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TC4013BP
+BOMFlip Flops CONV-DIP,DISCON(07-10)/PHASE-OUT(10-01)/OBSOLETE(10-04),
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ManufacturerToshiba
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Mfr. Part #TC4013BP
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In Stock6710
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Specifications
| Attribute | Value |
| StandardPackQty | 25 |
Overview
Description
The course might introduce fundamental principles, including basic programming, data structures, algorithms, or system architecture. It could also cover practical skills like coding in a popular programming language, understanding software development methodologies, or exploring emerging technologies.
Students might engage in lectures, hands-on labs, and projects to solidify their understanding and application of these concepts. The course could also emphasize problem-solving and analytical thinking, preparing students for more advanced topics or professional applications.
For precise details, it's best to consult the syllabus or course catalog of the specific educational institution offering TC4013BP.
Equivalent
Features
1. Dual Flip-Flops: Contains two independent D-type flip-flops within a single package.
2. Operating Voltage: Typically operates within a range of 3V to 15V, making it versatile for various applications.
3. Low Power Consumption: Due to its CMOS technology, it offers low power consumption, which is ideal for battery-powered applications.
4. High Noise Immunity: Exhibits high noise immunity, ensuring reliable performance in electrically noisy environments.
5. Edge-Triggered: The flip-flops are edge-triggered, meaning they change state on the rising or falling edge of the clock signal.
6. Standard Pin Configuration: Comes in a standard 14-pin DIP package, simplifying integration into circuit designs.
7. Wide Temperature Range: Can operate over a wide temperature range, typically from -55°C to +125°C.
These features make the TC4013BP suitable for a variety of applications, including data storage, counters, and registers in both consumer and industrial electronics.
Pinout
1. VDD (Pin 14): Positive supply voltage.
2. GND (Pin 7): Ground.
3. Q1 (Pin 1): Output for flip-flop 1.
4. Q1 (Pin 2): Inverted output for flip-flop 1.
5. D1 (Pin 3): Data input for flip-flop 1.
6. CLK1 (Pin 5): Clock input for flip-flop 1.
7. RST1 (Pin 4): Reset input for flip-flop 1.
8. SET1 (Pin 6): Set input for flip-flop 1.
9. Q2 (Pin 13): Output for flip-flop 2.
10. Q2 (Pin 12): Inverted output for flip-flop 2.
11. D2 (Pin 11): Data input for flip-flop 2.
12. CLK2 (Pin 9): Clock input for flip-flop 2.
13. RST2 (Pin 10): Reset input for flip-flop 2.
14. SET2 (Pin 8): Set input for flip-flop 2.
Each flip-flop operates independently, providing data storage and transfer capabilities.