NE5230D ON Semiconductor, NE5230D Datasheet

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NE5230D

Manufacturer Part Number
NE5230D
Description
IC OPAMP LOW VOLTAGE 8-SOIC
Manufacturer
ON Semiconductor
Datasheet

Specifications of NE5230D

Amplifier Type
General Purpose
Number Of Circuits
1
Output Type
Rail-to-Rail
Slew Rate
0.25 V/µs
Gain Bandwidth Product
600kHz
Current - Input Bias
40nA
Voltage - Input Offset
400µV
Current - Supply
1.1mA
Current - Output / Channel
32mA
Voltage - Supply, Single/dual (±)
1.8 V ~ 15 V, ±0.9 V ~ 7.5 V
Operating Temperature
0°C ~ 70°C
Mounting Type
Surface Mount
Package / Case
8-SOIC (3.9mm Width)
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
-3db Bandwidth
-

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Part Number
Manufacturer
Quantity
Price
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NE5230D
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Manufacturer:
MICRON
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21 500
Part Number:
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NE5230, SA5230, SE5230
Low Voltage Operational
Amplifier
perform with a voltage supply as low as 1.8 V or as high as 15 V.
In addition, split or single supplies can be used, and the output will
swing to ground when applying the latter. There is a bias adjusting pin
which controls the supply current required by the device and thereby
controls its power consumption. If the part is operated at ±0.9 V
supply voltages, the current required is only 110 mA when the current
control pin is left open. Even with this low power consumption, the
device obtains a typical unity gain bandwidth of 250 kHz. When the
bias adjusting pin is connected to the negative supply, the unity gain
bandwidth is typically 600 kHz while the supply current is increased
to 600 mA. In this mode, the part will supply full power output beyond
the audio range.
common−mode input range to go above the positive and below the
negative supply voltages by 250 mV. This provides for the largest
possible input voltages for low voltage applications. The part is also
internally−compensated to reduce external component count.
large open−loop gain of 125 dB. These two specifications are
beneficial when using the device in transducer applications. The large
open−loop gain gives very accurate signal processing because of the
large “excess” loop gain in a closed−loop system.
of the supply voltages for the largest dynamic range that is needed in
many applications. The NE5230 is ideal for portable audio equipment
and remote transducers because of its low power consumption, unity
gain bandwidth, and 30 nV/√Hz noise specification.
Features
Applications
© Semiconductor Components Industries, LLC, 2010
August, 2010 − Rev. 5
The NE5230 is a very low voltage operational amplifier that can
The NE5230 also has a unique input stage that allows the
The NE5230 has a low input bias current of typically ±40 nA, and a
The output stage is a class AB type that can swing to within 100 mV
Transmission
Works Down to 1.8 V Supply Voltages
Adjustable Supply Current
Low Noise
Common−mode Includes Both Rails
V
These are Pb−Free Devices
Portable Precision Instruments
Remote Transducer Amplifier
Portable Audio Equipment
Rail−to−Rail Comparators
Half−wave Rectification without Diodes
Remote Temperature Transducer with 4.0 to 20 mA Output
OUT
Within 100 mV of Both Rails
1
See general marking information in the device marking
section on page 16 of this data sheet.
See detailed ordering and shipping information in the package
dimensions section on page 16 of this data sheet.
DEVICE MARKING INFORMATION
CASE 751
D SUFFIX
8
SOIC−8
ORDERING INFORMATION
V
−IN
+IN
NC
EE
1
PIN CONNECTIONS
http://onsemi.com
1
2
3
4
N, D Packages
(Top View)
+
Publication Order Number:
8
CASE 626
N SUFFIX
PDIP−8
8
7
6
5
1
NC
V
OUTPUT
BIAS ADJ.
CC
NE5230/D

Related parts for NE5230D

NE5230D Summary of contents

Page 1

NE5230, SA5230, SE5230 Low Voltage Operational Amplifier The NE5230 is a very low voltage operational amplifier that can perform with a voltage supply as low as 1 high addition, split or single supplies ...

Page 2

MAXIMUM RATINGS Rating Single Supply Voltage Dual Supply Voltage Input Voltage (Note 1) Differential Input Voltage (Note 1) Common−Mode Voltage (Positive) Common−Mode Voltage (Negative) Power Dissipation (Note 2) Thermal Resistance, Junction−to−Ambient Operating Junction Temperature (Note 2) Operating Temperature Range 80 ...

