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Supplier: ROHM Semiconductor USA, LLC
Description: BD9535MUV is a switching regulator controller with high output current which can achieve low output voltage (0.7V to 2.0V) from a wide input voltage range (4.5V to 28V). High efficiency for the switching regulator can be realized by utilizing an external N-MOSFET power
- Regulated Output Voltage (Volt): 0.7 to 2 volts
- Operating Temperature: -10 to 100 C
- Input Voltage (VIN): 3 to 28 volts
- Switching Frequency (fsw): 0.6 kHz
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Supplier: ROHM Semiconductor USA, LLC
Description: BD95500MUV is a switching regulator with high output current (up to 6A) which can achieve low output voltage (0.7V to 5.0V) from a wide input voltage range (3V to 20V). High efficiency for the switching regulator can be realized by utilizing an internal N-MOSFET power
- Regulated Output Voltage (Volt): 0.7 to 5 volts
- Output Current (IOUT): 6 amps
- Operating Temperature: -10 to 100 C
- Input Voltage (VIN): 3 to 20 volts
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Supplier: ROHM Semiconductor USA, LLC
Description: BD95835EFJ is a 1ch synchronous buck converter that can generate output voltage (0.9V to VIN x 0.6) at the input voltage range (4.5V to 18V). Space-saving and high efficient switching regulator can be achieved due to built-in N-MOSFET power transistors. The IC also
- Regulated Output Voltage (Volt): 0.9 to 10.8 volts
- Output Current (IOUT): 3 amps
- Operating Temperature: -40 to 85 C
- Input Voltage (VIN): 4.5 to 18 volts
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Supplier: ROHM Semiconductor GmbH
Description: BD95500MUV is a switching regulator with high output current (up to 6A) which can achieve low output voltage (0.7V to 5.0V) from a wide input voltage range (3V to 20V). High efficiency for the switching regulator can be realized by utilizing an internal N-MOSFET power
- Output Voltage (Volt): 0.7 to 5 volts
- Input Voltage (VIN): 3 to 20 volts
- Features: Other
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Supplier: ROHM Semiconductor USA, LLC
Description: BD9536FV is a 2ch switching regulator controller that can generate low output voltages (0.7V to 5.5V) from a wide input voltage range (7.5V to 15V). High efficiency for the switching regulator can be achieved due to its internal N-MOSFET power transistor. The IC also
- Regulated Output Voltage (Volt): 0.7 to 5.5 volts
- Operating Temperature: -20 to 100 C
- Input Voltage (VIN): 7.5 to 15 volts
- Switching Frequency (fsw): 0.6 kHz
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Supplier: ROHM Semiconductor GmbH
Description: BD95514MUV is a switching regulator capable of supplying high current output (up to 4A) at low output voltages (0.7V to 5.0V) over a broad range of input voltages (4.5V to 28V). The regulator features an internal N-MOSFET power transistor for high efficiency and low space
- Regulated Output Voltage (Volt): 0.7 to 5 volts
- Output Current (IOUT): 4 amps
- Operating Temperature: -10 to 100 C
- Features: Other
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Supplier: Microchip Technology, Inc.
Description: The MCP19122 offers excellent regulation accuracy, in a variable output analog PWM controller with an integrated microcontroller for supervisory and management functions. It is a mid-voltage (4.5-40V) analog-based synchronous buck PWM controller with an integrated 8-bit
- Features: Other
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Supplier: Renesas Electronics Corporation
Description: dynamic adjustment of the core output voltage from 0.300V to 1.500V. The ISL6261 has 0.5% system voltage accuracy over temperature.brbr A unity-gain differential amplifier provides remote voltage sensing at the CPU die. This allows the voltage on the CPU die to be
- Output Voltage (Volt): 0.3 to 1.5 volts
- Input Voltage (VIN): 4.75 to 24 volts
- Features: Other
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Supplier: ERSAELECTRONICS PTE. LTD.
Description: Low Drop Voltage Regulator 5 V or variable output voltage Output voltage tolerance ≤ ±2% Product overview: TLE4276-2GV from Infineon Technologies is a LDO Voltage Regulator IC for stable power rails, DC-DC conversion, battery-powered electronics,
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Supplier: Skyworks Solutions, Inc.
Description: Please note: SKY87203 is being discontinued and is not recommended for new designs. The SKY87203 is a variable switching frequency, 3.5 A constant on-time, synchronous step-down converter. The device provides an output voltage from 0.9 V to 4.0 V from input voltage
- Output Voltage (Volt): 0.6 to 3.3 volts
- Input Voltage (VIN): 2.7 to 6 volts
- Output Current (IOUT): 3.5 amps
- Quiescent Current (IQ): 0.00004 amps
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Supplier: Renesas Electronics Corporation
Description: configured as a two-phase buck converter. This allows the controller to interleave channels to effectively double the output voltage ripple frequency, and thereby reduce output voltage ripple amplitude with fewer components, lower component cost, reduced
- Output Voltage (Volt): 0.5 to 1.55 volts
- Input Voltage (VIN): 5 to 24 volts
- Features: Other
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Supplier: ERSAELECTRONICS PTE. LTD.
