About You
You are a Senior Azure DevOps Engineer with extensive experience designing, implementing, and managing enterprise-scale Azure environments. You are passionate about building secure, scalable, and automated cloud platforms that support operational excellence, governance, and modern application delivery.
You bring a proactive and solution-oriented mindset, capable of driving infrastructure automation, CI/CD optimization, cloud governance, and platform reliability initiatives across complex environments. You are comfortable working with Infrastructure as Code, Azure landing zones, cloud security best practices, and automation frameworks while collaborating with multidisciplinary teams and stakeholders.
You thrive in environments where ownership, scalability, and continuous improvement are highly valued. You are adaptable, detail-oriented, and capable of providing technical leadership and operational guidance to support cloud transformation initiatives and enterprise DevOps practices.
You Bring to Applaudo the Following Competencies:
You Will Be Accountable for the Following Responsibilities:
About Us
We Are Engineered Different.
At Applaudo, talented people design, build, and scale meaningful, AI-powered solutions that create real business impact. As an AI-native organization, we collaborate across design, development, cloud, data, and artificial intelligence to turn ideas into scalable products that transform how companies operate, make decisions, and grow.
We are building a high-performance culture grounded in five values: Empowering Excellence, Collaborative Teamwork, Unsolicited Respect, Consistent Transparency, and Efficient Communication. These define how we work, how we support one another, and how we hold ourselves accountable.
Applaudo is a place for people who want to learn fast, take ownership, and work alongside strong teams they are proud to belong to. Joining us means being part of an organization that is evolving intentionally, investing in modern ways of working, and leading AI-native transformation at scale.