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...object Iron 8 x 8 x 1 mm Response frequency 1 kHz (Average value) Power supply voltage 12 to 24 VDC ripple (p-p) 10% max. Operating voltage range 10 to 30 VDC Leakage current 0.8 mA ...
...object Iron 8 x 8 x 1 mm Response frequency 1 kHz (Average value) Power supply voltage 12 to 24 VDC ripple (p-p) 10% max. Operating voltage range 10 to 30 VDC Leakage current 0.8 mA ...
...object Iron 8 x 8 x 1 mm Response frequency 1 kHz (Average value) Power supply voltage 12 to 24 VDC ripple (p-p) 10% max. Operating voltage range 10 to 30 VDC Leakage current 0.8 mA ...
...object Iron 8 x 8 x 1 mm Response frequency 1 kHz (Average value) Power supply voltage 12 to 24 VDC ripple (p-p) 10% max. Operating voltage range 10 to 30 VDC Leakage current 0.8 mA ...
...humidity range (Strage) 35 to 85 % (with no condensation) Insulation resistance 20 MΩ min. (500 VDC megger) Dielectric strength 1000 VAC 50/60 Hz 1 min Vibration resistance Destruction: 10 to...
...humidity range (Strage) 35 to 85 % (with no condensation) Insulation resistance 20 MΩ min. (500 VDC megger) Dielectric strength 1000 VAC 50/60 Hz 1 min Vibration resistance Destruction: 10 to...
...rt and ground: 100 MΩ min. Between each terminal and non-live-metallic part: 100 MΩ min. at 500 VDC Impulse withstand voltage Between each terminal of the same polarities: 2.5 kV Between each...
...rt and ground: 100 MΩ min. Between each terminal and non-live-metallic part: 100 MΩ min. at 500 VDC Impulse withstand voltage Between each terminal of the same polarities: 2.5 kV Between each...
...rt and ground: 100 MΩ min. Between each terminal and non-live-metallic part: 100 MΩ min. at 500 VDC Impulse withstand voltage Between each terminal of the same polarities: 2.5 kV Between each...
...rt and ground: 100 MΩ min. Between each terminal and non-live-metallic part: 100 MΩ min. at 500 VDC Impulse withstand voltage Between each terminal of the same polarities: 2.5 kV Between each...
...rt and ground: 100 MΩ min. Between each terminal and non-live-metallic part: 100 MΩ min. at 500 VDC Impulse withstand voltage Between each terminal of the same polarities: 2.5 kV Between each...
...rt and ground: 100 MΩ min. Between each terminal and non-live-metallic part: 100 MΩ min. at 500 VDC Impulse withstand voltage Between each terminal of the same polarities: 2.5 kV Between each...
...rt and ground: 100 MΩ min. Between each terminal and non-live-metallic part: 100 MΩ min. at 500 VDC Impulse withstand voltage Between each terminal of the same polarities: 2.5 kV Between each...
...rt and ground: 100 MΩ min. Between each terminal and non-live-metallic part: 100 MΩ min. at 500 VDC Impulse withstand voltage Between each terminal of the same polarities: 2.5 kV Between each...
...rt and ground: 100 MΩ min. Between each terminal and non-live-metallic part: 100 MΩ min. at 500 VDC Impulse withstand voltage Between each terminal of the same polarities: 2.5 kV Between each...
...rt and ground: 100 MΩ min. Between each terminal and non-live-metallic part: 100 MΩ min. at 500 VDC Impulse withstand voltage Between each terminal of the same polarities: 2.5 kV Between each...
...rt and ground: 100 MΩ min. Between each terminal and non-live-metallic part: 100 MΩ min. at 500 VDC Impulse withstand voltage Between each terminal of the same polarities: 2.5 kV Between each...
...rt and ground: 100 MΩ min. Between each terminal and non-live-metallic part: 100 MΩ min. at 500 VDC Impulse withstand voltage Between each terminal of the same polarities: 2.5 kV Between each...
...rt and ground: 100 MΩ min. Between each terminal and non-live-metallic part: 100 MΩ min. at 500 VDC Impulse withstand voltage Between each terminal of the same polarities: 2.5 kV Between each...
...rt and ground: 100 MΩ min. Between each terminal and non-live-metallic part: 100 MΩ min. at 500 VDC Impulse withstand voltage Between each terminal of the same polarities: 2.5 kV Between each...