TMC6300 high-speed silent miniature DC brushless motor drive IC
Time:2023-02-11
Views:1325
brief introduction
The TMC6300 from a single lithium-ion battery or dual AA battery is the most suitable working power supply device for batteries. Operate BLDC motor with block or sinecommunication using 6-wire control from CPU. The handle motor current of integrated power MOSFET is up to 2A. Protection and diagnosis function, supporting powerful and reliable operation. Its best first-class on-resistance and ultra-low standby current integrated charging pump ensure the best efficiency, even at low power supply voltage and the longest battery life.
Battery powered; Miniature BLDC/PMSM; Built-in MOS; Three half-bridge control; Ultra-low standby and ultra-low power consumption, efficient and accurate
The TMC6300 works with a single lithium-ion battery or two AA batteries, which is most suitable for battery-powered equipment. Use 6-wire control from CPU to operate BLDC motor or PMSM motor in closed loop or sine commutation. The internal integrated power MOSFET can handle up to 2A motor current. The protection and diagnosis functions support stable and reliable operation. Its integrated charge pump can provide first-class RDSon and ultra-low standby current, ensuring the best efficiency even under the condition of low power supply voltage and maximum battery life.
Basic parameters:
Voltage range: 2V (1.8V)... 11V DC battery operation: 2 AA/NiMh batteries or 1-2 lithium-ion battery three-phase motors: maximum 2A (peak) direct bridge: brushless DC or permanent magnet synchronous motor sine wave commutation control standby current:<50nA (typical value) low RDSon: LS170m Ω and HS170m Ω (typical value) comprehensive protection and diagnosis output package: QFN30; 3 * 3mm
Application field:
Internet of things devices and handheld devices battery-driven motor POS printer toy office automation home automation cloud platform, ball machine, security equipment HVAC mobile medical equipment
Operation mode: The upper CPU operates the driver through separate high-end and low-end control signals. Current feedback can be achieved by a single pin shunt.
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