HiveMQ: High Availability Through Replication and Failover
Gain insights into how HiveMQ MQTT broker uses data partition techniques to provide continuous availability even when the master node is not available.
HiveMQ Azure Cluster Discovery Extension
Allow HiveMQ cluster nodes to discover each other dynamically via Azure Blobs in an Azure Blob Storage Container. Learn more.
Etcd Cluster Discovery Extension
Get HiveMQ cluster nodes to discover each other dynamically by regularly exchanging their information via etcd. Learn more.
HiveMQ Extension - DNS Cluster Discovery
Operate elastic HiveMQ clusters with a container orchestration platform, such as Kubernetes, Openshift, etc. and cloud environments. Learn more.
HiveMQ Extension - S3 Cluster Discovery
Allow HiveMQ cluster nodes to discover each other dynamically by regularly exchanging their information via S3 from Amazon Web Services (AWS).
Deploy a HiveMQ cluster on Azure Kubernetes Service (AKS) as a StatefulSet with high-performance Azure storage disks
Deploy a HiveMQ cluster as a StatefulSet on Azure Kubernetes Service (AKS).
Automate your HiveMQ installation with Concourse and Terraform
Check out our guide on how to set up a Concourse CI pipeline to install HiveMQ on AWS with Terraform
How to install HiveMQ with Terraform
Check out our guide on how to set up HiveMQ with Terraform on AWS
Building an elastic high availability MQTT broker cluster on AWS
Using the HiveMQ AMI, HiveMQ S3 Cluster Discovery Extension, and AWS NLB to build a high availability MQTT broker cluster on AWS.
How to run a HiveMQ cluster with Docker and Kubernetes
Containerization and orchestration mechanisms growing among all IT deployments. Find out, how to run a HiveMQ cluster with Docker and Kubernetes.
Creating highly available and ultra-scalable MQTT clusters
Learn how MQTT Broker Clusters are essential for high availability and scalability to solve the critical part of a messaging infrastructure.