NJM2710
ULTRA HIGH SPEED SINGLE OPERATIONAL AMPLIFIER
s
GENERAL DESCRIPTION
The
NJM2710
is an ultra high speed hex operational
amplifier.
It can swings 260V/µs high slew rate and 1GHz gain
band width product(10MHz typ. at 40dB) at 5V.
It is suitable for telecommunication related system,
digital broadcasting system, high quality scanner and
any other high speed signal processing system.
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PACKAGR OUTLINE
NJM2710M
NJM2710V
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FEATURES
q
Operating Voltage
q
Operating Current
q
High Slew Rate
q
Gain Bandwidth Product
Bandwidth
q
Unity Gain Bandwidth
q
Input Offset Voltage
q
Maximum Output Voltage
q
Open Loop Voltage Gain
q
Bipolar Technology
q
Package Outline
s
PIN CONFIGURATION
1
A
2
3
4 V
+
5
B
6
7
8
C
9
10
-
+
+
-
-
+
+
-
-
+
+
-
(±2.0 to
±4.5V)
(11.4mA typ. at V
+
/V
-
=±2.5V)
(260V/µs typ.)
(1GHz typ.)
(10MHz typ. at 40dB)
(180MHz typ.)
(7mV max.)
(±1.5V typ. at R
L
=1kΩ)
(75dB typ.)
DMP20,SSOP20
20
19
F
18
V
-
17
16
15
E
14
13
12
D
11
Pin Function
1. A OUTPUT
2. A -INPUT
3. A +INPUT
4. V
+
5. B OUTPUT
6. B -INPUT
7. B +INPUT
8. C OUTPUT
9. C -INPUT
10. C +INPUT
11. D OUTPUT
12. D -INPUT
13. D +INPUT
14. E OUTPUT
15. E -INPUT
16. E +INPUT
17. V
-
18. F OUTPUT
19. F -INPUT
20. F +INPUT
NJM2710E
NJM2710V
(TOP VIEW)
-1-
NJM2710
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ABSOLUTE MAXIMUM RATINGS
PARAMETER
SYMBOL
Supply Voltage
V
+
Differential Input Voltage
V
ID
Power Dissipation
P
D
Operating Temperature Range Topr
Storage Temperature Range
Tstg
(Ta=25°C)
UNIT
V
V
mW
°C
°C
( V
+
/V
-
=±2.5V, Ta=25°C)
MIN TYP MAX
UNIT
2.0
-
-
-
-
65
±1.3
-1V≤V
CM
≤+1V
2.5V≤V
+
≤5V,
R
L
=2kΩ
-5V≤V
-
≤-2.5V,
R
L
=2kΩ
R
L
=1kΩ
50
50
50
±1.2
2.5
11.4
2.0
2
350
75
±1.5
60
60
60
±1.5
4.5
20.4
7.0
7
900
-
-
-
-
-
-
V
mA
mV
µA
nA
dB
V
dB
dB
dB
V
RATINGS
10
±2
(DMP20,SSOP20)375
-40 to +85
-50 to +150
s
DC CHARACTERISTICS
PARAMETER
Operating Voltage Range
Operating Current
Input Offset Voltage
Input Bias Current
Input Offset Current
Open Loop Voltage Gain
Input Common Mode
Voltage Range
Common Mode Rejection
Supply Voltage Rejection
Maximum Output Voltage
s
AC CHARACTERISTICS
PARAMETER
Bandwidth
Unity Gain Bandwidth
Phase Margin
Equivalent Input Noise
Voltage
SYMBOL
V
+
/V
-
I
CC
V
IO
I
B
I
IO
Av
V
ICM
CMR
+SVR
-SVR
V
OM
TEST CONDITION
No Signal
R
L
=2kΩ
SYMBOL
BW
f
T
φ
M
V
NO
TEST CONDITION
Av=40dB,R
f
=1.98kΩ ,R
L
=∞
C
L
=10pF
Av=40dB,Rg=20Ω,R
f
=1.98kΩ
R
L
=∞,C
L
=10pF
Av=40dB,Rg=20Ω,R
f
=1.98kΩ
R
L
=∞,C
L
=10pF
( V
+
/V
-
=±2.5V, Ta=25°C)
MIN TYP MAX
UNIT
-
-
-
-
10
180
38
6.8
-
-
-
-
MHz
MHz
deg
nV/√Hz
s
TRANSIENT CHARACTERISTICS
PARAMETER
SYMBOL
Slew Rate
+SR
-SR
TEST CONDITION
Av=6dB,R
f
=1kΩ,Rg=1kΩ
R
L
=∞,CL=10pF
( V
+
/V
-
=±2.5V, Ta=25°C)
MIN TYP MAX
UNIT
-
-
260
260
-
-
V/µs
V/µs
-2-
NJM2710
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Note:
non-inverting amplifier
1.The closed gain should be 6dB or higher to prevent the oscillation.
