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R5F10RFCGFP#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 | R5F10RFCGFP#V0 |
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R5F10RGCGFB#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 | R5F10RGCGFB#X0 |
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R5F10RLCAFB#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 | R5F10RLCAFB#V0 |
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R5F10RBAGFP#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 | R5F10RBAGFP#X0 |
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5747497-4
TE Connectivity
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1 | Body Features: Connector Profile High | Shell Plating Material Tin | Insert Material Thermoplastic | Primary Product Color Black | Mating Feature Plating Material Zinc | Mating Feature Material Steel | Configuration Features: PCB Mount Orientation Right Angle | Number of Rows 3 | Number of Positions 50 | Contact Features: PCB Contact Termination Area Plating Material Tin | Contact Mating Area Plating Material Thickness 30 MICIN | Contact Underplating Material Nickel | Contact Base Material Brass | Contact S | Other | 5747497-4 |
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R5F10RGAGFB#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 | R5F10RGAGFB#X0 |
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R5F10RGCGFB#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 | R5F10RGCGFB#10 |
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5V9885TNLGI
Renesas Electronics
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1 | The IDT5V9885T is a programmable clock generator intended for high performance data-communications, telecommunications, consumer, andnetworking applications. There are three internal PLLs, each individually programmable, allowing for three unique non-integer-related frequencies. The frequencies are generated from a single reference clock. The reference clock can come from one of the two redundant clock inputs. A glitchless automatic or manual switchover function allows any one of theredundant clocks to be s | Quad Flat No-Lead | 5V9885TNLGI |
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R5F10RLCGFA#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 | R5F10RLCGFA#V0 |
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R5F10RLAGFB#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 | R5F10RLAGFB#10 |
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R5F10RLAGNB#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 | R5F10RLAGNB#W0 |
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1 | AEC-Q101 Qualified\r\n• For Surface Mount Application in Order to Optimize Board Space\r\n• Low Profile Package\r\n• Low Inductance\r\n• Excellent Clamping Capability\r\n• Fast Response Time: Typical Less Than 1.0ps From 0 Volts to VBR\r\nMinimum\r\n• For Bidirectional Devices Add “C” To The Suffix of\r\nThe Part Number: i.e.SMCJ1.5KE12CAHE3 for 5% Tolerance\r\n• Halogen Free. "Green" Device (Note 1)\r\n• Moisture Sensitivity Level 1\r\n• Epoxy Meets UL 94 V-0 Flammability Rating\r\n• Lead Free Finish/RoHS Compliant (Note2) ("P" S | Diodes Moulded | SMCJ1.5KE130AHE3-TP |
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ISL94208IRZ-T7A
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-T7A |
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R5F10RFAAFP#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 | R5F10RFAAFP#V0 |
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R5F10RFAAFP#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 | R5F10RFAAFP#30 |
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R5F10RFCAFP#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 | R5F10RFCAFP#50 |
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72821L10PF
Renesas Electronics
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1 | The 72821 is a 1K x 9 dual synchronous (clocked) FIFO. The device is functionally equivalent to two 72221 FIFOs in a single package with all associated control, data, and flag lines assigned to separate pins. Each of the two FIFOs has a 9-bit input data port and a 9-bit output data port. The Read Clock can be tied to the Write Clock for single clock operation or the two clocks can run asynchronous of one another for dual clock operation. The 72821 architecture lends itself to many flexible configurations s | Quad Flat Packages | 72821L10PF |
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72851L10TF
Renesas Electronics
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1 | The 72851 is a 8K x 9 dual synchronous (clocked) FIFO. The device is functionally equivalent to two 72251 FIFOs in a single package with all associated control, data, and flag lines assigned to separate pins. Each of the two FIFOs has a 9-bit input data port and a 9-bit output data port. The Read Clock can be tied to the Write Clock for single clock operation or the two clocks can run asynchronous of one another for dual clock operation. The 72851 architecture lends itself to many flexible configurations s | Quad Flat Packages | 72851L10TF |
