If Military/Aerospace specified devices are required,
please contact the National Semiconductor Sales Office/
Distributors for availability and specifications.
ESD Tolerance (Note 2)
Differential Input Voltage
Voltage at Input/Output Pin
Supply Voltage (V
+
− V
−
)
Current at Input Pin
Current at Output Pin (Note 3)
Current at Power Supply Pin
Lead Temperature (soldering, 10
sec)
2500V
15V
(V
+
) + 0.3V, (V
−
) −0.3V
35V
Storage Temperature Range
Junction Temperature (Note 4)
-65˚C to +150˚C
150˚C
Operating Ratings
(Note 1)
Supply Voltage
Junction Temperature Range
LM6152,LM6154
Thermal Resistance (θ
JA
)
8-pin SOIC
14-pin SOIC
193˚C/W
126˚C/W
0˚C
≤
T
J
≤
+ 70˚C
2.7V
≤
V
+
≤
24V
±
10 mA
±
25 mA
50 mA
260˚C
5.0V DC Electrical Characteristics
Unless otherwise specified, all limits are guaranteed for T
J
= 25˚C, V
+
= 5.0V, V
−
= 0V, V
CM
= V
O
= V
+
/2 and R
L
>
1 MΩ to
V
+
/2.
Boldface
limits apply at the temperature extremes.
LM6154AC LM6154BC
LM6152AC LM6152BC
Limit
Limt
(Note 6)
(Note 6)
2
4
980
1500
100
160
70
60
80
0
5.0
50
0.02
0.03
4.97
4.96
0.10
0.12
4.80
4.70
3
2.5
27
17
Sinking
16.9
7
5
40
5
7
980
1500
100
160
70
60
80
0
5.0
50
0.02
0.03
4.97
4.96
0.10
0.12
4.80
4.70
3
2.5
27
17
7
5
40
Symbol
V
OS
TCV
OS
I
B
I
OS
R
IN
CMRR
PSRR
V
CM
A
V
V
O
Parameter
Input Offset Voltage
Input Offset Voltage Average Drift
Input Bias Current
Input Offset Current
Input Resistance, CM
Common Mode Rejection Ratio
Power Supply Rejection Ratio
Input Common-Mode Voltage Range
Large Signal Voltage Gain
Output Swing
Conditions
Typ
(Note 5)
0.54
10
Units
mV
max
µV/˚C
nA max
nA max
MΩ
dB
min
dB
min
V
V
V/mV
min
V
max
V
min
V
max
V
min
mA
min
mA
max
mA
min
mA
max
0V
≤
V
CM
≤
5V
500
750
32
40
0V
≤
V
CM
≤
4V
0V
≤
V
CM
≤
4V
0V
≤
V
CM
≤
5V
5V
≤
V
≤
24V
+
30
94
84
91
−0.25
5.25
214
0.006
4.992
Low
High
R
L
= 10 kΩ
R
L
= 100 kΩ
R
L
= 2 kΩ
0.04
4.89
I
SC
Output Short Circuit Current
Sourcing
6.2
www.national.com
2
LM6152/LM6154
5.0V DC Electrical Characteristics
(Continued)
Unless otherwise specified, all limits are guaranteed for T
J
= 25˚C, V
+
= 5.0V, V
−
= 0V, V
CM
= V
O
= V
+
/2 and R
L
>
1 MΩ to
V
+
/2.
Boldface
limits apply at the temperature extremes.
LM6154AC LM6154BC
LM6152AC LM6152BC
Limit
Limt
(Note 6)
(Note 6)
2
2.25
2
2.25
Symbol
I
S
Parameter
Supply Current
Conditions
Per Amplifier
Typ
(Note 5)
1.4
Units
mA
max
5.0V AC Electrical Characteristics
Unless otherwise specified, all limits guaranteed for T
J
= 25˚C, V
+
= 5.0V, V
−
= 0V, V
CM
= V
O
= V
+
/2 and R
L
>
1 MΩ to V
+
/2.
Boldface
limits apply at the temperature extremes.
