How much does an Electronics Design Engineer III make in Poland? The average Electronics Design Engineer III salary in Poland is zł104,245 as of April 16, 2021, but the range typically falls between zł85,835 and zł135,717. Salary ranges can vary widely depending on many important factors, including education, certifications, additional skills, the number of years you have spent in your profession. With more global market data that allows you to price your jobs around the world and compare job salaries across countries and cities on real-time compensation data, Salary.com helps you to determine your exact pay target.

Global Market Data
50TH(Median) zł104,245 25TH zł85,835 75TH zł135,717

Employers: Find Surveys For This Job

Employers: Price Your Company Jobs

Change Search Criteria

Skills to Boost an Electronics Design Engineer III Salary

Mastering key skills can significantly increase your earning potential as an Electronics Design Engineer III. According to Salary.com's Real-time Job Posting Data, expertise in Troubleshooting can lead to a 14% salary raise, while strong Calibration skills boost pay by a 4%. Even Electrical Engineering can result in a 2% salary increase.

Skill Library evaluates talent skills across five levels, supported by 5-10 behavior indicators, delivering precise insights for data-driven hiring decisions.
Troubleshooting
Troubleshooting is a form of problem solving, often applied to repair failed products or processes on a machine or a system. It is a logical, systematic search for the source of a problem in order to solve it, and make the product or process operational again. Troubleshooting is needed to identify the symptoms. Determining the most likely cause is a process of elimination—eliminating potential causes of a problem. Finally, troubleshooting requires confirmation that the solution restores the product or process to its working state. In general, troubleshooting is the identification or diagnosis of "trouble" in the management flow of a system caused by a failure of some kind. The problem is initially described as symptoms of malfunction, and troubleshooting is the process of determining and remedying the causes of these symptoms. A system can be described in terms of its expected, desired or intended behavior (usually, for artificial systems, its purpose). Events or inputs to the system are expected to generate specific results or outputs. (For example, selecting the "print" option from various computer applications is intended to result in a hardcopy emerging from some specific device). Any unexpected or undesirable behavior is a symptom. Troubleshooting is the process of isolating the specific cause or causes of the symptom. Frequently the symptom is a failure of the product or process to produce any results. (Nothing was printed, for example). Corrective action can then be taken to prevent further failures of a similar kind.
Calibration
In measurement technology and metrology, calibration is the comparison of measurement values delivered by a device under test with those of a calibration standard of known accuracy. Such a standard could be another measurement device of known accuracy, a device generating the quantity to be measured such as a voltage, a sound tone, or a physical artefact, such as a metre ruler. The outcome of the comparison can result in one of the following: no significant error being noted on the device under test a significant error being noted but no adjustment made an adjustment made to correct the error to an acceptable levelStrictly speaking, the term "calibration" means just the act of comparison, and does not include any subsequent adjustment. The calibration standard is normally traceable to a national standard held by a national metrological body.
Electrical Engineering
Electrical engineering is a technical discipline concerned with the study, design and application of equipment, devices and systems which use electricity, electronics, and electromagnetism. It emerged as an identified activity in the latter half of the 19th century after commercialization of the electric telegraph, the telephone, and electrical power generation, distribution and use. Electrical engineering is now divided into a wide range of fields including, computer engineering, power engineering, telecommunications, radio-frequency engineering, signal processing, instrumentation, and electronics. Many of these disciplines overlap with other engineering branches, spanning a huge number of specializations including hardware engineering, power electronics, electromagnetics and waves, microwave engineering, nanotechnology, electrochemistry, renewable energies, mechatronics, and electrical materials science. See glossary of electrical and electronics engineering.
More Skills...
Based on recent job listings, in-demand skills in the Electronics Design Engineer III field include Troubleshooting (14%), Calibration (4%), Electrical Engineering (2%), Electronic Circuits (2%), and Pneumatics (2%). These skills reflect current market needs.
Skills Salary Demand
Skill & Salary Demand
Troubleshooting zł118,839
Troubleshooting
zł118,839
14%
Calibration zł108,415
Calibration
zł108,415
4%
Electrical Engineering zł106,330
Electrical Engineering
zł106,330
2%
Electronic Circuits zł106,330
Electronic Circuits
zł106,330
2%
Pneumatics zł106,330
Pneumatics
zł106,330
2%
Troubleshooting
2.40%
Calibration
4.47%
Electrical Engineering
0.36%
Electronic Circuits
2.02%
Pneumatics
12.17%
Job Openings for Electronics Design Engineer III
Not the job you're looking for? Search more salaries here:

Are you an HR manager or compensation specialist?

Salary.com's CompAnalyst platform offers:

  • Detailed skills and competency reports for specific positions
  • Job and employee pricing reports
  • Compensation data tools, salary structures, surveys and benchmarks.
Learn about CompAnalyst
Poland's territory extends across several geographical regions, between latitudes 49° and 55° N, and longitudes 14° and 25° E. In the north-west is the Baltic seacoast, which extends from the Bay of Pomerania to the Gulf of Gdańsk. This coast is marked by several spits, coastal lakes (former bays that have been cut off from the sea), and dunes. The largely straight coastline is indented by the Szczecin Lagoon, the Bay of Puck, and the Vistula Lagoon. The centre and parts of the north of the country lie within the North European Plain. Rising above these lowlands is a geographical region compr...
Source: Wikipedia (as of 03/30/2021). Read more from Wikipedia
City, Country Compared to national average
City, Country Warsaw, PL Compared to national average
+ 5.7%
City, Country Katowice, PL Compared to national average
+ 3.0%
City, Country Bialystok, PL Compared to national average
-0.8%
City, Country Gdynia, PL Compared to national average
+ 1.7%
City, Country Czestochowa, PL Compared to national average
+ 0.8%
City, Country Radom, PL Compared to national average
+ 1.5%
Employees with Electronics Design Engineer III in their job title in Warsaw, PL earn an average of 5.7% more than the national average. The lower salaries can be found in Bialystok, PL (0.8% less).

Understand the base salary paid range for an Electronics Design Engineer III in Poland

Average Base Salary

Core compensation

85835
135717
104245
The chart shows the base salary for Electronics Design Engineer III ranges from zł85,835 to zł135,717 with the average base salary of zł104,245. The basic salary is the employee minimum income you can expect to earn in exchange for your time or services. This is the amount earned before adding benefits, bonuses, or compensation. The base salary of the Electronics Design Engineer III may get paid difference by industry, location, and factors.