Operational clarity, AI diagnostics and supervision for your entire backend ecosystem.

A unified control room built to track health, p50/p95/p99 telemetry, AI root-cause analysis, automated SLA reports, and omnichannel incident response across all your stacks and environments.

Deltum Observability provides continuous observability and supervision for modern digital systems. From sub-second API health checks and PostgreSQL cluster telemetry to Gemini-powered AI root-cause analysis, SSL expiration tracking, and public status pages.

app.deltum.io/observability • Operational Console
100% Operational
Global Uptime
99.98%SLA Met
p95 Latency Telemetry
24msSub-50ms
AI SRE Root Cause
Active0 Incidents
production-api
api.deltum.io • REST API
200 OK
24ms
postgresql-cluster
db.deltum.io:5432 • Write/Read
Connected
4ms
ssl-certificate
deltum.io • SSL check
Secured
Valid
api.deltum.io
Let's Encrypt • TLS 1.3
Valid
Expiry74d remaining
app.deltum.io
Cloudflare Inc ECC CA-3 • TLS 1.3
Valid
Expiry182d remaining
status.deltum.io
Let's Encrypt • TLS 1.3
Valid
Expiry61d remaining
Deltum Status
status.deltum.io
Operational
Client API Status
status.client-stack.com
Operational
Interactive Platform Studio

Experience real-time system observability in action.

Explore how Deltum Observability tracks reactive event streams, computes latency percentiles, correlates AI SRE diagnostics, generates certified SLA audits, maps satellite dependencies, and publishes status pages.

Reactive Engine

Sub-Second Live Activity Stream

Watch synthetic probes, database latency, and security checks stream in real time. Every check executes with millisecond accuracy and instant status evaluation.

LIVE STREAMING
TimestampTarget EndpointTypeRegion / NodeLatencyStatus
20:04:31api.deltum.io/v1/healthREST APIFrankfurt (FRA-1)18ms200 OK
20:04:27checkout.deltum.io/payPayment APILondon (LON-1)2400ms (Timeout)504 Gateway Timeout
20:04:23db.deltum.io:5432PostgreSQLParis (PAR-1)4msConnected
20:04:19staging-api.deltum.ioSSL / TLSFrankfurt (FRA-1)Expired (0d)Cert Invalid
20:04:15deltum.io (TLS 1.3)SSL / TLSMadrid (MAD-1)Valid (74d)Secured
20:04:11auth.deltum.io/oauthREST APIFrankfurt (FRA-1)22ms200 OK
20:04:07Telegram SRE BotAlert DispatchGlobal HMAC42msDelivered
20:04:03cdn.deltum.io/assetsEdge CacheAmsterdam (AMS-1)11ms304 Hit
20:03:59queue.deltum.io:6379Redis ClusterParis (PAR-1)2msReady
20:03:55search.deltum.io/queryElasticsearchLondon (LON-1)24ms200 OK
Note: This interactive studio is a live simulation to demonstrate core platform features. Deltum Observability in production provides custom telemetry, multi-region dedicated probes, and advanced integration pipelines.

Core Architectural Pillars

01

AI-Powered SRE Root Cause Diagnostics

Google Gemini engine automatically correlates failure telemetry, identifies degradation origins, and provides instant mitigation steps.

02

Telemetry Heatmaps & Latency Percentiles

Continuous p50, p95, and p99 latency monitoring with 24x7 failure distribution heatmaps across all your production environments.

03

Enterprise SLA Reports & Omnichannel Alerts

Automated SLA compliance audits with error budget tracking, MTTR metrics, and instant dispatches via Slack, Telegram, Email, and HMAC Webhooks.

Platform Functionalities & Capabilities

AI SRE

AI Root Cause Diagnostics

Gemini-powered SRE analysis correlates latency spikes and error logs to identify probable root causes and output step-by-step mitigation runbooks.

Telemetry

Latency Percentiles & Heatmaps

Deep performance telemetry tracking average, p50, p95, and p99 response times alongside 24x7 visual failure distribution heatmaps.

SLA & Budgets

Automated SLA & Error Budget Reports

Generate comprehensive SLA compliance audits with MTTR, MTBF, allowed downtime, and error budget metrics, exportable to branded PDF, Excel, and CSV.

Omnichannel

Omnichannel Alerts & Webhooks

Route critical incident alerts instantly to Slack channels, Telegram bots (1-click link), HTML Email, and HMAC-signed webhooks with flexible snooze and quiet hours.

Probes

Multi-Target Diagnostic Probes

Continuous active polling for REST API endpoints, PostgreSQL read/write database clusters, and SSL/TLS certificate expiration dates.

Status Pages

Branded Public & Private Status Pages

Host custom-domain status pages (status.client.com) showcasing service component health, historical uptime bars, and scheduled maintenance.

