No. | parte # | Fabricante | Descripción | Hoja de Datos |
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Toshiba Semiconductor |
PWM Chopper-Type bipolar Stepping Motor Driver • • • • • • www.DataSheet4U.com TB6560FG Single-chip bipolar sinusoidal micro-step stepping motor driver Uses high withstand voltage BiCD process: Ron (upper lower) = 0.6 Ω (typ.) Forward and reverse rotation control available Selectable phase dr |
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Toshiba Semiconductor |
Stepping Motor Driver • Motor power supply voltage: VM = 15 V (max) Weight: 0.09 g (typ.) • Control power supply voltage: VCC = 2.7 to 6 V • Output current: Iout ≤ 0.8 A (max) • Output ON-resistance: Ron = 1.5 Ω (upper and lower sum@VM = 5 V) • Decoder that enables m |
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Toshiba Semiconductor |
PWM Chopper-Type bipolar Stepping Motor Driver • • • • • • www.DataSheet4U.com TB6560FG Single-chip bipolar sinusoidal micro-step stepping motor driver Uses high withstand voltage BiCD process: Ron (upper lower) = 0.6 Ω (typ.) Forward and reverse rotation control available Selectable phase dr |
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Toshiba Semiconductor |
Dual Full-Bridge Driver 2-phase/1 –2-phase/W 1 –2-phase excitation PWM current control Power supply voltage: 40 V (max) Output current: 1.5 A (max) Low ON-resistance: 1.5 Ω (upper and lower transistors/typ.) Power-saving function Overcurrent protection: ILIM = 2.5 A (typ.) Th |
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Toshiba Semiconductor |
7-SEGMENT DRIVERS Control circuit power supply voltage : VDD = 4.5 to 5.5 V Digit output rating : 17 V / −400 mA Decoder output rating : 17 V / 50 mA Built−in decoder : Decodes the numerals 0 to 9, certain alphabetic characters, and of course blanks code. Digit contro |
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Toshiba Semiconductor |
DUAL-BRIDGE DRIVER IC • Power supply voltage for motor: VM ≤ 15 V (max) • Power supply voltage for control: VCC = 2.7 V to 6.0 V • Output current: 1 A (max) • Low ON resistor: 1.5 Ω (typ.) (Upper side + lower side combined @ VM = 5 V) • Direct PWM control • Standby system |
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Toshiba Semiconductor |
DUAL-BRIDGE DRIVER IC • Power supply voltage for motor: VM ≤ 15 V (max) • Power supply voltage for control: VCC = 2.7 V to 6.0 V • Output current: 1 A (max) • Low ON resistor: 1.5 Ω (typ.) (Upper side + lower side combined @ VM = 5 V) • Direct PWM control • Standby system |
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Toshiba Semiconductor |
DUAL-BRIDGE DRIVER IC FOR DC MOTORS · Power supply voltage for motor: VM ≤ 15 V (max) · Power supply voltage for control: VCC = 2.7 V to 6.0 V · Output current: 1 A (max) · Low ON resistor: 1.5 Ω (typ.) (Upper side + Lower side combined @ VM = 5 V) · Direct PWM control · Standby system |
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Toshiba Semiconductor |
Dual-Stepping Motor Driver IC z Two stepping motors driven by micro−step pseudo sine wave are controlled by a single driver IC z Monolithic Bi-CMOS IC z Low ON-resistance of Ron = 1.2 Ω (Tj = 25°C @1.0 A: Typ.) z Two pairs of built-in 16-bit shift and latch registers z Two pairs |
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Toshiba Semiconductor |
BiCD PWM 2-Phase Bipolar Stepping Motor Driver • Bipolar stepping motor driver IC • Internal PWM current control • 2−phase/1−2 phase excitation is available • Monolithic BiCD IC DMOS FET used for output power transistor Weight: 0.79 g (typ.) • High voltage output and High current: 40 V/1.8 |
