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EEE-1EA221AP
Panasonic
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1 | SMD Aluminium Electrolytic Capacitor, Radial Can - SMD, 220 µF, 25 V, S Series, 2000 hours @ 85°C | Other | EEE-1EA221AP |
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1206L300SLWR
LITTELFUSE
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1 | LITTELFUSE - 1206L300SLWR - Resettable Fuse, PPTC, 1206 (3216 Metric), POLY-FUSE LoRho Series, 6 VDC, 3 A, 6 A, 4 s | Fuses Chip | 1206L300SLWR |
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OPA2182IDR
Texas Instruments
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1 | Operational Amplifiers - Op Amps Industry s lowest offset drift (12 nV/C, max), 36V, 5MHz, zero drift, MUX-friendly op amp 8-SOIC -40 to 125 | Small Outline Packages | OPA2182IDR |
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F981V105MSA
Kyocera AVX
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1 | Cap Tant Solid 1uF 35V S CASE 20% (2 X 1.25 X 0.8mm) Inward L SMD 2012-09 8 Ohm 125C T/R | Capacitor Moulded Polarised | F981V105MSA |
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R5F10RLAANB#W0
Renesas Electronics
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1 | RL78/L12 microcontrollers have a built-in segment LCD driver. Three LCD driving voltage generation methods (external resistance division, capacitive split, and internal voltage boost) are supported, corresponding to a variety of segment LCD panels. They realize low current consumptionNote 1: external resistance division: 1.60 μANote 2, internal voltage boost: 1.19 μA, and capacitive split: 0.68 µA. With a lineup of 32 to 64-pin products supporting up to 280 segments, these microcontrollers are perfect for s | Quad Flat No-Lead | R5F10RLAANB#W0 |
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ISL94208IRZ
Renesas Electronics
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1 | The ISL94208 battery front end IC is designed for use with a microcontroller and features an analog front-end with overcurrent protection for multi-cell Li-ion battery packs. The ISL94208 supports battery packs consisting of four to six cells in series and one or more cells in parallel. Using an internal analog multiplexer, the ISL94208 allows a separate microcontroller with an A/D converter to monitor each cell voltage plus internal and external temperature. The ISL94208 provides integral overcurrent and s | Quad Flat No-Lead | ISL94208IRZ |
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8T73S1802NLGI
Renesas Electronics
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1 | The 8T73S1802 is a fully integrated clock fanout buffer and frequency divider. The input signal is frequency-divided and then fanned out to one differential LVPECL and one LVCMOS output. Each of the outputs can select its individual divider value from the range of ÷1, ÷2, ÷4 and ÷8. Three control inputs EN, SEL0 and SEL1 (3-level logic) are available to select the frequency dividers and the output enable/disable state. The single-ended LVCMOS output is phase-delayed by 650ps to minimize coupling of LVCMOS s | Quad Flat No-Lead | 8T73S1802NLGI |
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R5F10RLAANB#20
Renesas Electronics
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1 | RL78/L12 microcontrollers have a built-in segment LCD driver. Three LCD driving voltage generation methods (external resistance division, capacitive split, and internal voltage boost) are supported, corresponding to a variety of segment LCD panels. They realize low current consumptionNote 1: external resistance division: 1.60 μANote 2, internal voltage boost: 1.19 μA, and capacitive split: 0.68 µA. With a lineup of 32 to 64-pin products supporting up to 280 segments, these microcontrollers are perfect for s | Quad Flat No-Lead | R5F10RLAANB#20 |
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R5F10RLAAFA#V0
Renesas Electronics
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1 | RL78/L12 microcontrollers have a built-in segment LCD driver. Three LCD driving voltage generation methods (external resistance division, capacitive split, and internal voltage boost) are supported, corresponding to a variety of segment LCD panels. They realize low current consumptionNote 1: external resistance division: 1.60 μANote 2, internal voltage boost: 1.19 μA, and capacitive split: 0.68 µA. With a lineup of 32 to 64-pin products supporting up to 280 segments, these microcontrollers are perfect for s | Quad Flat Packages | R5F10RLAAFA#V0 |
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R5F10RLAAFA#70
Renesas Electronics
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1 | RL78/L12 microcontrollers have a built-in segment LCD driver. Three LCD driving voltage generation methods (external resistance division, capacitive split, and internal voltage boost) are supported, corresponding to a variety of segment LCD panels. They realize low current consumptionNote 1: external resistance division: 1.60 μANote 2, internal voltage boost: 1.19 μA, and capacitive split: 0.68 µA. With a lineup of 32 to 64-pin products supporting up to 280 segments, these microcontrollers are perfect for s | Quad Flat Packages | R5F10RLAAFA#70 |
