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    Bourns Automotive BMS Signal Transformer Combines Reinforced Isolation and Common-Mode Noise Rejection

    Murata Launches 100V 10 µF Lead-Type MLCCs for 48V Systems

    Bourns Extends Current Sense Resistors for High-Current Power Designs with 0.1 mΩ, 15 W

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    Current-Dependent Inductors: Using Non-Linear Inductance in Buck Converters and PFC Stages

    Vishay Releases High-Power Thick Film Resistors for Compact Power Modules

    Wk 32 Electronics Supply Chain Digest

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    Bourns Automotive BMS Signal Transformer Combines Reinforced Isolation and Common-Mode Noise Rejection

    Murata Launches 100V 10 µF Lead-Type MLCCs for 48V Systems

    Bourns Extends Current Sense Resistors for High-Current Power Designs with 0.1 mΩ, 15 W

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    Vishay Introduces Automotive Low Loss SMD Common-Mode Chokes

    YAGEO Adds X8 Flexible-Termination Automotive MLCCs for 150°C Designs

    Current-Dependent Inductors: Using Non-Linear Inductance in Buck Converters and PFC Stages

    Vishay Releases High-Power Thick Film Resistors for Compact Power Modules

    Wk 32 Electronics Supply Chain Digest

    Trending Tags

    • Ripple Current
    • RF
    • Leakage Current
    • Tantalum vs Ceramic
    • Snubber
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    Current-Dependent Inductors: Using Non-Linear Inductance in Buck Converters and PFC Stages

    Current Sense Transformers: Ferrite vs Nanocrystalline Cores for Accurate Current Measurement

    EMC Design Fundamentals: Safe Use of Varistors and Common Mode Chokes in Mains and Data-Line Filters

    Ferrite versus Nanocrystalline Power Inductor Cores: Turns, Gap and Size

    KYOCERA AVX Presents Antenna Integrator Studio Tutorial for Antenna Placement and RF Design

    Power Design Simulation Tools for Faster Inductor Selection and Loss Optimization

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    Why Isolated DC/DC Power Supplies Fail Late, Würth Elektronik Podcast

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Alter Technologies organizes EEE components procurement training for SMEs at ESA

12.11.2018
Reading Time: 2 mins read
A A

Source: ESA news

Costs related to EEE parts definition, procurement and acquisition as well as the intensive test requirements to be qualified for aerospace use need to be carefully accounted for and considered at early project phases. This course guided by ALTER TECHNOLOGY experts on different EEE component types, develops the theoretical knowledge about EEE components procurement and the costs associated with it and provides practical examples to highlight the importance of good cost estimations at a very early project stage. 

RelatedPosts

Bourns Automotive BMS Signal Transformer Combines Reinforced Isolation and Common-Mode Noise Rejection

Murata Launches 100V 10 µF Lead-Type MLCCs for 48V Systems

Bourns Extends Current Sense Resistors for High-Current Power Designs with 0.1 mΩ, 15 W

Date and Location
13 December 2018
ESA/ESTEC (Noordwijk, NL)

Objectives
Electrical, Electromechanical and Electronic (EEE) components are key elements in every space mission. Costs related to EEE parts definition, procurement and acquisition as well as the intensive test requirements to be qualified for aerospace use (before being launched as part of a spacecraft) need to be carefully accounted for and considered at early project phases. Project success can depend on the proper execution of the previously mentioned tasks. This course develops the theoretical knowledge about EEE components procurement and the costs associated with it and provides practical examples to highlight the importance of good cost estimations at a very early project stage.

Course description
The main goal of the course is to provide attendees with a good understanding of the pitfalls associated with EEE components procurement and associated costs. The sessions will highlight the kind of impact EEE procurement can have on the initially foreseen project budget and schedule.

The following  areas will be covered in depth:

  • Selection of compliant parts
  • Quality
  • Schedule
  • ITAR management
  • Standard products vs customer ones
  • Inspections and testing
  • Re-design costs
  • Quality assurance costs
  • Budget constrains

Training methods
The course will be divided into theoretical and practical sessions.
The theoretical sessions will provide the theoretical basis to be able to carry out an assessment of the different cost areas that need to be considered when working on a project.
In the practical session the trainee/(s) will be asked to identify the different cost areas that need to be taken into consideration for different given examples, fully guided by ALTER TECHNOLOGY experts on different EEE component types.

Target group
All engineers and scientists working for Small and Medium-sized Enterprises (SME) who wish to have an insight into the different costs areas that need to be considered when working on a project.  The course targets both SMEs providing flight products for major satellite programmes as well as companies working at lower TRL levels in technology programmes.

Trainer
ALTER TECHNOLOGY TÜV NORD qualified personnel

Registration

Registration link is possible via the event page here

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