Certifications

iso9001
iso14001
icas
Delivery
security
warranty
roiginal
RoHS
UL
Millionen elektronischer Teile auf Lager. Preis- und Vorlaufzeitangebote innerhalb von 24 Stunden.

The new current sensor eliminates the need for a ferromagnetic core

Dez 4 2024 2024-12 Power Melexis Technologies NV
Article Cover
Melexis has unveiled the MLX91235, a new current sensor that eradicates the necessity for a ferromagnetic core. The device expands its portfolio, allowing larger currents to be measured through external primary conductors like PCB traces and busbars. It supports automotive and alternative mobility applications like inverters, BMSs and low-voltage DC-DC converters.

     Melexis has introduced the MLX91235, a new type of current sensor that eliminates the need for a ferromagnetic core. Designed to meet the needs of automotive and industrial current sensing applications, the MLX91235 supports PCB and bus current sensing in systems such as inverters, low voltage DC-DC converters, chargers, EHCs, bms, intelligent thermal fuses, and more. The device expands its portfolio to allow greater current to be measured through external primary conductors, such as PCB wiring and bus bars. It supports automotive and alternative mobile applications such as inverters, bms and low-voltage DC-DC converters.

     Power electronics designers are constantly faced with the challenges of the size and weight of modern electric vehicle systems, resulting in an ongoing need for smaller, lighter solutions. By eliminating the ferromagnetic concentrator, the footprint of the gradient measuring device is significantly smaller than that of current typical sensor technology and the measurement error associated with hysteresis is eliminated. Differential magnetic field measurement between the two internal sensing elements provides accurate current feedback and eliminates stray field effects. With a 500kHz bandwidth and a 2μs response time, the sensor is ideal for high-speed applications, such as motor control and converter applications.

     The device's intelligent digital architecture elevates the sensor offering, ensures high measurement accuracy, and combines several key features to help improve development, calibration, and system integration. When dealing with inherent nonlinearity, simulation architectures often rely on piecewise linear compensation. However, the device's digital architecture allows for more precise and complex compensation, resulting in a more accurate and smoother output. The all-digital based thermal compensation further ensures that it provides the highest precision measurements under its operating conditions.

     The device's "open" calibration is configured via standard SPI, allowing for field configuration via any MCU. Digital calibration provides a more direct and faster experience than analog coreless sensors, allowing for easy adjustments to elements such as digital gain correction.

     The built-in 16-bit overcurrent detection (OCD) allows for asymmetric thresholds and includes two configurable threshold ranges. It provides a configurable detection time with a minimum duration of 2μs and an optional stripping strategy. This strategy helps avoid false positives in harsher EMC environments. Further enhancing its value, the MLX91235 also includes a 10-bit temperature feedback mechanism that enables accurate junction temperature measurement via high-speed SPI output transmission.

     The device complies with ISO 26262 as an ASIL B Safe Element out of Context (SEoOC). In addition to ASIL B requirements, it also integrates a sophisticated built-in self-check function that can be triggered by SPI. This feature enables the sensor to report critical information such as temperature, undervoltage, and mechanical stress. Notably, unlike traditional diagnostics, this feature includes a complete signal chain up to the application MCU that reads the sensor.

     "Melexis has a rich history in current sensing technologies and the cordless MLX91235 is our next step," said Bruno Boury, Melexis Product Line Director. He continued, "The sensor brings the best combination of in situ rapid calibration, including OCD, compliance with the ISO26262 standard, and high precision thanks to the sensor's digital core. These capabilities, combined with Melexis' customer support, are the recipe for a successful introduction of this new technology into the space."

Die Produkte, an denen Sie interessiert sein könnten

1082 1082 MECHANICAL DECADE COUNTERS - LAR 3528

More on Order

1733 1733 ANEMOMETER WIND SENSOR ANLG VOUT 6912

More on Order

3290 3290 SENSOR RTD 100OHM PROBE 13464

More on Order

1343 1343 SONIC RANGEFINDER HR-USB-EZ1 6714

More on Order

985 985 MAXSONAR RANGEFINDER HRLV--EZ4 2052

More on Order

632 632 STARTER PK EL STRIP 100CM AQUA 8280

More on Order

1379 1379 ADDRESS LED DISCRETE SERIAL RGB 8082

More on Order

2824 2824 ADDRESS LED STRIP SERIAL RGBW 5M 4788

More on Order

2036 2036 ADDRESS LED MATRIX I2C YLW-GRN 5094

More on Order

2858 2858 ADDRESS LED MODULE SERIAL RGBW 8190

More on Order

2841 2841 ADDRESS LED STRIP SERIAL RGBW 1M 6600

More on Order

3729 3729 ADDRESS LED MODULE SERIAL RGB 6174

More on Order

3811 3811 ADDRESS LED STRIP SERIAL RGB 7740

More on Order

420 420 ADDRESS LED MATRIX RGB 8766

More on Order

881 881 ADDRESS LED 7 SEG I2C BLUE 7326

More on Order

2852 2852 ADDRESS LED RING SERIAL RGBW 4446

More on Order

2574 2574 ADDRESS LED STRIP SERIAL RGB 1M 7146

More on Order

2758 2758 ADDRESS LED DISCR SER RGBW 1=10 7902

More on Order

1612 1612 ADDRESS LED MODULE SER RGB 1=5 7488

More on Order

2659 2659 ADDRESS LED DISCR SER RGB 1=10 20208

More on Order

4167 4167 FIBER OPTIC LIGHT SOURCE 1W BLU 4230

More on Order

317 317 POCKET INVERTER EL WIRE 2-AA 7632

More on Order

1820 1820 LED MATRIX 8X8 SQUARE GREEN 2268

More on Order

812 812 BLUE 7-SEGMENT CLOCK DISPLAY 4554

More on Order