Quick RRC H02+ Handheld Radio Transmitter 2 Channels 869Mhz QH02

Quick RRC H02+ Handheld Radio Transmitter 2 Channels 869Mhz QH02
  • Quick RRC H02+ Handheld Radio Transmitter 2 Channels 869Mhz QH02
  • Quick RRC H02+ Handheld Radio Transmitter 2 Channels 869Mhz QH02
  • Quick RRC H02+ Handheld Radio Transmitter 2 Channels 869Mhz QH02
  • Quick RRC H02+ Handheld Radio Transmitter 2 Channels 869Mhz QH02
  • Quick RRC H02+ Handheld Radio Transmitter 2 Channels 869Mhz QH02
  • Quick RRC H02+ Handheld Radio Transmitter 2 Channels 869Mhz QH02

Quick RRC H02+ Handheld Radio Transmitter 2 Channels 869Mhz QH02

Quick RRC H02+ Handheld Radio Transmitter 2 Channels microcontroller-operated functions, FSK modulation and carrier frequency 869.8 MHz, floating.
Price:
€102.03
Listing:
€136.03
You Save:
€34.00 (25%)

Description

Quick RRC H02+ Handheld Radio Transmitter 2 Channels 869Mhz

The RRC radio transmitter is a device which combined with a RRC radio receiver is used to control operation of devices or accessories installed on recreational crafts.
The RRC radio system is a generic radio control whose failed operation must not cause damage to people, animals or property.
The advantages offered by the RRC hand held radio transmitter are:
• Microcontroller-operated functions.
• Operating temperatures from -15°C to +70°C.
• FSK modulation and carrier frequency 869.8 MHz.
• LED indication of operational status, low battery and transmission feedback.
• Possibility to control more receivers with one transmitter.
• Two functions can be activated at the same time.
• IP67.
• Floating.
• Also working with rechargeable batteries.
• Keyboard backlighting by means of LEDs.
Technical data:
- Model: H02+;
- Number of channels: 2;
- Carrier frequency:
869.8 Mhz;
- Modulation: FSK;
- Power supply: 3 alkaline AAA batteries or rechargeble Nims;
- Absorption during transmission: 16 mA;
- Working temperature: -15 °C +70 °C;
- Dimensions in mm: 119x61x35 mm;

- Weight: 144 g;
- Protection degree: IP67;
- Complies with Directive: 2014/53/EU (RED).