
New product on the market of satellite navigation!
Up-to-date GLONASS module NAVIA GL8088s used for detection the current coordinates and velocity of object in real time and off-line mode, to form second timestamp and exchanging with external devices via RS232 serial ports.
The operating principle of the receiver is based on parallel receiving and processing of signals from navigation GLONASS SC by 32 counting channels in frequency band L1 (CT or PT code), GPS on L1 frequency (C/A code) and GALILEO on E1 frequency.
Navigation receiver NAVIA GL8088s made on the base of the latest custom chipset STA8088FG, included in a family of so-called “systems on the crystal» STA8088.
The receiver has a high sensitivity, low power consumption and small start time.
GLONASS module has 2 channels and 32 channels of capture for tracking the satellite signals, which allows the simultaneous capture satellite signals, groups of GLONASS and GPS.
The receiver has a built-in noise suppression, which allows him to work in difficult noise conditions.
GLONASS-module Navia GL8088s both simultaneously and independently uses the signals GLONASS and GPS, as well as differential corrections. This solution provides a solution navigational task in a complex environment where the signals of one system is not enough to get the coordinates. Low power consumption (<120 mW), high sensitivity (-160 dBm), combined work in the GLONASS / GPS, a little while “hot” start (4 seconds), the ability to order different form factors – everything to make the module Navia GL8088s take the lead market navigation systems.
NAVIA GL8088s in high demand in various applications: monitoring and fleet management, traffic management, emergency response, navigation systems, etc.
Key features of the new GLONASS module NAVIA GL8088s:
It is possible to manufacture the modules in other (custom) form factors for eminent customers.
Technical characteristics
| Number of tracking channels | 32 |
| Number of capturing channels | 2 |
| GPS frequency band, MHz | 1575,42±0,5 |
| GLONASS frequency band, MHz | 1597,5…1605,9MHz |
| Coordinates calculation tolerance(at confidence probability level 0.67), maximum, m | 3 in plan 4 by height |
| Plan velocity calculation tolerance (at confidence probability level 0.67), maximum, m/s | 0,05 |
| Tolerance of 1PPS distribution (at the gauss 70% distribution level) to time scales GPS, GLONASS, UTC, UTC (SU), verage, ns | +-20 |
| Mean time to the first position measurement, at signal level –130 dBm, s | 35 cold start 34 warm start 1 hot start 1 recapturing |
| Detection sensitivity, minimum, dBm | -145 cold start -145 warm start -153 hot start |
| Satellite positioning prediction, days | 5 – stand alone 7 – external data source |
| Volume of statellites almanac and ephemeris data transmitted from the external source, KBytes |
2 |
| Tracking sensitivity, minimum, dBm | -160 in statics -157 in dynamics -153 in dynamics (error 30 m maximum) |
| Jammer barrier system | 3 level, built-in |
| Output data updating rate, Hz | 0.1…1, 5 |
| Dynamics, maximum Acceleration, g rate of acceleration change, g/s |
3
1 |
| Maximum velocity, m/s | 515 |
| Maximum height, m | 18,000 |
| Microprocessor core | ARM946 |
| Communications interface | RS232 3,3 V LVCMOS |
| 1PPS signal Level duration, ms |
3.3 V LVCMOS 500 |
| Main supply voltage, V | 3,0…3,6 |
| Backup supply voltage, V | 2,0…3,6 |
| Useful current in 3.3 V circuit, standard, mA | searching 55 (GPS), 75 (GLONASS+GPS) tracking 35 (GPS), 55 (GLONASS+GPS) |
| Useful current in external backup battery circuit, standard, µA | 50 |
| Dimensions (length х width х height), mm³ | 35,5х33,2х3,8 |
| Weight, maximum, g | 10 |
| Operating temperatures range, ºС | -50°C…+90°C |