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CAY16-334J4LF
Bourns
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1 | Bourns CAY10 Series 330kΩ ±5% Isolated SMT Resistor Array, 4 Resistors, 0.25W total 1206 package Convex | Other | CAY16-334J4LF |
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ISL6334IRZ
Renesas Electronics
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1 | The ISL6334, ISL6334A control microprocessor core voltage regulation by driving up to 4 interleaved synchronous-rectified buck channels in parallel. This multiphase architecture results in multiplying channel ripple frequency and reducing input and output ripple currents. Lower ripple results in fewer components, lower cost, reduced power dissipation and smaller implementation area. Microprocessor loads can generate load transients with extremely fast edge rates and requires high efficiency at light load. T | Quad Flat No-Lead | ISL6334IRZ |
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ISL6334DCRZ-T
Renesas Electronics
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1 | The ISL6334D controls voltage regulator by driving up to 4 interleaved synchronous-rectified buck channels in parallel. This multiphase architecture results in multiplying channel ripple frequency and reducing input and output ripple currents. Lower ripple results in fewer components, lower cost, reduced power dissipation and smaller implementation area. Microprocessor loads can generate load transients with extremely fast edge rates and requires high efficiency at light load. The ISL6334D utilizes Intersil | Quad Flat No-Lead | ISL6334DCRZ-T |
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ISL6334DIRZ-T
Renesas Electronics
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1 | The ISL6334D controls voltage regulator by driving up to 4 interleaved synchronous-rectified buck channels in parallel. This multiphase architecture results in multiplying channel ripple frequency and reducing input and output ripple currents. Lower ripple results in fewer components, lower cost, reduced power dissipation and smaller implementation area. Microprocessor loads can generate load transients with extremely fast edge rates and requires high efficiency at light load. The ISL6334D utilizes Intersil | Quad Flat No-Lead | ISL6334DIRZ-T |
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ISL6334CRZ-T
Renesas Electronics
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1 | The ISL6334, ISL6334A control microprocessor core voltage regulation by driving up to 4 interleaved synchronous-rectified buck channels in parallel. This multiphase architecture results in multiplying channel ripple frequency and reducing input and output ripple currents. Lower ripple results in fewer components, lower cost, reduced power dissipation and smaller implementation area. Microprocessor loads can generate load transients with extremely fast edge rates and requires high efficiency at light load. T | Quad Flat No-Lead | ISL6334CRZ-T |
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ISL6334IRZ-T
Renesas Electronics
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1 | The ISL6334, ISL6334A control microprocessor core voltage regulation by driving up to 4 interleaved synchronous-rectified buck channels in parallel. This multiphase architecture results in multiplying channel ripple frequency and reducing input and output ripple currents. Lower ripple results in fewer components, lower cost, reduced power dissipation and smaller implementation area. Microprocessor loads can generate load transients with extremely fast edge rates and requires high efficiency at light load. T | Quad Flat No-Lead | ISL6334IRZ-T |
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ISL6334AIRZ
Renesas Electronics
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1 | The ISL6334, ISL6334A control microprocessor core voltage regulation by driving up to 4 interleaved synchronous-rectified buck channels in parallel. This multiphase architecture results in multiplying channel ripple frequency and reducing input and output ripple currents. Lower ripple results in fewer components, lower cost, reduced power dissipation and smaller implementation area. Microprocessor loads can generate load transients with extremely fast edge rates and requires high efficiency at light load. T | Quad Flat No-Lead | ISL6334AIRZ |
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ISL6334DCRZ
Renesas Electronics
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1 | The ISL6334D controls voltage regulator by driving up to 4 interleaved synchronous-rectified buck channels in parallel. This multiphase architecture results in multiplying channel ripple frequency and reducing input and output ripple currents. Lower ripple results in fewer components, lower cost, reduced power dissipation and smaller implementation area. Microprocessor loads can generate load transients with extremely fast edge rates and requires high efficiency at light load. The ISL6334D utilizes Intersil | Quad Flat No-Lead | ISL6334DCRZ |
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ISL6334AIRZ-T
Renesas Electronics
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1 | The ISL6334, ISL6334A control microprocessor core voltage regulation by driving up to 4 interleaved synchronous-rectified buck channels in parallel. This multiphase architecture results in multiplying channel ripple frequency and reducing input and output ripple currents. Lower ripple results in fewer components, lower cost, reduced power dissipation and smaller implementation area. Microprocessor loads can generate load transients with extremely fast edge rates and requires high efficiency at light load. T | Quad Flat No-Lead | ISL6334AIRZ-T |
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ISL6334ACRZ-T
Renesas Electronics
