电源模块/开关稳压电源

型号型号 787-1606

  • 开关稳压电源
  • 水平安装时,可自然循环冷却
  • 封装,适于开关控制柜
  • 防抖型开关触点(DC OK)
  • 可并联,可串联
  • 电气隔离的输出电压(SELV),符合
    EN 60950-1/UL 60950-1标准

电源模块/冗余模块

型号型号 787-885

  • 冗余模块,2 路输入用于 2 个电源的去耦
  • 对于冗余或故障安全电源
  • 带无电位触点用于输入电压监测

电源模块/冗余模块

型号型号 787-785/000-040

Features:

  • Redundancy module with two inputs decouples two power supplies.
  • For redundant and fail-safe power supply
  • With LED for input voltage monitoring on site and remotely

电源模块/开关稳压电源

型号型号 787-1602

  • 开关稳压电源
  • 水平安装时,可自然循环冷却
  • 封装,适于开关控制柜
  • 防抖型开关触点(DC OK)
  • 可并联,可串联
  • 电气隔离的输出电压(SELV),符合
    EN 60950-1/UL 60950-1标准

电源模块/电容缓冲模块

型号型号 787-916

Features:
  • Capacitive buffer module bridges short duration voltage drops or load fluctuations.
  • Internal diode between input and output enables operation with a decoupled output.
  • Potential-free contact for charge condition monitoring

电源模块/电子断路器

型号型号 787-1664/000-004

  • 紧凑型4通道电子断路器
  • 额定电流2-10 A,可通过旋转开关对单个通道进行调节;出厂默认设置: 2 A (关断情况下)
  • 每通道的接通电容 > 50000 μF
  • 每通道均有一个带灯三色按键,简化了设备的开关(on/off)、重启及现场诊断
  • 通道延时接通
  • 脱口和关断状态信息显示(通过数字量输出S3传递的简单组信息)
  • 通过脉冲序列传递通道状态信息
  • 远程输入重新接通所有已脱扣通道或者通过脉冲序列接通/关断特定通道

电源模块/预置供电电缆,-7-8-inch

型号型号 787-6716/9510-050

Features:

  • 7/8“ screw connection: Industry-proven connection technology for a large selection of different conductors
  • High protection class for safe field applications
  • Vibration- and shock-resistant via integrated locking mechanism
  • PUR coating

电源模块/电子断路器

型号型号 787-2861/800-000

Features:
  • Space-saving ECB with one channel
  • Reliably and safely trips in the event of an overload and short circuit on the secondary side
  • Switch-on capacity > 50,000 μF
  • Enables the use of an economical, standard power supply
  • Minimizes wiring via two voltage outputs and maximizes commoning options on both input and output sides (e.g., commoning of the output voltage on 857 and 2857 Series devices)
  • Status signal – adjustable as single or group message
  • Reset, switch on/off via remote input or local switch
  • Prevents power supply overload due to total inrush current thanks to time-delayed switching on during interconnected operation
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