The Things Stack AWS Launcher is the solution to build and operate a private LoRaWAN network within your AWS environment, using AWS CloudFormation. Manage and monitor your remote devices and gateways with an elaborate toolset. Route telemetry data securely to your cloud application, and quickly configure actions in AWS IoT Core.
The Things Stack saves developers and integrators time and headache: through well-documented APIs and SDKs, feature rich web interface, comprehensive debugging tools, per device LoRaWAN network layer settings, configurable channel plans and a trusted device activation platform. The Things Stack supports all LoRaWAN protocol versions (including 1.0.4 and 1.1), all devices classes (A, B and C), all LoRaWAN Regional Parameters for sub-GHz and 2.4 GHz, as well as various gateway packet forwarders (including LoRa Basics Station).
Highlights
Deploy a LoRaWAN network in minutes
Gain realtime insight in gateway and device behavior through streaming events
API-first platform that integrates seamlessly with your systems
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This listing bills you by usage based on how many LoRaWAN devices you register on the network, measured in host hours. The 22 tiers form a single scaling ladder, from up to 1,000 devices at Tier 1 through 100,000 devices at Tier 21. Tier 22 covers fleets over 100,000 devices and grows in increments of 10,000. You move up a tier as your registered device count rises, so pricing tracks the actual size of your deployment. The base license includes capacity for 1,000 devices before pay-as-you-go device charges apply.
Top-of-mind questions for buyers
What counts as a registered device for billing purposes?
A device is any LoRaWAN end device you register on the network server. Your tier is set by how many devices you have registered, not by traffic volume. Your base license covers up to 1,000 devices. Beyond that, added devices move you into higher tiers on a pay-as-you-go basis.
What happens to my cost when my device count crosses a tier boundary?
You move up to the next tier as your registered device count rises. The transition tracks your actual deployment size. Each tier covers a device ceiling, so registering more devices places you in the tier that fits your total count. You are billed based on the actual number of devices registered.
How am I charged as my fleet grows past 100,000 devices?
Tiers 1 through 21 cover fleets up to 100,000 devices along a fixed ladder. Tier 22 handles fleets over 100,000 devices and scales in increments of 10,000. So each additional block of 10,000 devices adds capacity beyond the 100,000 mark under this final tier.
www.thethingsindustries.com
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The Things Enterprise Stack launches on a new EC2 instance. Relational data is stored in a new Amazon RDS instance, state with low latency access is stored in a new Amazon ElastiCache instance and user uploaded profile pictures are stored in an S3 bucket. You can specify existing snapshots for Amazon RDS and ElastiCache to migrate from a previous depoyment. You can also specify an existing S3 bucket for profile pictures.
CloudFormation Template (CFT)
AWS CloudFormation templates are JSON or YAML-formatted text files that simplify provisioning and management on AWS. The templates describe the service or application architecture you want to deploy, and AWS CloudFormation uses those templates to provision and configure the required services (such as Amazon EC2 instances or Amazon RDS DB instances). The deployed application and associated resources are called a "stack."
After deploying The Things Stack for LoRaWAN, click outputs once the stack finishes being created to go to the quick start documentation. This contains instructions to map your domain name to the IP address, steps to configure gateways and devices, and instructions to connect to the EC2 instance via SSH.
AWS Support is a one-on-one, fast-response support channel that is staffed 24x7x365 with experienced and technical support engineers. The service helps customers of all sizes and technical abilities to successfully utilize the products and features provided by Amazon Web Services.
Supports all LoRaWAN protocol versions including 1.0.4 and 1.1, all device classes (A, B, and C), and all LoRaWAN Regional Parameters for sub-GHz and 2.4 GHz bands
Gateway and Device Management
Manages and monitors remote devices and gateways with per-device LoRaWAN network layer settings, configurable channel plans, and support for various gateway packet forwarders including LoRa Basics Station
Real-time Event Streaming
Provides real-time insight into gateway and device behavior through streaming events for monitoring and debugging
API and SDK Integration
Offers well-documented APIs and SDKs with API-first platform architecture for seamless integration with external systems and applications
AWS CloudFormation Deployment
Deploys within AWS environment using AWS CloudFormation with secure telemetry data routing to AWS IoT Core and configurable actions
IoT Data Collection Infrastructure
Access to IoT infrastructure for collecting data from remote and hard-to-reach locations with perpetual ownership of collected data
AWS IoT Core Integration
SaaS API connector that enables connection of remote field data endpoints to AWS IoT Core
Device Administration Platform
SaaS software platform for configuring IoT endpoints and displaying collected data
Industrial-Grade Sensor Support
Support for 14 types of industrially-rated sensors including temperature, humidity, vibration, pressure, current, and motion detection
Multi-Stream Data Subscription
Capability to subscribe to multiple concurrent IoT datastreams with unlimited usage of Asset Monitoring IoT devices
Zero-Touch Device Provisioning
Automatically and securely connect devices to AWS IoT with credential management and zero-touch provisioning capabilities within minutes.
