Automotive ICs

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Part RoHS Manufacturer Temperature Grade No. of Terminals Package Code Package Shape Surface Mount Package Body Material Maximum Supply Current (Isup) Technology Screening Level Terminal Form Nominal Supply Voltage (Vsup) Power Supplies (V) Package Style (Meter) Package Equivalence Code Sub-Category Terminal Pitch Maximum Operating Temperature Minimum Operating Temperature Terminal Finish Terminal Position JESD-30 Code Moisture Sensitivity Level (MSL) Qualification JESD-609 Code Maximum Time At Peak Reflow Temperature (s) Peak Reflow Temperature (C)

ZMD31150AEF-R

Renesas Electronics

ZMD31150EG1-R

Renesas Electronics

ZMD31015AEG1-T

Renesas Electronics

ZMD31015AIF-T

Renesas Electronics

ZMD31150AG1-R

Renesas Electronics

ZMD31015BIG1-R

Renesas Electronics

ZMD31015BEF-T

Renesas Electronics

ZMD31015AIG1-R

Renesas Electronics

ZMD31015BEG1-R

Renesas Electronics

ZMD31015BIG1-T

Renesas Electronics

ZMD30010

Renesas Electronics

ZMD31150BEG1-T

Renesas Electronics

ZMD31150AF-R

Renesas Electronics

ZMD31150EF-T

Renesas Electronics

ZMD31150EG1-T

Renesas Electronics

Automotive ICs

Automotive ICs are electronic components designed specifically for use in vehicles, such as cars, trucks, and buses. They are used to control various systems in the vehicle, including the engine, transmission, brakes, and safety systems.

Automotive ICs must meet specific requirements to be suitable for use in vehicles. They must be able to withstand the harsh environmental conditions found in vehicles, such as high temperatures, vibration, and moisture. Additionally, they must meet safety standards and be able to operate reliably in the presence of electromagnetic interference.

One of the main applications of automotive ICs is in engine control modules (ECMs), which are responsible for controlling the fuel injection and ignition timing in gasoline and diesel engines. Other applications include transmission control modules (TCMs), anti-lock brake system (ABS) controllers, and airbag control modules.

Automotive ICs use various types of semiconductor technologies, including microcontrollers, power MOSFETs, and voltage regulators. They are often designed to operate over a wide temperature range and have low power consumption to conserve battery life.