
Applications
For more information, please fill out the Get In Touch form to the right.


A) Battery
A) ICL
A) EMI Filters
A) EMI Filters
A) DC Contactor
B) BLE
C) Displays
C) Displays
C) LEDs
C) Switches
D) MCU
D) Memory
D) DIP Switches
E) MCU
E) GPSS
F) Temp Probe
F) Thermostats
F) Encoder
F) Limit Switch
G) PTO Switch
H) Thyristors
H) Power XFMR
H) ICL
H) RCD
H) EBG
I) DC Contactor
I) EMI Filters
J) E-caps
K) MCU
K) Memory
K) DIP Switches
L) Power Switch

G BLE SoC
G Cellular SiP
G PMIC
G Crystal
H RF Antennas
K Temp Probe
K Temp Sensor
K Temp Sensor


Description:
- Frequency Control, Piezoelectric, RF Filters, Temp Sensors, Transducers
- MIL-SPEC / MIL-COTS Panel Mount Indicators
- Ceramic Capacitors, EMI Filters, Thin Film Metalized Substrates
- MIL-COTS M24308 D-sub Connectors
- EMI/RFI Shielding, Custom Light-Gauge Components; ITAR, NADCAP, ISO & AS9100
- Resistors, Inductors/Transformers, Delay Lines, Capacitors; ISO 9001 ITAR
- Electrical Feedthroughs, Sealed Electronic Packaging, Thermal Fuses
- LCD Displays for Police, Fire And Military
- PCBA production, systems integration & testing services, enclosure fabrication, product design, sustaining engineering, supply chain management services; HASS, MIL-STF-810G, MIL-STD-461; AS9100:2016, IPC-610 Class 2 and Class 3 and J-STD-001F and J-STD-001FS


EV Systems
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Commercial Cooking
A | B | C | D | E | F |
Power | Control | Display/HMI | Mechanical | Sensors | Circuit Protection & EMI |

Triad Magnetics: An Introduction to Impedance Matching Transformers
Triad Magnetics's An Introduction to Impedance Matching Transformers covers everything you need to know, including:
- When and why impedance matching is so important
- How impedance matching works
- How it can be easily implemented during system design using an impedance matching transformer
- Practical example problems and solutions
- And more

Handheld Devices
Electronics have come a long way from room-sized computers and briefcase-enclosed car phones. From mobile phones to video games to printers, nearly every device has an on-the-go, handheld option.
However, convenience alone only goes so far – a truly effective handheld design involves much more than just fitting in one’s hand, such as precision and durability. Developing a Handheld Device: Technical Challenges and Pitfalls lays out the rest.
This whitepaper covers:
- Ergonomics of the Hand
- Beginning the Design
- The Meter, Display, and Keyboard
- Power Supply Design
- The Enclosure
- Teardown Examples

Infotainment
From Cloud-enabled, IoT-driven interaction capabilities to user-oriented comfort, navigation, and entertainment, today’s vehicles must leverage a range of new technologies to meet consumer demands.
Properly implementing these advanced functionalities relies on designers choosing the best components that make up the user interface.
Review all you need to know to optimize the user experience in our new whitepaper: The User Interface is the "Final Mile" in a Vehicle Infotainment System Deployment.
This paper breaks down the key design considerations for choosing components that make up a vehicle’s center stack, exploring various subsystems and their impact on utility. Sections include:
- Infotainment and interface
- Deployment considerations
- The user interface
- Behind the console
- No electronics without electricity
- Driving forward
Custom Partners
Serving various markets with memory, semiconductor products, thermal, cable solutions, heatsinks, magnetics, EMI/RFI/EMC, fans, displays, power supplies, relays, transformers, magnetics, switches, circuit protection, sensing, RF/Communication, motors, optics, mechanical, and passive components.



