07_elektronika

Electronics

Smart clothing and accessories, diagnostics of electronic assemblies, printed circuit boards (PCBs), and components, smart textile elements and integration technologies, printed, flexible, and hybrid electronics, sensor research and development, measurement and analysis of radio systems and antenna distribution networks, measurement and testing of low-frequency and electroacoustic devices, utilization of satellite communication ground stations, development of control and testing systems, custom development of electrical equipment, software for embedded applications and IoT systems, development, testing, and diagnostics of industrial bus systems, and sensor units for IoT and Smart City applications.SW pro Embedded aplikace a systémy IoT, vývoj, testování a diagnostika systémů s průmyslovými sběrnicemi, senzorové jednotky pro IoT a Smart City aplikace

Services

  • Applied research focused on protective clothing, e.g. particularly for firefighters, and smart textile products for patients, convalescents, seniors, and individuals requiring specialized care
  • Professional protective clothing with integrated functional electronic systems (gas concentration monitoring, temperature and humidity measurement, active lighting, acoustic alarms, posture and position detection, wireless data transmission)
  • Protective gloves and footwear with integrated functional electronic systems (ambient and remote temperature measurement, voltage presence detection, wireless power and data transfer, active lighting)
  • Functional base layers and garments with embedded electronic components for ECG monitoring, heart and respiration rate measurement, temperature and humidity sensing, and active heating
  • Encapsulation and integration of functional electronic blocks into textiles
  • Electrical characterization of electronic components and materials in DC and AC domains, including high frequencies up to 3 GHz

Equipment

  • Bernina 750 QE Sewing and Embroidery System:
    • Dual-feed fabric mechanism supporting basic, stretch, overlock, decorative, and quilting stitches
    • 872 stitch patterns
    • 11 needle positions
    • Continuously adjustable sewing speed up to 1,000 stitches per minute
    • Maximum embroidery area: 40 × 26 cm
  • Garment Assembly Equipment:
    • 5-thread coverlock and overlock sewing machine with jet-air threading
    • Nicomatic crimping system
    • Sunko 709A resistance spot welding station
    • EKRA E2 semi-automatic screen printing machine
  • DC Measurement Equipment:
    • Keithley precision DC instrumentation (source measure units / SMUs, femtoammeters, nanovoltmeters, multichannel DMMs)
  • RF / High-Frequency Measurement Equipment:
    • Agilent RLC meter (frequency range: 1 MHz – 3 GHz)
    • Agilent spectrum analyzer with tracking generator (frequency range: 9 kHz – 3 GHz)
    • Agilent RF signal generator (frequency range: 9 kHz – 3 GHz)
    • Signal integrity analyzer (frequency range: DC to 30 GHz)

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  • Assessment of acceptability criteria for electronic assemblies according to IPC-A-610
  • Assessment of acceptability criteria for printed circuit boards according to IPC-A-600
  • Diagnostics of active and passive electronic components
  • IC decapsulation (chip decapsulation)
  • Diagnostics of solder joint defects
  • Solderability testing of PCBs and components (Dip and Look Test, Wetting Balance Test, solder spreadability test for vapor phase soldering)
  • Ionic contamination measurement on bare (unpopulated) and assembled (populated) PCBs
  • Ionic contamination measurement on components
  • Diagnostics of mechanical failures (fractures, cracks)
  • X-ray and Computed Tomography (CT) analysis of assemblies, PCBs, and components

Equipment

  • Multicore MUST II solderability tester
  • ASSCON Quicky 300 laboratory vapor phase soldering system
  • Concoat CM11 ionic contamination meter (measurement range: 0.01–30 µg NaCl eq./cm², maximum board dimensions: 300 × 250 × 30 mm, minimum PCB surface area: 100 cm²)
  • GE Phoenix v|tome|x s240 microfocus X-ray inspection system for 3D Computed Tomography (CT) including standard 2D inspection
  • For more, see Image Analysis of Samples and Materialography

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  • Selective deposition of functional materials using Aerosol Jet Printing (AJP), screen printing, and stencil printing
  • Plasma and ozone surface treatment prior to material deposition (surface energy adjustment, cleaning, surface functionalization, and activation)
  • Research on printed flexible sensors (gases and vapors, temperature, humidity, leakage, resin curing state), printed interconnect structures, and passive/active components (antennas, R, L, C, and OECTs – organic electrochemical transistors)
  • Development of hybrid electronic circuits on flexible substrates
  • Research on hybrid component assembly and interconnection of printed functional structures on flexible substrates (low-temperature soldering, conductive and non-conductive adhesive bonding, mechanical crimping, welding)
  • Research on electronic components and sensors based on conductive carbon nanomaterials (CNTs, graphene)
  • Research on eco-friendly green electronics (organic functional materials, cellulose substrates, energy-efficient and sustainable manufacturing processes)
  • Electrical characterization of electronic components and materials in DC and AC domains, including high frequencies up to 3 GHz
  • Design and simulation of planar components and circuits, signal transmission analysis, and design optimization