Description: Variable Output, Surface Mount Type Low Power-Loss Voltage Regulators Product overview: PQ20VZ11 from Sharp Microelectronics is a LDO Voltage Regulator IC for stable power rails, DC-DC conversion, battery-powered electronics, automotive modules, and embedded power
- Features: Linear Regulator
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Supplier: ERSAELECTRONICS PTE. LTD.
Description: engineers and buyers comparing datasheets, replacement parts, BOM lines, package options, lifecycle status, and procurement availability. Key searchable attributes include LDO, 1A. Search-friendly keywords include voltage regulator, LDO, buck converter, boost converter,
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Supplier: ERSAELECTRONICS PTE. LTD.
Description: replacement parts, BOM lines, package options, lifecycle status, and procurement availability. Key searchable attributes include 300MA. Search-friendly keywords include voltage regulator, LDO, buck converter, boost converter, power rail, 300MA, Voltage Regulator
- Regulated Output Voltage (Volt): 1.5 to 13 volts
- Output Current (IOUT): 0.3 amps
- Dropout Voltage (VD): 0.6 volts
- Quiescent Current (IQ): 0.0012 amps
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Supplier: Infineon Technologies AG
Description: from a voltage overshoot. Summary of Features 1.8A step down voltage regulator Adjustable output voltage: 0.6 V up to 16V ± 2% output voltage tolerance (+-4% for full load current range) Integrated power transistor PWM regulation with feedforward Input
- Quiescent Current (IQ): 0.007 amps
- Operating Temperature: -40 to 150 C
- Features: Other, Switching Regulator
- Configuration / Function: Step-down (Buck)
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Supplier: Infineon Technologies AG
Description: current peak and prevents from a voltage overshoot. Summary of Features 1.8A step down voltage regulator Output voltage: 3.3 V ± 2% output voltage tolerance (+-4% for full load current range) Integrated power transistor PWM regulation with feedforward Input
- Quiescent Current (IQ): 0.007 amps
- Operating Temperature: -40 to 150 C
- Features: Other, Switching Regulator
- Configuration / Function: Step-down (Buck)
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Supplier: Infineon Technologies AG
Description: current peak and prevents from a voltage overshoot. Summary of Features 1.8A step down voltage regulator Output voltage: 5.0 V ± 2% output voltage tolerance (+-4% for full load current range) Integrated power transistor PWM regulation with feedforward Input
- Quiescent Current (IQ): 0.007 amps
- Operating Temperature: -40 to 150 C
- Features: Other, Switching Regulator
- Configuration / Function: Step-down (Buck)
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Supplier: Renesas Electronics Corporation
Description: The ISL62870 IC is a Single-Phase Synchronous-Buck PWM voltage regulator featuring Intersil's Robust Ripple Regulator (Rsup3/sup) Technology™. The ISL62870 provides a low cost solution for compact high performance applications.The wide 3.3V to 25V input voltage range is ideal
- Output Voltage (Volt): 0.5 to 3.3 volts
- Input Voltage (VIN): 3.3 to 25 volts
- Features: Other
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Supplier: Infineon Technologies AG
Description: XDP™ 8-phase hyper transient phase dual loop multiphase controller The XDP™ XDPE15284D is a hyper transient phase controller. Core voltage is provided by a multiphase buck converter with up to 8 synchronous-rectified channels in parallel while, a second loop provides
- Features: Other
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Supplier: Renesas Electronics Corporation
Description: The ISL78210 IC is a Single-Phase Synchronous-Buck PWM voltage controller featuring Intersil’s Robust Ripple Regulator (R3™) Technology. The ISL78210 provides a low cost solution for compact high performance applications. The wide 3.3V to 25V input voltage range is ideal for
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ADI's MAX77859 is a high-efficiency, high-performance buck-boost converter targeted for systems requiring a wide input voltage range (2.5 V to 22 V). The IC can supply up to 6 A of output current in buck mode and 4 A in boost mode (VIN = 3.7 V (read more)
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High-Voltage Buck Converter Selection for 48V & Industrial Power In industrial control, automotive electronics, and distributed power systems, high-voltage buck converters directly impact efficiency, thermal (read more)
Browse DC-DC Converter Chips Datasheets for Win Source Electronics -
hysteretic step-down (buck) converter. The EV kit is a step-down voltage regulator circuit using the MAX77505 that is capable of a 2.5 V to 16 V input, 3 A of continuous load, and an adjustable output voltage between 0.8 V to 5.5 V using an RSEL resistor between the SEL pin and GND. (read more)
Browse DC-DC Converters Datasheets for DigiKey -
topology enables a seamless transition from buck (voltage reduction) to boost (voltage increase) operation. The new models are ideal for generating additional high power outputs from 12 and 24V system voltages in medical, automated guided vehicles (AVG), drones, industrial, test, measurement and (read more)
Browse DC-DC Converters Datasheets for TDK-Lambda Americas Inc. -
