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Product name Description Version LS20030 LS20032 GPS smart antenna module/usb,vcp,30x30mm GPS smart antenna module/ttl,9600bps,30x30mm GPS smart antenna module/rs232,9600bps,30x30mm GPS smart antenna module/ttl,9600bps,35x16mm Datasheet of GPS smart antenna module, LS20030~3 1.1 1 Introduction LS20030~3 series products are complete GPS smart antenna receivers, including an embedded antenna and GPS receiver circuits, designed for a broad spectrum of OEM system applications. The product is based on the proven technology found in LOCOSYS 66 channel GPS SMD type receivers MC-1513 that use MediaTek chip solution. The GPS smart antenna will acquire up to 66 satellites at a time while providing fast time-to-first-fix, one-second navigation update and low power consumption. It can provide you with superior sensitivity and performance even in urban canyon and dense foliage environment. Its far-reaching capability meets the sensitivity requirements of car navigation as well as other location-based applications. 2 Features MediaTek MT3339 solution Support 66-channel GPS Fast TTFF at low signal level Support AGPS? 2006 Page 1/13

Up to 10 Hz update rate Capable of SBAS (WAAS, EGNOS, MSAS) Build-in micro battery to reserve system data for rapid satellite acquisition (not in ) LED indicator for GPS fix or not fix (not in ) 3 Application Personal positioning and navigation Automotive navigation Marine navigation Fig 3-1 System block diagram of LS20030 Fig 3-2 System block diagram of 2006 Page 2/13

Fig 3-3 System block diagram of LS20032 4 GPS receiver Fig 3-4 System block diagram of Chip Frequency Channels Update rate Acquisition Time Position Accuracy Datum Max. Altitude Max. Velocity MediaTek MT3329 L1 1575.42MHz, C/A code Support 66 channels (22 Tracking, 66 Acquisition) 1Hz default, up to 10Hz Hot start (Open Sky) < 2s (typical) Cold Start (Open Sky) 35s (typical) Autonomous 3m (2D RMS) SBAS 2.5m (depends on accuracy of correction data) WGS-84 (default) < 18,000 m < 515 m/s 2006 Page 3/13

Protocol Support NMEA 0183 ver 3.01 9600 bps (1), 8 data bits, no parity, 1 stop bits (default) 1Hz: GGA, GLL, GSA, GSV, RMC, VTG Note 1: LS20030 is a USB device with virtual COM port (VCP). That is the application software can access LS20030 with any baud rate. 5 Software interface 5.1 NMEA output message Table 5.1-1 NMEA output message NMEA record GGA GLL GSA GSV RMC VTG Description Global positioning system fixed data Geographic position - latitude/longitude GNSS DOP and active satellites GNSS satellites in view Recommended minimum specific GNSS data Course over ground and ground speed GGA--- Global Positioning System Fixed Data Table 5.1-2 contains the values for the following example: $GPGGA,053740.000,2503.6319,N,12136.0099,E,1,08,1.1,63.8,M,15.2,M,,0000*64 Table5.1-2 GGA Data Format Name Example Units Description Message ID $GPGGA GGA protocol header UTC Time 053740.000 hhmmss.sss Latitude 2503.6319 ddmm.mmmm N/S indicator N N=north or S=south Longitude 12136.0099 dddmm.mmmm E/W Indicator E E=east or W=west Position Fix Indicator 1 See Table 5.1-3 Satellites Used 08 Range 0 to 12 HDOP 1.1 Horizontal Dilution of Precision MSL Altitude 63.8 mters Units M mters Geoid Separation 15.2 mters Units M mters Age of Diff. Corr. second Null fields when DGPS is not used Diff. Ref. Station ID 0000 Checksum *64 2006 Page 4/13

