Senior Data Engineer

SkillDatabases & data

Your AI can help you design data pipelines, build ETL and ELT workflows, and plan data infrastructure the way a senior data engineer would. It brings expert guidance and ready-made scripts covering data modeling, pipeline orchestration, and data quality. It also knows common data tools such as Python, SQL, Spark, Airflow, dbt, and Kafka.

Available today. Use it from your connected AI after setup.

After adding it, describe what you are working on, such as a new pipeline or an ETL workflow that needs improving. Your AI will apply the skill's guidance and scripts to help you build it.

Then ask your AI: use the Senior Data Engineer skill

What your AI can do with it

  • Design scalable data pipelines and ETL/ELT workflows
  • Recommend a data architecture that fits your needs
  • Create data models for your systems
  • Set up pipeline orchestration with tools like Airflow and dbt
  • Build data quality checks into your pipelines
  • Write Python and SQL for data infrastructure tasks

What this skill tells your AI

The instructions your AI receives, as published by borghei/claude-skills in engineering/senior-data-engineer/SKILL.md and read by ahel’s review.

Production-grade data engineering skill for building scalable, reliable data systems.

Table of Contents

  1. Trigger Phrases
  2. Quick Start
  3. Workflows
  4. Architecture Decision Framework
  5. Tech Stack
  6. Reference Documentation
  7. Troubleshooting

Trigger Phrases

Activate this skill when you see:

Pipeline Design:

  • "Design a data pipeline for..."
  • "Build an ETL/ELT process..."
  • "How should I ingest data from..."
  • "Set up data extraction from..."

Architecture:

  • "Should I use batch or streaming?"
  • "Lambda vs Kappa architecture"
  • "How to handle late-arriving data"
  • "Design a data lakehouse"

Data Modeling:

  • "Create a dimensional model..."
  • "Star schema vs snowflake"
  • "Implement slowly changing dimensions"
  • "Design a data vault"

Data Quality:

  • "Add data validation to..."
  • "Set up data quality checks"
  • "Monitor data freshness"
  • "Implement data contracts"

Performance:

  • "Optimize this Spark job"
  • "Query is running slow"
  • "Reduce pipeline execution time"
  • "Tune Airflow DAG"

Quick Start

Core Tools

# Generate pipeline orchestration config
python scripts/pipeline_orchestrator.py generate \
  --type airflow \
  --source postgres \
  --destination snowflake \
  --schedule "0 5 * * *"

# Validate data quality
python scripts/data_quality_validator.py validate \
  --input data/sales.parquet \
  --schema schemas/sales.json \
  --checks freshness,completeness,uniqueness

# Optimize ETL performance
python scripts/etl_performance_optimizer.py analyze \
  --query queries/daily_aggregation.sql \
  --engine spark \
  --recommend

Workflows

→ See references/workflows.md for details

Architecture Decision Framework

Use this framework to choose the right approach for your data pipeline.

Batch vs Streaming

CriteriaBatchStreaming
Latency requirementHours to daysSeconds to minutes
Data volumeLarge historical datasetsContinuous event streams
Processing complexityComplex transformations, MLSimple aggregations, filtering
Cost sensitivityMore cost-effectiveHigher infrastructure cost
Error handlingEasier to reprocessRequires careful design

Decision Tree:

Is real-time insight required?
├── Yes → Use streaming
│   └── Is exactly-once semantics needed?
│       ├── Yes → Kafka + Flink/Spark Structured Streaming
│       └── No → Kafka + consumer groups
└── No → Use batch
    └── Is data volume > 1TB daily?
        ├── Yes → Spark/Databricks
        └── No → dbt + warehouse compute

Lambda vs Kappa Architecture

AspectLambdaKappa
ComplexityTwo codebases (batch + stream)Single codebase
MaintenanceHigher (sync batch/stream logic)Lower
ReprocessingNative batch layerReplay from source
Use caseML training + real-time servingPure event-driven

When to choose Lambda:

  • Need to train ML models on historical data
  • Complex batch transformations not feasible in streaming
  • Existing batch infrastructure

When to choose Kappa:

  • Event-sourced architecture
  • All processing can be expressed as stream operations
  • Starting fresh without legacy systems

Data Warehouse vs Data Lakehouse

FeatureWarehouse (Snowflake/BigQuery)Lakehouse (Delta/Iceberg)
Best forBI, SQL analyticsML, unstructured data
Storage costHigher (proprietary format)Lower (open formats)
FlexibilitySchema-on-writeSchema-on-read
PerformanceExcellent for SQLGood, improving
EcosystemMature BI toolsGrowing ML tooling

Tech Stack

CategoryTechnologies
LanguagesPython, SQL, Scala
OrchestrationAirflow, Prefect, Dagster
Transformationdbt, Spark, Flink
StreamingKafka, Kinesis, Pub/Sub
StorageS3, GCS, Delta Lake, Iceberg
WarehousesSnowflake, BigQuery, Redshift, Databricks
QualityGreat Expectations, dbt tests, Monte Carlo
MonitoringPrometheus, Grafana, Datadog

Reference Documentation

1. Data Pipeline Architecture

See references/data_pipeline_architecture.md for:

  • Lambda vs Kappa architecture patterns
  • Batch processing with Spark and Airflow
  • Stream processing with Kafka and Flink
  • Exactly-once semantics implementation
  • Error handling and dead letter queues

2. Data Modeling Patterns

See references/data_modeling_patterns.md for:

  • Dimensional modeling (Star/Snowflake)
  • Slowly Changing Dimensions (SCD Types 1-6)
  • Data Vault modeling
  • dbt best practices
  • Partitioning and clustering

3. DataOps Best Practices

See references/dataops_best_practices.md for:

  • Data testing frameworks
  • Data contracts and schema validation
  • CI/CD for data pipelines
  • Observability and lineage
  • Incident response

Troubleshooting

→ See references/troubleshooting.md for details

Signals

GitHub stars
740
Forks
135
Last commit
Aug 2026
Advanced
Catalog kind
skill
Gateway key
senior-data-engineer
Source
github.com/borghei/claude-skills