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Supplier: Integrated Device Technology
Description: The IDT570 is a high-performance Zero Delay Buffer ( ZDB ) which integrates IDT 's proprietary analog/digital Phase Locked Loop ( PLL ) techniques. The A version is recommended for 5 V designs and the B version for 3.3 V designs. The chip is part of IDT 's ClockBlocks™ family, and
- Device Type / Applications: Buffer
- IC Package Type: SOIC
- Pin Count: 8 #
- Supply Voltage: 3.3 V
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Supplier: Integrated Device Technology
Description: The 2402 is a high-performance Zero Delay Buffer ( ZDB ) which integrates IDT 's proprietary analog/digital Phase-Locked Loop ( PLL ) techniques. The chip is part of IDT 's ClockBlocksTM family and was designed as a performance upgrade to meet today's higher speed and lower voltage
- Device Type / Applications: Buffer
- IC Package Type: SOIC
- Pin Count: 8 #
- Supply Voltage: 3.3 V, 5 V
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Supplier: Microchip Technology, Inc.
Description: -only Integer Multiply and 0.25 to 0.4ps RMS for Other modes (12kHz to 20MHz) Outputs are CML or 2xCMOS, Can Interface to LVDS, LVPECL, CMOS, HSTL, SSTL and HCSL CMOS Output Voltage from 1.5V to 3.3V General Features Automatic Self-Configuration at Power
- Package / Form Factor: Other
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Supplier: Microchip Technology, Inc.
Description: -only Integer Multiply and 0.25 to 0.4ps RMS for Other modes (12kHz to 20MHz) Outputs are CML or 2xCMOS, Can Interface to LVDS, LVPECL, CMOS, HSTL, SSTL and HCSL CMOS Output Voltage from 1.5V to 3.3V General Features Automatic Self-Configuration at
- Package / Form Factor: Other
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Supplier: Integrated Device Technology
Description: The MK2302 -01 is a high performance Zero Delay Buffer ( ZDB ) which integrates IDT 's proprietary analog/digital Phase Locked Loop ( PLL ) techniques. The chip is part of IDT 's ClockBlocksTM family and was designed as a performance upgrade to meet today's higher speed and lower
- Device Type / Applications: Buffer
- IC Package Type: SOIC
- Pin Count: 8 #
- Supply Voltage: 3.3 V, 5 V
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Description: Low voltage 3 phase brushless DC motor controller for bladeless fan. DC 12/DC24V input, chord wave, hall start + no Hall operation control. Power: 0~60W, with speed control. 2 - pole motor, speed up to 10000rpm. Application: Bladeless fan, Air multiplier Size: F54*H15
- Commutation: Brushless
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Supplier: Renesas Electronics Corporation
Description: The ISL78226 is a 6-phase, bidirectional, synchronous PWM controller designed to perform power conversion between 12V and 48V buses up to 3.75kW at 95% conversion efficiency. One ISL78226 supports both Buck and Boost power conversion enabling a compact and robust design with minimum
- IC Package Type: Other
- Input Voltage (VIN): 6 to 64 volts
- Output Voltage (Volt): Up to 65 volts
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Supplier: Renesas Electronics Corporation
Description: The ISL8121 is a two-phase buck PWM controller featuring an input voltage range of 3V to 20V and integrated MOSFET drivers. Precision voltage regulation is provided for point-of-load and other high-current applications that require efficient and compact implementation.