Equipment

  • Optomec AJ300 Aerosol Jet Printing system
  • EKRA E2 semi-automatic screen printing machine
  • Relyon Plasma Plasmabrush PB3 plasma surface treatment system
  • Laboratory furnaces and ovens for thermal processing and material curing
  • Vötsch environmental chambers for environmental testing (temperature, humidity, thermal shock, vibration, corrosive atmospheres)
  • Keithley precision DC instrumentation (SMUs, femtoammeters, nanovoltmeters, multichannel DMMs)
  • RF / High-Frequency Measurement Equipment:
    • Agilent RLC meter (frequency range: 1 MHz – 3 GHz)
    • Agilent spectrum analyzer with tracking generator (frequency range: 9 kHz – 3 GHz)
    • Agilent RF signal generator (frequency range: 9 kHz – 3 GHz)
    • Signal integrity analyzer (frequency range: DC to 30 GHz)
    • Function generator (frequency range: up to 120 MHz)
  • Simulation Tools:
    • Ansoft Designer: simulation of conductive interconnect parameters, materials, and process modifications; parametric analyses
    • HyperLynx: identification of critical PCB areas and solution design (LineSim and BoardSim modules, EMC-compliant design)

Anonymous

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Services

  • Selective deposition of functional materials using Aerosol Jet Printing (AJP), screen printing, and stencil printing
  • Plasma and ozone surface treatment prior to material deposition (surface energy adjustment, cleaning, surface functionalization, and activation)
  • Research on printed flexible sensors (gases and vapors, temperature, humidity, leakage, resin curing state), printed interconnect structures, and passive/active components (antennas, R, L, C, and OECTs – organic electrochemical transistors)
  • Development of hybrid electronic circuits on flexible substrates
  • Research on hybrid component assembly and interconnection of printed functional structures on flexible substrates (low-temperature soldering, conductive and non-conductive adhesive bonding, mechanical crimping, welding)
  • Research on electronic components and sensors based on conductive carbon nanomaterials (CNTs, graphene)
  • Research on eco-friendly green electronics (organic functional materials, cellulose substrates, energy-efficient and sustainable manufacturing processes)
  • Electrical characterization of electronic components and materials in DC and AC domains, including high frequencies up to 3 GHz
  • Design and simulation of planar components and circuits, signal transmission analysis, and design optimization

Equipment

  • Optomec AJ300 Aerosol Jet Printing system
  • EKRA E2 semi-automatic screen printing machine
  • Relyon Plasma Plasmabrush PB3 plasma surface treatment system
  • Laboratory furnaces and ovens for thermal processing and material curing
  • Vötsch environmental chambers for environmental testing (temperature, humidity, thermal shock, vibration, corrosive atmospheres)
  • Keithley precision DC instrumentation (SMUs, femtoammeters, nanovoltmeters, multichannel DMMs)
  • RF / High-Frequency Measurement Equipment:
    • Agilent RLC meter (frequency range: 1 MHz – 3 GHz)
    • Agilent spectrum analyzer with tracking generator (frequency range: 9 kHz – 3 GHz)
    • Agilent RF signal generator (frequency range: 9 kHz – 3 GHz)
    • Signal integrity analyzer (frequency range: DC to 30 GHz)
    • Function generator (frequency range: up to 120 MHz)
  • Simulation Tools:
    • Ansoft Designer: simulation of conductive interconnect parameters, materials, and process modifications; parametric analyses
    • HyperLynx: identification of critical PCB areas and solution design (LineSim and BoardSim modules, EMC-compliant design)

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  • R&D focused on specialized substrates for power applications and component interconnection technologies
  • Firing processes in protective nitrogen or argon atmospheres up to 1,100 °C
  • Design and fabrication of ceramic substrate samples with thick copper layers*
  • Design and process optimization for direct printing of thick copper layers on ceramic substrates (Thick Print Copper – TPC technology)
  • R&D into alternative interconnect technologies for power semiconductor dies (copper ribbon soldering, printed interconnections, sintering)
  • Adhesion and delamination testing of copper layers
  • Solderability and bondability testing of copper layers
  • Quality analysis of void-free vacuum soldering of large-area semiconductor components
  • Preparation of materialographic cross-sections

* Primarily utilizes Direct Bonded Copper (DBC) and Thick Print Copper (TPC) technologies. Conductive layer thickness reaches up to several hundred µm.