LM6154AC
LM6152AC
Limit
(Note 6)
24
15
LM6154BC
LM6152BC
Limt
(Note 6)
24
15
Symbol
SR
GBW
e
n
i
n
T.H.D
ts
Slew Rate
Parameter
Conditions
Typ
(Note 5)
30
75
125
9
0.34
−65
1.1
Units
V/µs
min
MHz
dB
nV/
pA/
dBc
µs
±
4V Step
@
V
S
=
±
6V,
R
S
<
1 kΩ
f = 100 kHz
R
L
= 10 kΩ
f = 1 kHz
f = 1 kHz
f = 100 kHz, R
L
= 10 kΩ
A
V
= −1, V
O
= 2.5 V
PP
2V Step to 0.01%
Gain-Bandwidth Product
Amp-to-Amp Isolation
Input-Referred Voltage Noise
Input-Referred Current Noise
Total Harmonic Distortion
Settling Time
2.7V DC Electrical Characteristics
Unless otherwise specified, all limits are guaranteed for T
J
= 25˚C, V
+
= 2.7V, V
−
= 0V, V
CM
= V
O
= V
+
/2 and R
L
>
1 MΩ to
V
+
/2.
Boldface
limits apply at the temperature extremes.
Symbol
Parameter
Conditions
Typ
(Note 5)
LM6154AC LM6154BC
LM6152AC LM6152BC
Limit
Limt
(Note 6)
(Note 6)
2
5
5
8
Units
V
OS
TCV
OS
I
B
I
OS
R
IN
CMRR
PSRR
V
CM
A
V
V
O
Input Offset Voltage
Input Offset Voltage Average Drift
Input Bias Current
Input Offset Current
Input Resistance, CM
Common Mode Rejection Ratio
Power Supply Rejection Ratio
Input Common-Mode Voltage Range
Large Signal Voltage Gain
Output Swing
0V
≤
V
CM
≤
1.8V
0V
≤
V
CM
≤
1.8V
0V
≤
V
CM
≤
2.7V
3V
≤
V
+
≤
5V
Low
High
R
L
= 10 kΩ
R
L
= 10 kΩ
0.8
10
500
50
30
88
78
69
−0.25
2.95
5.5
0.032
2.68
mV
max
µV/˚C
nA
nA
MΩ
dB
dB
0
2.7
0.07
0.11
2.64
2.62
0
2.7
0.07
0.11
2.64
2.62
V
V
V/mV
V
max
V
min
mA
I
S
Supply Current
Per Amplifier
1.35
3
www.national.com
LM6152/LM6154
2.7V AC Electrical Characteristics
Unless otherwise specified, all limits are guaranteed for T
J
= 25˚C, V
+
= 2.7V, V
−
= 0V, V
CM
= V
O
= V
+
/2 and R
L
>
1 MΩ to
V
+
/2.
Boldface
limits apply at the temperature extremes.
LM6154AC LM6154BC
LM6152AC LM6152BC
Limit
Limt
(Note 6)
(Note 6)
Symbol
GBW
Parameter
Gain-Bandwidth Product
Conditions
f = 100 kHz
Typ
(Note 5)
80
Units
MHz
24V DC Electrical Characteristics
Unless otherwise specified, all limits are guaranteed for T
J
= 25˚C, V
+
= 24V, V
−
= 0V, V
CM
= V
O
= V
+
/2 and R
L
>
1 MΩ to
V
+
/2.
Boldface
limits apply at the temperature extremes.
LM6154AC LM6154BC
LM6152AC LM6152BC
Limit
Limt
(Note 6)
(Note 6)
2
4
7
9
Symbol
V
OS
TCV
OS
I
B
I
OS
R
IN
CMRR
PSRR
V
CM
A
V
V
O
Parameter
Input Offset Voltage
Input Offset Voltage Average Drift
Input Bias Current
Input Offset Current
Input Resistance, CM
Common Mode Rejection Ratio
Power Supply Rejection Ratio
Input Common-Mode Voltage Range
Large Signal Voltage Gain
Output Swing
Conditions
Typ
(Note 5)
0.3
10
500
32
Units
mV
max
µV/˚C
nA
nA
Meg
Ω
dB
dB
0V
≤
V
CM
≤
23V
0V
≤
V
CM
≤
23V
0V
≤
V
CM
≤
24V
0V
≤
V
CM
≤
24V
Low
High
R
L
= 10 kΩ
R
L
= 10 kΩ
60
94
84
95
−0.25
24.25
55
0.044
23.91
0.075
0.090
23.8
23.7
2.25
2.50
0.075
0.090
23.8
23.7
2.25
2.50
0
24
0
24
V
V
V/mV
V
max
V
min
mA
max
I
S
Supply Current
Per Amplifier
1.6
24V AC Electrical Characteristics
Unless otherwise specified, all limits are guaranteed for T
J
= 25˚C, V
+
= 24V, V
−
= 0V, V
CM
= V
O
= V
+
/2 and R
L
>
1 MΩ to
V
+
/2.
