Bażiku
Intern 2020 Software Engineering @ ASML/Cymer
Ippubblikat: 18.05.2026
Data tal-għeluq: 02.07.2026
Referenza tax-xogħol: 4fec5b3c59cac5a200a44a92ac106319
Informazzjoni dwar ix-xogħol
Post
San Diego, United States
Kumpanija
Qreer
Referenza tax-xogħol
4fec5b3c59cac5a200a44a92ac106319
Tip ta' lista
Bażiku
Permess tax-xogħol tal-UE meħtieġ
Le
Ippubblikat
18.05.2026
Data tal-għeluq
02.07.2026
Deskrizzjoni tax-xogħol
Internship Goals and Objectives: Work in a team environment alongside local experienced engineers, specific tasks will be tailored to match the education...IntroductionASML brings together the most creative minds in science and technology to develop lithography machines that are key to producing faster, cheaper, more energy-efficient microchips. We design, develop, integrate, market and service these advanced machines, which enable our customers - the world’s leading chipmakers – to reduce the size and increase the functionality of their microchips, which in turn leads to smaller, more powerful consumer electronics. Our headquarters are in Veldhoven, the Netherlands, and we have 18 office locations around the United States. We are currently recruiting for internships located at our office in San Diego, CA (EUV laser source creation). This position requires access to controlled technology, as defined in the Export Administration Regulations (15 C.F.R. § 730, et seq.). Qualified candidates must be legally authorized to access such controlled technology prior to beginning work. Business demands may require ASML to proceed with applicants who are immediately eligible to access controlled technologyJob MissionAs the world’s leading semiconductor lithography machine (the machine that makes computer chips) manufacturer, ASML enables chip manufacturers to make cheaper, faster chips, thereby enabling all the technology you use today. The machines we make require high speed, magnetically levitated stages with sub-nanometer accuracy, robotic mask delivery systems, mechatronic devices to shape and correct the laser illumination source, and optical modules that can detect sub-nanometer alignment errors and pattern distortions. Temperature controlled to milli-kelvins, particulate free, and operating in complete vacuum, the technical challenges are endless. Solving these challenges requires expertise in servo controls, mechatronics, mechanical engineering, electrical engineering, embedded software engineering, optics, physics, manufacturing, industrialization, and more. If you like extreme challenges and want to help bring the next generation of technology to the world, then come join ASML.Job DescriptionInternship Goals and Objectives:Work in a team environment alongside local experienced engineers.Specific tasks will be tailored to match the education / experience level of the intern as well as the interns learning objectives for the summer.The 2019 project will give you the opportunity to work with software architects and control system engineers as you develop software in response to the software and controls requirement and design documents. You will get to use your C++ or/and Python or/and UML skills, you will analyze complex issues, determine the best test methodologies, and contribute in all aspects of the software development, build, test and release cycleThe goal of the internship is for you to learn about working in a corporate setting and to provide hands on experience solving real world problems in a team environment.Interns will typically be required to document and present their findings as well as making an end of summer presentation to the group about what they achieved during their internship.
Ħiliet
ABAP
adapt to changes in technological development plans
AJAX
Ajax Framework
analyse software specifications
Ansible
Apache Maven
Apache Tomcat
APL
ASP.NET
Assembly (computer programming)
blockchain openness
blockchain platforms
C
COBOL
CoffeeScript
collect customer feedback on applications
Common Lisp
computer programming
create flowchart diagram
cyber attack counter-measures
data visualisation software
debug software
defence standard procedures
define technical requirements
design user interface
develop automated migration methods
develop creative ideas
develop software prototype
do cloud refactoring
Drupal
Eclipse (integrated development environment software)
engineering principles
engineering processes
Erlang
Git
Groovy
Haskell
IBM WebSphere
ICT debugging tools
ICT security legislation
identify customer requirements
integrate system components
integrated development environment software
Internet of Things
interpret technical requirements
Java (computer programming)
JavaScript
JavaScript Framework
Jenkins (tools for software configuration management)
KDevelop
Laravel
Lisp
manage engineering project
Matlab
Microsoft Visual C++
migrate existing data
ML (computer programming)
MySQL
NoSQL
object-oriented modelling
Objective-C
OpenEdge Advanced Business Language
Oracle Application Development Framework
Pascal (computer programming)
perform scientific research
Perl
PHP
Project Management
Prolog (computer programming)
Puppet (tools for software configuration management)
Python (computer programming)
R
Ruby (computer programming)
Salt (tools for software configuration management)
SAP R3
SAS language
Scala
Scratch (computer programming)
screen reader
Smalltalk (computer programming)
smart contract
software anomalies
software frameworks
Spark
SQL
STAF
Swift (computer programming)
technical drawings
tools for software configuration management
Trading Software
TypeScript
use an application-specific interface
use automatic programming
use concurrent programming
use functional programming
use logic programming
use object-oriented programming
use query languages
use software design patterns
use software libraries
use technical drawing software
utilise computer-aided software engineering tools
utilise machine learning
VBScript
Visual Basic
Web Services
WordPress
World Wide Web Consortium standards
Xcode