Equipment

  • Muffle furnace with a gas-tight retort
  • EKRA E2 semi-automatic screen printing machine
  • Lauda PROLINE PJL 12 calibration thermostatic bath with DLK 45 cooling unit
  • Multicore MUST II solderability tester
  • K&S 4700 semi-automatic wire bonder / bonding station
  • LABORTECH 3.030 testing machine for layer adhesion measurement (up to 1 kN)
  • Thermal shock chamber (rapid transition: –80 °C to 220 °C)
  • 180-liter environmental chamber (–70 °C to 180 °C, 10% to 98% RH)
  • 600-liter environmental chamber (–70 °C to 180 °C, 10% to 98% RH) with combined climatic and vibration testing capabilities
  • Corrosion test chamber (condensation and salt spray/salt fog testing)
  • GE Phoenix v|tome|x s240 microfocus X-ray inspection system for 3D Computed Tomography (CT) including standard 2D inspection
  • Olympus LEXT OLS5000 laser confocal microscope
  • Phenom ProX SEM (scanning electron microscope) with EDX elemental analysis
  • Keithley precision DC instrumentation (SMUs, femtoammeters, nanovoltmeters, multichannel DMMs)

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  • R&D in chemiresistive gas sensors (e.g., NO₂, NH₃, CO) based on organic materials and carbon nanostructures
  • R&D in electrochemical gas sensors (e.g., NO₂, NH₃, C₂H₄) based on polymer electrolytes
  • Development and testing of sensors for heavy metal detection in water
  • Development of fully printed sensor elements
  • Topology design of electrode structures for sensor elements
  • Deposition of electrode structures and sensing layers
  • Electrical characterization of sensor elements and materials in DC and AC domains, including high frequencies up to 3 GHz
  • Development of electronic readout and evaluation circuits for sensors

Equipment

  • Computer-Controlled Gas Mixing Apparatus:
    • System equipped with seven mass flow controllers (Sierra Instruments)
    • Testing capability under controlled environments: variable relative humidity (20–80%), temperature (0–100 °C), analyte flow rates (0.2–1.5 L/min), and analyte concentrations from hundreds of ppb to hundreds of ppm
  • PGSTAT204 Multichannel Potentiostat / Galvanostat with Electrochemical Impedance Spectroscopy (EIS)
  • AC and DC Measurement Instrumentation: AC up to 3 GHz; DC precision equipment including SMUs, femtoammeters, nanovoltmeters, and multichannel DMMs
  • Additive Deposition Equipment for Functional Materials:
    • EKRA E2 screen printing system
    • Optomec AJ300 Aerosol Jet Printing system
  • Electrical Contacting and Interconnection Equipment:
    • Soldering (manual micro-soldering stations, inline reflow oven, vapor phase soldering)
    • Conductive and non-conductive adhesive bonding (thermal and UV curing)
    • Nicomatic crimping system
    • Sunko 709A resistance spot welding station

Anonymous

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  • R&D of printed and textile sensor elements for temperature and relative humidity measurement
  • R&D of large-area liquid leakage sensors for construction, agriculture, and industrial applications
  • R&D of soil temperature and moisture sensors for agricultural applications, including nutrient detection
  • Topology design of electrode structures for sensor elements
  • Selective deposition of electrode structures and sensing layers on flexible and rigid substrates, including large-area carriers
  • Research on sensor elements based on carbon nanoparticle materials (CNTs, graphene)
  • Electrical characterization of sensor elements and materials in DC and AC domains, including high frequencies up to 3 GHz
  • Development of electronic readout and evaluation circuits for sensors

Equipment

  • Lauda PROLINE PJL 12 calibration thermostatic bath with DLK 45 cooling unit
  • Vötsch environmental chambers for environmental testing (temperature, humidity, thermal shock, vibration, corrosive atmospheres)
  • Laboratory furnaces and ovens for long-term thermal testing
  • Keithley precision DC instrumentation (SMUs, femtoammeters, nanovoltmeters, multichannel DMMs)
  • RF / High-Frequency Measurement Equipment:
    • Agilent RLC meter (frequency range: 1 MHz – 3 GHz)
    • Agilent spectrum analyzer with tracking generator (frequency range: 9 kHz – 3 GHz)
    • Agilent RF signal generator (frequency range: 9 kHz – 3 GHz)
    • Signal integrity analyzer (frequency range: DC to 30 GHz)
    • Function generator (frequency range: up to 120 MHz)
  • Additive Deposition Equipment for Functional Materials:
    • EKRA E2 screen printing system
    • Optomec AJ300 Aerosol Jet Printing system
  • Electrical Contacting and Interconnection Equipment:
    • Soldering (manual micro-soldering stations, inline reflow oven, vapor phase soldering)
    • Conductive and non-conductive adhesive bonding (thermal and UV curing)
    • Nicomatic crimping system
    • Sunko 709A resistance spot welding station