Boldface
limits apply at the temperature extremes.
LM6154AC LM6154BC
LM6152AC LM6152BC
Limit
Limt
(Note 6)
(Note 6)
Symbol
GBW
Parameter
Gain-Bandwidth Product
Conditions
f = 100 kHz
Typ
(Note 5)
80
Units
MHz
Note 1:
Absolute Maximum Ratings indicate limits beyond which damage to the device may occur. Operating Ratings indicate conditions for which the device is
intended to be functional, but specific performance is not guaranteed. For guaranteed specifications and the test conditions, see the Electrical Characteristics.
Note 2:
Human body model is 1.5 kΩ in series with 100 pF.
Note 3:
Applies to both single-supply and split-supply operation. Continuous short circuit operation at elevated ambient temperature can result in exceeding the
maximum allowed junction temperature of 150˚C.
Note 4:
The maximum power dissipation is a function of T
J(MAX)
,
θ
JA
, and T
A
. The maximum allowable power dissipation at any ambient temperature
is P
D
= (T
J(MAX)
–T
A
)/θ
JA
. All numbers apply for packages soldered directly into a PC board.
Note 5:
Typical Values represent the most likely parametric norm.
Note 6:
All limits are guaranteed by testing or statistical analysis.
Temporary workers are everywhere. Retail, restaurants and other industries are big employers of temporary workers, especially during the holidays. How do you motivate temporary workers? Senior experts...
uc/os iii (also known as Micriμm μC/OS-III) is a widely used embedded operating system. But even the latest Nios II Gen 2 only supports uc/os II. Does anyone know how to port the third generation to F...
[align=left][color=#000]Just simply enter your power requirements, Duang! can complete customized power, lighting, filtering, clock and sensor designs in just a few seconds. [/color][/align][align=lef...
The concept of EDK (reposted)
2010-05-04 20:08 EDK=Embedded Development Kit , embedded development kit.
EDK is a tool used by Xilinx to develop embedded systems. Compared with Xilinx 's ISE , the d...
1. Introduction
RFID (radio frequency identification) is a non-contact automatic identification technology that emerged in the 1990s. It uses the characteristics of radio frequency signal prop...[Details]
introduction
For the voltage regulator modules (VRMs) that power the latest computer central processing units (CPUs), power supply designers have historically used multiphase interleaved b...[Details]
Electronic systems are located at different points on the automotive power bus and therefore often need to operate under very stringent power requirements. These include load dump, cold crank, very lo...[Details]
AD8205 is
a single-supply high-performance differential
amplifier
launched by
Analog
Devices of the United States
. The typical single-supply voltage is 5V, and its common-mode volta...[Details]
Aromatic gases are widely present in food, medicine, cosmetics and various daily chemical products, such as snacks, liquor, spices, Chinese herbal medicines, plasters, perfumes, soaps, shampoos, et...[Details]
1 Introduction
Intelligent control instruments are one of the most commonly used controllers in industrial control. They are mainly aimed at a specific parameter (such as pressure, tempera...[Details]
1. Introduction
Testing the temperature of steel billets before rolling is an important measure to ensure the quality of steel. Traditional manual testing is difficult to ensure product qu...[Details]
Printed circuit boards ( PCBs
)
are used in most electrical products
. If a PCB has low
insulation resistance
(IR), the performance of the circuits on the PCB will be greatly reduced...[Details]
Abstract: Aiming at the needs of coal-rock acoustic emission signal monitoring system, a data acquisition circuit with 24-bit resolution and 16-channel synchronous data acquisition function is desi...[Details]
With the widespread application of new services and technologies in the communications industry, the scale and capacity of operators' network construction are getting larger and larger, and the ris...[Details]
With the rapid development of cities and the improvement of citizens' living standards, the number of various vehicles in cities is growing, and the demand for parking spaces in major commercial an...[Details]
Temperature compensated quartz crystal oscillator (TCXO) is widely used as a high-precision frequency source in communication systems, radar navigation systems, precision measurement and control sy...[Details]
Electric bicycles have long been a means of transportation for lower-income groups due to their affordability. The largest concentrated expense in the use of electric vehicles is the cost of replac...[Details]
Don’t just look at the power when choosing a power supply
We know that a power supply with a low rated power can hardly meet the power supply needs of the system, which may cause frequent free...[Details]
Multimedia processors are often the most power-hungry devices in portable electronic devices. Common ways to reduce CPU power requirements are to reduce clock frequency or operating voltage, but th...[Details]