Techniniai Dokumentai
Specifikacijos
Markė
WermaTvirtinimo tipas
Panel Mount
Maximum Supply Voltage
230V ac
Sound Level
85dB
Drive Type
Internal
Tone Type
Continuous
Diameter
43mm
Aukštis
43mm
Matmenys
42.5 x 29.8mm
Minimali darbinė temperatūra
-20°C
Maksimali darbinė temperatūra
+60°C
Maximum Frequency
2.4kHz
Supply Current
20mA
Kilmės šalis
Germany
Produkto Aprašymas
Sound an alert using this piezo buzzer component from WERMA. It delivers a crisp tone with a loud noise level of 85dB to catch workers' attention. This item is a natural fit for your control cabinet, thanks to fuss-free panel mounting and compact dimensions of 42 (diameter) x 42mm (D). Its robust thermoplastic housing makes it resistant to wear and abrasion for a longer product life.
This type of audio signalling device works using piezoelectricity, which generates an electric charge and corresponding tone when placed under mechanical stress.
Sandėlio informacija laikinai nepasiekiama.
€ 61,00
€ 61,00 už 1 vnt. (be PVM)
€ 73,81
€ 73,81 už 1 vnt. (su PVM)
1

€ 61,00
€ 61,00 už 1 vnt. (be PVM)
€ 73,81
€ 73,81 už 1 vnt. (su PVM)
Sandėlio informacija laikinai nepasiekiama.
1

Techniniai Dokumentai
Specifikacijos
Markė
WermaTvirtinimo tipas
Panel Mount
Maximum Supply Voltage
230V ac
Sound Level
85dB
Drive Type
Internal
Tone Type
Continuous
Diameter
43mm
Aukštis
43mm
Matmenys
42.5 x 29.8mm
Minimali darbinė temperatūra
-20°C
Maksimali darbinė temperatūra
+60°C
Maximum Frequency
2.4kHz
Supply Current
20mA
Kilmės šalis
Germany
Produkto Aprašymas
Sound an alert using this piezo buzzer component from WERMA. It delivers a crisp tone with a loud noise level of 85dB to catch workers' attention. This item is a natural fit for your control cabinet, thanks to fuss-free panel mounting and compact dimensions of 42 (diameter) x 42mm (D). Its robust thermoplastic housing makes it resistant to wear and abrasion for a longer product life.
This type of audio signalling device works using piezoelectricity, which generates an electric charge and corresponding tone when placed under mechanical stress.