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  • Spectrum analysis up to 7 GHz, RF or pulsed signal power measurement up to 18 GHz
  • Receiver sensitivity measurement weighted by SNR, SINAD, BER, or other parameters; immunity testing against standard interfering signals and adjacent channel interference
  • Transmitter parameter measurement, modulation depth, frequency deviation, and spurious/parasitic emission measurement up to 7 GHz
  • Analysis of information-bearing or radiated interference signals up to 7 GHz, modulation type identification of unknown signals, vector signal analysis, signal distortion characterization, and origin identification of radiated signals
  • Long-term radio spectrum recording, offline evaluation, signal parameter variation analysis over time, error rate/failure frequency analysis, record correlation, and communication protocol analysis
  • Custom test and measurement signal generation up to 3 GHz
  • Vector measurement of component impedance and transmission characteristics up to 8 GHz, frequency-domain and time-domain analysis, time-gated reflection analysis
  • Measurement of antenna impedance and transmission properties, gain, directivity, and spurious/unwanted radiation
  • Noise figure measurement up to 13 GHz, phase noise measurement of oscillators and signal generators

Equipment

  • Rohde & Schwarz FSIQ 7 vector signal analyzer (20 Hz to 7 GHz)
  • Rohde & Schwarz ZVB-8 vector network analyzer (300 kHz to 8 GHz)
  • Agilent EXA N9010A spectrum analyzer (10 Hz to 13.6 GHz) with noise figure and phase noise measurement capability, noise generator
  • Anritsu MS420B vector network analyzer (10 Hz to 30 MHz)
  • Agilent ESA E4402B spectrum analyzer with tracking generator (100 kHz to 3 GHz)
  • Agilent ESA E4402B high-resolution spectrum analyzer (5 kHz to 3 GHz)
  • Rohde & Schwarz SMY-01 RF signal generator (9 kHz to 1.040 GHz)
  • Rohde & Schwarz SM300 RF signal generator (9 kHz to 3 GHz)
  • Rohde & Schwarz AM-300 baseband signal generator (100 MS/s)
  • Panasonic VP8194D RF signal generator for AM/FM broadcast receiver testing, including RDS and auxiliary features
  • EIDEN radio signal recording and generation system (modules: 4405A-001, 4222A-001, 5212B-002, 4406A-002)
  • Software-defined radio (SDR) units: Ettus and National Instruments (USRP N-200, NI USRP 2920, E100)

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  • Measurements on terrestrial and satellite digital TV (DVB) antenna signal distribution networks
  • Measurement of individual active and passive component properties within signal distribution networks
  • Measurement of BER, MER, QEF, and C/N parameters in signal distribution networks
  • Analysis of constellation diagrams and signal quality across individual OFDM subcarriers
  • Testing of set-top boxes and digital televisions under varying signal levels and quality conditions

Equipment

  • Promax TV Explorer II+ digital television broadcast analyzer (DVB-T, DVB-S, DVB-S2, DVB-C formats, analog TV, and radio broadcasting)
  • Promax RP-200 programmable pilot generator
  • Rohde & Schwarz FSIQ7 signal analyzer
  • Rohde & Schwarz ZVB8 vector network analyzer
  • Auxiliary tools for laboratory antenna distribution network testing (noise generators, amplifier stations, EMP Centauri cascade multiswitches)
  • Laboratory DVB-T and DVB-S signal distribution network for testing purposes
  • DekTec DVB-T/T2 and DVB-S/S2 signal generators
  • Alitronika AT780USB laboratory receiver

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  • Restoration of historical gramophone/phonograph audio recordings
  • Cleaning and decontamination of audio media, including inspection of physical and mechanical parameters
  • Audio capture using specialized pickup systems and digitization of mechanical vinyl/shellac recordings with IEC S78 or RIAA equalization curves (supports rotational speeds from 16 to 78 RPM)
  • Application of custom equalization curves for non-standard historical recording characteristics (e.g., CETRA, His Master's Voice, Columbia, Parlophone, DGG, Italia, NAB, NARTB, LGC)
  • Quality control and technical parameter verification of digitized audio tracks
  • Adaptive filtering, noise reduction, and suppression of acoustic artifacts caused by physical groove damage (de-clicking, de-crackling, and rumble/groove vibration removal)
  • Audio export to CD-DA (16-bit) with CD-Text, DVD-Audio (24-bit), or uncompressed/lossless audio file formats (16-bit or 24-bit)

Equipment

  • Professional audio technologies, playback, and restoration equipment from Ortofon, Technics, RME Audio, Steinberg, Sony, MRL, Philips, and OM&T