- Features: Input Overcurrent Protection
- IC Package Type: Other
- Input Voltage (VIN): 3 to 20 volts
- Output Voltage (Volt): 0.6000 to 13.2 volts
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Supplier: Integrated Device Technology
Description: The 843S06 is a low voltage, low skew 3.3V LVPECL Clock Synthesizer. The device targets clock distribution in SDH / SONET telecommunication systems but is well suited for a wide range of applications requiring high performance high-speed clock synthesis. The device implements a fully
- Bus Interface / Output Type: LVPECL, Other
- Features / Standards: Lead Free
- Operating Temperature: 0.0 to 70 C
- Output Frequency: 38.88 to 1244 MHz
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Supplier: Win Source Electronics
Description: : SMD Operating Supply Voltage: 3 V ~ 5.5 V Input: Clock, Crystal Output: CMOS, TTL PLL: Yes with Bypass Divider/Multiplier: Yes/Yes Family Name: NB3N502 Categories: Integrated Circuits (ICs) Manufacturer Homepage: www.onsemi.com Manufacturer Package: 8-SOIC
- Bus Interface / Output Type: CMOS, TTL, Other
- Operating Temperature: -40 to 85 C
- Output Frequency: 190 MHz
- Package / Form Factor: Surface Mount Technology (SMT), Other
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Supplier: Win Source Electronics
Description: Manufacturer: ON Semiconductor Win Source Part Number: 1234361-P3P8203AMTTB G Packaging: Reel - TR Operating Temperature Range: 0°C ~ 70°C Package: 8-WFDFN Frequency - Max: 36MHz Number of Circuits: 1 Mounting: SMD Operating Supply Voltage: 3 V ~ 3
- Bus Interface / Output Type: CMOS, Other
- Operating Temperature: 0.0 to 70 C
- Output Frequency: 36 MHz
- Package / Form Factor: Surface Mount Technology (SMT), Other
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Supplier: Win Source Electronics
Description: Manufacturer: IDT, Integrated Device Technology Inc Win Source Part Number: 123459-IDT2308-3DC Packaging: Tube/Rail Type: Multiplier, Zero Delay Buffer Number of Circuits: 1 Mounting: SMD (SMT) Input: LVTTL Output: LVTTL PLL: Yes with Bypass Categories
- Bus Interface / Output Type: TTL, Other
- Operating Temperature: 0.0 to 70 C
- Output Frequency: 133 MHz
- Package / Form Factor: Surface Mount Technology (SMT), Other
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Supplier: Win Source Electronics
Description: Divider/Multiplier: Yes/No Supplier Device Package: 64-LFCSP-VQ (9x9) Temperature Range - Operating: -40°C ~ 85°C Manufacturer Package: 64-VFQFN Exposed Pad, CSP Popularity: Medium Fake Threat In the Open Market: 36 pct. Supply and Demand Status: Limited Manufacturer Pack Quantity: 1 MSL
- Bus Interface / Output Type: CMOS, LVDS, Other
- Operating Temperature: -40 to 85 C
- Output Frequency: 2250 MHz
- Package / Form Factor: Surface Mount Technology (SMT), Other
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Supplier: Microchip Technology, Inc.
Description: CREATE AND SAMPLE YOUR CUSTOM ZL30251 HERE The ZL30251 is a flexible, high-performance, clock multiplier/generator . From any input clock frequency 9.72MHz to 1250MHz this device can produce frequency-locked output frequencies from 1Hz to 1035MHz and as many as 3 differential or 6
- Bus Interface / Output Type: CMOS
- Output Frequency: 1.00E-6 to 1035 MHz
- Package / Form Factor: Other
- Supply Voltage: 3.3 volts
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Supplier: Microchip Technology, Inc.
Description: CML or 2xCMOS, can interface to LVDS, LVPECL, HSTL, SSTL and HCSL In 2xCMOS mode, the P and N pins can be different frequencies (e.g. 125MHz and 25MHz) Per-output supply pin with CMOS output voltages from 1.5V to 3.3V Precise output alignment circuitry and per-output phase
- Bus Interface / Output Type: CMOS
- Output Frequency: 1.00E-6 to 1035 MHz
- Package / Form Factor: Other
- Supply Voltage: 3.3 volts
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Supplier: Sifam Tinsley UK
Description: The ND30 meter is a programmable digital instrument designed for the measurement of 1-phase 2-wire and 3-phase 3 and 4-wire power network parameters in balanced or unbalanced systems. The measured values are displayed on a 3.5? TFT full-colour screen, resolution:
- AC Current Range: 1 to 5 amps
- AC Voltage Range: 57 to 480 volts
- Data Interfaces: RS232 / RS485, Ethernet
- Data Storage: 8000 MB
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Supplier: Renesas Electronics Corporation
Description: 1.875kHz, respectively, controlled with I2C or PWM input. The ISL97692 and ISL97694A feature phase shifting that may be enabled optionally, providing an optimized phase delay between channels. In the ISL97692 and ISL97694A, phase shifting can multiply the effective
- Efficiency: 90 %
- Features: Over-Voltage Protection
- Form Factor: Integrated Circuit (IC)
- Input Voltage: 2.4 to 5.5 volts
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Supplier: Sifam Tinsley UK
Description: • Measurement and recording of 54 power network parameters, including current and voltage harmonics up to 51st, • User programmable system types, 1-phase 2-wire or 3-phase 3 or 4-wire balanced and unbalanced. • Graphical colour display: LCD TFT 3,5’’, 320 x
- Analog Input Channels: 3
- Analog Input Type: AC Voltage, AC Current, Frequency
- Current Range: 1 to 5 amps
- Display Technology: LCD
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Supplier: Aerotech, Inc.
