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热过载继电器电磁干扰的分析

日期:2025-04-25 22:09
浏览次数:926
摘要:
 
随着科学技术的飞速发展,电子、电力电子、电气设备应用越来越广泛,它们在运行过程中会产生较强的电磁干扰和谐波干扰。其中,电磁干扰具有很宽的频率范围(从几百Hz到MHz),又有一定的幅度,经过传导和辐射会污染电磁环境,对电子设备造成干扰,有时甚至危及操作人员的**。特别是大功率中、短波广播发射中心,其周围电磁环境尤为复杂,要想保证设备**稳定运行,电子设备及电源必须具有更高的电磁兼容性。

WRRGN-4313G,WRRGN-4313S,WRRGN-4314G,WRRGN-4314S,

CW-1151DP3S25B2,CW-1151DP3S25B3,CW-1151DP3S25D1,CW-1151DP3S25D2,

YSD-VA1R1P110A,YSD-VA1R1P110B,YSD-VA1R1P110C,YSD-VA1R1P110D,YSD-VA1R1P110E,

YSD-PMA1EP14A,YSD-PMA1EP14B,YSD-PMA1EP14C,YSD-PMA1EP14D,YSD-PMA1EP14E,

YSD-VEDP29A,YSD-VEDP29B,YSD-VEDP29C,YSD-VEDP29D,YSD-VEDP29E,

XMT-625-2Z,XMT-625-2Y,XMT-625-3M,XMT-625-3SM,XMT-625-3F,XMT-625-3X,XMT-625-4Y,

XMTE-7411,智能型双排四位显示仪表

YBDTV3A4A1V1D,YBDTV3A4A1V1A2,YBDTV3A4A1V1A1,YBDTV3A4A1V1D2,YBDTV3A4A1V1D1,

KCQ363C,KCQ363D,双电源自动切换装置

YWH33V22V0PA2,YWH33V22V0PA1,YWH33V22V0PD2,YWH33V22V0PD1,YWH33V22V0PD,YWH33V22V0PY,

YST/A-S3MT5A2B4S2V0PN,YST/A-S3MT5A2B4S2V1PN,YST/A-S3MT5A2B4S2V2PN,

XMTE234-C0,XMTE234-C3,XMTE234-C4,XMTE234-C5,XMTE234-C6,XMTE234-C7,XMTE234-C9,

CW-XMAP-121-26-5-X,CW-XMAP-121-26-5-Y,CW-XMAP-121-26-5-Z,CW-XMAP-121-26-5-G,CW-XMAP-121-26-53-M,

YSD-NB1A,YSD-NB1B,YSD-NB1C,YSD-NB1D,YSD-NB1E,YSD-NB1Y,YSD-NB9Y,

CME1-100,CME1-225,CME1-400,CME1-630,CME1-800,CME1-1250,电子式塑壳断路器

308D1MOi,308D1MOd,308D1MOM2,308D2ERi,308D2ERd,308D2ERM2,308D2MOi,

YBDFA1VEV3VED,YBDFA1VEV3VEA2,YBDFA1VEV3V3A1,YBDFA1VEV3VED2,YBDFA1VEV3VED1,

CW-1151DP3S44M1,CW-1151DP3S44M2,CW-1151DP3S44M3,CW-1151DP3S44B1,

YSM/A-H3GT4,YSM/A-H3GT5,YSM/A-H3GT6,YSM/A-H3GT7,YSM/A-H3GT8,

YMH-23511-2M,YMH-23511-2SM,YMH-23511-1M,YMH-23511-1SM,YMH-23511-11M,YMH-23511-11SM,

WRCK2-521,WRCK2-531,WRCK2-522,WRCK2-532,双支铜-铜镍热电偶

首先必须确定干扰源在何处,越靠近干扰源的地方采取措施抑制效果越好,一般来说,电流电压瞬变的地方(即di/dt或du/dt)即是干扰源,如:继电器开合、电容充放电、电机运转、集成电路开关工作等都可能成为干扰源。另外,市电并非理想的50Hz正弦波,其中充满各种频率噪声,也是不可忽视的干扰源。
抑制方法通常采用低噪声电路、瞬态抑制电路、稳压电路等,所选用的器件应尽可能采用低噪声、高频特性好、稳定性高的电子元件,特别要注意,抑制电路中不适当的器件选择可能会产生新的干扰源。