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R5F10RJAAFA#V0
Renesas Electronics
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1 | RL78/L12 microcontrollers have a built-in segment LCD driver. Three LCD driving voltage generation methods (external resistance division, capacitive split, and internal voltage boost) are supported, corresponding to a variety of segment LCD panels. They realize low current consumptionNote 1: external resistance division: 1.60 μANote 2, internal voltage boost: 1.19 μA, and capacitive split: 0.68 µA. With a lineup of 32 to 64-pin products supporting up to 280 segments, these microcontrollers are perfect for s | Quad Flat Packages | R5F10RJAAFA#V0 |
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ISL84052IVZ
Renesas Electronics
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1 | The Intersil ISL84051, ISL84052, ISL84053 devices are precision, bidirectional, analog switches configured as a 8-Channel multiplexer/demultiplexer (ISL84051), a dual differential 4-Channel multiplexer/demultiplexer (ISL84052) and a triple single pole/double throw (SPDT) switch (ISL84053) designed to operate from a single +2V to +12V supply or from a ±2V to ±6V supply. All devices have an inhibit pin to simultaneously open all signal paths. ON-resistance is 60Ω with a ±5V supply and 125Ω with a single +5V s | Small Outline Packages | ISL84052IVZ |
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ISL84052IVZ-T
Renesas Electronics
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1 | The Intersil ISL84051, ISL84052, ISL84053 devices are precision, bidirectional, analog switches configured as a 8-Channel multiplexer/demultiplexer (ISL84051), a dual differential 4-Channel multiplexer/demultiplexer (ISL84052) and a triple single pole/double throw (SPDT) switch (ISL84053) designed to operate from a single +2V to +12V supply or from a ±2V to ±6V supply. All devices have an inhibit pin to simultaneously open all signal paths. ON-resistance is 60Ω with a ±5V supply and 125Ω with a single +5V s | Small Outline Packages | ISL84052IVZ-T |
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R5F21248SDFP#V2
Renesas Electronics
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1 | The R8C/24 Group is supported only for customers who have already adopted these products. The RL78/G14 Group is recommended for new designs.This MCU is built using the high-performance silicon gate CMOS process using the R8C CPU core and is packaged in a 48-pin plastic molded LQFP. This MCU operates using sophisticated instructions featuring a high level of instruction efficiency. With 1Mb of address space, it is capable of executing instructions at high speed. This MCU is equipped with one CAN module and s | Quad Flat Packages | R5F21248SDFP#V2 |
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R5F10RLCGFA#10
Renesas Electronics
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1 | RL78/L12 microcontrollers have a built-in segment LCD driver. Three LCD driving voltage generation methods (external resistance division, capacitive split, and internal voltage boost) are supported, corresponding to a variety of segment LCD panels. They realize low current consumptionNote 1: external resistance division: 1.60 μANote 2, internal voltage boost: 1.19 μA, and capacitive split: 0.68 µA. With a lineup of 32 to 64-pin products supporting up to 280 segments, these microcontrollers are perfect for s | Quad Flat Packages | R5F10RLCGFA#10 |
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R5F10RG8AFB#10
Renesas Electronics
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1 | RL78/L12 microcontrollers have a built-in segment LCD driver. Three LCD driving voltage generation methods (external resistance division, capacitive split, and internal voltage boost) are supported, corresponding to a variety of segment LCD panels. They realize low current consumptionNote 1: external resistance division: 1.60 μANote 2, internal voltage boost: 1.19 μA, and capacitive split: 0.68 µA. With a lineup of 32 to 64-pin products supporting up to 280 segments, these microcontrollers are perfect for s | Quad Flat Packages | R5F10RG8AFB#10 |
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R5F21244SNFP#V2
Renesas Electronics
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1 | The R8C/24 Group is supported only for customers who have already adopted these products. The RL78/G14 Group is recommended for new designs.This MCU is built using the high-performance silicon gate CMOS process using the R8C CPU core and is packaged in a 48-pin plastic molded LQFP. This MCU operates using sophisticated instructions featuring a high level of instruction efficiency. With 1Mb of address space, it is capable of executing instructions at high speed. This MCU is equipped with one CAN module and s | Quad Flat Packages | R5F21244SNFP#V2 |
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1709021
Phoenix Contact
