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Home > products > Integrated Circuit Chips > LF347N Electronic IC Chips Quad JFET Input Operational Amplifiers

LF347N Electronic IC Chips Quad JFET Input Operational Amplifiers

manufacturer:
Manufacturer
Description:
J-FET Amplifier 4 Circuit 14-PDIP
Category:
Integrated Circuit Chips
Price:
Negotiate
Payment Method:
T/T, Western Union, Paypal
Specifications
Supply Voltage:
±18V
Differential Input Voltage:
±30V
Input Voltage:
±15V
Power Dissipation:
1000 MW
Storage Temperature:
−65˚C To 150˚C
Lead Temperature:
260˚C
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electronic integrated circuit

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linear integrated circuits

Introduction

 

LF147/LF347 Wide Bandwidth Quad JFET Input Operational Amplifiers

 

General Description

The LF147 is a low cost, high speed quad JFET input operational amplifier with an internally trimmed input offset voltage (BI-FET II™ technology). The device requires a low supply current and yet maintains a large gain bandwidth product and a fast slew rate. In addition, well matched high voltage JFET input devices provide very low input bias and offset currents. The LF147 is pin compatible with the standard LM148. This feature allows designers to immediately upgrade the overall performance of existing LF148 and LM124 designs.

 

The LF147 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 device has low noise and offset voltage drift.

 

Features

  • Internally trimmed offset voltage: 5 mV max
  • Low input bias current: 50 pA
  • Low input noise current: 0.01pA/√HZ
  • Wide gain bandwidth: 4 MHz
  • High slew rate: 13 V/µs
  • Low supply current: 7.2 mA
  • High input impedance: 1012
  • Low total harmonic distortion AV=10,: <0.02% RL=10k, VO=20 Vp-p, BW=20 Hz−20 kHz
  • Low 1/f noise corner: 50 Hz
  • Fast settling time to 0.01%: 2 µs

 

Absolute Maximum Ratings (Note 2)

If Military/Aerospace specified devices are required, please contact the National Semiconductor Sales Office/ Distributors for availability and specifications.

  LF147 LF347B/LF347
Supply Voltage ±22V ±18V
Differential Input Voltage ±38V ±30V
Input Voltage Range (Note 3) ±19V ±15V
Output Short Circuit Duration (Note 4) Continuous Continuous
Power Dissipation (Notes 5, 11) 900 mW 1000 mW
Tj max 150˚C 150˚C
θjA Ceramic DIP (J) Package   70˚C/W
Plastic DIP (N) Package   75˚C/W
Surface Mount Narrow (M)   100˚C/W
Surface Mount Wide (WM)   85˚C/W
Operating Temperature (Note 6) (Note 6)
Storage Temperature −65˚C≤TA≤150˚C
Lead Temperature (Soldering, 10 sec.) 260˚C 260˚C
Soldering Information    
Dual-In-Line Package Soldering (10 seconds)   260˚C

Small Outline Package Vapor Phase (60 seconds)

                                     Infrared (15 seconds)

 

215˚C

220˚C

ESD Tolerance (Note 12)   900V

 

Note 2: Absolute Maximum Ratings indicate limits beyond which damage to the device may occur. Operating Ratings indicate conditions for which the device is functional, but do not guarantee specific performance limits.

Note 3: Unless otherwise specified the absolute maximum negative input voltage is equal to the negative power supply voltage.

Note 4: Any of the amplifier outputs can be shorted to ground indefinitely, however, more than one should not be simultaneously shorted as the maximum junction temperature will be exceeded.

Note 5: For operating at elevated temperature, these devices must be derated based on a thermal resistance of θjA.

Note 6: The LF147 is available in the military temperature range −55˚C≤TA≤125˚C, while the LF347B and the LF347 are available in the commercial temperature range 0˚C≤TA≤70˚C. Junction temperature can rise to Tj max = 150˚C.

Note 7: Unless otherwise specified the specifications apply over the full temperature range and for VS=±20V for the LF147 and for VS=±15V for the LF347B/LF347. VOS, IB, and IOS are measured at VCM=0.

Note 8: The input bias currents are junction leakage currents which approximately double for every 10˚C increase in the junction temperature, Tj . Due to limited production test time, the input bias currents measured are correlated to junction temperature. In normal operation the junction temperature rises above the ambient temperature as a result of internal power dissipation, PD. Tj =TA+θjA PD where θjA is the thermal resistance from junction to ambient. Use of a heat sink is recommended if input bias current is to be kept to a minimum.

Note 9: Supply voltage rejection ratio is measured for both supply magnitudes increasing or decreasing simultaneously in accordance with common practice from VS = ± 5V to ±15V for the LF347 and LF347B and from VS = ±20V to ±5V for the LF147.

Note 10: Refer to RETS147X for LF147D and LF147J military specifications.

Note 11: Max. Power Dissipation is defined by the package characteristics. Operating the part near the Max. Power Dissipation may cause the part to operate outside guaranteed limits.

Note 12: Human body model, 1.5 kΩ in series with 100 pF.

 

 

 

 

 

 

Stock Offer (Hot Sell)

Part No. Quantity Brand D/C Package
LM211P 13049 TI 11+ TSSOP-8
LM224DR 67000 TI 16+ SOP-14
LM22676MRE-5.0 8568 TI 15+ SOP-8
LM22676MRX-5.0 8639 TI 15+ PSOP8
LM22676MRX-ADJ 1691 TI 16+ SOP-8
LM22676TJE-ADJ 6794 TI 13+ TO-263
LM22777TJ-ADJ 5048 NS 16+ TO-263
LM239APT 4458 ST 13+ TSSOP-14
LM25011MY/NOPB 3243 TI 16+ MSOP-10
LM25037MTX 4474 TI 09+ TSSOP-16
LM25119PSQ/NOPB 1820 TI 15+ WQFN-32
LM25575MHX 3711 TI 12+ TSSOP-16
LM25576MHX 5141 TI 14+ TSSOP-20
LM2575D2T-3.3R4G 18153 ON 11+ TO-263
LM2575HVT-5.0 13120 NS 15+ TO-220
LM2575SX-5.0 22261 NS 16+ TO-263
LM2576-5.0WU 4267 MICREL 14+ TO-263
LM2576D2TR4-5G 5273 ON 14+ TO-263
LM2576HVSX-ADJ 6468 TI 15+ TO-263
LM2576HVT-ADJ 21640 NS 16+ TO-220
LM2576SX-1.2 18871 NSC 13+ TO263-5
LM2577T-ADJ 4542 NS 12+ TO-220-5
LM2586SX-ADJ 2498 NS 07+ TO-263-7
LM2588T-5.0 3655 TI 15+ TO-220-7
LM258DR 69000 TI 16+ SOP-8
LM258DT 70000 ST 13+ SOP-8
LM2594HVM-5.0 3314 NS 13+ SOP-8
LM2596HVT-ADJ 21711 NS 14+ TO-220
LM2622MM-ADJ 2888 NSC 08+ MSOP-8
LM2651MTCX-ADJ 8710 NS 04+ TSSOP

 

 

 

 

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