WMSIC Electronic Components

BLUE ROCKET DTC114EKA

ModelDTC114EKA
PackageSOT-23
BrandBLUE ROCKET
Price Price on request Electronic component prices change quickly with market supply and demand. Please refer to the latest WMSIC quotation for current pricing.
Configuration
1 options
Configuration 24+

Available for RFQ

Technical data

Product details

19 specifications

Core information

Product name
BLUE ROCKET DTC114EKA
Type
BLUE ROCKET
Minimum package
3000 圆盘

Technical parameters

Electronic Component
Electronic Component
Electronic Component
BLUE ROCKET
Electronic Component
DTC114EKA
Electronic Component
1
Package
SOT-23
Electronic Component
1 NPN
Electronic Component
Digital Transistor
Electronic Component
0.03g
Electronic Component
1
Electronic Component
BM0225825183
Resistor
1
Transistor Type
NPN
Frequency(f T)
250MHz
Power Dissipation(Pd)
200mW
Electronic Component
Electronic Component
Electronic Component
3000

For datasheets, package documents, compatible-part guidance, or other technical resources, contact WMSIC customer service. Availability is confirmed case by case.

DTC114EKA 产品概述

一、主要参数

DTC114EKA 是 BLUE ROCKET 品牌的一款集成基极限流电阻的 NPN 数字晶体管,适用于逻辑接口驱动与小功率开关场合。关键参数如下:

  • 集电极-发射极击穿电压 Vceo:50 V(耐压等级)
  • 最大集电极电流 Ic:100 mA
  • 输出饱和电压 VO(on) ≈ 300 mV(在规定工作点下)
  • 最小导通输入电压 VI(on):3.0 V(保证导通)
  • 最大关断输入电压 VI(off):约 500 mV(在 Ii=100 μA、VCC=5.0 V 条件下)
  • 功耗 Pd(最大):200 mW
  • 内置电阻比率:1(内部限流/偏置网络已优化)
  • 晶体管类型:NPN
  • 封装:SOT-23(紧凑 3 引脚封装)

二、核心特性与优势

  • 内置基极限流电阻,省去外部基极电阻设计,可直接与逻辑电平接口连接,简化电路和节省 PCB 面积。
  • 50 V 的耐压能力使其在 12 V、24 V 等中低电压系统中仍有较好的安全余量。
  • 低饱和压(约 300 mV)在输出作为低侧开关时可显著降低功耗与功率耗散。
  • SOT-23 小封装适合高密度布板与消费电子、仪表等体积受限系统。

三、应用场景

  • MCU/逻辑电平与继电器或中小功率负载之间的缓冲与驱动(在满足 Ic 和 Pd 限制下)。
  • LED 驱动、指示电路和信号开关。
  • 电平移位器、开漏输出替代件,用于需要集成基极限流的场合。
  • 工业控制、仪表板、通信设备中的低功耗开关元件。

四、设计注意事项

  • 注意最大集电极电流 100 mA 和功耗 200 mW 的限制:在连续工作时需评估电流-电压和 PCB 散热条件,避免热耗散超标导致器件失效。
  • 对于 1.8 V 逻辑电平系统,该器件的最低导通输入电压为 3.0 V,可能无法可靠导通,应选择更低门槛的器件或增加驱动电平。
  • VI(off) 约 500 mV(在特定条件下)表明输入低电平需拉低到较低电压以保证关断,输入浮置或弱拉低时需注意漏电流。
  • 虽然器件内置限流电阻,但在需要更严格的基极电流控制或冲击电流抑制时,仍建议在输入端并联外部限流或保护元件。

五、热管理与可靠性

  • SOT-23 封装的热阻相对较高,200 mW 的最大耗散在没有良好 PCB 导热时可能导致结温上升。设计时通过加宽铜箔、增加过孔与散热层来改善热扩散。
  • 在高温或高频切换场合,关注结温(Tj)与环境温度(Ta)的关系,保证器件在安全区内运行以延长寿命和稳定性。

六、典型连接建议

  • 作为低侧开关:负载接 VCC,负载另一端接器件集电极,发射极接地,输入端直接由逻辑输出驱动(若逻辑电平 ≥ 3.0 V)。
  • 输入端若易受噪声干扰,可增加小电容或上/下拉电阻以稳定阈值并抑制毛刺。
  • 在需要更高开关电流或更低 VCE(sat) 的场合,考虑并联或替代更大功率的外部晶体管或 MOSFET。

七、选型建议与替代考虑

  • 若系统工作电流接近或超过 100 mA、或需要更高耐压/更低 VCE(sat)、或工作在 1.8 V 逻辑,建议选用额定更高的分立晶体管或具有合适门槛的数字晶体管型号。
  • 对于追求完全开漏功能且需外部上拉到较高电压时,需确认 VI(off) 与漏电特性在目标 VCC 下满足系统要求。

总结:DTC114EKA 以其内置限流电阻、50 V 耐压与 SOT-23 小封装,适合多数 3.3 V/5 V 逻辑接口的信号驱动与小功率开关应用。在设计时重点评估电流与热耗散约束,并根据系统电平与负载需求决定是否需要外部保护或替代器件。

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