# Al Farabi-1

> 42016

**Wikidata**: [Q29578338](https://www.wikidata.org/wiki/Q29578338)  
**Wikipedia**: [English](https://en.wikipedia.org/wiki/Al_Farabi-1)  
**Source**: https://4ort.xyz/entity/al-farabi-1

## Summary
Al Farabi-1 is a CubeSat launched on February 15, 2017, as part of India's Polar Satellite Launch Vehicle-XL mission. It is classified as both a technology demonstration spacecraft and an artificial satellite, designed to test experimental technologies in space.

## Key Facts
- **Instance of**: CubeSat, technology demonstration spacecraft, artificial satellite
- **Launch date**: February 15, 2017
- **Launch vehicle**: Polar Satellite Launch Vehicle-XL
- **COSPAR ID**: 2017-008BW
- **SCN (Satellite Catalog Number)**: 42016
- **Wikipedia title**: Al Farabi-1
- **Wikipedia languages available**: German, English, Latvian
- **Significant event**: Rocket launch (2017-02-15)

## FAQs
### Q: What type of satellite is Al Farabi-1?
A: Al Farabi-1 is a CubeSat, a miniaturized satellite made up of 10cm-sided cubic modules, designed for technology demonstration and experimental purposes.

### Q: Which launch vehicle was used to deploy Al Farabi-1?
A: Al Farabi-1 was launched using the Polar Satellite Launch Vehicle-XL, a model of India's Polar Satellite Launch Vehicle.

### Q: What is the COSPAR ID of Al Farabi-1?
A: The COSPAR ID of Al Farabi-1 is 2017-008BW, assigned by the Committee on Space Research.

### Q: How many Wikipedia languages cover Al Farabi-1?
A: Al Farabi-1 has Wikipedia entries in German, English, and Latvian.

### Q: What is the significance of Al Farabi-1's launch date?
A: Al Farabi-1 was launched on February 15, 2017, marking a significant event in its operational timeline.

## Why It Matters
Al Farabi-1 plays a crucial role in advancing space technology by serving as a platform for experimental demonstrations in orbit. As a CubeSat, it represents a cost-effective and modular approach to satellite development, enabling rapid testing of new technologies. Its deployment via the Polar Satellite Launch Vehicle-XL highlights India's growing capabilities in satellite launches and space exploration. By contributing to the broader field of space research, Al Farabi-1 helps pave the way for future innovations in satellite technology and space-based experiments.

## Notable For
- **First of its kind**: One of the earliest CubeSats launched as a technology demonstration spacecraft.
- **Experimental focus**: Designed specifically to test and validate new technologies in space.
- **Modular design**: Built using 10cm-sided cubic modules, a standard for miniaturized satellites.
- **Indian launch**: Deployed by the Polar Satellite Launch Vehicle-XL, showcasing India's satellite launch capabilities.
- **Multi-language documentation**: Available in Wikipedia entries across three languages, reflecting its global relevance.

## Body
### Classification
Al Farabi-1 is categorized as a CubeSat, a type of miniaturized satellite composed of 10cm-sided cubic modules. It is also classified as a technology demonstration spacecraft and an artificial satellite, indicating its primary purpose is to test experimental technologies in orbit.

### Launch Details
The satellite was launched on February 15, 2017, using the Polar Satellite Launch Vehicle-XL, a variant of India's Polar Satellite Launch Vehicle. This launch marked a significant event in its operational timeline and demonstrated India's capability in deploying small satellites.

### Identification
Al Farabi-1 is identified by its COSPAR ID (2017-008BW) and Satellite Catalog Number (42016), which are standard identifiers for satellites in space. These identifiers help track and reference the satellite in space-related databases and systems.

### Wikipedia Presence
The satellite has Wikipedia entries in German, English, and Latvian, indicating its relevance and documentation across multiple linguistic and regional contexts. The English Wikipedia title for the satellite is "Al Farabi-1."

### Significance
Al Farabi-1's launch and operation contribute to the broader field of space technology by providing a platform for experimental demonstrations. Its modular design and focus on technology testing make it a valuable asset for advancing satellite capabilities and space research.

## References

1. Jonathan's Space Report