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72831L25TF
Renesas Electronics
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1 | The 72831 is a 2K x 9 dual synchronous (clocked) FIFO. The device is functionally equivalent to two 72231 FIFOs in a single package with all associated control, data, and flag lines assigned to separate pins. Each of the two FIFOs has a 9-bit input data port and a 9-bit output data port. The Read Clock can be tied to the Write Clock for single clock operation or the two clocks can run asynchronous of one another for dual clock operation. The 72831 architecture lends itself to many flexible configurations s | Quad Flat Packages | 72831L25TF |
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72821L10PFG8
Renesas Electronics
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1 | The 72821 is a 1K x 9 dual synchronous (clocked) FIFO. The device is functionally equivalent to two 72221 FIFOs in a single package with all associated control, data, and flag lines assigned to separate pins. Each of the two FIFOs has a 9-bit input data port and a 9-bit output data port. The Read Clock can be tied to the Write Clock for single clock operation or the two clocks can run asynchronous of one another for dual clock operation. The 72821 architecture lends itself to many flexible configurations s | Quad Flat Packages | 72821L10PFG8 |
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72821L10PF8
Renesas Electronics
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1 | The 72821 is a 1K x 9 dual synchronous (clocked) FIFO. The device is functionally equivalent to two 72221 FIFOs in a single package with all associated control, data, and flag lines assigned to separate pins. Each of the two FIFOs has a 9-bit input data port and a 9-bit output data port. The Read Clock can be tied to the Write Clock for single clock operation or the two clocks can run asynchronous of one another for dual clock operation. The 72821 architecture lends itself to many flexible configurations s | Quad Flat Packages | 72821L10PF8 |
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CRGP1210F39K
TE Connectivity
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1 | Configuration Features: Number of Resistors 1 | Dimensions: Product Width 2.6 MM | Product Length 3.1 MM | Product Height .022 INCH | Product Width .102 INCH | Product Height .55 MM | Product Length .122 INCH | Electrical Characteristics: Passive Component Tolerance 1 PCT | Resistance Value 39K OHM | Resistance Class 1kΩ – 1MΩ | Operating Voltage 200 V | Power Rating .75 WATT | Packaging Features: Packaging Method Taped & Reeled | Product Type Features: Resistor Type General Purpose Resistor | Package S | Resistor Chip | CRGP1210F39K |
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6368011-5
TE Connectivity
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1 | Body Features: LED Color (Bottom Left) Yellow | LED Color (Top Left) Yellow | Shield Plating Material Tin over Nickel | Connector Profile Low | LED Color (Bottom Right) Green | Modular Jack Latch Orientation Standard - Latch Down | Shield Material Copper Alloy | LED Color (Top Right) Green | Grounding Tab Plating Material Tin over Nickel | Configuration Features: Number of Positions 8 | Number of PCB Ground Tabs 6 | Port Matrix Configuration 2 x 1 | Number of Loaded Positions 8 | Connector Contact Density S | Other | 6368011-5 |
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ADR4530ARZ
Analog Devices
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1 | ► Maximum temperature coefficient (TCVOUT):\r\n► 0.8 ppm/°C (D grade 0°C to 70°C)\r\n► 1 ppm/°C (C grade 0°C to 70°C)\r\n► 2 ppm/°C (B grade −40°C to +125°C)\r\n► 4 ppm/°C (A grade −40°C to +125°C)\r\n► Output noise (0.1 Hz to 10 Hz):\r\n► 1 μV p-p at VOUT of 2.048 V typical\r\n► Initial output voltage error:\r\n► B, C, D grade: ±0.02% (maximum)\r\n► Input voltage range: 3 V to 15 V\r\n► Operating temperature:\r\n► A grade and B grade: −40°C to +125°C\r\n► C grade and D grade: 0°C to +70°C\r\n► Output current: +10 mA source/−10 mA s | Small Outline Packages | ADR4530ARZ |
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72841L10PFG8
Renesas Electronics
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1 | The 72841 is a 4K x 9 dual synchronous (clocked) FIFO. The device is functionally equivalent to two 72241 FIFOs in a single package with all associated control, data, and flag lines assigned to separate pins. Each of the two FIFOs has a 9-bit input data port and a 9-bit output data port. The Read Clock can be tied to the Write Clock for single clock operation or the two clocks can run asynchronous of one another for dual clock operation. The 72841 architecture lends itself to many flexible configurations s | Quad Flat Packages | 72841L10PFG8 |
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