<CR> <LF> End of message termination Table 5.1-3 Position Fix Indicators Value Description 0 Fix not available or invalid 1 GPS SPS Mode, fix valid 2 Differential GPS, SPS Mode, fix valid 3-5 Not supported 6 Dead Reckoning Mode, fix valid GLL--- Geographic Position Latitude/Longitude Table 5.1-4 contains the values for the following example: $GPGLL,2503.6319,N,12136.0099,E,053740.000,A,A*52 Table 5.1-4 GLL Data Format Name Example Units Description Message ID $GPGLL GLL protocol header Latitude 2503.6319 ddmm.mmmm N/S indicator N N=north or S=south Longitude 12136.0099 dddmm.mmmm E/W indicator E E=east or W=west UTC Time 053740.000 hhmmss.sss Status A A=data valid or V=data not valid Mode A A=autonomous, D=DGPS, E=DR Checksum *52 <CR> <LF> End of message termination GSA---GNSS DOP and Active Satellites Table 5.1-5 contains the values for the following example: $GPGSA,A,3,24,07,17,11,28,08,20,04,,,,,2.0,1.1,1.7*35 Table 5.1-5 GSA Data Format Name Example Units Description Message ID $GPGSA GSA protocol header Mode 1 A See Table 5.1-6 Mode 2 3 See Table 5.1-7 ID of satellite used 24 Sv on Channel 1 ID of satellite used 07 Sv on Channel 2.. 2006 Page 5/13

ID of satellite used Sv on Channel 12 PDOP 2.0 Position Dilution of Precision HDOP 1.1 Horizontal Dilution of Precision VDOP 1.7 Vertical Dilution of Precision Checksum *35 <CR> <LF> Table 5.1-6 Mode 1 End of message termination Value M A Description Manual- forced to operate in 2D or 3D mode Automatic-allowed to automatically switch 2D/3D Table 5.1-7 Mode 2 Value Description 1 Fix not available 2 2D 3 3D GSV---GNSS Satellites in View Table 5.1-8 contains the values for the following example: $GPGSV,3,1,12,28,81,285,42,24,67,302,46,31,54,354,,20,51,077,46*73 $GPGSV,3,2,12,17,41,328,45,07,32,315,45,04,31,250,40,11,25,046,41*75 $GPGSV,3,3,12,08,22,214,38,27,08,190,16,19,05,092,33,23,04,127,*7B Table 5.1-8 GSV Data Format Name Example Units Description Message ID $GPGSV GSV protocol header Total number of messages 1 3 Range 1 to 3 Message number 1 1 Range 1 to 3 Satellites in view 12 Satellite ID 28 Channel 1 (Range 01 to 32) Elevation 81 degrees Channel 1 (Range 00 to 90) Azimuth 285 degrees Channel 1 (Range 000 to 359) SNR (C/No) 42 db-hz Channel 1 (Range 00 to 99, null when not tracking) Satellite ID 20 Channel 4 (Range 01 to 32) Elevation 51 degrees Channel 4 (Range 00 to 90) Azimuth 077 degrees Channel 4 (Range 000 to 359) SNR (C/No) 46 db-hz Channel 4 (Range 00 to 99, null when not tracking) Checksum *73 <CR> <LF> End of message termination 2006 Page 6/13

1. Depending on the number of satellites tracked multiple messages of GSV data may be required. RMC---Recommended Minimum Specific GNSS Data Table 5.1-9 contains the values for the following example: $GPRMC,053740.000,A,2503.6319,N,12136.0099,E,2.69,79.65,100106,,,A*53 Table 5.1-9 RMC Data Format Name Example Units Description Message ID $GPRMC RMC protocol header UTC Time 053740.000 hhmmss.sss Status A A=data valid or V=data not valid Latitude 2503.6319 ddmm.mmmm N/S Indicator N N=north or S=south Longitude 12136.0099 dddmm.mmmm E/W Indicator E E=east or W=west Speed over ground 2.69 knots True Course over ground 79.65 degrees Date 100106 ddmmyy Magnetic variation Variation sense degrees E=east or W=west (Not shown) Mode A A=autonomous, D=DGPS, E=DR Checksum *53 <CR> <LF> End of message termination VTG---Course Over Ground and Ground Speed Table 5.1-10 contains the values for the following example: $GPVTG,79.65,T,,M,2.69,N,5.0,K,A*38 Table 5.1-10 VTG Data Format Name Example Units Description Message ID $GPVTG VTG protocol header Course over ground 79.65 degrees Measured heading Reference T True Course over ground degrees Measured heading Reference M Magnetic Speed over ground 2.69 knots Measured speed Units N Knots Speed over ground 5.0 km/hr Measured speed Units K Kilometer per hour 2006 Page 7/13

