LF353

Features: • Input Offset Voltage of 5.0 mV Max (LF347B)• Low Input Bias Current: 50 pA• Low Input Noise Voltage: 16 nV/ • Wide Gain Bandwidth: 4.0 MHz• High Slew Rate: 13V/ms• Low Supply Current: 1.8 mA per Amplifier• High Input Impedance: 1012 W• Hi...

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LF353 Picture
SeekIC No. : 004393765 Detail

LF353: Features: • Input Offset Voltage of 5.0 mV Max (LF347B)• Low Input Bias Current: 50 pA• Low Input Noise Voltage: 16 nV/ • Wide Gain Bandwidth: 4.0 MHz• High Slew Rate: ...

floor Price/Ceiling Price

Part Number:
LF353
Supply Ability:
5000

Price Break

  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

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Upload time: 2024/4/24

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Product Details

Description



Features:

• Input Offset Voltage of 5.0 mV Max (LF347B)
• Low Input Bias Current: 50 pA
• Low Input Noise Voltage: 16 nV/
• Wide Gain Bandwidth: 4.0 MHz
• High Slew Rate: 13V/ms
• Low Supply Current: 1.8 mA per Amplifier
• High Input Impedance: 1012 W
• High Common Mode and Supply Voltage Rejection Ratios: 100 dB





Pinout






Specifications

Rating Symbo Value Unit
Supply Voltage VCC
VEE
+18
-18
v
Differential Input Voltage VID ±30 v
Input Voltage Range (Note 1) VIDR ±15 v
Output Short Circuit Duration (Note 2) tSC Continuous
Power Dissipation at T =+25
Derate above T =+25
PD1/JA 900
10
mW
mW/
Operating Ambient Temperature Range TA 0 to +70
Operating Junction Temperature Range TJ 115
Storage Temperature Range Tstg -65to
+150
NOTES:
1.Unless otherwise specified, the absolute maximum negative input voltage is limited to the negative power supply.
2.Any amplifier output can be shorted to ground indefinitely. However, if more than one amplifier output is shorted simultaneously, maximum junction temperature rating may be exceeded.





Description

These devices are low cost, high speed, dual JFET input operational amplifiers with an internally trimmed input offset voltage (BI-FET II™ technology). They require low supply current yet maintain a large gain bandwidth product and fast slew rate. In addition, well matched high voltage JFET input devices provide very low input bias and offset currents. The LF353 is pin compatible with the standard LM1558 allowing designers to immediately upgrade the overall performance of existing LM1558 and LM358 designs.

These amplifiers may be used in applications such as high speed integrators, fast D/A converters, sample and hold circuits and many other circuits requiring low input offset voltage, low input bias current, high input impedance, high slew rate and wide bandwidth. The devices also exhibit low noise and offset voltage drift.

Reliability Metrics


Part Number Process EFR Reject EFR Sample Size PPM LTA Rejects LTA Device Hours FITS MTTF (Hours)
LF353M BIFET 0 12335 0 0 975000 4 276658912
LF353MX BIFET 0 12335 0 0 975000 4 276658912
LF353N BIFET 0 12335 0 0 975000 4 276658912

Note: The Early Failure Rates (EFR) were calculated as point estimate PPM based on rejects and sample size for EFR. The Long Term Failure Rates were calculated at 60% confidence using the Arrhenius equation at 0.7eV activation energy and derating the assumed stress temperature of 150°C to an application temperature of 55°C.

For more information on Reliability Metrics, please click here.


Design Tools


Title Size in Kbytes Date
Amplifiers Selection Guide software for Windows 8 Kbytes 6-Mar-2007 View

If you have trouble printing or viewing PDF file(s), see Printing Problems.

Application Notes


Title Size in Kbytes Date
AN-262: Application Note 262 Applying Dual and Quad FET Op Amps 416 Kbytes 2-Oct-02 Download
AN-263: Application Note 263 Sine Wave Generation Techniques 350 Kbytes 26-May-09 Download
AN-447: Protection Schemes for BI-FET Amplifiers and Switches 76 Kbytes 4-Nov-95 Download
AN-258: Application Note 258 Data Acquisition Using the ADC0816 and ADC0817 8-Bit A/D Converter with On-Chip 16 Channel Multiplexer 683 Kbytes 4-Oct-04 Download

If you have trouble printing or viewing PDF file(s), see Printing Problems.

More Application Notes


Title Size in Kbytes Date
AN-272: Application Note 272 Op Amp Booster Designs 382 Kbytes 2-Oct-02 Download
AN-294: Application Note 294 Special Sample and Hold Techniques 233 Kbytes 4-Oct-04 Download
AN-292: Application Note 292 Applications of the LM3524 Pulse-Width-Modulator 239 Kbytes 3-Oct-02 Download
AN-240: Application Note 240 Wide-Range Current-to-Frequency Converters 126 Kbytes 3-Oct-02 Download
AN-293: Application Note 293 Control Applications of CMOS DACs 385 Kbytes 4-Oct-04 Download
AN-210: Application Note 210 New Phase-Locked-Loops Have Advantages as Frequency to Voltage Converters (and more) 339 Kbytes 3-Oct-02 Download
AN-271: Application Note 271 Applying the New CMOS MICRO-DAC 230 Kbytes 4-Oct-04 Download
AN-271 (Japanese): Application Note 271 Applying the New CMOS MICRO-DAC
640){this.height=this.height*640/this.width;this.width=640;}' border="0" alt=" Connection Diagram">
342 Kbytes
AN-253: Application Note 253 LH0024 and LH0032 High Speed Op Amp Applications 461 Kbytes 2-May-04 Download
AN-275: Application Note 275 CMOS D/A Converters Match Most Microprocessors 127 Kbytes 2-May-04 Download
AN-311: Application Note 311 Theory and Applications of Logarithmic Amplifiers 258 Kbytes 2-Oct-02 Download
AN-480: A 40 MHz Programmable Video Op Amp 181 Kbytes 4-Nov-95 Download
AN-260: Application Note 260 A 20-Bit (1 ppm) Linear Slope-Integrating A/D Converter 148 Kbytes 3-Oct-02 Download

If you have trouble printing or viewing PDF file(s), see Printing Problems.






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