electrical equipment for export markets. The unit can also be used as a compact AC frequency converter. Key Specifications 500VA variable output AC power source; Sinusoidal output voltage; Adjustable output voltage: 0 … 264 (read more)
Browse AC Power Sources Datasheets for ABSOPULSE Electronics Ltd. -
This regulator includes integrated high-side and low-side N-channel MOSFETs, an internal LDO for single-supply operation, and a programmable switching frequency from 270 kHz to 800 kHz. The output voltage is adjustable from 0.6 V to 12 V, with ±0.5% accuracy over temperature. Additional (read more)
Browse IC Voltage Regulators Datasheets for DigiKey -
efficiency: low standby current extends battery life in portable applications Excellent regulation: maintains stable output voltage for reliable performance Applications Automotive Industrial equipment Battery-powered devices Point-of-load (POL) converters Telecommunication systems (read more)
Browse Pressure Switches Datasheets for DigiKey -
). Two high-efficiency buck regulators can supply up to 12 A of peak current and up to 10A of continuous output current. Both buck converters' output voltage is programmable between 0.6 V and 5.26 V. The device also has a 12 V buck-boost converter with a programmable output range of 9.6 V to 15.95 V. The (read more)
Browse Supervisory Circuits and Battery Monitor Chips Datasheets for Qorvo -
built-in power loss protection (PLP). Four high-efficiency Buck regulators can supply 3 x 4 A and 1 x 2 A output current. The output voltage can go as low as 0.6 V. In addition, there is a 12 V boost converter plus powers the internal gate drivers for maximum efficiency. The power loss (read more)
Browse Supervisory Circuits and Battery Monitor Chips Datasheets for Qorvo -
. Examples of configurable options include output voltage as low as 0.5V, startup time, slew rate, system level sequencing, switching frequency, low power modes, operating modes etc. The ACT88422 includes four DC/DC step down converters with integrated power FETs, two low-dropout regulators (LDOs (read more)
Browse IC Analog Switches Datasheets for Qorvo
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Design and Experimental Evaluation of a 256-Channel Dual-Frequency Ultrasound Phased-Array System for Transcranial Blood–Brain Barrier Opening and Brain Drug D...
… signal duty cycle varying from 30% to 50%); (c, d) Measured forward/reflected electrical power and the corresponding VSWR when the power was controlled by the TTL signal duty cycle output voltage (with the buck converter output voltage varying from 10 to 25 …
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Unifying Electrical Engineering and Electronics Engineering
The obtained variable output voltage of buck converter operates as the input of the LCC parallel–series inverter topology, and the dc voltage would be transformed into ac voltage with high frequency.
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A fast response adaptive DC–DC switching converter using on–chip dual–loop one–cycle control
A switching buck converter with variable output voltage using one–cycle control is presented.
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Simultaneous control of buck and boost DC-DC converter by fuzzy controller
Fig. 7 shows the variation of output voltage of buck converter , when the load current is changed from no load (0.2A) to full load (1A).
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Gallium arsenide IC technology for power supplies on chip
In the design example presented, we have developed a high frequency buck converter with a varying output voltage , designed as a high-bandwidth, envelope-tracking power supply for an RF power amplifier in a cellular handset.
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FPGA based ASIC fast prototyping system for new generation piezo injectors control units
REFERENCES [1] Czarkowski D. and Kazimierczuk M.K., “Bidirectional buck boost converter with variable output voltage ”, Circuits and Systems ISCAS, 6:446-449, 1998 [2] Chiaberge M., Botto G., De Giuseppe M., “An FPGA Controlled DC/DC Step-Up Converter for Automotive …
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Negative Impedance Stabilizing Pulse Adjustment Control Technique for DC/DC Converters Operating in Discontinuous Conduction Mode and Driving Constant Power Lo...
Buck –boost converter output voltage variations ∆νOHP in a high- .
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Sliding mode control based buck-boost bidirectional converter to drive piezoelectric loads
1998) Bidirectional buck -boost converter with variable output voltage .
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Design approach for electric bikes using battery and super capacitor for performance improvement
Bhaskar Krishnamachari, , “Bidirectional buck -boost converter with variable output voltage ”, Department of Electrical Engineering, The Cooper Union, New York, NY 10003, [3] .
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Design and PSpice simulation of synchronous bidirectional PWM DC-DC buck-boost converter operating in CCM
[1] B. Krishnamachari and D. Czarkowski, “Bidirectional buck -boost con- verter with variable output voltage ," in Proceedings of IEEE Interna- tional Symposium of Circuits and Systems (ISCAS’1998), pp. 446-449, 1998.
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