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首页 > 电子元器件选型 > 电阻器 > 金属釉/厚膜电阻器

CRCW0603133KFKEA

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CRCW0603133KFKEA
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Vishay

Fixed Resistor, Metal Glaze/thick Film, 0.1W, 133000ohm, 75V, 1% +/-Tol, 100ppm/Cel, Surface Mount, 0603, CHIP, HALOGEN FREE AND ROHS COMPLIANT

市场均价:
¥0.0724
市场总库存:
198,035
生命周期状态: Active
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CRCW0603133KFKEA Vishay Dale 也适用于 CRCW251297R6FKEG ,CRCW06033R90FKEA ,CRCW08053M09FKEA 等其余97个型号

参考设计

(30)
Ten Output QR Flyback and Buck Converter Reference Design
PMP10822.1: The PMP10822 reference design utilizes two QR flyback, and four buck converters. The efficiency for the 12V and 24V flyback approaches 87%, while the 16V buck converter has efficiency greater than 89%.
Ten Output QR Flyback and Buck Converter Reference Design - PMP10822.10 - TI Tool Folder
PMP10822: The PMP10822 reference design utilizes two QR flyback, and four buck converters. The efficiency for the 12V and 24V flyback approaches 87%, while the 16V buck converter has efficiency greater than 89%.
Ten Output QR Flyback and Buck Converter Reference Design
PMP10822.9: The PMP10822 reference design utilizes two QR flyback, and four buck converters. The efficiency for the 12V and 24V flyback approaches 87%, while the 16V buck converter has efficiency greater than 89%.
Dual Phase Synchronous Buck
PMP7884: This is a dual-phase, synchronous buck converter with an input voltage range of 30.6V-to-37.4Vin and an output of 9Vout @ 15A.
High Efficiency 400W AC/DC Power Supply Reference Design - PMP11064.1 - TI Tool Folder
PMP11064: PMP11064 is a high-efficiency AC/DC power supply reference design with universal AC input and 20V/20A output. Interleaved transition mode PFC and LLC series resonant converter is applied for 20V/20A main power. A PSR Flyback with MOSFET integrated controller is applied as the auxiliary supply. 91.2% efficiency is achieved at low line and full load. 93.1% efficiency is achieved at high line and full load.
Ten Output QR Flyback and Buck Converter Reference Design
PMP10822.6: The PMP10822 reference design utilizes two QR flyback, and four buck converters. The efficiency for the 12V and 24V flyback approaches 87%, while the 16V buck converter has efficiency greater than 89%.
Dual Isolated Outputs Fly-Buck Power Module Reference Design for Single IGBT Driver Bias
PMP10654.1: The PMP10654 reference design is a dual isolated outputs Fly-Buck power module for single IGBT driver bias. The two voltage rails are suitable for providing the positive and negative bias to an IGBT gate driver in motor drives for EV/HEV and industrial applications.
12V/400W Dual-Phase 1/4 Brick Buck Converter Reference Design Delivers 97% Peak Efficiency
PMP7819: This 400W ¼ brick DC/DC converter leverages the LM5119’s dual-phase capability to drive a 33A load in an industry-standard ¼ brick module footprint. This compact design delivers 97% peak efficiency while maintaining balanced current through each phase, which reduces thermal stress and enables lower system cost by eliminating the need to over-design the surrounding power components.
Dual Isolated Outputs Fly-Buck Power Module Reference Design for Single IGBT Driver Bias
PMP10654: The PMP10654 reference design is a dual isolated outputs Fly-Buck power module for single IGBT driver bias. The two voltage rails are suitable for providing the positive and negative bias to an IGBT gate driver in motor drives for EV/HEV and industrial applications.
Non-Isolated Synchronous Buck (1.8V@8A) - PMP7828.4 - TI Tool Folder
PMP7828: This is a synchronous buck converter design with an input voltage range of 10.8V-to-13.2Vin and four regulated outputs: 1Vout@24A, 1.5Vout@30A, 3.3Vout@6.4A, and 1.8Vout@8A.
Ten Output QR Flyback and Buck Converter Reference Design
PMP10822.10: The PMP10822 reference design utilizes two QR flyback, and four buck converters. The efficiency for the 12V and 24V flyback approaches 87%, while the 16V buck converter has efficiency greater than 89%.
Dual Phase Synchronous Buck (30Vout@10A)
PMP7885: This is a dual-phase, synchronous buck converter with an input voltage range of 30.6V-to-37.4Vin and providing an output of 30Vout @ 10A.
Ten Output QR Flyback and Buck Converter Reference Design
PMP10822.3: The PMP10822 reference design utilizes two QR flyback, and four buck converters. The efficiency for the 12V and 24V flyback approaches 87%, while the 16V buck converter has efficiency greater than 89%.
Ten Output QR Flyback and Buck Converter Reference Design
PMP10822.8: The PMP10822 reference design utilizes two QR flyback, and four buck converters. The efficiency for the 12V and 24V flyback approaches 87%, while the 16V buck converter has efficiency greater than 89%.
Ten Output QR Flyback and Buck Converter Reference Design
PMP10822.2: The PMP10822 reference design utilizes two QR flyback, and four buck converters. The efficiency for the 12V and 24V flyback approaches 87%, while the 16V buck converter has efficiency greater than 89%.
Ten Output QR Flyback and Buck Converter Reference Design
PMP10822.4: The PMP10822 reference design utilizes two QR flyback, and four buck converters. The efficiency for the 12V and 24V flyback approaches 87%, while the 16V buck converter has efficiency greater than 89%.
