← Overview
Infrastructure Observability

Deltum Observability for IT Supervisors & Tech Leads

Deep system observability, p50/p95/p99 latency tracking, AI root-cause diagnostics, and automated webhook incident routing.

IT supervisors and DevOps leaders use Deltum Observability to monitor REST APIs, PostgreSQL read/write clusters, SSL expiration dates, run Gemini-powered root cause analysis, and trigger instant webhook alerts across Telegram, Slack, and email.

1 min
Active Polling Rate
24ms
p95 Latency Tracking
Instant
Alert Dispatch Speed
Engineering Sandbox

Active Synthetic Probes & AI Root-Cause Diagnostic Sandbox

Test sub-second probes, simulate infrastructure anomalies, and preview Gemini SRE mitigation runbooks.

Deltum Engine v4.2
Synthetic Probe DispatcherProbes Active
Target: https://api.deltum.io/v1/healthFrankfurt (FRA-1)
TLS 1.3 • HTTP/2 • Zero-Alloc JSON Parser
✨Google Gemini AI SRE Root-Cause Sandbox
Automated Triage
Simulate Anomaly Incident:
Click below to run Gemini root-cause diagnosis for this simulated incident.
Omnichannel Webhook Router

Core Priorities for IT Supervisors & Tech Leads

01

Sub-Second API & DB Latency Polling

Continuous active health checks for REST APIs, PostgreSQL clusters, and SSL certificate validity with p50/p95/p99 percentiles.

02

AI Root Cause Diagnostics & Runbooks

Automated Gemini SRE analysis detects failure patterns, identifies degradation origins, and provides instant mitigation steps.

03

Smart Webhooks & Omnichannel Routing

Route downtime spikes and certificate alerts in real time to Telegram, Email, or HMAC-signed webhooks with snooze controls.

04

SLA Targets & Error Budget Auditing

Monitor MTTR/MTBF, calculate error budget burn rates, and export compliant SLA reports in PDF, Excel, or CSV.

Deep Observability Built for Modern Engineering Stacks

Sub-second telemetry, distributed multi-region gossip, and AI-powered incident remediation.

⚡Active Probing

Sub-Second Distributed Synthetic Checks

Synchronized HTTP/2, TLS 1.3, and TCP socket checks from Frankfurt, Paris, and Madrid verify endpoint health with zero cache poisoning.

🧠AI SRE

Automated Gemini Root-Cause Diagnostics

When latency spikes or 5xx errors occur, Gemini AI isolates the bottleneck origin and generates reproducible mitigation commands.

🔗Integration

HMAC-SHA256 Signed Webhooks & Telegram

Instant alert routing to Telegram bots, Slack channels, and custom internal APIs with cryptographic signature headers.

How Engineering Teams Integrate Deltum Observability

Zero-friction setup designed for high-availability production environments.

01

Define Target Endpoints & Thresholds

Configure REST APIs, PostgreSQL clusters, and SSL checkpoints with custom p95 latency alerts.

02

Connect Notification Channels

Link Telegram SRE bots, Slack webhooks, or custom HMAC listener endpoints with snooze policies.

03

Automate Error Budget Tracking

Continuously audit MTTR, MTBF, and error budget burn rates with automated Gemini diagnostics.

Frequently Asked Questions by IT Supervisors

Technical specifications, probe intervals, and API integration details.

What synthetic probe protocols are supported?

Deltum supports HTTPS (HTTP/1.1 & HTTP/2), TCP sockets, PostgreSQL wire protocol checks, SSL/TLS handshake verification, and Redis PING checks.

How does the webhook signature verification work?

Every webhook request includes an X-Deltum-Signature header containing an HMAC-SHA256 digest computed with your secret key.

Can we integrate Deltum Observability with our CI/CD pipelines?

Yes. Webhook endpoints and synthetic probe triggers can be activated before and after deployments to verify zero-downtime releases.

Infrastructure Observability

Ready to deploy Deltum Observability for your organization?

Ensure deep technical system diagnostics, sub-50ms latency performance, SSL certificate validity tracking, and zero-downtime deployment safety.