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1 | PCB headers, nominal cross section: 6 mm², color: green, nominal current: 41 A, rated voltage (III/2): 630 V, contact surface: Tin, type of contact: Female connector, number of potentials: 11, number of rows: 1, number of positions: 11, number of connections: 11, product range: IPCV 5/..-GF, pitch: 7.62 mm, mounting: Wave soldering, pin layout: Linear pinning, solder pin [P]: 5 mm, number of solder pins per potential: 3, plug-in system: POWER COMBICON 5, Pin connector pattern alignment: Standard, Locking: S | Other | 1709021 |
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R5F10RLAGFB#50
Renesas Electronics
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1 | RL78/L12 microcontrollers have a built-in segment LCD driver. Three LCD driving voltage generation methods (external resistance division, capacitive split, and internal voltage boost) are supported, corresponding to a variety of segment LCD panels. They realize low current consumptionNote 1: external resistance division: 1.60 μANote 2, internal voltage boost: 1.19 μA, and capacitive split: 0.68 µA. With a lineup of 32 to 64-pin products supporting up to 280 segments, these microcontrollers are perfect for s | Quad Flat Packages | R5F10RLAGFB#50 |
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UPC258G2-A
Renesas Electronics
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1 | The μPC258 and 4558 are dual operational amplifier with a built-in phase compensation circuit, feature High-Speed, wide band and low noise. Therefore, applications such as active filters, audio amplifiers and VCOs can be realized with a simple circuit configuration. Depending on the operating ambient temperature, µPC258 is suitable for communication application while µPC4558 is suitable for general-purpose usage. In addition, special arrangement products with sorted DC items are available. Along with this s | Small Outline Packages | UPC258G2-A |
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2007198-1
TE Connectivity
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1 | Configuration Features: Number of Ports 1 | Port Matrix Configuration 1 x 1 | Dimensions: PCB Thickness (Recommended) .089 INCH | PCB Thickness (Recommended) 2.25 MM | Electrical Characteristics: Data Rate (Max) 16 GBS | Housing Features: Cage Material Nickel Silver | Operation/Application: Pluggable I/O Applications SFP+ | Heat Sink Compatible No | Other: Included Lightpipe No | EMI Containment Feature Type Internal/External EMI Springs | Packaging Features: Packaging Method Tray | Product Type Features: S | Other | 2007198-1 |
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338068-6
TE Connectivity
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1 | Body Features: Connector Profile Standard | Daisy Chain Without | Primary Product Color Red | Configuration Features: Number of Positions 6 | PCB Mount Orientation Vertical | Number of Rows 2 | Contact Features: Contact Shape & Form Dual Beam | Contact Current Rating (Max) 1 AMP | Contact Underplating Material Nickel | PCB Contact Termination Area Plating Material Thickness 118.11 – 196.85 MICIN | PCB Contact Termination Area Plating Material Tin | Contact Mating Area Plating Material Tin | Contact Type S | Other | 338068-6 |
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IW673-01
Renesas Electronics
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1 | Combined with a MOSFET, the iW673 can emulate the diode rectifier at the secondary side of the flyback to reduce conduction loss. The iW673 determines the timing of the driver by sensing the voltage across the RDS(ON) to achieve lossless sensing. The iW673 uses proprietary digital adaptive turn-off control technology to minimize the turn-off deadtime of the synchronous rectifier so that the parallel Schottky diode required by conventional synchronous rectifiers can be eliminated. The integrated driver has s | SOT23 (6-Pin) | IW673-01 |
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R5F10RLAGFB#X0
Renesas Electronics
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1 | RL78/L12 microcontrollers have a built-in segment LCD driver. Three LCD driving voltage generation methods (external resistance division, capacitive split, and internal voltage boost) are supported, corresponding to a variety of segment LCD panels. They realize low current consumptionNote 1: external resistance division: 1.60 μANote 2, internal voltage boost: 1.19 μA, and capacitive split: 0.68 µA. With a lineup of 32 to 64-pin products supporting up to 280 segments, these microcontrollers are perfect for s | Quad Flat Packages | R5F10RLAGFB#X0 |
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R5F10RJ8GFA#30
Renesas Electronics
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1 | RL78/L12 microcontrollers have a built-in segment LCD driver. Three LCD driving voltage generation methods (external resistance division, capacitive split, and internal voltage boost) are supported, corresponding to a variety of segment LCD panels. They realize low current consumptionNote 1: external resistance division: 1.60 μANote 2, internal voltage boost: 1.19 μA, and capacitive split: 0.68 µA. With a lineup of 32 to 64-pin products supporting up to 280 segments, these microcontrollers are perfect for s | Quad Flat Packages | R5F10RJ8GFA#30 |
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