Skip to main content

Hardware Design Engineer at Lekha Wireless Solutions Pvt. Ltd

Hello Dear Readers,

Currently, at Lekha Wireless Solutions Pvt. Ltd vacancy for a Hardware Design Engineer/ Senior Engineer/ Lead Engineer role.



What you will do:

You will be part of an energetic team working of next-generation and present-day problems in the world of Wireless communication. You will work on building current and next-generation hardware for tactical communication systems, 4G and 5G. You will build mixed signal boards that get into communication systems and provide technical leadership in challenging design flows.

You are:

A graduate/ Post graduate in Electronics/ Electrical/ Instrumentation or related disciplines with 2 to 7 years experience in digital and mixed-signal design.

Must-Have:

  • Be proficient in Digital electronics and have built complex boards hands-on till bringup and deployment
  • Posses good understanding of Hardware chip and peripheral architectures – Processors/ DSP/ FPGA/ Radio transceivers/ Codes.
  • Be proficient in signal processing/ networking/ connectivity Peripherals
  • Be proficient in schematic entry and CAD and SI tools for review
  • Be proficient in using general lab equipment, CAD design flows
  • Be proficient in understanding procedures for manufacturing, assembly and integration testing
  • Possess ability to clearly interact with adjacent teams
  • Be a good communicator in design and debug flows
  • Deep understanding of the FPGA and DSP architectures
  • Expertise in signal integrity for boards involving several Gigabit SERDES lanes and protocols
  • Deep understanding of PCB design techniques for Network, RF and wireless systems


Comments

Post a Comment

Popular posts from this blog

Tutorial on EasyEDA desktop software for PCB and schematic design

In this article, I am going to write a tutorial on how to use EasyEDA desktop application for creating a schematic and for PCB design. One of best advantage of this software is that you can create design offline and can automatically synchronize your design with your online EasyEDA account.  It can be used for circuits simulation, PCB deign and electronics circuits design. You can download EasyEDA desktop application by clicking on following link and it will work on windows 7 or its greater version. They are also releasing soon offline application OSX and Linux users. So keep visiting their website for more information.                                                    https://easyeda.com/page/download So let’s start and see how to design a schematic and PCB using EasyEDA offline desktop application. So first of all lets see how to create a schema...

What is Solar System Components & Installation Guide

Hello Dear Reader, Here in this post, I will give an idea about installation cost analysis of Solar PV System. I hope you read this post regarding the calculation of solar PV system  so in this post I have given an approximate cost analysis of the different solar system installations.  What is Solar System Components Solar systems are made up of solar panels (modules), a mounting system, and a solar inverter with computerised controller. Solar panels produce DC electricity from sunlight. Then the inverter converts the generated electricity into AC, so that it can be used in the household. The computerised controller manages the solar system and ensures optimal performance. If you want a battery backup system or an off-the-grid solar system, a battery is required. What is a Solar Energy System? Solar Energy System consists of 4 main components that decide the working of a solar energy system. Solar Panel Solar Inverter Solar Battery Panel Stand, and Solar Panel Installation...

CMOS OPAMP Design Using LTspice

  Hello Dear Reader, Here in this post, I will give an idea about how CMOS OPAMP designing using 180nm technology node and using LTspice. from that opamp I have design switched capacitor integrator. Design Specifications: Here Design specification may be changed according to the application here my target is to design an active lowpass filter so I have chosen an opamp integrator so in the below I have explained how to design an opamp as well as an integrator in a 180nm technology node in LTspice. So let's start design First, we need a technology parameter file so that the file we can insert in the LTspice, in my example it is 180nm so mostly it is available from the  http://ptm.asu.edu/latest.html  and you make one text file using notepad or whatever is fit on your own. Then go to the LTspice and new schematic and then you see .op on the right most upper side click on it and give your text file path after .include  as shown in the below images.  Now first of all...