
JIYI GPS Module for K++
Enhance your drone's navigation with the JIYI High-Precision GPS Module, specifically designed for K++ Flight Controllers. This module ensures accurate positioning, stable hovering, and reliable waypoint navigation. Essential for precision agriculture and industrial drone operations, it guarantees optimal performance and mission accuracy in demanding environments.
Features:
High-precision positioning and navigation: Provides highly accurate location data.
Rapid satellite acquisition: Quickly locks onto multiple satellite systems.
Stable hovering capability: Improves drone stability in flight.
Reliable waypoint execution: Ensures precise automated flight paths.
Integrated compass for heading: Offers accurate directional information.
Enhanced anti-interference design: Resists external signal disruptions.
Dedicated for JIYI K++ systems: Ensures seamless compatibility.
Robust, durable casing: Protects internal components in harsh conditions.
Compact and lightweight form factor: Easy integration onto drone frames.
Essential for autonomous operations: Enables complex automated missions.
Technical Specifications:
Model: JIYI GPS Module for K++
Satellite Systems Supported: GPS, GLONASS, BeiDou (BDS) Common for modern high-precision modules.
Positioning Accuracy: Typically <1m CEP (Circular Error Probable), often around 0.5-1.5m. (For RTK/PPK, it would be cm-level, but a standard GPS module will be meter-level.
Update Rate: 5Hz or 10Hz
Cold Start Time: < 45 seconds
Hot Start Time: < 5 seconds
Output Protocol: UART/Serial
Working Voltage: 5V DC
Power Consumption: Relatively low, e.g., <200mA.
Operating Temperature: -20°C to +60°C
Compass: Integrated
Dimensions: Varies, but usually compact
Weight: Lightweight for drone integration
Additional Details:
Manufacturer: JIYI UAV
Brand: JIYI
Generic Name: GPS Module || GNSS Receiver || Drone GPS || UAV Positioning Module || Navigation Sensor || Compass Module || Global Positioning System || Drone Location Tracker || RTK Ready (if applicable) || Autonomous Flight Sensor
Sold By: UAV Marketplace (an authorized seller of drone gear and accessories)
Ideal For: Agricultural Drones || Industrial Inspection Drones || Surveying & Mapping UAVs || Delivery Drones || Autonomous Flight Systems || Precision Farming Drones || Plant Protection Drones || JIYI K++ Flight Controller Users || Drone Research & Development || Custom Large Drone Builds
Package Details:
Includes:
1x JIYI High-Precision GPS Module for K++
Frequently Asked Questions:
Q1. What makes the JIYI GPS Module "high-precision" for drone applications?
Ans. The JIYI GPS Module achieves high precision through its ability to simultaneously track multiple satellite constellations, including GPS, GLONASS, and BeiDou. This multi-GNSS support increases the number of available satellites, leading to faster lock times, improved signal availability in challenging environments, and ultimately, more accurate and stable positioning for the drone, which is critical for precision tasks like agricultural spraying or mapping.
Q2. Is this GPS module essential for all types of drone operations, or primarily for autonomous flights?
Ans. While any drone benefits from accurate GPS for basic positioning and return-to-home functions, this high-precision JIYI GPS module is essential for autonomous flight operations. Tasks like waypoint navigation, precision spraying, automated mapping, or complex industrial inspections heavily rely on highly accurate and consistent positional data. For purely manual, line-of-sight flying, its full capabilities might not be utilized, but it still significantly enhances flight stability and safety features.
Q3. Does the JIYI GPS Module for K++ include a compass, and why is that important?
Ans. Yes, the JIYI GPS Module for K++ typically includes an integrated digital compass. The compass is crucial because it provides the flight controller with accurate heading information. While GPS gives the drone its location and speed, the compass tells it which direction it's pointing. This is vital for maintaining precise orientation, performing controlled turns, and ensuring that autonomous flight paths are executed accurately in the desired direction, preventing drift and improving overall flight control.