Unity gain follower application may cause the oscillation.
2.When the closed gain is lower than 20dB, use a compensation capacitor (CF: about 5pF),
parallel with the feedback resistor RF to avoid oscillation.
3.Recommended feedback resistor is less than 2kΩ to keep the flatness of the frequency response.
4.Minimize the load capacitor for the better performance.
A large load capacitor CL reduces the frequency response and causes oscillation or ringing.
inverting amplifier
1.When the closed gain is lower than 20dB, use a compensation capacitor
(CF; recommended from 1pF to 5pF), parallel with the feedback resistor RF to avoid oscillation.
2.Minimize the feedback resistor to keep the frequency response and the slew rate.
(recommended about 1k-ohom)
The proper compensation capacitor CF can counteract oscillation even with a large feedback resistor RF.
3.Total load capacitance should be not more than 100pF.
The oscillation margin may be affected by the total load capacitance.
non-inverting amplifier
DUT
RF
CL
CF
RG
RL
inverting amplifier
CF
RF
RG
DUT
CL
RL
-3-
NJM2710
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TYPICAL CHARACTRERISTICS
Supply Current vs. Supply Voltage
V
IN
=No Signal,G
V
=6dB,R
S
=50Ω
R
F
=1kΩ,R
G
=1kΩ,R
L
=2kΩ,Ta=+25 C
o
Supply Current vs. Ambient Temperature
V
+
/V
-
=±2.5V,V
IN
=No Signal,G
V
=6dB
R
S
=50Ω,R
F
=1kΩ,R
G
=1kΩ,R
L
=2kΩ
15
14
13
Supply Current [mA]
Supply Current [mA]
15
14
13
12
11
10
9
8
7
6
5
2.0
3.0
4.0
Supply Voltage ±V [V]
Input Offset Voltage
vs. Ambient Temperature
5.0
-50
12
11
10
9
8
7
6
5
1.0
-25
0
25
50
75
o
Ambient Temperature [ C]
100
Input Bias Current vs. Ambient Temperature
V
+
/V
-
=2.5V
2
1
0
-1
-2
-3
-4
-50
-25
V
+
/V
-
=2.5V
3
2
Input Bias Current [uA]
Input Offset Voltage [mV]
1
0
-1
-2
-3
0
25
50
75
o
Ambient Temperature [ C]
Input Offset Current
vs. Ambient Temperature
V
+
/V
-
=2.5V
100
-50
-25
0
25
50
75
o
Ambient Temperature [ C]
100
Common Mode Rejection Ratio
vs. Ambient Temperature
V
+
/V
-
=2.5V
500
Common Mode Rejection Ratio [dB]
70
65
60
55
50
45
40
-50
-25
0
25
50
75
o
Ambient Temperature [ C]
100
-50
-25
0
25
50
75
o
Ambient Temperature [ C]
100
Input Offset Current [nA]
450
400
350
300
-4-
NJM2710
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TYPICAL CHARACTRERISTICS
V
+
Common Mode Rejection Ratio
vs. Ambient Temperature
V
+
/V
-
=2.5V
V
-
Common Mode Rejection Ratio
vs. Ambient Temperature
V
+
/V
-
=2.5V
V Common Mode Rejection Ratio [dB]
V Common Mode Rejection Ratio [dB]
120
110
100
90
80
70
60
50
-50
-25
0
25
50
75
o
Ambient Temperature [ C]
100
120
110
100
90
80
70
60
50
-50
-25
0
25
50
75
o
Ambient Temperature [ C]
100
+
V
+
/V
-
=±2.5V, V
IN
=+1V or -1V, G
V
=open
Maximum Output Voltage
vs. Load Resistance
R
S
=∞, R
F
=∞, R
G
=0Ω, Ta=+25
o
C
∞
∞
2
Maximum Output Voltage [V]
1
0
-1
-2
10
k
100
k
1k
Load Resistance [Ω]
10k
-
-5-