
S
= 50Ω, Rf = 5kΩ
–
+
I
IO
=
|
I
I
– I
I
|,
V
CM
= 7.5V
V
CM
= 7.5V
f = 100Hz, R
S
= 1kΩ, Rf = 100kΩ
R
S
= 1kΩ, Rf = 100kΩ, RL =
∞
R
S
= 50Ω, Rf = 5kΩ
R
S
= 1kΩ, Rf = 100kΩ, f = 100Hz
f = 100Hz, R
S
= 1kΩ, Rf = 100kΩ,
R
L
= 20kΩ
I
OH
= –1mA
I
OH
= –10mA
I
OL
= 1mA
I
OL
= 10mA
V
OH
= 10V
V
OL
= 1V
Vin = GND, R
L
=
∞
f = 1.5kHz, V
CM
= 7.5V, R
L
=
∞
f = 1kHz
Electrical Characteristics 2
(V
CC
= + 15V, Ta = – 40 to 125°C)
Item
Input offset voltage
Input offset current
Input bias current
Common-mode input voltage
range
Output voltage
Supply current
Symbol
V
IO
I
IO
I
IB
V
CM
V
OH
V
OL
I
CC
Min
—
—
—
0
13.0
—
—
Typ
—
—
—
—
—
—
—
Max
8
200
500
13.0
—
1.3
4
Unit
mV
nA
nA
V
V
V
mA
Test Conditions
V
CM
= 7.5V, R
S
= 50Ω, Rf = 5kΩ
–
+
V
CM
= 7.5V , I
IO
=
|
I
I
– I
I
|
V
CM
= 7.5V
R
S
= 1kΩ, Rf = 100kΩ, f = 100Hz
I
OH
= –1mA
I
OL
= 1mA
Vin = GND, R
L
=
∞
Rev.1.00 Jun 15, 2005 page 3 of 10
HA17902 Series
Test Circuits
1. Input offset voltage (V
IO
), input offset current (I
IO
), and Input bias current (I
IB
) test circuit
Rf 5k
SW1
R
S
50
R
S
50
R 10k
R 10k
SW2
–
V
CC
Vout
+
Rf 5k
V
CM
V
SW1
On
Off
On
Off
SW2
On
Off
Off
On
V
O
V
O1
V
O2
V
O3
V
O4
V
CM
=
1
V
2
CC
V
IO
=
I
IO
=
I
IB
=
V
O1
1 + Rf / R
S
V
O2
−
V
O1
R(1 + Rf / R
S
)
2
.
R(1 + Rf / R
S
)
|
V
O4
−
V
O3
|
(mV)
(nA)
(nA)
2. Common-mode rejection ratio (CMR) test circuit
CMR = 20 log
V
IN
.
Rf
V
O
.
R
S
(dB)
Rf 5.0k
R
S
50
V
CC
–
+
Vout
Vin
R
S
50
Rf
5.0k
3. Supply current (I
CC
) test circuit
A
–
Vout
+
V
CC
Rev.1.00 Jun 15, 2005 page 4 of 10
HA17902 Series
4. Voltage gain (A
VD
), slew rate (SR), common-mode input voltage range (V
CM
), and maximum output voltage
amplitude (V
OP-P
) test circuit.
Vin
Rf
100k
40dB
47µ
R
51k
– +
V
CC
–
D.U.T
+
Vout
SW1
Rf
20k
Vin
R
S
1k
V
2
R
S
1k
Rf
100k
V
1
+
+
–
47µ
–
47µ
(1)
A
VD
: R
S
= 1kΩ, Rf = 100kΩ, R
L
=
∞,
V
1
= V
2
= 1/2 V
CC
V
A
VD
= 20 log
O
+ 40
(dB)
V
IN
(2) SR: f = 1.5kHz, R
L
=
∞,
V
1
= V
2
= 1/2 V
CC
10k
+
–
A
V
CC
V
OH
(3) V
CM
: R
S
= 1kΩ, Rf = 100kΩ, f = 100Hz, V
1
= 1/2 V
CC
, R
L
=
∞,
and the value of V
2
just slightly prior to the point where the output waveform changes.
(4) V
OP-P
:R
S
= 1kΩ, Rf = 100kΩ, R
L
: 20kΩ, f = 100Hz, V
OP-P
= V
OH
↔
V
OL
[V
P-P
]
5. Output source current (Iosource) test circuit
Io source: V
OH
= 10V
V
SR = V [V/µs]
T
T
6. Output sink current (Iosink) test circuit
Io sink: V
OL
= 1V
10k
–
+
A
V
CC
V
OH
Rev.1.00 Jun 15, 2005 page 5 of 10