Datasheet
μPC842, μPC4742
Single Power Supply, High Speed, Wide Band,
Dual Operational Amplifier
DESCRIPTION
μPC842 and μPC4742 are high-speed versions of single-power general-purpose operational amplifiers
μPC1251 and μPC358, achieving high-speed pulse response characteristics and high stability. A high speed
PNP transistor is used in the circuit which improves the characteristics such as a slew rate, gain-bandwidth
product, stabilization of the withstand load capacitance, with no crossover distortion compared to μPC1251,
μPC358.
Therefore, it can be used widely for various application circuits such as single power supply AC amplifier,
active filter, line driver, amplifier for light receiving element, etc.
Depending on the usage and operating ambient temperature range, the μPC842 are designed for extended
temperature and suited for wide operating ambient temperature application, and μPC4742 is design for general
purposes.
Along with this series of lineup, the quad type operational amplifier, μPC844, μPC4744 with the same circuit
configuration are also available.
R03DS0136EJ0100
Rev.1.00
2019.1.17
FEATURES
Slew Rate (A
V
= 1 )
7 V/µs (TYP.) (V
+
= +5 V, V
-
= GND)
Gain Bandwidth Product (f = 100 kHz)
3.5 MHz (TYP.)
Input Offset Voltage
±2 mV (TYP.)
Input Offset Current
±6 nA (TYP.)
Operating Ambient Temperature
μPC842G2: T
A
= -40 ~ 85
C,
μPC4742G2 : T
A
= -20 ~ +80
C
μPC842GR-9LG : T
A
= -40 ~ +125
C,
μPC4742GR-9LG : T
A
= -40 ~ +85
C
Stability to capacitive load (Capacitive load, 1000 pF)
Build-in phase correction circuit.
Built-in output short-circuit protection circuit.
A pin connection (pin compatible) of a standard dual operational amplifier.
ORDERING INFORMATION
Order Name
μPC842G2-A
μPC4742G2-A
μPC842GR-9LG-A
μPC4742GR-9LG-A
Selected Grade
Standard
Standard
Standard
Standard
Package
8-pin plastic SOP ( 5.72 mm ( 225 ))
8-pin plastic SOP ( 5.72 mm ( 225 ))
8-pin plastic TSSOP ( 5.72 mm ( 225 ))
8-pin plastic TSSOP ( 5.72 mm ( 225 ))
PIN CONFIGURATION (Marking side)
OUT
1
I
I1
I
N1
V
-
1
2
3
4
1
-
+
2
+
-
6
5
I
I2
I
N2
8
7
V
+
OUT
2
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μPC842, μPC4742
EQUIVALENT CIRCUIT (1/2 CIRCUIT)
V
+
Q
7
Q
8
Q
9
Q
10
Q
11
Q
12
Q
2
I
I
Q
1
Q
3
Q
4
Q
18
Q
19
I
N
OUT
Q
14
Q
20
Q
5
V
-
Q
6
Q
13
Q
15
Q
16
Q
17
ABSOLUTE MAXIMUM RATINGS (T
A
= 25
C)
Parameter
Power Supply Voltage
Note 1
Differential Input Voltage
Input Voltage
Note 2
Output Applied Voltage
Note 3
Total Power Dissipation
Note 4
Output Short Circuit Duration
Note 5
Operating Ambient Temperature
Symbol
V
+
- V
-
V
ID
V
I
V
O
P
T
t
S
T
A
-40 ~ +85
-20 ~ +80
μPC842G2
μPC4742G2
μPC842GR-
9LG
-0.3 ~ +36
±36
V
-
-0.3 ~ V
-
+36
V
-
-0.3 ~ V
+
+0.3
440
Indefinite
-40 ~ +125
-40 ~ +85
-55 ~ +125
μPC4742GR-
9LG
Unit
V
V
V
V
mW
s
C
C
Storage Temperature
T
stg
-55 ~ +125
-55 ~ +150
【Note】
1.
