OEM/ODM Sensing Technology Support & Precision Test Systems

Providing custom industrial-grade power solutions, digital instrumentation, and sensor calibration frameworks that power international automation, aerospace testing, and renewable systems.

Precision Power & Testing Reliability

Headquartered in the global electronics manufacturing epicenter of Shenzhen, China, Shenzhen Myami Power Technology Co., Ltd. (MYAMI) stands as a premier technology-driven manufacturer and integrated solution provider. We specialize in engineering and producing high-precision, industrial-grade programmable power supplies, custom calibration systems, and sophisticated electrical test equipment designed for rigorous commercial validation processes.

Sensing technologies form the neural networks of modern industry, operating inside electric powertrains, automated assembly lines, high-frequency grids, and advanced laboratories. These micro-sensors—whether measuring pressure, current, temperature, or magnetic fields—require incredibly clean power architectures and precise frequency simulators for calibration. MYAMI bridges this operational gap by developing specialized benchtop and industrial systems that ensure uncompromised calibration and testing integrity.

Our global presence services elite engineering sectors, from defense and aviation contractors to semiconductor fabrication plants. By designing and manufacturing all hardware in-house, MYAMI provides customized OEM/ODM partnerships that align directly with strict product lifecycles and compliance protocols.

MYAMI Power Technology Headquarters and Laboratory Design Center

Core Engineering Pillars

Underpinning our manufacturing excellence and OEM/ODM capabilities across industrial sectors.

Programmable DC Power

Delivering ultra-low ripple, rapid transient response, and multi-digit LED accuracy. Perfect for delicate micro-sensor R&D, semiconductor evaluation, and custom PCB debugging.

High-Voltage Test Sources

Built to deliver high-current, high-voltage regulated AC/DC power. Engineered for heavy industrial motor testing, electroplating, and sensor aging validation.

EV & Renewable Systems

Simulating battery dynamics, solar MPPT arrays, and variable AC grids. Supports testing of automotive battery management systems (BMS) and onboard chargers.

Lab Instrumentation

Broad portfolio of secondary instruments including multi-channel digital oscilloscopes, smart multimeters, and high-frequency signal generators for laboratory workflows.

100%
In-House QA Validation
45+
Global Export Markets
0.01%
Ultra-Low Output Ripple
ISO9001
Certified Factory Floor

Macro Solutions & Sensing Ecosystems

Ensuring operational safety and signal integrity for critical industrial infrastructures.

Supporting IoT and Industrial Sensor Calibration

From pressure transmitters in heavy hydraulics to optical encoders in surgical robotics, modern sensing technology requires highly accurate validation platforms. Variations in incoming DC power can result in microvolt errors, disrupting sensor calibration curves. MYAMI programmable power systems guarantee transient recovery times under 50 microseconds and noise coefficients that protect high-sensitivity analogue-to-digital converter (ADC) architectures.

Smart Factory and Automative Sensing Integration

With the rise of Industry 4.0, real-time sensing networks monitor entire production lines. To simulate extreme operational environments, manufacturing engineers rely on MYAMI's adjustable DC sources and function generators to stress-test sensor housings, check high-potential limits, and guarantee electromagnetic compatibility (EMC). Our integration of RS485, RS232, and CAN communication protocols ensures that our test equipment integrates directly into central SCADA and automation control setups.

Automated Testing Rigs powered by MYAMI Stable Power Source

Renewable Grid Simulations and Battery Emulation

Sensing technology plays a critical role in monitoring EV battery state-of-health (SoH) and high-power solar MPPT trackers. We support engineers by designing high-power hybrid solar inverters and DC test sources that emulate variable input profiles. Whether you are validating a new battery management system (BMS) current sensor or testing the insulation resistance of a solar array combiner box, our units provide the exact electrical profiles required for functional testing.

Broad-Spectrum Laboratory Test Frameworks

To supplement custom sensors, research organizations utilize our oscilloscopes and high-frequency signal generators. Having a unified provider for source power, signal generator signals, and measurement output simplifies procurement, reduces calibration variance, and ensures robust compliance across your entire test bench.

Advanced Engineering Testing Bench Layout

Factory Execution & Quality Management Workflow

Step-by-step trace of MYAMI's state-of-the-art production assembly and precision calibration line.

Hardware Tools & Testing Machinery

Every R&D desk is equipped with elite calibration instruments to ensure tight manufacturing tolerance.