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1 | The ISL6334, ISL6334A control microprocessor core voltage regulation by driving up to 4 interleaved synchronous-rectified buck channels in parallel. This multiphase architecture results in multiplying channel ripple frequency and reducing input and output ripple currents. Lower ripple results in fewer components, lower cost, reduced power dissipation and smaller implementation area. Microprocessor loads can generate load transients with extremely fast edge rates and requires high efficiency at light load. T | Quad Flat No-Lead | ISL6334ACRZ-T |
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ISL6334ACRZ
Renesas Electronics
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1 | The ISL6334, ISL6334A control microprocessor core voltage regulation by driving up to 4 interleaved synchronous-rectified buck channels in parallel. This multiphase architecture results in multiplying channel ripple frequency and reducing input and output ripple currents. Lower ripple results in fewer components, lower cost, reduced power dissipation and smaller implementation area. Microprocessor loads can generate load transients with extremely fast edge rates and requires high efficiency at light load. T | Quad Flat No-Lead | ISL6334ACRZ |
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ISL6334ACRZ-TK
Renesas Electronics
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1 | The ISL6334, ISL6334A control microprocessor core voltage regulation by driving up to 4 interleaved synchronous-rectified buck channels in parallel. This multiphase architecture results in multiplying channel ripple frequency and reducing input and output ripple currents. Lower ripple results in fewer components, lower cost, reduced power dissipation and smaller implementation area. Microprocessor loads can generate load transients with extremely fast edge rates and requires high efficiency at light load. T | Quad Flat No-Lead | ISL6334ACRZ-TK |
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ISL6334CRZ
Renesas Electronics
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1 | The ISL6334, ISL6334A control microprocessor core voltage regulation by driving up to 4 interleaved synchronous-rectified buck channels in parallel. This multiphase architecture results in multiplying channel ripple frequency and reducing input and output ripple currents. Lower ripple results in fewer components, lower cost, reduced power dissipation and smaller implementation area. Microprocessor loads can generate load transients with extremely fast edge rates and requires high efficiency at light load. T | Quad Flat No-Lead | ISL6334CRZ |
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ISL6334DIRZ
Renesas Electronics
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1 | The ISL6334D controls voltage regulator by driving up to 4 interleaved synchronous-rectified buck channels in parallel. This multiphase architecture results in multiplying channel ripple frequency and reducing input and output ripple currents. Lower ripple results in fewer components, lower cost, reduced power dissipation and smaller implementation area. Microprocessor loads can generate load transients with extremely fast edge rates and requires high efficiency at light load. The ISL6334D utilizes Intersil | Quad Flat No-Lead | ISL6334DIRZ |
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256-406/334-000
Wago
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1 | PCB terminal block; push-button; 2.5 mm²; Pin spacing 5/5.08 mm; 6-pole; CAGE CLAMP®; commoning option | Other | 256-406/334-000 |
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CAT16-334J4LF
Bourns
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1 | Res Thick Film Array 330K Ohm 5% 0.25W(1/4W) ±200ppm/°C ISOL 8-Pin 1206(4 X 0603) Concave SMD T/R | Other | CAT16-334J4LF |
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216-3340-00-0602J
Textool
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1 | 16 (2 x 8) Pos DIP, ZIF (ZIP), 0.3" (7.62mm) Row Spacing Socket Gold Connector | Other | 216-3340-00-0602J |
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SN74ALVC16334DGVR
Texas Instruments
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1 | 16-Bit Universal Bus Driver With 3-State Outputs | Small Outline Packages | SN74ALVC16334DGVR |
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236-406/334-604
Wago
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1 | THR PCB terminal block; 2.5 mm²; Pin spacing 5 mm; 6-pole; CAGE CLAMP®; commoning option | Other | 236-406/334-604 |
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256-506/334-000
Wago
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1 | PCB terminal block; push-button; 2.5 mm²; Pin spacing 7.5/7.62 mm; 6-pole; CAGE CLAMP®; commoning option | Other | 256-506/334-000 |
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256-416/334-000
Wago
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1 | PCB terminal block; push-button; 2.5 mm²; Pin spacing 5/5.08 mm; 16-pole; CAGE CLAMP®; commoning option | Other | 256-416/334-000 |
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256-606/334-000
Wago
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1 | PCB terminal block; push-button; 2.5 mm²; Pin spacing 10/10.16 mm; 6-pole; CAGE CLAMP®; commoning option | Other | 256-606/334-000 |
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B32694A6334J008
TDK
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1 | Metallized Polypropylene Capacitors (MKP/MFP), 0.33uF, 630V DC, 16mm(W) x 25.5mm(H) x 32.5mm(L) | Other | B32694A6334J008 |
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B32634B6334J020
TDK
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1 | Metallized Polypropylene Capacitors (MKP/MFP), 0.33uF, 630V DC, 16mm(W) x 25.5mm(H) x 32mm(L) | Other | B32634B6334J020 |
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ECWF6334RJL
Panasonic
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1 | Cap Film 0.33uF 630V PP 5% (20.5 X 11.4 X 22.7mm) Radial 7.5mm 105°C Ammo Pack | Other | ECWF6334RJL |
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