请输入您要查询的百科知识:

 

词条 LSK489
释义

  1. Part characteristics

  2. Related parts

  3. Applications

  4. References

  5. External links

The LSK489 is a monolithic N-Channel JFET[https://en.wikipedia.org/wiki/JFET] designed and built by Linear Integrated Systems, Inc.LIS Inc, a Fremont, CA company. The part was introduced in 2013[1][2] and was named by EDN Tech as one of the “2013 EDN Hot 100” electronics industry innovations for the year.[3] In a product review published earlier that year, EDN noted:

This JFET is part of a family of ultra-low-noise, dual JFET. [4].

{{quote|This JFET is part of a family of ultra-low-noise, dual JFETs specifically designed to provide users better-performing, wider bandwidths and cheaper solutions for obtaining tighter IDSS (drain-source saturation current) matching and better thermal tracking than matching individual JFETs. The company also has an in-house fab which is an indication that it can maintain good process control over production lots by tweaking the process as needed in real time as well as monitoring production to increase it for high volume demand customer needs.{{citation needed|date=October 2017}}}}

Part characteristics

The LSK489 is an N-channel monolithic dual JFET with 1.8 nV per square root Hz noise at 1kHz and low-capacitance (Ciss= 4pF).[5] The part is not graded with respect to IDSS, with the typical value being 5 mA, a low of 2.5 mA and a high of 15 mA. Characteristics include:

  • Tight differential voltage match vs. current;
  • Improved op amp speed settling time accuracy;
  • Minimum Input Error trimming error voltage;
  • Lower intermodulation distortion.

The part achieves very low noise with respect to its transconductance, which is attributed to the producer’s ability to eliminate almost all of the generation-recombination noise usually present in JFETs.[6]

The part is available in TO-71, SOIC-A, and SOT-23 packages, as well as bare die.

Related parts

The LSK489 (N-Channel Monolithic Dual JFET) and LSJ689[7] (P-Channel Monolithic Dual JEFT), also produced by Linear Integrated Systems, are complementary pairs. These two parts are the only complementary dual JFETs pair currently in production.[8][9] The LSK489 is close in electrical performance, except for having superior noise characteristics, to the LS843 series and the Siliconix U401-403 series. It has slightly higher noise than the LSK389 (1.8 nV vs. 0.9 nV) but lower CISS (4pF vs. 20pF).[10][11]

Applications

The LSK489 is used in a wide range of front-end signal chain applications, including audio preamps,[12] piezoelectric element preamps and photodiode preamps.[13] The part is also used in high-end sensor systems ranging from hydrophones to the front end of the Large Synoptic Survey Telescope (LSST) being developed by SLAC National Accelerator Laboratory.[14]

References

1. ^{{cite web|url=http://www.audioxpress.com/article/linear-systems-offers-new-dual-jfets |title=Linear Systems Offers New Dual JFETs |website=Audioxpress.com |date=2013-10-14 |accessdate=2017-05-23}}
2. ^{{cite web|url=http://www.nutsvolts.com/magazine/issue/2013/09 |title=Nuts Volts Magazine - Nuts & Volts Magazine - For The Electronics Hobbyist |website=Nutsvolts.com |date= |accessdate=2017-05-23}}
3. ^{{cite web|url=http://www.edn.com/electronics-products/other/4424555/EDN-Hot-100-products-of-2013--Components-and-sensors |title=Hot 100 products of 2013: Components and sensors |publisher=EDN |date=2013-11-19 |accessdate=2017-05-23}}
4. ^{{cite web|url=http://www.edn.com/electronics-products/electronic-product-reviews/other/4419520/Dual--low-noise-JFET-has-low-capacitance-and-high-input-impedance |title=Dual, low-noise JFET has low capacitance and high input impedance |publisher=EDN |date=2013-08-08 |accessdate=2017-05-23}}
5. ^{{cite web|url=http://www.linearsystems.com/lsdata/datasheets/LSK489_LOW_NOISE,_LOW_CAPACITANCE_MONOLITHIC_DUAL_N-CHANNEL_JFET.pdf |format=PDF |title=LSK489 : Low Noise Low Capacitance Monolithic Dual N-Channel JFET Amplifier |website=Linearsystems.com |accessdate=2017-05-24}}
6. ^{{cite web|url=http://www.linearsystems.com/lsdata/others/LSK489_Application_Note.pdf |format=PDF |title=LSK489 Application Note |website=Linearsystems.com |accessdate=2017-05-24}}
7. ^{{cite web|author=Steve Taranovich |url=http://www.eedesignnewseurope.com/news/monolithic-jfets-are-alive-and-well |title=Monolithic JFETs are alive and well | EDN |website=Eedesignnewseurope.com |date=2016-08-18 |accessdate=2017-05-23}}
8. ^{{cite web|url=http://www.edn.com/Pdf/ViewPdf?contentItemId=4442559 |format=PDF |title=Monolithic JFETs are alive and well|website=Edn.com |accessdate=2017-05-24}}
9. ^{{cite web|url=https://www.namm.org/thenammshow/2017/exhibitor-news/lsj689-p-channel-jfet |title=LSJ689 P-Channel JFET |website=NAMM.org |date= |accessdate=2017-05-23}}
10. ^{{cite web|url=http://www.linearsystems.com/lsdata/datasheets/LSK389A_LSK389B_LSK389C_LSK389D_Low_Noise,_Monolithic_Dual,_N-Channel_JFET.pdf |format=PDF |title=LSK389 : Ultra Low Noise Monolithic Dual N-Channel JFET Amplifier |website=Linearsystems.com |accessdate=2017-05-24}}
11. ^{{cite web|url=http://www.planetanalog.com/author.asp?section_id=571&doc_id=559457 |title=Tim McCune - AEA's Ribbon Microphones & Linear Systems' JFETs |publisher=Planet Analog |date= |accessdate=2017-05-23}}
12. ^{{cite web|last=Alexandrov |first=George |url=http://www.analog.com/en/analog-dialogue/articles/tips-on-making-fetching-discrete-amplifier.html |title=Some Tips on Making a FETching Discrete Amplifier | Analog Devices |website=Analog.com |date= |accessdate=2017-05-23}}
13. ^{{cite web|url=http://www.edn.com/Home/PrintView?contentItemId=4439728 |title=A guide to using FETS for sensor applications, Part 1 |website=Edn.com |date=2015-06-17 |accessdate=2017-05-23}}
14. ^{{cite web|url=https://www.slac.stanford.edu/grp/rd/epac/Proposal/LSST.pdf |title=Microsoft Word - DOE PROP.doc |website=Slac.stanford.edu |format=PDF |date= |accessdate=2017-05-23}}

External links

  • Company Data Sheet
  • Company Application Note

1 : Commercial transistors

随便看

 

开放百科全书收录14589846条英语、德语、日语等多语种百科知识,基本涵盖了大多数领域的百科知识,是一部内容自由、开放的电子版国际百科全书。

 

Copyright © 2023 OENC.NET All Rights Reserved
京ICP备2021023879号 更新时间:2024/9/25 16:29:52