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Toshiba Semiconductor |
Full-Bridge DC Motor Driver IC • Power supply voltage: 50 V (max) • Output current: 2.5 A (max) • Low-ON resistance (upper and lower sum): 1.3 Ω (typ.) • Constant-current or direct PWM • Standby mode • Clockwise (CW), counterclockwise (CCW), short brake and stop • Overcurrent prot |
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Toshiba Semiconductor |
7-SEGMENT DRIVERS Control circuit power supply voltage : VDD = 4.5 to 5.5 V Digit output rating : 17 V / −400 mA Decoder output rating : 17 V / 50 mA Built−in decoder : Decodes the numerals 0 to 9, certain alphabetic characters, and of course blanks code. Digit contro |
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Toshiba Semiconductor |
DUAL-BRIDGE DRIVER IC FOR DC MOTORS · Power supply voltage for motor: VM ≤ 15 V (max) · Power supply voltage for control: VCC = 2.7 V to 6.0 V · Output current: 1 A (max) · Low ON resistor: 1.5 Ω (typ.) (Upper side + Lower side combined @ VM = 5 V) · Direct PWM control · Standby system |
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Toshiba Semiconductor |
Dual-Stepping Motor Driver IC z Two stepping motors driven by micro-step pseudo sine wave are controlled by a single driver IC z Monolithic Bi-CMOS IC z Low ON-resistance of Ron = 0.5 Ω (Tj = 25°C @ 1.0 A: typ.) z ESD protection Exceeds 2000 V, MIL-STD-883D z Two pairs of built-i |
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Toshiba Semiconductor |
DUAL-BRIDGE DRIVER IC FOR DC MOTORS · · · · · · · · · Power supply voltage for motor: VM ≤ 15 V (max) Power supply voltage for control: VCC = 2.7 V to 6.0 V Output current: 1 A (max) Low ON resistor: 1.5 Ω (typ.) (Upper side + Lower side combined @ VM = 5 V) Direct PWM control Standby |
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Toshiba Semiconductor |
3-Phase Full-Wave Sine-Wave PWM Brushless Motor Controller • • • • • • • • Sine-wave PWM control Built-in triangular-wave generator (carrier cycle = fosc/252 (Hz)) Built-in lead angle control function (0° to 58° in 32 steps) External setting/automatic internal setting Built-in dead time function (setting 2.6 |
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Toshiba Semiconductor |
DC MOTOR DUAL FULL BRIDGE DRIVER l Operating voltage range : VCC = 1.5 ~ 7.0 V (normal operation) VCC = 2.0 ~ 7.0 V (fixed current operation) l Output current l Built−in enable terminal : IOUT = 100 mA l Built−in diode for absorbing counter electromotive force Weight: 0.07 g (Typ.) |
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Toshiba Semiconductor |
3-Phase Full-Wave Sine-Wave PWM Brushless Motor Controller • • • • • • • • • • A sine wave PWM drive controller and a high-voltage driver integrated in a single package. IGBTs arranged in three half-bridge units Triangle wave generator (carrier frequency = fosc/254 (Hz)) Dead-time insertion (1.9 µs) High-sid |
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Toshiba Semiconductor |
PWM Sensorless Controller Weight: 0.14 g (Typ.) ● 3-phase full-wave sensorless drive ● PWM chopper drive ● PWM duty cycle control by analog input ● 20-mA current sink capability on PWM output pins ● Overcurrent protection ● Forward/reverse rotation ● Lead angle control (7.5 |
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Toshiba Semiconductor |
Full-Bridge DC Motor Driver • Power supply voltage: 50 V (max) • Output current: 3 A (max) • Output ON-resistance: 0.55 Ω (typ.) • PWM control • CW/CCW/Short Brake/Stop modes • Overcurrent shutdown circuit (ISD) • Overvoltage shutdown circuit (VSD) • Thermal shutdown circuit (T |
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