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CD4013BPWR
+StücklisteIC FF D-TYPE DUAL 1BIT 14TSSOP
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HerstellerTexas Instruments
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Herstellerteil #CD4013BPWR
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Paket TSSOP-14
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Auf Lager3842
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Spezifikationen
| Attribut | Wert |
| Package / Case | Tape & Reel (TR),Cut Tape (CT) |
| Series | 4000B |
| Part Status | Active |
| Function | Set(Preset) and Reset |
| Type | D-Type |
| Output Type | Complementary |
| Number of Elements | 2 |
| Number of Bits per Element | 1 |
| Clock Frequency | 24 MHz |
| Max Propagation Delay @ V Max CL | 90ns @ 15V, 50pF |
| Trigger Type | Positive Edge |
| Current - Output High Low | 6.8mA, 6.8mA |
| Voltage - Supply | 3V ~ 18V |
| Current - Quiescent (Iq) | 4 µA |
| Input Capacitance | 5 pF |
| Operating Temperature | -55°C ~ 125°C (TA) |
| Mounting Type | Surface Mount |
| Supplier Device Package | 14-TSSOP |
Übersicht
Description
Key characteristics include low power consumption, wide supply voltage range (typically 3V to 15V), and high noise immunity. The device can be used in applications such as data storage, data transfer, frequency division, and other sequential logic operations.
The CD4013BPWR operates in both positive and negative-edge triggered configurations, making it versatile for various circuit designs. It is encapsulated in a TSSOP (Thin Shrink Small Outline Package) with 16 pins, which is suitable for compact and surface-mount design requirements.
Overall, the CD4013BPWR is widely used in electronic circuits that require reliable digital storage and logic operations in a compact CMOS package.
Equivalent
1. 74HC74 - High-speed version
2. CD4013BE - Through-hole package variant
3. MC14013 - Motorola version
4. HEF4013 - NXP equivalent
5. TC4013 - Toshiba equivalent
These equivalents might differ slightly in specifications, so checking the datasheets for compatibility with your specific application is recommended.
Features
1. Dual Flip-Flops: Contains two independent D-type flip-flops in a single package.
2. High Noise Immunity: Designed with a wide supply voltage range from 3V to 15V, enhancing its robustness against noise.
3. Edge-Triggered: Operates on the positive-edge of the clock input for triggering.
4. Set and Reset: Each flip-flop has asynchronous set and reset inputs, allowing for additional control.
5. Complementary Outputs: Each flip-flop provides complementary (Q and Q̅) outputs.
6. Low Power Consumption: Consumes minimal power, suitable for battery-operated devices.
7. Versatile Applications: Used in data storage, data transfer, and frequency division circuits.
8. Standard Package: Available in a 14-pin TSSOP (Thin Shrink Small Outline Package) for compact circuit design.
These features make the CD4013BPWR an adaptable component for various digital logic and memory tasks.
Pinout
Pin Count:
The CD4013BPWR comes in a 14-pin package.
Pin Functions:
1. VDD (Pin 14): Positive power supply.
2. VSS (Pin 7): Ground.
3. Q1 (Pin 1): Q output of the first flip-flop.
4. Q1’ (Pin 2): Inverted Q output of the first flip-flop.
5. CLK1 (Pin 3): Clock input for the first flip-flop.
6. D1 (Pin 5): Data input for the first flip-flop.
7. SET1 (Pin 6): Set input for the first flip-flop.
8. RESET1 (Pin 4): Reset input for the first flip-flop.
9. Q2 (Pin 13): Q output of the second flip-flop.
10. Q2’ (Pin 12): Inverted Q output of the second flip-flop.
11. CLK2 (Pin 11): Clock input for the second flip-flop.
12. D2 (Pin 9): Data input for the second flip-flop.
13. SET2 (Pin 10): Set input for the second flip-flop.
14. RESET2 (Pin 8): Reset input for the second flip-flop.
These flip-flops are edge-triggered and capture data on the rising edge of the clock signal.
Manufacturer
Application
1. Frequency Division: Dividing input frequency by two.
2. Data Latching: Storing data bits in digital systems.
3. Toggle Operations: Toggling states in counters and registers.
4. Clocked Logic Operations: Synchronizing signals with clock inputs.
5. State Machines: Implementing state transitions in sequential logic circuits.
6. Debouncing: Stabilizing mechanical switch inputs.
7. Pulse Generation: Creating precise timing sequences.
Its versatility, low power consumption, and compatibility with CMOS technology make it suitable for various embedded systems, consumer electronics, and communication devices.