Non-Isolated Synchronous Buck (3.3V@6.4A)
PMP7828.3: This is a synchronous buck converter design with an input voltage range of 10.8V-to-13.2Vin and four regulated outputs: 1Vout@24A, 1.5Vout@30A, 3.3Vout@6.4A, and 1.8Vout@8A.
860W Dual Phase Synchronous Buck Converter in Quarter Brick Footprint
PMP9260: PMP9260 is a dual-phase synchronous buck converter utilizing the LM5119 dual synchronous buck controller I.C. The design accepts an input voltage of 33V to 60V and provides a 28V output capable of supplying 30A of current to the load. This represents a maximum power density design of 860W in a quarter brick footprint. The maximum component height is set by the Coilcraft VER2923-103 inductors at 0.875 in.
Non-Isolated Synchronous Buck (1.5V@30A)
PMP7828.2: This is a synchronous buck converter design with an input voltage range of 10.8V-to-13.2Vin and four regulated outputs: 1Vout@24A, 1.5Vout@30A, 3.3Vout@6.4A, and 1.8Vout@8A.
Ten Output QR Flyback and Buck Converter Reference Design - PMP10822.9 - TI Tool Folder
PMP10822: The PMP10822 reference design utilizes two QR flyback, and four buck converters. The efficiency for the 12V and 24V flyback approaches 87%, while the 16V buck converter has efficiency greater than 89%.
Ten Output QR Flyback and Buck Converter Reference Design - PMP10822.6 - TI Tool Folder
PMP10822: The PMP10822 reference design utilizes two QR flyback, and four buck converters. The efficiency for the 12V and 24V flyback approaches 87%, while the 16V buck converter has efficiency greater than 89%.
Ten Output QR Flyback and Buck Converter Reference Design
PMP10822.7: The PMP10822 reference design utilizes two QR flyback, and four buck converters. The efficiency for the 12V and 24V flyback approaches 87%, while the 16V buck converter has efficiency greater than 89%.
14-Channel Active Cell Balance Battery Management Reference Design
TIDA-00239: Active Balance chipset for use in large format Lithium-ion batteries that provides monitoring, balancing, and communications. With precise and robust active balancing, the Active Balance BMS is capable of bidirection power transfer at each cell. Each EM1401EVM can manage 6 to 14 cells (60V max) for Li-ion battery applications. The EM1401EVM modules can be stacked up to 1300V. The system provides fast cell balancing, diagnostics, and module to controller communication. Independent protection circuitry is also provided.
Non-Isolated Synchronous Buck (1.8V@8A)
PMP7828.4: This is a synchronous buck converter design with an input voltage range of 10.8V-to-13.2Vin and four regulated outputs: 1Vout@24A, 1.5Vout@30A, 3.3Vout@6.4A, and 1.8Vout@8A.
15W Industrial Power Supply Reference Design
PMP10571: PMP10571 is a sync isolated Flybuck-boost converter with a negative primary voltage. The power supply has a synchronous buck regulator, LM5160, and a versa pack transformer. The synchronous rectifier on the secondary improves efficiency and regulation under heavy load. The design accepts an input voltage of 18V to 30V, and outputs 5V, capable of providing 3A of current to the load, making it suitable for 24V input industrial application. The Fly-Buck topology can regulate the secondary side outputs without opto-coupler or aux winding, and is capable of achieving good regulation within ±5%. With LM5160's Constan On-Time control, no loop compensation is required, which simplifies the design and helps reducing the external part count and BOM cost.
Non-Isolated Synchronous Buck Converter (1V@24A)
PMP7828.1: This is a synchronous buck converter design with an input voltage range of 10.8V-to-13.2Vin and four regulated outputs: 1Vout@24A, 1.5Vout@30A, 3.3Vout@6.4A, and 1.8Vout@8A.
Ten Output QR Flyback and Buck Converter Reference Design
PMP10822.5: The PMP10822 reference design utilizes two QR flyback, and four buck converters. The efficiency for the 12V and 24V flyback approaches 87%, while the 16V buck converter has efficiency greater than 89%.
5V/2.5A AC/DC Flyback PSU for USB Adaptor Applications Reference Design
PMP8965: The PMP8965 is a 12.5W USB adapter reference design using the UCC28740 quasi-resonant/discontinues flyback controller, with synchronous rectification to improve efficiency using the UCC24610 Green Rectifier Controller.
Automotive Boost Power Supply for Audio Applications
PMP9637: The PMP9637 4-phase boost power supply enables high-efficiency boost dc/dc conversion of an 8.5V to 18V input Automotive battery voltage to 44V output at 17 Amperes in a compact form factor for Audio applications. The TPS40090 4-phase PWM controller is used with two (2) UCC27324D 4A dual FET drivers and CSD18534Q5A 60V NexFETs to deliver 748W output power in only 120mm x 70mm.
High Efficiency, High Power Factor 1300W AC/DC Power Supply Reference Design - PMP10948.1 - TI Tool Folder
PMP10948: PMP10948 is a high-efficiency, high power factor AC/DC power supply reference design using UCC28063 interleaved transition-mode PFC controllers. There are two PFC stages in this design, 750W output power generates from one of the PFC stages and 550W output power generates from the other PFC stage. This design achieve 95.6% efficiency at 120VAC input and 98% efficiency at 220VAC input with over 1300W output power.
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