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  • Analysis, testing, and measurement of technical parameters for low-frequency and audio equipment; measurements in analog, digital, and mixed/hybrid domains; multichannel measurements
  • Analysis of devices with analog and digital interfaces (S/PDIF / TosLink, TDIF, ADAT, AES3 / AES-EBU, AES11, etc.)
  • Performance measurement of low-frequency equipment, preamplifiers, and power amplifiers according to (ČSN) EN 61305 and (ČSN) EN 60268 standards up to 30 kW output power
  • Measurement of technical parameters for digital audio sections in audio and audiovisual equipment according to (ČSN) EN 61606 (professional audio gear, consumer electronics, and PC audio subsystems); technical evaluation of A/D and D/A converters per AES specifications
  • Quality measurement of speech transmission and processing in telecommunication systems using objective testing methods (PESQ, POLQA)
  • Quality assessment of high-quality wideband audio transmission and processing — PEAQ (ITU-R BS.1387), prediction of subjectively perceived audio quality, and perceived audio loudness measurement (ITU-R BS.1770)
  • Measurement of technical parameters for analog and digital recording devices (tape recorders, turntables, CD-DA systems, DVD-Audio, SACD, MiniDisc, MP3 recorders, HDD recorders, etc.) and audio stages of analog and digital TV and radio receivers

Equipment

  • Measurement technology and systems from Audio Precision, Rohde & Schwarz, Dolby Laboratories, Prism Sound, RME Audio, Brüel & Kjær, Earthworks, Neutrik – NTI Audio, Agilent, Tektronix, National Instruments, OPTICOM, AFMG – SDA, MRL, Philips, and OM&T

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  • Tracking of satellites in Low Earth Orbit (LEO), verification of orbital parameters via satellite radio beacon reception
  • Satellite radio communication signal recording, passive extraction of basic telemetry from uncommanded satellite transmissions
  • Active satellite communication: telecommanding (command uplink), managed data upload/download, telemetry collection, and scientific experiment data retrieval

Equipment

  • RFHAMDESIGN 1.9 m parabolic dish antenna for the 2400 MHz band with a helical feed
  • M2 Antenna Systems (MSQUARE) 436CP30 cross-Yagi antenna for the 435 MHz band (14.1 dBdc gain)
  • M2 Antenna Systems (MSQUARE) 2MCP14 cross-Yagi antenna for the 145 MHz band (10.2 dBdc gain)
  • ICOM IC-910H transceiver for 145, 435, and 1200 MHz bands, equipped with low-noise amplifiers (LNAs)
  • AlfaSpid Big RAS dual-axis antenna rotator/positioner with upgraded MD-01 controller (azimuth and elevation control)
  • Linux Debian-based host PC and software suite featuring satellite tracking, transceiver and positioner control interfaces, scripting environment, MySQL database, and local/remote user interfaces
  • Auxiliary Equipment: Uninterruptible Power Supply (UPS), fiber-optic internet connection, hardware AX.25 Terminal Node Controller (TNC), universal software TNC, and GomSpace NanoCom TNC
  • Experimental Equipment: Ettus USRP N-200 software-defined radio (SDR) and custom-hardware experimental radio for the 2400 MHz band

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  • Development of control systems and electronics for transportation engineering and vehicle technology
  • Development of control systems for the energy sector
  • Development of power electronics applications featuring power converters
  • Design of single-board control units (SBCs / controllers)
  • Implementation of modular control systems in 19" rack form factors
  • Development of systems utilizing high-speed communication interfaces (e.g., LVDS up to 1.3 Gbps, Ethernet, USB 2.0/3.0)
  • FPGA design for Altera programmable logic devices, including custom architecture and utilization of platforms such as Avalon® Qsys
  • Primary hardware platforms utilized: Hercules™ ARM® Safety microcontrollers; ST microcontrollers with ARM Cortex-M3/M4 cores; TI TMS320F28335, TMS320F28377
  • Flexible collaboration options: expert consultations, contract research and development, innovation vouchers, and joint grant research projects