Description: multiplier or the MX3 high-performance dual-loop encoder multiplier, enabling higher levels of position and velocity control. Also available are a wide variety of extensions of the base PSO functionality. Track up to three encoders in real time with three-axis PSO or extend
- AC Input Frequency: 50 Hz, 60 Hz
- AC Input Phase: Single Phase
- Application Categories: PWM Drive
- Configuration: Stand Alone, Panel Mount
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Supplier: Richardson RFPD
Description: The ADF4372 allows implementation of fractional-N or Integer N phase-locked loop (PLL) frequency synthesizers when used with an external loop filter and an external reference frequency. The wideband microwave voltage controlled oscillator (VCO) design allows frequencies from 62.5 MHz
- Form Factor: Other
- Frequency Range: 62.5 to 16000 MHz
- Phase Noise (@ 10kHz): -133 dBc/Hz
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Supplier: Renesas Electronics Corporation
Description: 1.875kHz, respectively, controlled with I2C or PWM input. The ISL97692 and ISL97694A feature phase shifting that may be enabled optionally, providing an optimized phase delay between channels. In the ISL97692 and ISL97694A, phase shifting can multiply the effective
- IC Package Type: QFN
- Number of Devices in Package: 6 #
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Supplier: Panel Components & Systems, Inc.
Description: The M100-WA series measure active power in single, 3 phase 3 or 4 wire balanced and unbalanced systems. Using the time division multiplier circuit means that they can be used over a wide range of input waveforms. The D.C. Output signal is directly proportional to the
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Supplier: Aerotech, Inc.
Description: twice the output power of the 3U version (80 V and 20 A peak versus 40 V and 10 A peak) for high power, low noise applications. The Npaq contains two configurable power supply sections rated at 600 W each to support a variety of motors with different operating voltages. When only one
- AC Input Frequency: 50 Hz, 60 Hz
- AC Input Phase: Single Phase
- Communication Standards: Ethernet, IEEE 1394 (FireWire®), Other
- Configuration: Panel Mount
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Supplier: Aerotech, Inc.
Description: , Brushless, Stepper Power Supply Single-Phase 100-240 VAC; 50/60 Hz (Factory Configured) Power Output 600 W Continuous Bus Voltage 80 VDC Peak Output Current (1 sec) 10 A pk Continuous
- AC Input Frequency: 50 Hz, 60 Hz
- AC Input Phase: Single Phase
- Configuration: Stand Alone, Panel Mount
- Continuous Output Current: 5 amps
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Supplier: TRINAMIC Motion Control GmbH & Co. KG.
Description: The TMC389 is the first energy efficient high current high precision microstepping driver IC for 3-phase bipolar stepper motors. Using low resonance 3-phase stepper motors the smoothness at low speed can be increased significantly compared to a 2-phase stepper
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Supplier: ValueTronics International, Inc.
Description: oscilloscopes use an analog-to-digital converter (ADC) to convert the voltages it measures into digital information. Additional Features: Two Channels and Dual Digitizers External Trigger 3¾ Digit DMM with Datalogger Roll Mode Extra Bright
- Bandwidth: 200 MHz
- Number of Input Channels: 2 (# channels)
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(ENIG) plating for improved solderability and ease of installation. See VMI's other ENIG Multipliers ranging from 3kV to 7kV. Voltage Multipliers, Inc produces (read more)
Browse Voltage Multipliers Datasheets for Voltage Multipliers, Inc. -
ABSOPULSE Electronics has released the HTP 3K5-3U4 series of rugged AC-DC power supplies with 3-phase, high voltage ac-inputs. The 3500W power supplies are suitable for heavy duty applications including servo drives, factory automation, industrial machinery, and equipment. The power (read more)
Browse High Voltage Power Supplies Datasheets for ABSOPULSE Electronics Ltd. -
SCHURTER introduces the FMBC EP double-stage filter family for 3 phase systems. The filter packs in high performance in a compact package, ideally suited for today's space constrained machine and industrial plant construction. Versions with high nominal voltages are particularly suited for a (read more)
Browse Power or Line Conditioners Datasheets for SCHURTER Inc -
The HTP 300-F3 and HTP 500F-FXW series compact, three-phase, high voltage input AC-DC power supplies deliver up to 300W and 500W output power respectively. The units operate from a 3-phase line input of either 400Vac (360-440Vac range) or 480Vac (430-530Vac range). They deliver a single output (read more)
