推荐回答(5个)
13003c是一种高反压低放大倍数的NPN型开关三极管。
NPN型开关三极管是一种控制元件,主要用来控制电流的大小,以共发射极接法为例(信号从基极输入,从集电极输出,发射极接地)。
当基极电压UB有一个微小的变化时,基极电流IB也会随之有一小的变化,受基极电流IB的控制,集电极电流IC会有一个很大的变化,基极电流IB越大,集电极电流IC也越大,反之,基极电流越小,集电极电流也越小,即基极电流控制集电极电流的变化。
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扩展资料
NPN型三极管,由三块半导体构成,其中两块N型和一块P型半导体组成,P型半导体在中间,两块N型半导体在两侧。三极管是电子电路中最重要的器件,它最主要的功能是电流 放大和开关作用。
三极管最基本的作用是放大作用,它可以把微弱的电信号变成一定强度的信号,当然这种转换仍然遵循能量守恒,它只是把电源的能量转换成信号的能量。三极管有一个重要参数就是电流放大系数β。
当三极管的基极上加一个微小的电流时,在集电极上可以得到一个是注入电流β倍的电流,即集电极电流。集电极电流随基极电流的变化而变化,并且基极电流很小的变化可以引起集电极电流很大的变化,这就是三极管的放大作用。
参考资料来源:百度百科-NPN型三极管
13003为中功率NPN型晶体管,主要作为电源开关管用。
NPN晶体管是晶体管的一种,当基极b点电位高于发射极e点电位零点几伏时,发射结处于正偏状态,而集电极C点电位高于b点电位几伏时,集电结处于反偏状态,集电极电源Ec要高于基极电源Ebo。
扩展资料
制造工艺设计
1、首先在ATHENA中定义0.8um*1.0um的硅区域作为基底,掺杂为均匀的砷杂质,浓度为2.0e16/cm3,然后在基底上注入能量为18ev,浓度为4.5e15/cm3的掺杂杂质硼,退火,淀积一层厚度为0.3um的多晶硅,
淀积过后,马上进行多晶硅掺杂,掺杂为能量50ev,浓度7.5e15/cm3的砷杂质,接着进行多晶硅栅的刻蚀(刻蚀位置在0.2um处)此时形成N++型杂质(发射区)。
刻蚀后进行多晶氧化,由于氧化是在一个图形化(即非平面)以及没有损伤的多晶上进行的,所以使用的模型将会是fermi以及compress,进行氧化工艺步骤时分别在干氧和氮的气氛下进行退火,接着进行离子注入
注入能量18ev,浓度2.5e13/cm3的杂质硼,随后进行侧墙氧化层淀积并进行刻蚀,再一次注入硼,能量30ev,浓度1.0e15/cm3,形成P+杂质(基区)并作一次镜像处理即可形成完整NPN结构,最后淀积铝电极
。
参考资料来源:百度百科-NPN型晶体管
13003c是一种高反压低放大倍数的NPN型开关三极管,用于充电器,节能灯,最大集电极电流 1.75A。
三极管全称应为半导体三极管,也称双极型晶体管、晶体三极管,是一种电流控制电流的半导体器件·其作用是把微弱信号放大成幅度值较大的电信号, 也用作无触点开关。晶体三极管,是半导体基本元器件之一,具有电流放大作用,是电子电路的核心元件。
13003是一种高反压低放大倍数的NPN型开关三极管,常用于30-40W电子镇流器中。
高反压低放大倍数的NPN型的中功率开关三极管,一般的电子镇流器都有这么两个三极管。我曾经用他代替过2068、2482做视放管使,效果一样。
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