Equipment

  • MSOX91304A high-frequency oscilloscope: 13 GHz bandwidth / 4 channels, sampling rate up to 80 GSa/s (2 channels), low-level noise floor measurement of 1.30 mVrms @ 13 GHz / 50 mV/div; compliance testing suite for USB 2.0/3.0, Ethernet, and DDR
  • Rohde & Schwarz ESPI7 EMI test receiver: frequency range: 10 Hz to 7 GHz, resolution: 0.01 Hz, integrated tracking generator and I/Q modulator
  • Keysight 16854A 136-channel precision logic analyzer: sampling rate: 2.5 GHz / 5 GHz (full / half channel), memory depth: 256 M
  • Keithley 2401 single-channel parametric DC SourceMeter: voltage resolution: 5 µV, current resolution: 50 pA, max output: 20 V / 1 A
  • Keysight E4980A precision LCR meter: basic accuracy: 0.05%, frequency range: 20 Hz to 2 MHz
  • Keysight 33600A dual-channel function / arbitrary waveform generator: bandwidth: 120 MHz, sampling rate: 1 GSa/s
  • ESSEMTEC EXPERT-LINE UP3100 semi-automatic SMD pick-and-place station: equipped with an optical alignment prism for BGA placement
  • Software Suite: Altium Designer, MATLAB, Intel Quartus Prime, Atollic, Code Composer Studio, SolidWorks

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  • Development of modular test systems for electronic device testing
  • Selection and assembly of control/host computers, along with the design of test system subsystems based on the chosen platform
  • Development of test plans, implementation, and optimization of specific test routines tailored to device specifications
  • Adaptation of the universal RATS interconnection/routing platform based on signal counts and types, including signal conditioning module design
  • Development of custom, application-specific modules
  • Integration of external measurement instruments into the test system
  • Flexible collaboration options: expert consultations, contract research and development, innovation vouchers, and joint grant research projects

Equipment

  • Complete portfolio of National Instruments development software tools (LabVIEW, TestStand, etc.)
  • RATS universal modular test platform, featuring:
    • Signal conditioning and interface modules for external data signals (60 V DC, 500 mA DC)
    • Configurable backplane supporting 300 data signals (60 V DC, 500 mA DC) and a shared 3-wire power bus (275 V DC / 40 A)
    • Fault insertion / error simulation modules (short circuits, disconnections, voltage sags, and dropouts) up to 275 V / 20 A
    • Universal matrix relay modules with 4×32 (128) relays (60 V DC, 500 mA DC)
    • Software driver libraries for .NET and LabVIEW

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  • Development of specialized sensors with integrated intelligence (e.g., liquid and gas flow meters, dew point sensors, pixelated radiation detectors)
  • Development of sensors for demanding and niche applications (high pressure, vacuum, wirelessly/contactlessly powered sensors, sensors for measurements on rotating machinery rotors)
  • Flexible collaboration options: expert consultations, contract research and development, innovation vouchers, and joint grant research projects

Equipment

  • MSOX91304A high-frequency oscilloscope: 13 GHz bandwidth / 4 channels, sampling rate up to 80 GSa/s (2 channels), low-level noise floor measurement of 1.30 mVrms @ 13 GHz / 50 mV/div; compliance testing suite for USB 2.0/3.0, Ethernet, and DDR
  • Rohde & Schwarz ESPI7 EMI test receiver: frequency range: 10 Hz to 7 GHz, resolution: 0.01 Hz, integrated tracking generator and I/Q modulator
  • Keysight 16854A 136-channel precision logic analyzer: sampling rate: 2.5 GHz / 5 GHz (full / half channel), memory depth: 256 M
  • Keithley 2401 single-channel parametric DC SourceMeter: voltage resolution: 5 µV, current resolution: 50 pA, max output: 20 V / 1 A
  • Keysight E4980A precision LCR meter: basic accuracy: 0.05%, frequency range: 20 Hz to 2 MHz
  • Keysight 33600A dual-channel function / arbitrary waveform generator: bandwidth: 120 MHz, sampling rate: 1 GSa/s
  • ESSEMTEC EXPERT-LINE UP3100 semi-automatic SMD pick-and-place station: equipped with an optical alignment prism for BGA placement
  • Software Suite: Altium Designer, MATLAB, Intel Quartus Prime, Atollic, Code Composer Studio, SolidWorks

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  • Development of specialized electronic devices for measurement, control, and regulation, optimized for low-volume production
  • Mechanical design and engineering
  • Device design finalization up to validated prototype stage, including full technical documentation and manufacturing data packages
  • Assistance with setting up low-volume device manufacturing
  • Design of analog circuits for signal processing and sensor signal conditioning
  • Design of digital circuits based on FPGAs or embedded processors
  • Software and firmware development for digital circuits
  • Power supply circuit design
  • Industrial and enclosure design of devices
  • Front panel fabrication
  • Flexible collaboration options: expert consultations, contract research and development, innovation vouchers, and joint grant research projects

