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Supplier: Marki Microwave LLC
Description: The INV-0065 is a broadband pulse inverter that operates over a 1 MHz to 65 GHz bandwidth. This inverter features fast rise and fall times and low insertion loss. Inverters use both magnetic and capacitive coupling to create an inverted version of a voltage signal.
- Output Frequency: 1 to 65,000 MHz
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Supplier: Marki Microwave LLC
Description: The INV-0040 is a broadband pulse inverter that operates over a 1 MHz to 40 GHz bandwidth. This inverter features fast rise and fall times and low insertion loss. Inverters use both magnetic and capacitive coupling to create an inverted version of a voltage signal.
- Output Frequency: 1 to 40,000 MHz
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Supplier: Marki Microwave LLC
Description: The INV-0026 is a broadband pulse inverter that operates over a 1 MHz to 26.5 GHz bandwidth. This inverter features fast rise and fall times and low insertion loss. Inverters use both magnetic and capacitive coupling to create an inverted version of a voltage
- Output Frequency: 1 to 26,500 MHz
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Supplier: Richardson RFPD
Description: output Gate voltage: +18V/-2V Low parasitic capacitance (about 9 pF); highly resistant to common-mode noise. Input-to-Output dielectric withstand voltage : AC5000V Output-to-Output dielectric withstand voltage : AC4000V Input-to-Output insulation distance : 14mm
- Output Voltage (Volt): 18 volts
- Input Voltage (VIN): 13.5 to 26.4 volts
- Output Power: 3.2 watts
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Supplier: Infineon Technologies AG
Description: it minimizes switching losses and EMI. With comprehensive advanced protection features and industrial-grade qualification, it allows to meet stringent energy standards with high efficiency and creation of innovative designs for MHA with inverter auxiliary power supplies. Summary of
- Output Power: 45 watts
- Operating Temperature: -40 to 150 C
- Configuration / Function: Flyback Converter
- Features: Other
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Supplier: Infineon Technologies AG
Description: operation, it minimizes switching losses and EMI. With comprehensive advanced protection features and industrial-grade qualification, it allows to meet stringent energy standards with high efficiency and the creation of innovative designs for MHA with inverter auxiliary power supplies.
- Output Power: 60.00000000000001 watts
- Operating Temperature: -40 to 150 C
- Configuration / Function: Flyback Converter
- Features: Other
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Supplier: Infineon Technologies AG
Description: High efficiency thanks to the CoolMOS™ P7 SJ MOSFET family and the quasi-resonant switching scheme Auto-restart recovery scheme to minimize interruption to system operation Extensive protection coverage to increase system robustness Rapid start-up performance with cascode
- Output Power: 15.000000000000002 watts
- Operating Temperature: -40 to 129 C
- Configuration / Function: Flyback Converter
- Features: Other
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Supplier: Infineon Technologies AG
Description: The Quasi resonant flyback controller with a valley-switching scheme and an 800V CoolMOS™ P7 superjunction MOSFET in single DSO-12 package offers a high level of integration that provides a comprehensive suite of protection features, frequency jittering to minimize EMI, and frequency
- Output Power: 15.000000000000002 watts
- Operating Temperature: -40 to 129 C
- Configuration / Function: Flyback Converter
- Features: Other
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Supplier: Qorvo
Description: Qorvo's ACT5101 is a buck-boost converter with 4 integrated MOSFETs. It offers a high efficiency, low component count, compact solution with a wide input voltage range for 4 to 23 V applications. An advanced switch control algorithm allows the buck-boost converter to maintain output
- Output Voltage (Volt): 3 to 23 volts
- Input Voltage (VIN): 4 to 23 volts
- Output Current (IOUT): 3 amps
- Quiescent Current (IQ): 0.0011 amps
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Supplier: Integrated Device Technology
Description: The IDT P9030 is a highly-integrated single-chip Qi standard-compliant wireless power transmitter IC for power transmitter design A1. The device operates with a 19V adapter, and supplies an integrated half-bridge inverter for DC / AC conversion. It controls the
- Operating Temperature: -40 to 85 C
- Output Power: 7.500000000000001 watts
- Input Voltage (VIN): 18 to 20 volts
- Features: Other
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Supplier: Microchip Technology, Inc.
Description: wave, TTL, CMOS, or PECL to LVDS. Please consider this device SY89841U Additional Features Differential LVDS output Single AC coupled input (min. 100mV swing) Input range from DC to 1.0 GHz 2.5V to 3.3V operation Available in 8-Pin SOP or 3x3mm QFN GREEN/RoHS
- Input Voltage: 2.5 to 3.3 volts
- Translation Voltage (Output): 2.5 to 3.3 volts
- Logic Family: LVDS
- Features: Other
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Supplier: Microchip Technology, Inc.
Description: great range and extended life. They can be used to control brushless DC, permanent magnet synchronous, AC induction and stepper motors. These devices are also ideal for high-performance general purpose applications. Additional Features Operating Conditions 3.0V to 3.6V,
- Pin Count: 36
- Clock Speed: 70 MHz
- MIPS: 70
- Operating Temperature: -40 to 125 C
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Digital Signal Processors (DSP) - 5V Robust DSC with CAN, Safety, Motor Control -- DSPIC33EV128GM103Supplier: Microchip Technology, Inc.