Edge Computing Runtime
Preinstalled AWS IoT Greengrass v2 for local data processing and edge computing with ability to send data to AWS IoT Core.
Industrial Protocol Support
Support for multiple industrial protocols including Modbus, OPC UA, S7, FANUC, EtherNet/IP, TwinCAT, MQTT, and BLE for equipment connectivity.
No-Code Edge Processing Framework
Eurotech Everyware Software Framework (ESF) with industrial protocol pack enabling no-code edge processing and device integration.
Device Management and Monitoring
Secure device monitoring, remote control capabilities, scheduled jobs, and alert functionality through centralized management interface.
Centralized platform has reduced field visits and has enabled remote control of desert devices
Reviewed on Jul 02, 2026
Review provided by PeerSpot
What is our primary use case?
The centralization of the technological infrastructure is the main benefit, since with a gateway, we connect it to TTN and we also connect our LoRaWAN devices to this same platform. This makes everything easier in order to connect and to see the uplinks and downlinks.
For example, in a mining company, we installed a gateway via LoRaWAN to this platform and we built some devices that were going to pull data from flow meters that were in the desert. The device would request the data, do its uplink to the gateway, and then we could also send messages from the gateway to the devices through the platform so they could be restarted or to send commands in order to obtain information.
What is most valuable?
The best feature is the ability to manage all the devices, since you can go to the site or the project in which you register the devices, and you can review the uplinks and decode the data that they are sending. After I changed jobs, before I left, they were working on the FOTA topic. That really excited me because we also had to go out to the field a lot to update the firmware of our devices, and if this has been implemented or is going to be implemented, it would be a great feature to implement FOTA for massive firmware uploading via LoRaWAN.
The platform has simplified things a lot for me because if a client tells me that a device is not sending data, I can go to the platform, see what time it last sent something and what it last sent. Sometimes they send error codes, and all this diagnosis can be done remotely. It is not necessary to go to the field to see what happened to the device. These things save us time and allow us to do a more accurate diagnosis remotely.
When you are working in the desert, you have to send a person to check a totalizer or a measurement, and if you have to go see it every day, that is a fuel expense and the expense of an operator who has to go there. They are also exposed to risk because they could have a work accident. On the other hand, having a device in the desert that is sending data via uplinks every 30 minutes or even once a day is already very important because it greatly minimizes operating costs.
What needs improvement?
We used hexadecimal frames and there is a way to put decoders inside the same page. You can also use artificial intelligence to create some script in Java, like a decoder, and be able to make all this a bit easier. The ability to update the firmware via LoRaWAN, or what I just mentioned about FOTA, is the only thing that could be improved.
For how long have I used the solution?
I have been using The Things Stack AWS Launcher for LoRaWAN for approximately two and a half years.
What do I think about the stability of the solution?
I do not remember a time when it went down, and if it did, it was for a short time. It was very reliable and always available, at least when I needed it.
What do I think about the scalability of the solution?
This is the main virtue of The Things Stack AWS Launcher for LoRaWAN. We sometimes had 50 or 100 devices, and once we had to add 500 all at once, and there was no problem. Afterwards, we used up our quotas, since I think the first tier was about 1,000 and we had to move up to the next tier. Adding devices worked immediately and we never had a problem. Everything was very good in terms of scalability.
How are customer service and support?
I never had to request help from TTI's customer support. However, I used the documentation they provided and it was quite clear. It was never necessary to open a ticket or anything like that.
Which solution did I use previously and why did I switch?
When I arrived at the company, The Things Stack AWS Launcher for LoRaWAN was already in use. Before that, it seems they used another one, but I was not there, so I do not have any knowledge of that.
What's my experience with pricing, setup cost, and licensing?
Regarding prices, the prices are relatively low, since by only acquiring the gateway and the devices, it is quite cheap. Although when we execute a project we have CAPEX, which can be the cost of the gateways, they are not that expensive either, and one with a long range might cost $1,000. Compared to the devices we are adding, which is very scalable, and the business model that the platform has of charging you for every 1,000 devices and then you move up to a new tier, it seems that all in all, it is a good experience with regard to prices and resource costs.
What other advice do I have?
The advice I give is to try to be very organized with your projects because sometimes you assign devices from many clients in the same place and that can be a bit chaotic. Also, remember to correctly register all the LoRaWAN credentials of all your devices because sometimes they get lost or sometimes there are misconfigurations, and you have to delete it and add it again. Since the device is in the field, you have to be especially careful with the databases of these devices: the DevEUI, the AppEUI. Those two are the most important ones I remember, but you have to be very organized with the management of the device credentials.
I want to thank the developers because The Things Stack AWS Launcher for LoRaWAN is quite useful for those of us who work in this IoT field, and I hope they can develop new features that allow us to further simplify the work, such as FOTA, which I have already mentioned several times. I am rating this product a 10.