Equipment

  • MSOX91304A high-frequency oscilloscope: 13 GHz bandwidth / 4 channels, sampling rate up to 80 GSa/s (2 channels), low-level noise floor measurement of 1.30 mVrms @ 13 GHz / 50 mV/div; compliance testing suite for USB 2.0/3.0, Ethernet, and DDR
  • Rohde & Schwarz ESPI7 EMI test receiver: frequency range: 10 Hz to 7 GHz, resolution: 0.01 Hz, integrated tracking generator and I/Q modulator
  • Keysight 16854A 136-channel precision logic analyzer: sampling rate: 2.5 GHz / 5 GHz (full / half channel), memory depth: 256 M
  • Keithley 2401 single-channel parametric DC SourceMeter: voltage resolution: 5 µV, current resolution: 50 pA, max output: 20 V / 1 A
  • Keysight E4980A precision LCR meter: basic accuracy: 0.05%, frequency range: 20 Hz to 2 MHz
  • Keysight 33600A dual-channel function / arbitrary waveform generator: bandwidth: 120 MHz, sampling rate: 1 GSa/s
  • ESSEMTEC EXPERT-LINE UP3100 semi-automatic SMD pick-and-place station: equipped with an optical alignment prism for BGA placement
  • Software Suite: Altium Designer, MATLAB, Intel Quartus Prime, Atollic, Code Composer Studio, SolidWorks

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  • Hardware and software design for embedded applications, ranging from microcontrollers to PC-based systems
  • Software driver development for embedded systems
  • Development of comprehensive software solutions, including custom user interfaces tailored to specific applications
  • Utilization of database systems for data storage, analysis, and visualization of controlled processes
  • Deployment and implementation of internet technologies for remote access, monitoring, and data acquisition
  • Application of buses and protocols for wired and wireless communications, incorporating data transmission security requirements
  • Development of applications utilizing Real-Time Operating Systems (RTOS)

Equipment

  • Application Development Toolchains for Assembly, C/C++, C#, and Java: Keil µVision, Atollic TrueSTUDIO, Microsoft Visual Studio, Code Composer Studio, Eclipse
  • Database Platforms: MySQL, Microsoft SQL Server, Firebird, PostgreSQL, and others
  • Hardware Development Platforms for 8-bit, 16-bit, and 32-bit microcontrollers based on proprietary architectures as well as ARM Cortex-M and Cortex-A cores
  • Testing Hardware for high-performance systems based on Intel x86 and ARM architectures
  • Wireless Communication Modules based on Bluetooth, Wi-Fi, LoRa, Zigbee, Nordic Semiconductor solutions, and various other protocols
  • Microcontroller Development and Debugging Tools: Atmel-ICE, GDB debugger, SEGGER J-Link, ST-LINK, and others
  • PLC-Based Control Systems and Phar Lap modules for real-time Windows extensions

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  • Development of systems utilizing industrial communication protocols
  • Development of systems utilizing automotive buses
  • Implementation and analysis of communication buses for Ethernet, CAN, FlexRay, LIN, RS-485, RS-232, M-Bus specifications, etc.
  • Implementation of higher-layer protocols for CAN (CANopen, TTCAN), Ethernet (TCP/IP), etc.
  • Design of distributed control systems based on Industrial Ethernet
  • Analysis and troubleshooting / issue localization in industrial communications
  • Testing and analysis of bus networks regarding immunity to interference and communication reliability
  • Selection and design of suitable industrial communication architectures
  • Diagnostics of automotive bus systems
  • System testing utilizing rest-bus simulation

Equipment

  • Vector Informatik CANoe analysis and simulation software
  • Agilent MSO7104A 4-channel oscilloscope (1 GHz bandwidth, 4 GSa/s sampling rate) with integrated 16-channel logic analyzer and protocol decoding/analysis for FlexRay, CAN, LIN, SPI, I²C, and UART/RS-232
  • Agilent / Keysight 16802A 68-channel logic analyzer

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Services

  • Electronics development using modern components (DSP, FPGA, ASIC, etc.) in sensor, actuator, and diverse application systems
  • Precision FPGA design with demanding requirements for signal processing performance and time-domain timing constraints
  • Development of highly specialized electronics
  • Simulation of digital, analog, and mixed-signal systems
  • Development of radiation-hardened / radiation-tolerant electronics
  • Development and consulting for electronics design regarding EMC (Electromagnetic Compatibility)
  • Implementation of signal processing algorithms

Equipment

  • MSOX91304A high-frequency oscilloscope: analog bandwidth: 13 GHz / 4 channels, sampling rate up to 80 GSa/s (2 channels), low-level noise floor measurement of 1.30 mVrms @ 13 GHz / 50 mV/div; compliance testing suite for USB 2.0/3.0, Ethernet, and DDR
  • Rohde & Schwarz ESPI7 EMI test receiver: frequency range: 10 Hz to 7 GHz, resolution: 0.01 Hz, integrated tracking generator and I/Q modulator
  • HP 4140B picoammeter: measurement range from ±0.001 pA to 0.2 mA
  • Agilent 16822A logic analyzer: 68 channels, 4 GHz timing zoom, 64 K memory depth
  • Keysight 16854A 136-channel precision logic analyzer: sampling rate: 2.5 GHz / 5 GHz (full / half channel), memory depth: 256 M
  • Keysight 33600A dual-channel function / arbitrary waveform generator: bandwidth: 120 MHz, sampling rate: 1 GSa/s
  • Software Suite: Altium Designer, MATLAB, PADS, VHDL-AMS