Mode A A=autonomous, D=DGPS, E=DR Checksum *38 <CR> <LF> End of message termination 5.2 Proprietary NMEA input message Please refer to MTK proprietary message. 6 LED indicator The red LED is an indicator of GPS positioning status. In continuous power mode, it flashes once per second when position is fixed. Otherwise it is off. The timing in detail is as below. Fig 6.1 LED indicator of GPS positioning status 7 Pin assignment and descriptions Fig 7.1 Pin assignment of LS20030, and LS20032 2006 Page 8/13

Fig 7.2 Pin assignment of LS20030 Pin # Name Type Description 1 VBUS P USB power input 2 D- D- line 3 D+ D+ line 4 GND P Ground 5 Shield P Ground Pin # Name Type Description 1 VCC P Power input 2 RX I Data input (TTL level) 3 TX O Data output (TTL level) 4 GND P Ground 5 GND P Ground LS20032 Pin # Name Type Description 1 VCC P Power input 2 RX I Data input (RS232 level) 3 TX O Data output (RS232 level) 4 GND P Ground 5 GND P Ground 2006 Page 9/13

Pin # Name Type Description 1 VCC P Power input 2 GND P Ground 3 TX O Data output (TTL level) 4 RX I Data input (TTL level) 5 GPS LED O LED indicator. See Fig 6.1 6 VBACKUP P Backup battery supply voltage 8 DC & Temperature characteristics 8.1 DC Electrical characteristics Parameter Symbol Product Min. Typ. Max. Units Input voltage VCC LS20030 LS20032 Input Backup Battery Voltage VBACKUP 2 4.3 V Input current High Level Input Voltage Low Level Input Voltage High Level Input Current Low Level Input Current High Level Output Voltage Low Level Output Voltage High Level Output Current Low Level Output Current Icc VI H VI L I I H I I L VOH VOL IOH IOL LS20030 LS20032 4.75 3 4 3 5 3.3 5 3.3 29 (1) 29 (1) 34 (1) 32 (1) 5.25 4.2 6 4.2 2.0 3.6-0.3 0.8-1 1-1 1 1. Measured when position fix is available and input voltage is 3.3V. This value may vary with short period test. 2.4 2 2 0.4 V ma V V ua ua V V ma ma 2006 Page 10/13

8.2 Temperature characteristics Parameter Symbol Product Min. Typ. Max. Units Operating Temperature Topr LS20030~ -30-85 Storage Temperature Tstg LS20030~ -40 25 85 9 Mechanical specification LS20030,, LS20032 2006 Page 11/13

The 6-pin connector is belonging to Wafer series connector and its pitch is 1.0mm. There is a supplier called Cherng Weei Technology Corp. http://www.cwe.com.tw and its part number is CSH-W10R-06TR for you reference. 2006 Page 12/13

Document change list Revision 1.0 First release on Oct. 25, 2007. Revision 1.0 to Revision 1.1 (July 20, 2009) Changed GPS chip from MT3318 to MT3329 on page 3. The units with date code after 0924 (on MC-1513) will be changed to new chip. Changed the picture of on page 1. Added Support AGPS on page 1. Changed Fig 3-1 on page 2. Changed channels from 32 to 66 on page 3 Changed update rate from up to 5Hz to up to 10Hz on page 3. Changed hot start time from 2s (typical) to <2s (typical) on page 3. Changed cold start time from 36s to 35s on page 3. Added Note 1 on page 4. Changed Input Battery Backup Voltage from 1.1V~6.0V to 2.0V~4.3V on page 10. Changed typical current of LS20030 from 47mA to 29mA on page 10. Changed typical current of from 41mA to 29mA on page 10. Changed typical current of LS20032 from 46mA to 34mA on page 10. Changed typical current of from 44mA to 32mA on page 10. Changed operation temperature of from -20 ~ 65 to -30 ~ 85 on page 11. Changed storage temperature of from -30 ~ 75 to -40 ~ 85 on page 11. 2006 Page 13/13