Global Compliance & Regional Integration

Ensuring local installation compatibility and international product certification.

ISO9001, CE & RoHS Certifications

Every industrial device leaves our factory carrying the regulatory credentials required for global deployment. Strict adhering to CE safety standards prevents operational failures in automated factories, while RoHS compliance guarantees non-toxic chemical compositions. Additionally, our units feature structural galvanic isolation to insulate low-voltage microcontrollers from sudden grid fluctuations.

Localized Calibration Protocol Support

Grid conditions vary drastically between countries—European facilities operate at 230V/50Hz, while North American plants operate at 120V/60Hz or high-power 480V 3-phase circuits. MYAMI programmable AC and DC units provide flexible phase configuration and wide input ranges, allowing local field service engineers to match target system requirements without adding external step-up transformers.

Technical Roadmap: Wide-Bandgap Semiconductor Testing & Future Development

As industrial demands transition toward Silicon Carbide (SiC) and Gallium Nitride (GaN) technologies, operating frequencies are increasing from kilohertz to megahertz. This leap requires testing tools that handle steeper slope transients (dv/dt) without losing signal synchronization. MYAMI is actively designing a next-generation class of power simulators featuring:

  • Higher Loop Response Speeds: Reducing transient recovery limits from 50μs down to below 10μs for high-speed dynamic loading scenarios.
  • Smart Digital Interfaces: Upgrading native RS485 and CAN protocols to include standard Ethernet (LXI) interfaces for direct cloud telemetry integration.
  • Modular Phase Coupling: Enabling users to stack modular, compact rack frames dynamically, increasing current and voltage capacity up to 100kW without replacing primary chassis controllers.

Industry Technical Q&A

Find expert answers to common questions about calibration power supplies and sensor validation testing.

Why is ultra-low ripple crucial for testing modern sensing technologies?

Modern micro-sensors (like MEMS accelerometers, Hall-effect current sensors, or biomedical telemetry chips) operate on small analog signals. High ripple or high-frequency switching noise from a standard DC power supply can bleed into the sensor’s measurement paths, causing incorrect readings and calibration drift. Using a linear or high-stability programmable DC power supply with ultra-low ripple (<0.01%) ensures clean signal acquisition during validation.

What communication protocols are supported for automated factory systems?

MYAMI programmable test systems come equipped with standard Modbus-RTU over RS485/RS232 connection interfaces. Select models also support CAN communication protocols, allowing smooth integration into automotive diagnostic lines, SCADA production networks, and custom LabVIEW test configurations.

Do you offer OEM/ODM design customization for specialized physical form factors?

Yes. Our in-house research and development team manages PCB design, thermal simulation analysis, and structural firmware programming. We can modify chassis sizing, integrate custom front-panel touchscreens, adjust voltage/current limits, and add dedicated safety logic protocols based on your specific industrial applications.

How does high-temperature aging protect equipment from operational wear?

During manufacturing, components may contain micro-defects that trigger early failures (infant mortality). Our factory subjects every power supply to continuous full-load, high-temperature aging cycles. This thermal stress reveals component weaknesses before packing, ensuring maximum reliability once installed in the field.

Can MYAMI hybrid inverters simulate solar panel MPPT curves?

Yes, our solar hybrid inverters and related programmable DC power sources are designed to simulate fluctuating solar panel output profiles. They handle variable input voltages, sudden shading effects, and changing battery load scenarios, allowing developers to test grid response and inverter conversion efficiency.

What built-in safety protection protocols are included?

Every power source includes multi-layered safety mechanisms: Over-Voltage Protection (OVP), Over-Current Protection (OCP), Over-Temperature Protection (OTP), and constant Short-Circuit Protection. If an overload occurs, the output cuts off instantly to prevent damage to the unit or the device under test (DUT).

How are multimeters and oscilloscopes calibrated for accuracy?

All MYAMI multimeters, oscilloscopes, and frequency generators undergo multi-point calibration against NIST-traceable standards on our calibration benches. Each device is tuned to guarantee measurement tolerances align with their official specification datasheets.

What is the standard production lead time for bulk custom OEM orders?

For standard equipment modifications, prototyping takes 2 to 3 weeks. Full-scale production lead times generally range between 4 and 6 weeks, depending on component availability, order size, and specific QC validation protocols.