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Services

  • Single-piece and prototype soldering of all surface-mount package types (BGA, QFN, CSP, µSMD, etc.)
  • Soldering of advanced processors (DSPs, FPGAs, ASICs, etc.), sensors, driver ICs, and passive components
  • Precision fabrication of stencils/masks and placement fixtures for all package types with 0.01 mm accuracy
  • Thermal profile analysis for package soldering and desoldering utilizing bottom IR preheating and thermocouple probes
  • Thermal profile optimization according to chip manufacturer specifications
  • Vision-guided / camera-assisted component placement on PCBs
  • Rework and replacement of defective chips on fully assembled boards
  • Assembly of prototype PCBs required during the development of custom and novel hardware systems
  • Implementation of ISO 9000 standards across mechanical and electronic assembly processes, ensuring high repeatability and reliability

Equipment

  • MARTIN-SMT rework and assembly station: Micro-pipette chip handling system, high-precision micro-positioning stage, optical vision alignment system with interchangeable lenses (BGA, CSP, MLP), hot air soldering unit, power-controlled bottom IR preheater, component reballing and refurbishment capabilities

Parameter

MARTIN-SMT Specification

Max. PCB Width

390 mm

Max. PCB Length

500 mm

Positioning Travel (X / Y / Z / θ)

75 mm / 75 mm / 23 mm / ±10°

Positioning Resolution / Accuracy

0.01 mm

Hot Air Temperature / Airflow

50–400 °C (2–35 l/min)

Bottom IR Heating Power

900–4800 W

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Services

  • Rapid fabrication of single-sided and double-sided non-plated-through (non-PTH) printed circuit boards (mechanical milling on FR-4 substrate using isolation milling techniques)
  • Precision milling of specialized substrates (e.g., Teflon, Macor) for custom RF and specialized applications
  • Milling and engraving of simple structural components and panels from aluminum sheet metal

Equipment

  • LPKF ProtoMat S100 circuit board plotter / PCB milling machine (equipped with a vacuum holding table and optical camera alignment system)

Parameter

ProtoMat S100 Specification

Max. Material Size

A4+ (225 × 300 mm)

Min. Trace Width / Isolation Gap

0.25 / 0.25 mm

Max. Spindle Speed

100,000 RPM

Positioning Resolution / Accuracy

0.25 µm / ±1 µm

Drilling / Milling Diameter

0.2–3 mm

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Services

  • KETcube: Modular hardware system (LPWAN communication, battery management, environmental sensors) with dedicated operating software, providing a universal development platform for IoT applications
  • SmartCampus: Testing polygon/testbed for Smart City technologies operating under real-world conditions within the University of West Bohemia (ZČU) campus (e.g., smart parking, smart lighting, environmental sensing)
  • Design, development, testing, functional, mechanical, and climatic testing, as well as upscaling of Smart City technologies (including smart parking, intelligent lighting, urban sensor systems, communication networks, and cloud storage)
  • Smart Farming: IoT solutions for precision agriculture (e.g., remote monitoring of agricultural soil parameters across large land areas)
  • Development of fire detection/sensing systems (e.g., ruggedized sensor modules for UAV/drone-based deployment in hazardous or hard-to-reach terrain)
  • Design and prototyping of end devices for IoT networks (LoRaWAN, Sigfox, NB-IoT)
  • Design and implementation of ultra-low-power electronic systems and wireless sensor networks (WSNs)
  • Execution of collaborative projects and contract research in the Smart City and IoT domains
  • Consulting and expert advisory services for Smart City and IoT applications

Equipment

  • Professional hardware design suite (Altium Designer)
  • Software development toolchains for embedded devices (compilers, IDEs)
  • Mobile application development environments for Android and iOS platforms
  • Smart City technology testbed/polygon on the university campus grounds (see www.smartcampus.cz)
  • Prusa i3 MK3 3D printer for rapid prototyping
  • Robodrone Kingfisher UAV for testing sensor systems designed for aerial mounting or drone delivery/deployment
  • Testbed LoRaWAN IoT network covering the ZČU campus, integrated with the Pilsen LORATECH network
  • Testbed fully scalable Smart Cloud platform for IoT and general data applications

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