Storewide 50% Discount! Shop Now !
Parallax SIM33EAU 3.3-5V GPS Module Sale!

Parallax SIM33EAU 3.3-5V GPS Module

$39.95 $31.96

Whether your project needs positional accuracy, high-speed movement estimations, high altitude measurements, fast update rates, or just plain ease of use, the SIM33EAU GPS Module has you covered.Parallaxs SIM33EAU GPS Module embeds the capable SIM33EAU GPS

  • Zero-Risk Assurance: Full-Refund Policy
  • Free Delivery on 30+ Orders
  • 60-Day Hassle-Free Returns
qty:
SKU: WKY76218207710 Category:

Whether your project needs positional accuracy, high-speed movement estimations, high altitude measurements, fast update rates, or just plain ease of use, the SIM33EAU GPS Module has you covered.

Parallaxs SIM33EAU GPS Module embeds the capable SIM33EAU GPS device in a project-friendly board. Ultra compact, the SIM33EAU device has a built-in low-noise amplifier and patch antenna so there is no need for an extra antenna on the board.

The SIM33EAU GPS device gives your project the ability to read its position on the earthgiven a clear view of the skyusing global navigation satellite systems such as GPS, GLONASS, Galileo or QZSS. Its default settings provide all the capabilities you would expect from a GPS receiver: location fix, speed, heading, altitude measurements, and atomic date and time. Advanced users can re-configure these settings for specific needs.

Parallaxs module makes the SIM33EAU device easily accessible to students, hobbyists, and developers. An onboard voltage regulator and buffer circuitry provide signal conditioning for use with 3.3 V or 5 V microcontrollers. Power and satellite fix LEDs let you know when your GPS module is ready and receiving data. A supercapacitor preserves almanac data for more than two hours if power is disconnected. The breadboard-friendly 7-pin header and mounting holes make for quick, solder-free integration into a project.

SIM33EAU GPS Module Features:

  • Ready for use with 3.3 V or 5 V microcontrollers
  • Power and satellite fix LEDs for quick visual status
  • Supercapacitor preserves almanac data for more than 2 hours
  • Supports PMTK and NMEA 0183 standard protocols
  • Receiver supports GPS, GLONASS, GALILEO, QZSS, SBAS ranging (WAAS/EGNOS/MSAS/GAGAN), AGPS, and EASY/EPO orbit prediction
  • 33 tracking & 99 acquisition channels with jamming elimination
  • Indoor and outdoor multi-path detection and compensation
  • Supported by Propeller C Simple Libraries and BlocklyProp visual programming
  • PCB assembled, tested, and completed in Rocklin, California

Application Ideas:

  • Robot navigation
  • Fleet tracking
  • Heading and speed measurements
  • Weather balloon tracking

Note: Propeller C code for this GPS module requires Simple Libraries update 07.02.2019 or later.

SIM33EAU GPS Module Specifications:

  • Power: 3.3 V 5 V*, 60 mA max (typically 45 mA)
  • Standby power: Typically 165 A at 3.3 VIN, 287 A at 5 VIN
  • Supercapacitor data preservation time for hot start: >2 hours
  • Channels: 33 tracking, 99 acquisition
  • Typical TTFF (Time to first fix): Cold 31 s, Warm 26 s, Hot < 1 s, EPO Assist 13 s
  • Protocols: NMEA and PMTK
  • Communication: TTL Asynchronous Serial UART 4800115200 bps, 9600 default
  • Digital I/O: Enable, 3D-Fix and Timemark (1 PPS Pulse Per Second)
  • Navigation update rate: up to 10 Hz
  • Horizontal position accuracy: 2.5 meter CEP (Circular Error Probable)
  • Speed accuracy: 0.1 meter/second
  • Operating temperature range: -40 to +185 F (-40 to +85 C)
  • Maximum altitude: 80 km (~50 mi); upper mesosphere
  • Dimensions: 1.0 x 1.7 x 0.36 in (25.4 x 43.2 x 9.1 mm)

Cost: $25

Free Shipping

We offer free shipping on orders over $30. Please check the free - shipping eligibility at checkout.

Delivery Time:

It usually takes [3-5] business days for standard shipping. Please note that this is an estimated time frame and may be affected by local holidays, and unforeseen circumstances.

Reviews

There are no reviews yet.

Be the first to review “Parallax SIM33EAU 3.3-5V GPS Module”

Your email address will not be published. Required fields are marked *