LC2303x-Vx – L1+L5 Mouse Receiver

LC2303x-Vx series products are high-performance dual-band GNSS receivers (also known as GNSS mouse) that are capable of tracking all global civil navigation systems (GPS, GLONASS, BDS, GALILEO, QZSS and IRNSS).

The GNSS mouse will acquire both L1 and L5 signals at a time while providing the better position accuracy. It can provide user with fast Time-To-First-Fix, superior sensitivity and low power consumption. Its far-reaching capability meets the sensitivity requirements of car navigation as well as other location-based applications.

Key Features:

  • Concurrent reception of L1 and L5 band signals
  • Multi-Constellation GPS, GLONASS, Galileo, BeiDou, QZSS and IRNSS (NavIC)
  • Support for SBAS ranging, WAAS, EGNOS, MSAS and GAGAN
  • Fast TTFF at low signal level
  • Free hybrid ephemeris prediction to achieve faster cold start
  • Smart jammer detection and suppression
  • Build-in micro battery to reserve system data for rapid satellite acquisition
  • Brand New Design with improved visibility on signal LEDs
  • LED indicator for GNSS fix or not
  • Waterproof

HAWK R2 (RTK + E-COMPASS)

HAWK R2 is L1+L5 dual-frequency RTK centimeter-level receiver designed for Pixhawk(PX4) platform-based UAV. The receiver is capable of concurrently tracking all global civil navigation systems, including GPS, GLONASS, GALILEO, BEIDOU and QZSS. It acquires both L1 and L5 signals at a time while providing the centimeter-level RTK positioning accuracy.

 

Besides the built-in lightweight helical antenna not only enhances RTK positioning stability, but also increases the flight time of the drone The fast Time-To-First-Fix, RTK convergence, superior sensitivity and low power consumption, the integrated 3-axis e-compass make sure the quality of its performance in the poor environment for GNSS positioning, make it become the best RTK receiver solution for Pixhawk(PX4) platform-based UAV.

Key Features:

  • Centimeter-level RTK high position accuracy+ integrated 3-axis e-compass
  • Concurrent reception of L1 and L5 band signals
  • Support GPS, GLONASS, BEIDOU, GALILEO, QZSS
  • Capable of SBAS (WAAS, EGNOS, MSAS, GAGAN)
  • Support 135-channel GNSS
  • Fast TTFF at low signal level
  • Free hybrid ephemeris prediction to achieve faster cold start
  • Default 5Hz, up to 10 Hz update rate*
  • Build-in super capacitor to reserve system data for rapid satellite acquisition
  • Build-in 3 axis compass function
  • Three LED indicator for Power, PPS and Data transmit
  • *Note: SBAS support 5Hz only.

MC-1612AD-DR – DR Module

LOCOSYS MC-1612AD-DR is using an Airoha AG3335AD chip, dual-frequency multi-constellation solution GNSS with sensor fusion dead reckoning module. It not only supports GPS, GLONASS, GALILEO, BEIDOU and QZSS, but also has inertial sensors (3-axis accelerometers and 3-axis gyros) to provide untethered dead reckoning function.

In addition to DR, an inertial sensor can detect the vehicular dynamics when it is attached firmly on the vehicle. Consequently, abnormal driving behaviors and the vehicle status can be detected and the alarm status will be enabled to remind the users. No requirement of installation orientation and automatic calibration function make it easy to use. With these features, MC-1612AD-DR can reduce position errors in multipath environment and continue to work where GNSS signals are poor or not available, such as tunnels and indoor parking lots, as well as deliver seamless navigation.

Key Features:

  • Build on high performance, low-power Airoha AG3335AD chip
  • Dual-frequency and multi-constellation satellite signals
  • Support GPS, GLONASS, GALILEO, BEIDOU and QZSS
  • Capable of SBAS (WAAS, EGNOS, MSAS, GAGAN)
  • Support 135-channel GNSS
  • Up to 10 Hz update rate
  • Built-in TDK-42670-P 6-axis MEMS (3-axis gyroscope and 3-axis accelerometer)
  • UDR Mode CEP ≤ 3% of distance travelled without GNSS
  • Alarm statuses detected by VMDS
  • No requirement for installation orientation
  • Small form factor 16 x 12.2 x 2.6 mm
  • SMD type with stamp holes; RoHS compliant