Note that reverse connections of the power supply may damage the ICs.
2.
3.
4.
This is the input voltage range that can be applied to the input terminal without any characteristics
degradation or breakdown. It can be applied regardless of the supply voltage. Do not apply the voltage
below V-(GND)-0.3V. The operational amplifier electrical characteristics will operate normally when the
input voltage is operating within the common-mode input voltage range.
Voltage range that can be applied externally to the output terminal without deteriorating or damage to
the product. It can be applied regardless of the power supply. Caution not to exceed the ratings, including
transient conditions such as when the power supply is ON/OFF.
This is the value when mounting the glass epoxy board (size 100 mm x 100 mm, thickness 1 mm, and
copper foil only on one side with 15% solid wiring of the board area). Please take note that depending
on the operating ambient temperature, each product following conditions and de-rating rate as below:
μPC842G2, 4742G2 : De-rate -4.4 mW/C when T
A
>
25
C.
(Junction − ambient thermal resistance R
th(J-A)
= 227
C/W)
μPC842GR-9LG : De-rate -5.5 mW/C when T
A
>
69
C.
(Junction − ambient thermal resistance R
th(J-A)
= 183
C/W)
μPC4742GR-9LG : De-rate -5.5 mW/C when T
A
>
44
C.
5.
(Junction − ambient thermal resistance R
th(J-A)
= 183
C/W)
Please use the total loss and the de-rating factor of Note 4.
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R03DS0136EJ0100 Rev.1.00
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μPC842, μPC4742
RECOMMENDED OPERATING CONDITIONS
Parameter
Power Supply Voltage (Dual Supply)
Power Supply Voltage (V
-
= GND)
Output Current
Symbol
V
±
V
+
I
O
MIN.
±1.5
+3
+5 ~ +30
TYP.
MAX.
±16
+32
±10
1000
Note 6
Unit
V
V
mA
pF
Capacitive Load (A
V
= +1)
C
L
【Note】
6. This is the value when feedback resistor (Rf) = 0 Ω.
ELECTRICAL CHARACTERISTICS
(T
A
= 25
C,
V
±
= ±15 V)
Parameter
Input Offset Voltage
Input Offset Current
Input Bias Current
Note 7
Large Signal Voltage Gain
Circuit Current
Note 8
Common Mode Rejection Ratio
Supply Voltage Rejection Ratio
Output Voltage Swing
Symbol
V
IO
I
IO
I
B
A
V
I
CC
CMR
SVR
V
Om1
V
Om2
Common Mode Input Voltage
Range
Slew Rate
Gain Bandwidth Product
Channel Separation
V
ICM
SR
GBW
70
70
±13.7
±13.5
V
-
8.5
3.5
120
V
+
-1.8
25000
MIN.
TYP.
±2
±6
120
300000
4.3
86
93
+14
-14.3
5.5
mA
dB
dB
V
V
V
V/μs
MHz
dB
A
V
= +1 (Rise)
f = 100 kHz
f = 20 Hz ~ 20 kHz
+
MAX.
±4.5
±75
500
Unit
mV
nA
nA
Test Condition
R
L
≧
2 kΩ, V
O
= ±10 V
I
O
= 0 A
R
L
= 10 kΩ
R
L
≧
2 kΩ
(T
A
= 25
C,
V
Parameter
Input Offset Voltage
Input Offset Current
Input Bias Current
Note 7
Large Signal Voltage Gain
Circuit Current
Note 8
Common Mode Rejection Ratio
Supply Voltage Rejection Ratio
Output Voltage Swing
Common Mode Input Voltage
Range
Output Source Current
Output Sink Current
Slew Rate
【Note】
7.
8.
Symbol
V
IO
I
IO
I
B
A
V
I
CC
CMR
SVR
V
Om
70
70
3.7
0
V
ICM
I
O
SOURCE
= +5 V, V
-
= GND)
Test Condition
MIN.
TYP.
±2
±6
140
MAX.