SSL & Security

SSL/TLS Certificate Tracking

Proactive tracking of SSL certificate expiration, cipher security, issuer verification (Let's Encrypt, Cloudflare, DigiCert), and TLS 1.3 protocol status.

Topology

Universe & Planet Topology Mapping

Organize microservices, databases, and websites into Universes and Planets with dependency mapping (primary vs satellite relationships).

Security

Enterprise Security & Scope-Based RBAC

Enforce strict tenant data boundaries, organization-dedicated encrypted secret vaults, and granular scope-based permissions.

Frequently Asked Questions

Everything you need to know about Deltum Observability, proactive monitoring importance, distributed probing, and SLA guarantees.

What is Deltum Observability and what does it do?

Deltum Observability is a proactive technical monitoring and reliability platform designed to continuously track the availability, latency, SSL certificates, APIs, and critical workflows of your web platforms 24/7. It detects outages, silent degradations, and anomalies before they impact your customers or users, providing AI-assisted root-cause diagnostics and branded public or private status pages.

Why is proactive system monitoring critical instead of waiting for user bug reports?

Waiting for a customer or client to report an error means the incident has already been hurting your revenue, conversion rates, and brand reputation for minutes or hours. Proactive monitoring detects microservice failures, database latency bottlenecks, or broken checkout flows immediately, empowering your team to remediate issues before users experience friction and drastically reducing MTTR (Mean Time to Resolution).

What types of websites, applications, and endpoints can be monitored?

You can monitor static and dynamic websites (Next.js, Astro, WordPress, Shopify), single-page applications (SPAs), REST and GraphQL APIs, backend microservices, exposed databases, authentication endpoints, periodic background cron jobs (heartbeats), DNS records, and SSL/TLS certificate renewal cycles.

How fast can we set up our first monitors and receive alerts?

Less than two minutes. You only need to enter the URL or endpoint you want to monitor, choose your probe interval (from 1 minute), and select your preferred notification channels (Telegram, Slack, Email, or Webhooks). No heavy code libraries, daemon compilation, or server setup required.

What is the difference between simple uptime pinging and Deltum Observability?

A basic ping merely checks if a server returns an HTTP 200, missing situations where the page takes 8 seconds to load or a critical JavaScript bundle is broken. Deltum Observability evaluates the full delivery cycle: DNS resolution, TLS handshake, TTFB latency, P95/P99 percentile distributions, HTTP status codes, payload assertions, and automated Gemini AI root-cause analysis when anomalies arise.

How does Deltum Observability help reduce infrastructure and maintenance costs?

By consolidating synthetic uptime monitoring, multi-channel alerting, SSL tracking, and SLA certification into a single zero-agent platform, you eliminate redundant vendor subscriptions, avoid unpredictable data-ingestion billing, and save countless engineering hours in manual troubleshooting.

How is Deltum Observability different from traditional APMs like Datadog or New Relic?

Traditional APMs require heavy agent daemons, charge unpredictable bills based on raw log ingestion, and overload teams with noise. Deltum Observability is a lightweight, zero-agent platform built specifically for web systems: continuous multi-region synthetic probes, cryptographic SLA audit generation, instant AI root-cause diagnostics with Gemini, and white-label client status pages without operational complexity.

Does Deltum require installing intrusive software agents on our servers?

No. Deltum uses non-intrusive, distributed synthetic probes across European data centers (Frankfurt, Paris, Madrid) and secure HTTPS/API/TCP checkpoints. There are no daemons to install, no root privileges required, and zero CPU or memory footprint on your production servers.

How do incident alerts work and which channels are supported?

When an endpoint fails consecutive synthetic checks or latency exceeds agreed thresholds, Deltum instantly dispatches alerts via Telegram, Slack, Email, or HMAC-SHA256 signed webhooks. Escalation policies and smart snooze filters ensure you only receive actionable alerts without notification fatigue.

Can we generate certified monthly SLA reports for clients and investors?

Yes. Every workspace can export cryptographically signed SLA audit certificates in PDF, Excel, or CSV format, complete with ISO/IEC 25010 compliance benchmarks, error budget tracking, and tamper-proof SHA-256 HMAC verification seals.

Is multi-tenancy supported for digital agencies managing multiple clients?

Absolutely. Deltum allows agencies to isolate multiple client websites into distinct organizational workspaces with custom-domain status pages (status.client.com) and granular role-based access control (RBAC).

Where are the monitoring probe nodes located and is it GDPR compliant?

All probe nodes and data telemetry reside in European ISO-27001 certified data centers in Frankfurt (FRA-1), Paris (PAR-1), and Madrid (MAD-1), fully compliant with European GDPR data sovereignty standards.

Deltum Observability

Ready to deploy Deltum Observability for your organization?

A unified control room built to track health, p50/p95/p99 telemetry, AI root-cause analysis, automated SLA reports, and omnichannel incident response across all your stacks and environments.