“过去,研究人员主要使用间接测量,这种方法通过对极化进行测量,并将极化测量值作为温度和电压的函数推导得出电热效应,而不是实际的温度测量结果,”RomainFaye说。“然而,间接测量并不是能够得出正确的解释。我们的团队一直在寻找更有效的直接温度测量方法。”直接测量温度变化*常用的方法是使用热电偶和红外热像仪。热电偶是测量与温度变化相关的电压变化的电子设备,而红外热像仪则测量与温度变化相关的红外辐射变化。

PV063R1K1T1NFR1
PV063R1K1T1NFHS
PV063R1K1T1NMM1
PV063R1K1T1NMRC
PV063R1K1T1NFWS
PV063R1K1T1NFRC
PV063R1K1T1NFF1
PV080L1K1T1NFFC
PV080R1K1B1NSLB
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PV080R1L1T1MULC
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PV092R1K8T1N001
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PV092R1K1T1NMM1
PV092R1K1T1NMRK
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PV092R1K1T1NHLC

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PV092R1K1T1PFDS
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PV092R1K1T1WMR1
PV092R1K1T1WMMC
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PV092R1K1T1NFFP

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PV092R1D1T1NGLC
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PV092R1K4T1NFPD
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PV092L1K1J1NFR1
PV092R1K1A1NSLA
PV140R1K1T1NFRL
PV140L1K8T1NSLC
PV140R1K1T1NTCB
PV140R1L1A1NF
PV140L9G3B1NTCC
PV140R1K1T1NWLA
PV140R1K1T1NSCA
PV140R1D3T1VFHS
PV140L1G1T1NFFP
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PV140L1L1T1NWCC
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PV140R1F1T1NYCC
PV140R1F3T1NFFC
PV140R1F3T1NFRP
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PV140R1K1A1NSCC

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PV140R9K1T1NUPZ
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PV140R9K1A1NSLCK0173
PV140R9K1T1NFDSK0186
PV140R9K1T1NFFCK0011
PV140R9K1T1NFHSK0017
PV140R9K1T1NFRCK0107
PV140R9K1T1NFWSK0032
PV140R9K1T1NFWSK0155
PV140R9K1T1NKCCK0175
PV140R9K1T1NMLCK0081
PV140R9K1T1NSLCK0003
PV140R9K1T1WSCCK0072
PV140R9K4T1NFFPK0088
PV140R9K4T1NZCBK0154
PV140R9K4T1WFRPX5918
PV140L9G1T1NFFPK0083
在工程师的日常测试中,有时会发现用万用表测试的结果与许多高精度的仪器测试的结果并不一致,工程师往往会陷入迷茫,到底哪个值才是正确的?原来,选择不同的测量模式,会导致结果大相径庭,本文将对*常见的4种测量模式进行解析,大家莫要傻傻分不清。测试同样一个信号,不同的计算方式与测量模式将会得出完全不同的结果,*常用的4种测量模式包括:RMS(真有效值也称有效值或均方根值)、MEAN(校准到有效值的整流平均值也称校正平均值)、DC(简单平均值也称直流分量)、RMEAN(整流平均值也称平均值)。