±5
±75
500
4.5
Unit
mV
nA
nA
25000
300000
3.3
80
95
4.0
0
V
+
-1.8
30
30
mA
dB
dB
V
V
mA
mA
R
L
≧
2 kΩ
I
O
= 0 A
R
L
≧
2 kΩ (Connected to
GND)
0
10
10
V
IN (+)
= +1 V, V
IN (-)
= 0 V
V
IN (+)
= 0 V, V
IN (-)
= +1 V
I
O SINK
SR
7
V/μs
A
V
= +1 (Rise)
The current flow direction of the input bias is out from the IC because the first stage of the IC composed
of PNP transistor.
Current flowing through the internal circuit. This current flow regardless of the channel used.
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μPC842, μPC4742
CHARACTERISTICS CURVE (T
A
= 25
C,
TYP.) (REFERENCE VALUE)
P
T
vs. T
A
600
Total Power Dissipation, P
T
[mW]
500
400
300
200
100
0
0
Supply Current, I
CC
[mA]
10
8
1V
6
4
2
0
100
120
140
0
10
20
30
40
Power Supply Voltage, V
+
[V] (V
-
= GND)
V
IO
vs. T
A
4
Input Offset Voltage, V
IO
[mV]
3
2
1
0
-1
-2
-3
-4
-50
0
50
100
150
Operating Ambient Temperature, T
A
[°C]
I
B
vs. V
+
200
V
±
=
±15
V
Random 5 Sample Data
T
A
= 125 °C
T
A
= -40 °C
-
+
T
A
= 25 °C
I
CC
vs. V
+
V
+
A I
CC
I
O
= 0 A
With 100 mm x 100 mm,
thickness 1 mm glass
epoxy substrate (refer to
"ABSOLUTE MAXIMUM
RATINGS Note 4"
20
40
60
80
Operating Ambient Temperature, T
A
[C]
V
IO
vs. V
+
2
Input Offset Voltage, V
IO
[mV]
1
0
-1
-2
0
10
20
30
40
Power Supply Voltage, V
+
[V] (V
-
= GND)
V
ICM
vs. V
+
Common Mode Input Voltage Range, V
ICM
[V]
40
30
20
10
0
V
ICM -
-10
0
10
20
30
40
Power Supply Voltage, V
+
[V] (V
-
= GND)
Inout Bias Current, I
B
[nA]
V
ICM +
150
100
50
V
IN
= V
+
/2
0
0
10
20
30
40
Power Supply Voltage, V
+
[V] (V
-
= GND)
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μPC842, μPC4742
I
B
vs. T
A
200
30
V
±
=
±15
V
R
L
= 2 kΩ
20
V
O
vs. f
Inout Bias Current, I
B
[nA]
100
Output Voltage Swing, V
O
[V
p-p
]
150
10
50
V
±
=
±15
V
0
-50
0
50
100
150
Operating Ambient Temperature, T
A
[°C]
0
1k
10k
100k
1M
Frequency, f [Hz]
10M
Voltage Gain, A
V
[dB], Phase Margin, φ
[degree]
120
A
V
, φ vs. f
V
±
=
±15
V
φ
R
L
= 2 kΩ
V
±
=
±15
V
100
80
60
A
V
V
±
=
±2.5
V
V
±
=
±2.5
V
40
20
0
1
10
100
1k
10k
Frequency, f [Hz]
100k
1M
10M
Output Voltage, V
O
[V]
Pulse Response
15
3
2
1
0
3
2
1
0
0
0
1
2
Time, t [μs]
3
-50
0
R
L
= 2 kΩ
V
+
= +5 V
V
-
= GND
SR vs. T
A
Slew Rate, SR [V/μs]
12
During Fall Time
9
During Rise Time
V
±
=
±15
V
V
O
=
±1
V
R
L
= 2 kΩ
50
100
150
Input Voltage, V
IN
[V]
6
3
Operating Ambient Temperature, T
A
[°C]
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