Page 3

DC AND AC ELECTRICAL CHARACTERISTIC kW, full input common−mode range, over full operating temperature range. L Characteristic Symbol NE5230, SA5230 Offset Voltage V OS Drift V OS Offset Current I OS Drift I OS Bias Current I ...

Page 4

DC AND AC ELECTRICAL CHARACTERISTIC kW, full input common−mode range, over full operating temperature range. L Characteristic Symbol SE5230 Offset Voltage V OS Drift V OS Offset Current I OS Drift I OS Bias Current I B ...

Page 5

DC AND AC ELECTRICAL CHARACTERISTIC kW, full input common−mode range, over full operating temperature range. L Characteristic Symbol NE5230, SA5230, SE5230 Large−Signal Open−Loop Gain A VOL Output Voltage Swing V OUT Slew Rate SR Inverting Unity Gain ...

Page 6

Input Stage Operational amplifiers which are able to function at minimum supply voltages should have input and output stage swings capable of reaching both supply voltages within a few millivolts in order to achieve ease of quiescent biasing and to ...

Page 7

Output Stage Processing output voltage swings that nominally reach to less than 100 mV of either supply voltage can only be achieved by a pair of complementary common−emitter connected transistors. Normally, such a configuration causes complex feed−forward signal paths that ...

Page 8

... THERMAL CONSIDERATIONS When using the NE5230, the internal power dissipation capabilities of each package should be considered. ON Semiconductor does not recommend operation at die temperatures above 110°C in the SO package because of its inherently smaller package mass. Die temperatures of 150°C can be tolerated in all the other packages. With this ...

Page 9

The full output power bandwidth range for V 2 above 40 kHz for the maximum bias current setting and greater than 10 kHz at the minimum bias current setting. If extremely low signal distortion (<0.05%) is required at ...

Page 10

REMOTE TRANSDUCER WITH CURRENT TRANSMISSION There are many ways to transmit information along two wires, but current transmission is the most beneficial when the sensing of remote signals is the aim further enhanced in the form of 4.0 ...

Page 11

What this means is that several instruments, such as a chart recorder, a meter controller, as well as a long cable, can be connected in series on the loop and still obtain accurate readings if the total resistance ...

Page 12

HALF−WAVE RECTIFIER WITH RAIL−TO−GROUND OUTPUT SWING Since the NE5230 input common−mode range includes both positive and negative supply rails and the output can also swing to either supply, achieving half−wave rectifier functions in either direction becomes a simple task. All ...

Page 13

Biased to Ground Figure 11. Performance Waveforms for the Circuits in Figures 9 and 10. Good response is shown at 1.0 and 10 kHz for both circuits under full swing with a 2.0 V supply. 500 ...

Page 14

By adding another NE5230 in an inverting summer configuration at the output of the half−wave rectifier, a full−wave can be realized. The values for the input and feedback resistors must be chosen so that each peak will have equal amplitudes. ...

Page 15

CONCLUSION The NE5230 is a versatile op amp in its own right. The part was designed to give low voltage and low power operation without the limitations of previously available amplifiers that had a multitude of problems. The previous application ...

Page 16

... CASE 751 ORDERING INFORMATION Device 8−Pin Plastic Small Outline (SO−8) Package NE5230DG 8−Pin Plastic Small Outline (SO−8) Package NE5230DR2G 8−Pin Plastic Dual In−Line Package (PDIP−8) NE5230NG 8−Pin Plastic Small Outline (SO−8) Package SA5230DG 8−Pin Plastic Small Outline (SO−8) Package SA5230DR2G 8− ...

Page 17

NOTE 5 F TOP VIEW e 0.010 SIDE VIEW PACKAGE DIMENSIONS PDIP−8 CASE 626−05 ISSUE M NOTES: 1. DIMENSIONING AND TOLERANCING PER ASME 2. CONTROLLING ...

Page 18

... *For additional information on our Pb−Free strategy and soldering details, please download the ON Semiconductor Soldering and Mounting Techniques Reference Manual, SOLDERRM/D. ON Semiconductor and are registered trademarks of Semiconductor Components Industries, LLC (SCILLC). SCILLC reserves the right to make changes without further notice to any products herein. SCILLC makes no warranty, representation or guarantee regarding the suitability of its products for any particular purpose, nor does SCILLC assume any liability arising out of the application or use of any product or circuit, and specifically disclaims any and all liability, including without limitation special, consequential or incidental damages. “ ...

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