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MFG:PHI Package Cooled:3.9mm


Part Number: SA5230
MFG: PHI
Package Cooled: 3.9mm
Description: The NE5230 is a very low voltage operational amplifier that can perform with a voltage supply as low a...
MFG:PHI Package Cooled:3.9mm


MFG: PHI
Package Cooled: 3.9mm
Description: The NE5230 is a very low voltage operational amplifier that can perform with a voltage supply as low a...
The NE5230 is a very low voltage operational amplifier that can perform with a voltage supply as low as 1.8V or as high as 15V. 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 ±0.9V supply voltages, the current required is only 110mA when the current control pin is left open. Even with this low power consumption, the device obtains a typical unity gain bandwidth of 180kHz. When the bias adjusting pin is connected to the negative supply, the unity gain bandwidth is typically 600kHz while the supply current is increased to 600mA. In this mode, the part will supply full power output beyond the audio range.
The NE5230 also has a unique input stage that allows the common-mode input range to go above the positive and below the negative supply voltages by 250mV. This provides for the largest possible input voltages for low voltage applications. The part is also internally-compensated to reduce external component count.
The NE5230 has a low input bias current of typically ±40nA, and a large open-loop gain of 125dB. 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.
The output stage is a class AB type that can swing to within 100mV 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 30nV//Hz noise
|
SYMBOL |
PARAMETER |
RATING |
UNIT |
|
VCC |
Single supply voltage |
18 |
V |
|
VS |
Dual supply voltage |
±9 |
V |
|
VIN |
Input voltage1 |
±9 (18) |
V |
| Differential input voltage1 |
±VS |
V | |
|
VCM |
Common-mode voltage (positive) |
VCC+0.5 |
V |
|
VCM |
Common-mode voltage (negative) |
VEE-0.5 |
V |
|
PD |
Power dissipation2 |
500 |
mW |
|
TJ |
Operating junction temperature2 |
150 |
°C |
| 80Output short-circuit duration to either power supply pin2, 3 |
Indefinite |
s | |
|
TSTG |
Storage temperature |
-65 to 150 |
°C |
|
TSOLD |
Lead soldering temperature (10sec max) |
300 |
°C |
NOTES:
1. Can exceed the supply voltages when VS 3 ±7.5V (15V).
2. The maximum operating junction temperature is 150°C. At elevated temperatures, devices must be derated according to the package thermal resistance and device mounting conditions. Derate above 25°C at the following rates:
FE package at 6.7mW/°C
N package at 9.5mW/°C
D package at 6.25mW/°C
3. Momentary shorts to either supply are permitted in accordance to transient thermal impedance limitations determined by the package and device mounting conditions.
SA5230
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