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ABSOPULSE Electronics' FTP 1K-F7W series frequency converters use microprocessor controlled high frequency pulse width modulation (PWM) technology to convert an AC-input of 115Vac or 230Vac and frequency of 47…410Hz to the required 3-phase AC-output voltage and frequency (read more)
Browse AC Power Sources Datasheets for ABSOPULSE Electronics Ltd. -
ABSOPULSE Electronics’ HTH 1K-F6W is a 3-phase high voltage AC-DC power supply designed for 1000W industrial applications. The unit operates from a three-phase line input of 400Vac (340-446Vac range) and delivers a 200Vdc single output. Similar power supplies that operate from (read more)
Browse Power Supplies Datasheets for ABSOPULSE Electronics Ltd. -
ABSOPULSE Electronics PFHI5K-3U7 series of high input voltage, wide input range AC-DC power supplies with active power factor correction (PFC) deliver 500W output power. The power supplies operate over a 340-460Vac AC-input range; 400Vac 3-phase (3 wire connection) nominal (read more)
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to the reliable operation of the unit. Key Specifications 3-Phase sinusoidal output voltage, 500VA; DC-input: 24Vdc, 36Vdc, 48Vdc, 110Vdc or 125Vdc; AC-output: 208Vrms (L-L)/3-phase continuous at 60Hz; or 400Hz or 380Vrms or 400 (read more)
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Microchip's next-generation 1200V Silicon Carbide IC (SiC) diodes and 700V SiC MOSFETs with high avalanche/repetitive Unclamped Inductive Switching (UIS) 3-phase 380/400V RMS input voltage, 50 Hz or 60 Hz 140 kHz switching frequency 700V DC output voltage (read more)
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boost regulators for LED drive, and ten linear regulators/load switches, all in a compact 3.76 x 4.16 mm package. With a wide input voltage range of 2.7V to 5.5V, the device supports flexible power sequencing, dynamic voltage scaling, and multiple low power modes to optimize system efficiency and (read more)
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More Information Top
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2005 Index
Voltage multipliers 3 - phase symm. multistage Voltage multiplier.
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An Energy Harvesting System using 3-stage voltage multiplier and MPVD Charge Pump for wireless sensor networks
3 Stage Voltage Multiplier Regulator Multi Phase Charge Pump .
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Research and design of three-phase six-switch high power factor rectifier with one cycle control
However, direct current control methods, including the average current control, hysteresis current control, need to sense phase voltage and use multiplier [ 3 ].
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A cascaded three-phase symmetrical multistage voltage multiplier
[10] S. Iqbal, A three- phase symmetrical multistage voltage multiplier , IEEE Power Electron. Lett. 3 (2005) 30. .
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Development of the Capabilities to Analyze the Vulnerability of Bulk Power Systems
Recall that the control variables are: Generation (MW) at node 3 Voltage at node 3 generator Voltage at node 1 generator Transformer tap Transformer phase Load multiplier node 1 Load multiplier node 2 Load multiplier node 3 Load multiplier node 4 Load…
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Elimination of odd harmonics in symmetrical voltage multipliers
[2] S. Iqbal, A three- phase symmetrical multistage voltage multiplier , IEEE Power Electron. Lett. 3 (2005) 30.
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Voltage Multiplier Cells Applied to Non-Isolated DC–DC Converters
However, as the resonant inductance presented in the voltage multiplier circuit of the single- phase topology [Fig. 3 (b)] cannot be included in the multiphase con- figuration, there is the problem of the diode reverse recovery current.
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CR4 - Thread: Load Analysis Layout
Remeber that for 3-phase loads you will need to use the 1.73 multiplier for your voltage and once calculated, the total 3 - phase load in VA will be devided equally between the three phases (this concept applies to both panels).
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Investigation of high voltage, high frequency transformers / voltage multipliers for industrial applications
A three- phase symmetrical multistage Voltage multiplier " Power Electronics Letters, IEEE Vol. 3 , Issue 1, pp :30 - 33, March (2005) .
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High power, high voltage, high frequency transformer / rectifier for HV industrial applications
“A three- phase symmetrical multistage Voltage multiplier ” Power Electronics Letters, IEEE Vol. 3 , Issue 1, pp :30 – 33, March (2005) [4] Van den Bossche A., Valchev V.C. “ .
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