CW-SBWZMY131BF,CW-SBWZMY131BN,CW-SBWZMY131BKF,CW-SBWZMY131BKN,

CW-1151HP3E44F-D2,CW-1151HP3E44F,CW-1151HP3E44F-C2,CW-1151HP3E44F-d,

YSD-KV4H2P33A,YSD-KV4H2P33B,YSD-KV4H2P33C,YSD-KV4H2P33D,YSD-KV4H2P33E,

CW-1151DP4E23,CW-1151DP4E23C2,CW-1151DP4E23d,CW-1151DP4E23i,

YQH12A5V15P2A2,YQH12A5V15P2A1,YQH12A5V15P2D2,YQH12A5V15P2D1,YQH12A5V15P2D,YQH12A5V15P2Y,

WRNK-442,WRNK-443,WRNK-444,WRNK-445,WRNK-446,WRNK-448,

WRN2-140A,WRN2-240A,WRN2-440A,WRN2-640A,WRNK2-140A,WRNK2-240A,WRNK2-440A,WRNK2-640A,隔爆热电偶

YSD-VA4H2P33A,YSD-VA4H2P33B,YSD-VA4H2P33C,YSD-VA4H2P33D,YSD-VA4H2P33E,

YSD-PMV6R1Y2Y,YSD-PMV6R1Y8Y,YSD-PMV6R1Y9Y,YSD-PMV6R1Y10Y,YSD-PMV6R1Y11Y,

YSD-VV2H1P25A,YSD-VV2H1P25B,YSD-VV2H1P25C,YSD-VV2H1P25D,YSD-VV2H1P25E,

CW-3351DP3S24M1,CW-3351DP3S24M2,CW-3351DP3S24M3,CW-3351DP3S24B1,

YBD-TCRAV0A1D,YBD-TCRAV0A1A2,YBD-TCRAV0A1A1,YBD-TCRAV0A1D2,YBD-TCRAV0A1D1,

YXG-15241-B/22,YXG-1525-B/12,

WRPGN-3213G,WRPGN-3213S,WRPGN-3214G,WRPGN-3214S,

WSSH-425FW,WSSH-480N,WSSH-480NW,WSSH-480L,WSSH-480LW,WSSH-480F,WSSH-480FW,

WSSHE-400FW,WSSHE-401N,WSSHE-401NW,WSSHE-401L,WSSHE-401LW,WSSHE-401F,WSSHE-401FW,

WRNT-10,WRET-10,WRFT-10,压簧固定式热电偶

CW-TH-LCD-NLL805-95-F,CW-TH-LCD-NLL805-95-L,CW-TH-LCD-NLL805-95-S,CW-TH-LCD-NLL805-95-T,CW-TH-LCD-NLL805- 95-U,

WSSH-483FW,WSSH-484N,WSSH-484NW,WSSH-484L,WSSH-484LW,WSSH-484F,WSSH-484FW,

YBDTV3A4A1V0D,YBDTV3A4A1V0A2,YBDTV3A4A1V0A1,YBDTV3A4A1V0D2,YBDTV3A4A1V0D1,

YBD-TCTGA4V3Y,YBD-TCTGA4YD,YBD-TCTGA4YA2,YBD-TCTGA4YA1,YBD-TCTGA4YD2, 热电偶温度变送器

GR-2105,GW-2131,GR-2131,GW-2141,GR-2141,

YSD-NA1H4P34A,YSD-NA1H4P34B,YSD-NA1H4P34C,YSD-NA1H4P34D,YSD-NA1H4P34E,

XMF-PT100-174-M,XMF-PT100-175-M,XMF-PT100-176-M,XMF-PT100-177-M,

抑制干扰源就是尽可能的减小di/dt或du/dt,这是抗干扰设计时**先和*重要的原则。减小di/dt的干扰源,主要是在干扰回路串联电感或电阻以及增加续流二极管来实现;减小du/dt的干扰源,则是通过在干扰源两端并联电容来实现。

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