MOTOR-DRIVEN INTEGRATED CIRCUIT AND MOTOR DEVICE
A motor-driven integrated circuit can include a bare die having an 8-bit microcontroller. The 8-bit microcontroller is fabricated by a 0.15 μm semiconductor process.
1 . A motor-driven integrated circuit, comprising:
a bare die having an 8-bit microcontroller fabricated by a 0.15 μm semiconductor process.
2 . The motor-driven integrated circuit of claim 1 , wherein a highest frequency of a system clock signal of the 8-bit microcontroller is larger than 50 MHz.
3 . The motor-driven integrated circuit of claim 1 , wherein a highest frequency of a system clock signal of the 8-bit microcontroller is not less than 80 MHz.
4 . The motor-driven integrated circuit of claim 1 , wherein an area size of the bare die is less than 12 mm 2 .
5 . The motor-driven integrated circuit of claim 1 , wherein an area size of the bare die is less than 10 mm 2 .
6 . The motor-driven integrated circuit of claim 1 , further comprising a clock circuit outputting a system clock signal to the 8-bit microcontroller, wherein during a power-on period of the motor-driven integrated circuit, a frequency of the system clock signal output by the clock circuit is one quarter of a highest frequency of the system clock signal.
7 . The motor-driven integrated circuit of claim 6 , wherein during the power-on period of the motor-driven integrated circuit, the frequency of the system clock signal is 20 MHz-30 MHz.
8 . The motor-driven integrated circuit of claim 1 , further comprising a clock circuit outputting a system clock signal to the 8-bit microcontroller, wherein a frequency of the system clock signal during a power-on period of the motor-driven integrated circuit is different from a frequency of the system clock signal during a normal operating state of the motor-driven integrated circuit.
9 . The motor-driven integrated circuit of claim 8 , wherein the system clock signal during the power-on period is divided by a specific clock signal of the clock circuit.
10 . The motor-driven integrated circuit of claim 1 , further comprising a clock circuit having a RC oscillator, wherein the RC oscillator comprises a resistor unit having at least one set of compensation resistor, a frequency of a system clock signal is adjusted by adjusting a resistance of the resistor unit.
11 . The motor-driven integrated circuit of claim 1 , further comprising a clock circuit having a RC oscillator, wherein the RC oscillator comprises a capacitor unit, a frequency of a system clock signal is adjusted by adjusting a capacitance of the capacitor unit.
12 . The motor-driven integrated circuit of claim 1 , further comprising a clock circuit having a RC oscillator, wherein the RC oscillator comprises at least one set of compensation resistor, and each set of compensation resistor comprises a positive temperature coefficient resistor and a negative temperature coefficient resistor coupled in series with the positive temperature coefficient resistor.
13 . The motor-driven integrated circuit of claim 12 , wherein the positive temperature coefficient resistor is made of at least one of N+ diff w/o silicide, P+ poly w/i silicide, P+ diff w/o silicide, P+ diff w/i silicide, N+ poly w/i silicide, N+ diff w/i silicide.
14 . The motor-driven integrated circuit of claim 1 , wherein the negative temperature coefficient resistor is made of at least one of P+ poly w/o silicide and N+ poly w/o silicide.
15 . A motor device, comprising the motor-driven integrated circuit of claim 1 .