No. | parte # | Fabricante | Descripción | Hoja de Datos |
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STMicroelectronics |
Battery monitor ■ 0.5% accuracy battery voltage monitoring ■ Low battery alarm output with programmable thresholds ■ Low power: 60 µA in power-saving mode, 2 µA max in standby mode ■ Ideal for implementation of robust gas gauge systems using open-circuit voltage and |
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STMicroelectronics |
STC03DE170HP VCS(ON) IC RCS(ON) 1 V 3 A 0.33 Ω ■ Low equivalent on resistance ■ Very fast-switch, up to 150 kHz ■ Squared RBSOA, up to 1700V ■ Very low CISS driven by RG = 47 Ω Applications ■ Aux SMPS for three phase mains Description The STC03DE170HP is manufac |
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STMicroelectronics |
High power NPN epitaxial planar bipolar transistor ■ High breakdown voltage VCEO = 120 V ■ Complementary to 2STA1694 ■ Fast-switching speed t(s) ■ Typical ft = 20 MHz c ■ Fully characterized at 125 oC roduApplications P ■ Audio power amplifier leteDescription soThe device is a NPN transistor manufact |
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STMicroelectronics |
Multi-channel clock distribution circuit ■ ■ ■ ■ ■ ■ ■ ■ ■ 2, 3 or 4 outputs buffered clock distribution Single-ended sine wave or square wave clock input and output Individual clock enable for each output Lower fan-out on clock source No AC coupling capacitor needed at the input Ultra-low |
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STMicroelectronics |
High power NPN epitaxial planar bipolar transistor ■ ■ ■ ■ ■ High breakdown voltage VCEO = 100 V Complementary to 2STA2510 Fast-switching speed Typical ft = 20 MHz Fully characterized at 125 oC 3 2 1 Applications ■ Audio power amplifier TO-3P Description The device is a NPN transistor manufactur |
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STMicroelectronics |
High power NPN epitaxial planar bipolar transistor ■ ■ ■ ■ ■ Preliminary data High breakdown voltage VCEO=140V Complementary to 2STA1695 Fast-switching speed Typical ft =20MHz Fully characterized at 125 oC 3 2 1 Applications ■ Audio power amplifier TO-3P Description The device is a NPN transist |
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STMicroelectronics |
Multi-channel clock distribution circuit ■ ■ ■ ■ ■ ■ ■ ■ ■ 2, 3 or 4 outputs buffered clock distribution Single-ended sine wave or square wave clock input and output Individual clock enable for each output Lower fan-out on clock source No AC coupling capacitor needed at the input Ultra-low |
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STMicroelectronics |
High power NPN epitaxial planar bipolar transistor ■ ■ ■ ■ High breakdown voltage VCEO > 230V Complementary to 2STA1943 Fast-switching speed Typical fT = 30 MHz 3 Application ■ Audio power amplifier 1 2 TO-264 Description This device is a NPN transistor manufactured using new BiT-LA (Bipolar T |
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STMicroelectronics |
High power NPN epitaxial planar bipolar transistor ■ ■ ■ ■ ■ High breakdown voltage VCEO = 250 V Complementary to 2STA2120 Fast-switching speed Typical ft = 25 MHz Fully characterized at 125 oC 3 2 1 Applications ■ Audio power amplifier TO-3P Description The device is a NPN transistor manufactur |
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STMicroelectronics |
High power NPN epitaxial planar bipolar transistor ■ ■ ■ ■ ■ High breakdown voltage VCEO = 250 V Complementary to 2STA2121 Fast-switching speed Typical ft = 25 MHz Fully characterized at 125 oC Applications ■ Audio power amplifier TO-264 Description The device is a NPN transistor manufactured us |
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STMicroelectronics |
silicon oscillator ■ ■ Fixed frequency 32,768 Hz ±1.0% (0 to 70 °C), ±1.2% ( –30 to 85 °C) frequency accuracy over all conditions 1.65 to 1.95 V, 2.7 to 3.6 V operation Low operating current, ultra low standby current Push-pull, CMOS compatible frequency (square wave) |
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STMicroelectronics |
1.5 A white LED driver ■ ■ Buck-boost DC-DC converter Drives one power LED up to: – 1.5 A between 3.5 V to 5.5 V – 1.3 A between 3.0 V to 5.5 V – 1 A between 2.7 V to 5.5 V Efficiency up to 80% Output current control 1.8 MHz fixed frequency PWM Full I²C control Operationa |
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STMicroelectronics |
2A max constant current LED driver ■ Up to 40 V input voltage ■ Less than 0.5 V voltage overhead ■ Up to 2 A output current ■ PWM dimming pin ■ Shutdown pin ■ LED disconnection diagnostic Applications ■ LED constant current supplying for varying input voltages ■ Low voltage lighting ■ |
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STMicroelectronics |
0.5A max constant current LED driver • Up to 40 V input voltage • Less than 0.5 V voltage overhead • Up to 0.5 A output current • PWM dimming pin • Shutdown pin • LED disconnection diagnostic • Slope control with external cap Applications • LED constant current supplying for varying inp |
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STMicroelectronics |
Offline PWM controller Advanced power management for ultra-low standby power consumption (under 10 mW at 230 VAC) Fully integrated primary side constant current output regulation (CC) 650 V embedded HV start-up circuit with zero power consumption. Quasi-resonant (Q |
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STMicroelectronics |
Step-up converter ■ ■ ■ ■ ■ ■ ■ ■ ■ Supply voltage range: 2.6V to 5.5V 17V Maximum output voltage Two current levels up to 300mA set with external resistors Dedicated pin to select the required level of current Operating frequency: 1.5MHz: PWM Controller Torch mode s |
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STMicroelectronics |
High power white led driver ■ ■ ■ ■ ■ ■ ■ ■ Buck-boost DC/DC Converter Drives one power white led: up to 600mA between 2.7 to 4.5V Led temperature protection Output current control 1.8 MHz (typ) fixed frequency PWM Synchronous rectification High efficiency across the total inp |
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STMicroelectronics |
High power white LED driver ■ ■ ■ ■ ■ ■ ■ ■ ■ Buck-boost dc/dc converter Drives one power white LED up to 800 mA from 2.7 V to 5.5 V in QFN Drives one power white LED up to 800 mA from 3.3 V to 5.5 V in BGA Efficient up to 92% Output current control 1.8 MHz typ. fixed frequenc |
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STMicroelectronics |
High power buck-boost white LED driver ■ ■ ■ ■ ■ ■ ■ ■ ■ Buck-boost DC-DC converter Drives one power LED up to 1 A in flash mode Drives one power LED up to 800 mA in continuous mode LED temperature protection Output current control 1.8 MHz (typ.) fixed frequency PWM Synchronous rectifica |
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STMicroelectronics |
Multi-channel clock distribution circuit ■ ■ ■ ■ ■ ■ ■ ■ ■ 2, 3 or 4 outputs buffered clock distribution Single-ended sine wave or square wave clock input and output Individual clock enable for each output Lower fan-out on clock source No AC coupling capacitor needed at the input Ultra-low |
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