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Ping2 Sonar Altimeter and Echosounder

Ping2 Sonar Altimeter and Echosounder

The Ping2 sonar is a single-beam echosounder that measures distances up to 100 meters (328 feet) underwater. A 25 degree beam width, 300 meter (984 foot) depth rating, and an open-source software interface make it a powerful tool for marine robotics. We recommend connecting with the BLUART USB to Serial and RS485 Adapter!

Blue Robotics
Torrance, US

Description

This is the updated version of our Ping sonar, the Ping2! It’s very similar to the original Ping but has an increased range to 100 meters and an improved physical design!

The Ping sonar is a multipurpose single-beam echosounder. It can be used as an altimeter for ROVs and AUVs, for bathymetry work aboard a USV, as an obstacle avoidance sonar, and other underwater distance measurement applications. Ping2 combines a compact form factor and 300 meter depth rating with an open-source user interface and Arduino, C++, and Python development libraries to create a powerful new tool for marine robotics!

An echosounder, like the Ping, is one of the simplest forms of underwater sonar. It operates by using a piezoelectric transducer to send an ultrasonic acoustic pulse into the water and then listens back for echoes to return. With that information, it’s able to determine the distance to the strongest echo, which is usually the ocean floor or a large object. It can also provide the full echo response (echo strength versus time) which can be plotted like the display of a fishfinder sonar.

The Ping uses a 115 kHz transducer frequency, away from those used on most boat echosounders to avoid interference. It has a measurement range of 100 meters (328 feet) and a measurement beamwidth of 25 degrees, perfect for applications on a rocking boat or for obstacle avoidance. An advanced bottom-tracking algorithm runs on the device to determine the distance to the seafloor, even in complicated situations with multiple echoes.

 

The updated Ping2 is housed in a rugged hard-anodized aluminum enclosure with a 1 meter (3.3 feet) cable with a pre-installed WetLink Penetrator. It has four threaded mounting holes on the back and comes with a mounting bracket and hardware to make it easy to mount on the BlueROV2. The included header pin to JST-GH adapter makes it easy to plug into the USB to Serial and RS485 Adapter.

The Ping can be connected to a microcontroller device, such as an Arduino, or to a computer through a BLUART USB to Serial adapter.

Once connected, we recommend getting started with Ping Viewer, an open-source application developed specifically for Ping devices. Ping-Viewer runs on Windows, Mac, and Linux and makes it easy to view the output, record data, and change settings on the Ping. The Ping sonar can be connected to Ping Viewer directly or over a network connection routed through BlueOS, so that you can use the Ping2 on the ROV without using any additional wires in the tether.

For those who wish to integrate the Ping into other systems, it communicates with a binary message format called the Ping-Protocol. We’ve made C++Arduino and Python libraries for the Ping-Protocol to get you up and running almost immediately.

Check out the Technical Details and Guides tabs above for more information!

Specifications

Physical Properties

Weight in air [kg]

0.18

Weight in water [kg]

0.1

Min. operation temperature [Ā°C}

0

Max. operation temperature [Ā°C}

30

Operating properties

Minimum range {m}

0.3

Maximum range {m}

70

Depth rating {m}

300m

Data flow

Continous

Power supply and communication

Power Supply [V]

5.5

Other specifications

Sound velocity input

Y

General

Year of initial development

2019

Year of latest version

2023

Acoustic properties

Beamwidth {deg}

30 degrees

Chirp

N

Max. Operating frequency [kHz]

115

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Daniƫl Haanskorf Peter Tapken Sjors Kloosterman

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