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SMAJ85CA是东沃(DOWO)推出的一款双向瞬态抑制二极管(TVS),采用DO-214AC(SMA)表面贴装封装,专为电子电路中的瞬态过压保护设计,可有效抑制静电放电(ESD)、雷电感应、开关浪涌等瞬态干扰,保护后端敏感元器件(如IC、传感器、通信模块等)免受损坏。该器件凭借紧凑的封装、可靠的电气性能及宽温度适应性,广泛适用于工业控制、汽车电子、消费电子及通信设备等领域。
SMAJ85CA属于小型化过压保护器件,核心作用是在电路遇到瞬态过压时,快速导通并将电压钳位在安全范围内,避免后端元器件因过压击穿或损坏。其应用场景覆盖三大方向:
SMAJ85CA的电气参数经过严格测试,核心指标明确且稳定,具体解析如下:
极性:双向
无需区分正负极,无论瞬态过压是正向还是反向,均可快速响应并钳位,简化电路设计(无需额外考虑极性匹配)。
反向截止电压(Vrwm):85V
器件正常工作时允许施加的最大反向直流电压,低于此电压时器件处于截止状态,无明显漏电流,不影响电路正常运行。
击穿电压:94.4V
反向击穿的典型电压值,当电路电压超过Vrwm(85V)并接近该值时,器件开始导通,将过压限制在安全钳位范围内。
钳位电压:137V
当器件承受峰值脉冲电流时,可将电压钳位在137V以内,是保护后端元器件的关键指标(需确保后端器件的耐压高于此值)。
峰值脉冲电流(Ipp):2.92A
在10/1000μs脉冲波形(模拟雷电感应浪涌的典型波形)下的最大允许峰值电流,反映器件承受瞬态浪涌的能力。
峰值脉冲功率(Ppp):400W(10/1000μs)
由钳位电压与峰值脉冲电流乘积得出(137V×2.92A≈400W),明确器件的浪涌功率耐受极限,可覆盖常见瞬态干扰的能量需求。
反向漏电流(Ir):1uA
在Vrwm(85V)下的反向漏电流,数值极小,保证器件在正常工作时不会消耗过多功率,不影响电路效率及稳定性。
SMAJ85CA采用DO-214AC(SMA)表面贴装封装,具备以下优势:
SMAJ85CA的环境适应性覆盖工业级要求,具体表现为:
结合SMAJ85CA的参数与特性,其典型应用场景包括:
SMAJ85CA凭借双向保护、紧凑封装、宽温适应性及可靠的电气性能,成为电子电路过压保护的高性价比选择,可满足多种场景下的瞬态干扰抑制需求。
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