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AP362244F

厂商:
Panasonic
类别:
控制盘用继电器
包装:
-
封装:
-
无铅情况/ROHS:
无铅
描述:
HC继电器密封型

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  • 参数
  • 描述
参数 数值
触点材料 BBM
触点材料 Au flashed AgSnO2
端子形状 TM
机械寿命 1x10^8
国外标准 UL/CSA
线圈额定电压 24
耐电压(触点间) 700Vrms
触点结构 2c
最小适用负载(电阻负载) 1mA 1V DC
使用环境温度 -40℃ ~ +60℃
电气寿命 2x10^5
附件 -
额定控制容量(电阻负载) 3A,250V AC
动作机能 Single side stable
释放电压 2.4V DC
耐电压(触点-线圈间) 2000Vrms
保护构造 Sealed
感性电压 19.2V DC
特点 采用密封结构,即使是在恶劣的环境中,也可发挥高度可靠性。
订货产品号 AP362244F
额定消耗功率 900mW

特点
Two Ouput Stages Operate Antiphase Reducing Input Capacitance and Power Supply Noise
5-Bit VID Control (VRM 8.4 Compliant) V OUT : 1.3V to 3.5V in 50mV/100mV Steps
Current Mode Control Ensures Current Sharing
True Remote Sensing Differential Amplifier
OPTI-LOOP? Compensation Minimizes C OUT
Programmable Fixed Frequency: 150kHz to 300kHz—Effective 300kHz to 600kHz Switching Frequency
±1% Output Voltage Accuracy
Wide V IN Range: 4V to 36V Operation
Adjustable Soft-Start Current Ramping
Internal Current Foldback
Short-Circuit Shutdown Timer with Defeat Option
Overvoltage Soft-Latch Eliminates Nuisance Trips
Low Shutdown Current: 20μA
Small 36-Lead Narrow (0.209

典型应用

典型应用

描述
描述 The LTC?1709 is a 2-phase, VID programmable, synchronous step-down switching regulator controller that drives all N-channel external power MOSFET stages in a fixed frequency architecture. The 2-phase controller drives its two output stages out of phase at frequencies up to 300kHz to minimize the RMS ripple currents in both input and output capacitors. The 2-phase technique effectively multiplies the fundamental frequency by two, improving transient response while operating each channel at a optimum frequency for efficiency. Thermal design is also simplified. An internal differential amplifier provides true remote sensing of the regulated supply’s positive and negative output terminals as required in high current applications. The RUN/SS pin provides soft-start and optional timed, short-circuit shutdown. Current foldback limits MOSFET dissipaton during short-circuit conditions when overcurrent latchoff is disabled. OPTI-LOOP compensation allows the transient response to be optimized for a wide range of output capacitors and ESR values.

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