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                大豫彩票 > 产品目录 >> 滤波器系列
                PCB滤波器

                PCB滤波器

                内部型号: 15138
                分类: 滤波器系列
                日期: 2013-03-29 关注次数:
                本产品可按客户技术要求设计制作!

                PCB滤波器详细资料

                应PCB用滤波器,用在模块电源与小型电子仪器 类别: PCB板滤波器 适用范围: 适用于各种电子和数字设备 主要参数: 工作电压250VAC,频率5060Hz,温度2508525 ...

                交流PCB系列:
                ● 0.5~6A额定电流
                ● 适合PCB的尺寸设计,结构紧凑安装方便
                ● 提高电路的抗干扰能力,减小对外的传导和辐射
                ● 可承受高达6000V的脉冲尖峰
                ● 可承受极高的dV/dt,显著降低dV/dt数值
                ● 可按不同的插损、工作电流、电压、结构尺寸和端接方式需求定制
                ● Current ratings from 0.5 to 6A
                ● Very compact PCB-mounting design, easy to mount
                ● To enhance the anti-jamming performance and reduce CE and RE
                ● Can endure 6000V spike
                ● Can endure high dV/dt and reducing dV/dt
                ● Customization design for different Insertion Loss, Rated Current, Rated Voltage, Size and Terminal Format requirements.

                技术规格Specification

                额定电压 Rated Voltage
                250VAC
                 
                工作频率 Operating Frequency
                50/60Hz
                 
                最大漏电流
                Max. Leakage Current
                见各型号
                测试条件250V/50Hz
                Testing Condition 250V/50Hz
                介质耐压
                Hipot Test Voltage
                线-线(L-L)
                1768VDC
                1分钟
                1min
                线-地(L-E)
                2000VAC
                气候等级
                Climatic Classification
                25/085/21
                遵循IEC68-1标准
                Per IEC68-1 standard

                 


                型号

                Model

                额定电流

                Rated current

                电路类型

                Electrical Schematics

                最大漏电流

                Max. Leakage

                外壳类型

                Housing

                端接方式

                Connections

                B110-0.5PC

                0.5A

                Fig.1

                <0.3mA

                Fig.1

                B110-1PC

                1A

                Fig.1

                <0.3mA

                Fig.1

                B110-2PC

                2A

                Fig.1

                <0.3mA

                Fig.2

                B110-3PC

                3A

                Fig.1

                <0.3mA

                Fig.2

                B110-6PC

                6A

                Fig.1

                <0.3mA

                Fig.2

                B140-2PC

                2A

                Fig.2

                <0.3mA

                Fig.3

                B140-3PC

                3A

                Fig.2

                <0.3mA

                Fig.3

                B140-6PC

                6A

                Fig.2

                <0.3mA

                Fig.3


                 

                插入损耗Insertion Loss

                遵循CISPR No.17/GB7343标准,插入损耗是在输入/输出均为50Ω的条件下的测量值。

                CM(共模)       DM(差模)

                Per CISPR No.17/GB7343 standard, denotes Common Mode Insertion Loss with 50/50Ω testing condition, and  denotes Differential Mode Insertion Loss with 50/50Ω testing condition.


                   
                   
                   


                 

                电路原理Electrical Schematics

                Fig.1

                Fig.2

                 

                 外形尺寸Mechanical Data


                Fig.1

                Fig.2



                直流PCB系列
                ● 3~20A额定电流
                ● 适合PCB的尺寸设计,安装方便
                ● 应用在二次电源的DC输入/输出侧,一次电源的DC输出侧和DC-DC模块之间
                ● 提高电路的抗干扰能量,减小对外的传导和辐射
                ● 可按不同的插损、工作电流、电压、结构尺寸和端接方式需求定制
                ● Current ratings from 3 to 20A
                ● PCB-mounting design, easy to mount
                ● Application for DC source I/O and DC-DC module
                ● To enhance the anti-jamming performance and reduce CE and RE
                ● Customization design for different Insertion Loss, Rated Current, Rated Voltage, Size and Terminal Format requirements.

                 技术规格Specification

                额定电压 Rated Voltage
                80VDC
                 
                介质耐压
                Hipot Test Voltage
                线-线(L-L)
                160VDC
                1分钟
                1min
                线-地(L-E)
                500VDC
                气候等级
                Climatic Classification
                25/085/21
                遵循IEC68-1标准
                Per IEC68-1 standard

                 


                型号

                Model

                额定电流

                Rated current

                电路类型

                Electrical Schematics

                外壳类型

                Housing

                端接方式

                Connections

                B010-3PC

                3A

                Fig.1

                Fig.1

                B010-6PC

                6A

                Fig.1

                Fig.1

                B020-3DC

                3A

                Fig.2

                Fig.2

                B020-6BC

                6A

                Fig.2

                Fig.3

                B020-10BC

                10A

                Fig.2

                Fig.3

                B020-20BC

                20A

                Fig.2

                Fig.4


                 

                插入损耗Insertion Loss

                遵循CISPR No.17/GB7343标准,插入损耗是在输入/输出均为50Ω的条件下的测量值。

                CM(共模)       DM(差模)

                Per CISPR No.17/GB7343 standard, denotes Common Mode Insertion Loss with 50/50Ω testing condition, and  denotes Differential Mode Insertion Loss with 50/50Ω testing condition.


                   
                   


                 

                 电路原理Electrical Schematics

                Fig.1

                Fig.2

                 

                外形尺寸Mechanical Data


                Fig.1

                Fig.2

                Fig.3

                Fig.4

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