RF401A CAMPBELL | Alldatasheet

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900 MHz, 250 mW, Spread Spectrum Radios

campbellsci.eu/rf401a_rf411a Overview The RF401A and RF411A radios can be used for general purpose wireless data communications and support point-to-point and point-to-multipoint datalogger communications. Spread spec- trum radios can serve as a field modem/radio while connected to the datalogger or as a base station modem/radio while connect- ed to a PC. They can also serve as a PakBus RF router/repeater. Spread spectrum radios spread the normally narrowband infor- mation signal over a relatively wide band of frequencies. This allows the communications to be highly immune to noise and interference from RF sources such as pagers, cellular phones and multipath. a The RF401A and RF411A radios reduce susceptibility to RF interference from other spread spectrum devices by provid- ing user-selectable frequency hopping patterns. Benefits and Features Long range, wireless communications between devices Hassle-free operation in many countries where license free operation is allowedb Low average power consumption Optimized for Campbell Scientific PakBus networking Improved RF efficiency when using PakBus protocol compared to other third party solutions Low-cost, stand-alone operation when a dedicated PakBus RF repeater is needed Able to connect to a datalogger or other peripherals for Internet, radio, or telephone backhaul More info: +44(0) 1509 828 888 a The operating frequency band of this radio modem may be shared with other non-licensed services such as cordless telephones and with licensed services including emergency broadcast and air-traffic control. b Spread spectrum radios, like all FCC Part 15 devices, are not allowed to cause harmful interference to licensed radio communications and must accept any interference that they receive. Most Campbell Scientific users operate in open or remote locations where interference is unlikely. If there is a problem, interference can be reduced using methods such as moving the device, reorienting or using a different type of antenna, or adding RF shielding.

© 2014, 2015 Campbell Scientific October 2, 2015 Specifications Type: Frequency Hopping Spread Spectrum (FHSS) Transceiver RS-232 Baud Rate: 1200 bps to 115200 bps Channel Capacity: 7 hop sequences share 25 frequencies Frequency Hopping Patterns: 7 different selectable patterns Frequency Control: Direct FM Receiver Sensitivityc: -109 dBm Operating Temperature Range Standard: -25° to 50°C Extended: -40° to 85°C LEDs: Power on, TX, RX, diagnostics Transmitter Power Output: 5 mW to 230 mW, software configurable Power: 9 to 16 Vdc Average Current Drain Transmit: < 80 mA (250 mW TX Power) Receive: 15 mA Stand-by: < 0.5 mA (depending on power saving mode) Certifications United States (FCC Part 15.247): MCQ-XB900HP Industry Canada (IC): 1846A-XB900HP RoHS compliant C-TICK Australia: Yes, N3013 (RF411A only) Antenna Connector: Reverse polarity SMA (RPSMA) USB Type B Jack RS-232 Connector: 9-pin D-sub female (4 wire: Tx, Rx, CTS, GND) CS I/O Connector: 9-pin D-sub male Power Connector: 2.5 mm DC power jack Dimensions cCampbell Scientific protocols will issue retries wherever a bit error occurs. dDimension are from the tip of antenna connector to other side of case, and from the bottom of case to the top of DB9 connector jack screw. The width includes the thickness of the screw heads on the screws that hold the case together. System Components Radios A spread spectrum radio needs to be at both the base station and field site. The chart below shows the spread spectrum radios that each model can communicate with: Model Where Used Frequency Communicates With RF401A U.S., Canada 910 to 918 MHz RF401A, RF401, RF400, RF430, CR206(X), CR205, AVW206 RF411A Australia, New Zealand 920 to 928 MHz RF411A, RF411, RF410, RF431, CR211(X), CR210, AVW211 Powering the Radio At the base station, the radio typically uses ac power that is either supplied by the #15966 wall charger or through the PC via the USB port and cable. At the field site, the radio is typically powered by the datalogger through the CS I/O port. The #14291 Field Cable can also be used to connect the radio to an appropriate 12 Vdc power supply. This field cable is required when the radio is con- nected to the datalogger’s RS-232 port instead of the CS I/O port or when the datalogger was purchased before December 1997. Antennas Campbell Scientific offers a variety of antennas for this radio. The following inexpensive, omnidirectional whip antennas connect directly to the radio (no cable required) and can transmit short distances (up to 1 mile). 14204 0 dBd, 1/2 wave with right-angle joint 15731 0 dBd, 1/4 wave with 5.1 cm (2 in) length 15730 0 dBd, 1/4 wave with right-angle joint The 15970 dipole antenna includes adhesive for window or wall mounting and a cable for connecting to the radio. Our higher gain #14221 omnidirectional and #14201 Yagi antennas require a cable to connect them to the radio. The #31314 surge protector is available for sus- ceptible to lightning or electrostatic buildup or when the cable length needs to be longer than 3 m (10 ft), as measured between the transceiver and the antenna. 80 Hathern Road, Shepsh ed, LE12 9GX, UK | +(0)15090 828888 | sales@campbellsci.co.uk | www.campbellsci.eu UK | AUSTRALIA | BRAZIL | CANADA | CHINA | COSTA RICA | FRANCE | GERMANY | SE ASIA | SOUTH AFRICA | SPAIN | USA