Teknik Belgeler
Özellikler
Marka
EnOceanÜrün Tipi
RF Modülü
Alt Tip
Verici
Bileşen Tipi
Modül
Modülasyon Tekniği
ASK
Maksimum RF Veri Hızı
125kbps
Maksimum Çıkış Gücü
5dBm
Frekans
902.875MHz
Minimum Çalışma Sıcaklığı
-25°C
Maksimum Çalışma Sıcaklığı
65°C
Genişlik
40 mm
Uzunluk
40mm
Yükseklik
11.2mm
Standartlar/Onaylar
EN 60669/VDE 0632
Seri
PTM
Ürün Ayrıntıları
Pushbutton Transmitter Module PTM 210
The PTM 210 ISM-band self-powered radio transmitter module enables the implementation of wireless remote controls without batteries. Power is provided by a built-in electro-dynamic power generator (energy harvester). When the energy bow is pushed down, electrical energy is created and a RF telegram is transmitted including a 32-bit module ID. Releasing the energy bow generates different telegram data, so every PTM telegram contains the information that the bow was pressed or released. In addition, the radio telegram transmits the operating status of 4 contact nipples when activating the bow.
Batteryless Wireless Applications
EnOcean manufacture a range of transmitter and receiver products that operate in the 868MHz area of the ISM band. These devices are typically very efficient in terms of the power supply requirements and are used to send short messages.,The advantages of EnOcean technology are clearly illustrated through applications such as electrical control which eliminates the need for external wired connections and batteries.,Suitable for limitless applications where maintenance free and flexible switching needs to be installed without drilling, cabling and reconstruction costs.,Power in the transmitters is also created for "FREE" using energy harvesting techniques to create energy from the push button switches or solar power for its sensors transmitters.,Radio systems based around EnOcean technology can be formed into star, mesh, or hybrid topology networks, and are a good complement to ZigBee systems, typically in building automation and remote sensor applications.
Stok bilgileri geçici olarak kullanılamıyor.
2.236,09 TL
2.236,09 TL Each (KDV Hariç)
2.683,31 TL
2.683,31 TL Each KDV Dahil
1
2.236,09 TL
2.236,09 TL Each (KDV Hariç)
2.683,31 TL
2.683,31 TL Each KDV Dahil
Stok bilgileri geçici olarak kullanılamıyor.
1
Teknik Belgeler
Özellikler
Marka
EnOceanÜrün Tipi
RF Modülü
Alt Tip
Verici
Bileşen Tipi
Modül
Modülasyon Tekniği
ASK
Maksimum RF Veri Hızı
125kbps
Maksimum Çıkış Gücü
5dBm
Frekans
902.875MHz
Minimum Çalışma Sıcaklığı
-25°C
Maksimum Çalışma Sıcaklığı
65°C
Genişlik
40 mm
Uzunluk
40mm
Yükseklik
11.2mm
Standartlar/Onaylar
EN 60669/VDE 0632
Seri
PTM
Ürün Ayrıntıları
Pushbutton Transmitter Module PTM 210
The PTM 210 ISM-band self-powered radio transmitter module enables the implementation of wireless remote controls without batteries. Power is provided by a built-in electro-dynamic power generator (energy harvester). When the energy bow is pushed down, electrical energy is created and a RF telegram is transmitted including a 32-bit module ID. Releasing the energy bow generates different telegram data, so every PTM telegram contains the information that the bow was pressed or released. In addition, the radio telegram transmits the operating status of 4 contact nipples when activating the bow.
Batteryless Wireless Applications
EnOcean manufacture a range of transmitter and receiver products that operate in the 868MHz area of the ISM band. These devices are typically very efficient in terms of the power supply requirements and are used to send short messages.,The advantages of EnOcean technology are clearly illustrated through applications such as electrical control which eliminates the need for external wired connections and batteries.,Suitable for limitless applications where maintenance free and flexible switching needs to be installed without drilling, cabling and reconstruction costs.,Power in the transmitters is also created for "FREE" using energy harvesting techniques to create energy from the push button switches or solar power for its sensors transmitters.,Radio systems based around EnOcean technology can be formed into star, mesh, or hybrid topology networks, and are a good complement to ZigBee systems, typically in building automation and remote sensor applications.