Description: Features Operating Conditions 4.5V to 5.5V, -40ºC to +85ºC, DC to 70 MIPS 4.5V to 5.5V, -40ºC to +125ºC, DC to 60 MIPS 4.5V to 5.5V, -40ºC to +150ºC, DC to 40 MIPS dsPIC33E Core Code-Efficient (C and Assembly)
- Pin Count: 36
- Clock Speed: 70 MHz
- MIPS: 70
- Operating Temperature: -40 to 150 C
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Supplier: Microchip Technology, Inc.
Description: Features Operating Conditions 4.5V to 5.5V, -40ºC to +85ºC, DC to 70 MIPS 4.5V to 5.5V, -40ºC to +125ºC, DC to 60 MIPS 4.5V to 5.5V, -40ºC to +150ºC, DC to 40 MIPS dsPIC33E Core Code-Efficient (C and Assembly)
- Pin Count: 64
- Clock Speed: 70 MHz
- MIPS: 70
- Operating Temperature: -40 to 150 C
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DC to AC Inverters,Printed Sensors & More (read more)
Browse DC-AC Inverters Datasheets for Quantaflex Printed Electronics Inc. -
ABSOPULSE designs and manufactures custom and semi-custom DC-AC pure sine wave inverters, AC-AC phase and frequency converters. Our AC-output sine wave products are available with power ratings from 30VA to (read more)
Browse Power Frequency Converters Datasheets for ABSOPULSE Electronics Ltd. -
Automation. Inverters are the modern way to turn direct current (DC) and turn it into alternating current (AC). So a home with solar panels on the roof, for example, is taking the DC energy those panels produce and converting that energy into the AC (read more)
Browse Electromechanical Relays Datasheets for FCL Components America -
The CSI 1K F31-HSA series DC-AC inverters deliver up to 1kVA output power with pure sine wave voltage. They operate from a 36Vdc, 48Vdc, 125Vdc or 250Vdc power source. A 24Vdc input version is available with derating to 750VA. The DC-DC input stage boosts the input voltage to a higher DC (read more)
Browse DC-AC Inverters Datasheets for ABSOPULSE Electronics Ltd. -
ABSOPULSE Electronics’ CSI 1K-3U2 and CSI 1K-3U3 series rugged, modular DC-AC inverters deliver up to 1kVA sine wave output voltage. The use of the latest silicon carbide (SiC) semiconductor technology contributes to high conversion efficiency, high power density and a compact form factor (read more)
Browse DC-AC Inverters Datasheets for ABSOPULSE Electronics Ltd. -
ABSOPULSE Electronics’ CSH 500-F6 series of heavy-duty, high input voltage DC-AC sine wave inverters deliver 500VA pure sinewave output voltage. They convert 600Vdc industrial input voltage (450V to 800V operating range) to an isolated sine wave output of 115Vac continuous at 60Hz or (read more)
Browse DC-AC Inverters Datasheets for ABSOPULSE Electronics Ltd. -
The CSI 200-XX/24F3 and CSI 300-24/24FX series of rugged, high-performance DC-AC inverters are designed for 24Vac industrial applications. The units deliver 200VA and 300VA respectively. The industrial quality inverters use field-proven, microprocessor controlled high-frequency PWM (read more)
Browse DC-AC Inverters Datasheets for ABSOPULSE Electronics Ltd. -
values now range from 6.8µF to 470µF, with a maximum working voltage of 35VDC. The solid polymer dielectric and specialized design of these capacitors result in excellent high-frequency performance in compact power supplies, DC to DC converters, and inverters. Additional applications (read more)
Browse Capacitors Datasheets for Cornell Dubilier -
ABSOPULSE Electronics RSI 1K-HSA-F31 series of railway quality DC-AC inverters deliver up to 1000VA pure sine wave output. They are an addition to the company’s line of power conversion products that are cooled by natural air convection; no forced air or attachment to a heatsinking (read more)
Browse DC-AC Inverters Datasheets for ABSOPULSE Electronics Ltd. -
ABSOPULSE Electronics’ CTP 500-F7 & CTP 500-F7W series inverters convert DC power into three-phase pure sine wave AC power in rugged industrial environments. The 500VA inverters provide 208Vrms line-to-line 3-phase continuous at 60Hz or 400Hz. Outputs of 380Vrms or 400Vrms (read more)
Browse DC-AC Inverters Datasheets for ABSOPULSE Electronics Ltd.
Conduct Research Top
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A Microfluidic System for Biological Particle Enrichment Using Contactless Dielectrophoresis
. The electric field distribution and its gradient VE ¼ VðVfÞ. were modeled numerically in Comsol multi-physics 3.5 using. the AC/DC module (Comsol Inc., Burlington, MA). This is. done by solving for the potential distribution, 4, using the. Laplace's equation, V,ðsVfÞ ¼ 0, where s* is the complex
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MSilica Nanoparticles Treated by Cold Atmospheric-Pressure Plasmas Improve the Dielectric Performance of Organic-Inorganic Nanocomposites
. include use of electrohydrodynamics [15], electroosmosis. [16, 17], electrowetting-on-dielectric [18, 19], and dielectrophoresis. (DEP) [20, 21]. In these electrokinetic mixing. studies, both direct current (DC) [1, 15, 22] and alternating. current (AC) [15, 21, 23] electric fields have been used. DEP
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Designing Atmospheric-Pressure Plasma Sources for Surface Engineering of Nanomaterials
within the. sample channel, making DEP more appealing for mass. production. iDEP relies on a direct current (DC) voltage, or. low-frequency alternating current (AC) voltage, applied. across the sample channel, where insulating structures. within the microfluidic channel create the electric field
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