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R5F10RJCGFA#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 | R5F10RJCGFA#50 |
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R5F10RJCAFA#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 | R5F10RJCAFA#50 |
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R5F10RJ8AFA#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 | R5F10RJ8AFA#50 |
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R5F10RB8GFP#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 | R5F10RB8GFP#30 |
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UPC4558G2-E2-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 | UPC4558G2-E2-A |
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R5F10RGCGFB#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 | R5F10RGCGFB#50 |
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R5F10RBCAFP#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 | R5F10RBCAFP#10 |
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R5F10RBCGFP#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 | R5F10RBCGFP#10 |
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R5F10RGCGFB#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 | R5F10RGCGFB#30 |
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IW673-00
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) | IW673-00 |
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R5F10RJ8AFA#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 | R5F10RJ8AFA#X0 |
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R5F10RJAAFA#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 | R5F10RJAAFA#X0 |
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R5F10RB8AFP#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 | R5F10RB8AFP#50 |
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R5F10RFAGFP#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 | R5F10RFAGFP#X0 |
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ISL84053IBZ
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 | ISL84053IBZ |
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STB1001H-7.62-5
Summit Electronics
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1 | STB1001H-7.62-XX s a Terminal Block Horizontal header family with a 7.62 mm pitch.The connector is available from 2 up to 24 poles an and optional with a vertical orientation | Header, Shrouded - Right Angle PTH Box | STB1001H-7.62-5 |
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STB1001H-7.62-7
Summit Electronics
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1 | STB1001H-7.62-XX s a Terminal Block Horizontal header family with a 7.62 mm pitch.The connector is available from 2 up to 24 poles an and optional with a vertical orientation | Header, Shrouded - Right Angle PTH Box | STB1001H-7.62-7 |
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STB1001H-7.62-21
Summit Electronics
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1 | STB1001H-7.62-XX s a Terminal Block Horizontal header family with a 7.62 mm pitch.The connector is available from 2 up to 24 poles an and optional with a vertical orientation | Header, Shrouded - Right Angle PTH Box | STB1001H-7.62-21 |
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MMBD701LT1G
onsemi
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1 | • Extremely Low Minority Carrier Lifetime − 15 ps (Typ)\r\n• Very Low Capacitance − 1.0 pF @ VR = 20 V\r\n• High Reverse Voltage − to 70 V\r\n• Low Reverse Leakage − 200 nA (Max)\r\n• S Prefix for Automotive and Other Applications Requiring Unique\r\nSite and Control Change Requirements; AEC Qualified and PPAP\r\nCapable\r\n• These Devices are Pb−Free and are RoHS Compliant | SOT23 (3-Pin) | MMBD701LT1G |
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STB1001H-7.62-15
Summit Electronics
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1 | STB1001H-7.62-XX s a Terminal Block Horizontal header family with a 7.62 mm pitch.The connector is available from 2 up to 24 poles an and optional with a vertical orientation | Header, Shrouded - Right Angle PTH Box | STB1001H-7.62-15 |
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STB1001H-7.62-17
Summit Electronics
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1 | STB1001H-7.62-XX s a Terminal Block Horizontal header family with a 7.62 mm pitch.The connector is available from 2 up to 24 poles an and optional with a vertical orientation | Header, Shrouded - Right Angle PTH Box | STB1001H-7.62-17 |
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STB1001H-7.62-24
Summit Electronics
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1 | STB1001H-7.62-XX s a Terminal Block Horizontal header family with a 7.62 mm pitch.The connector is available from 2 up to 24 poles an and optional with a vertical orientation | Header, Shrouded - Right Angle PTH Box | STB1001H-7.62-24 |
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SMBF17CA-TP
MCC
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1 | Features\r\n• For surface mounted applications\r\n• Low-profile package\r\n• Ideal for automated placement\r\n• Available in Unidirectionaand Bil directional\r\n• 600 W peak pulse power capability with a 10/1000 μs waveform\r\n• Low incremental surge resistance, excellent clamping capability\r\n• Very fast reponsse time\r\n• High temperature soldering guaranteed: 260 °C/10 s at terminals\r\n• Meets MSL level 1\r\n• Component in accordance to RoHS | Small Outline Diode Flat Lead | SMBF17CA-TP |
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72841L15TF8
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 | 72841L15TF8 |
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72851L10TF8
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 | 72851L10TF8 |
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