圖片僅供參考
SN74AC74DR
IC FF D-TYPE DUAL 1BIT 14SOIC
- 製造商
- 製造商。 部分 #SN74AC74DR
- 包
- 資料表
- 有現貨的6029
100%原創; 新
24小時準備發貨
365天保修
RFQ&; 獲得更多折扣
規格
| Package | Tape & Reel (TR),Cut Tape (CT),Bulk |
| Series | 74AC |
| ProductStatus | Active |
| Function | Set(Preset) and Reset |
| Type | D-Type |
| OutputType | Complementary |
| NumberofElements | 2 |
| NumberofBitsperElement | 1 |
| ClockFrequency | 160 MHz |
| MaxPropagationDelay@VMaxCL | 6ns @ 5V, 50pF |
| TriggerType | Positive Edge |
| Current-OutputHighLow | 24mA, 24mA |
| Voltage-Supply | 2V ~ 6V |
| Current-Quiescent(Iq) | 2 µA |
| InputCapacitance | 3 pF |
| OperatingTemperature | -40°C ~ 85°C (TA) |
| MountingType | Surface Mount |
| SupplierDevicePackage | 14-SOIC |
概述
Description
The SN74AC74DR is a dual D-type flip-flop integrated circuit (IC) from Texas Instruments, designed for high-speed digital applications. It features two independent D flip-flops with asynchronous set and reset inputs, allowing for flexible control over the state of the flip-flops. The "AC" in its name indicates that it operates on a 3 to 5V supply range with high-speed capabilities, making it suitable for modern digital designs.
The device can trigger on the rising edge of a clock signal, capturing the input data on the D pins and outputting it on the Q pins. It is commonly used in memory storage, shift registers, and counters. The "DR" suffix denotes its packaging type, which is a surface-mount "SOIC" (Small Outline Integrated Circuit) with 14 pins.
With a propagation delay typically around 5 ns at 5V, the SN74AC74DR is ideal for applications requiring fast switching speeds. Its robust design and compatibility with various logic families make it a popular choice in consumer electronics, automotive, and industrial applications.
The device can trigger on the rising edge of a clock signal, capturing the input data on the D pins and outputting it on the Q pins. It is commonly used in memory storage, shift registers, and counters. The "DR" suffix denotes its packaging type, which is a surface-mount "SOIC" (Small Outline Integrated Circuit) with 14 pins.
With a propagation delay typically around 5 ns at 5V, the SN74AC74DR is ideal for applications requiring fast switching speeds. Its robust design and compatibility with various logic families make it a popular choice in consumer electronics, automotive, and industrial applications.
Features
The SN74AC74DR is a dual D-type flip-flop designed for high-speed operation in digital circuits. Key features include:
1. Dual Functionality: Contains two independent D flip-flops, each with a data (D) input, clock (CLK) input, and output (Q).
2. Edge-Triggered: Operates on the rising edge of the clock signal, ensuring reliable data capture.
3. Asynchronous Set and Reset: Each flip-flop has asynchronous set (PRE) and reset (CLR) inputs for immediate state control.
4. High-Speed Performance: Fast propagation delay, supporting high-frequency applications.
5. Wide Supply Voltage Range: Operates within a supply voltage range of 2V to 6V, compatible with various logic levels.
6. Low Power Consumption: Consumes low static and dynamic power, making it suitable for battery-operated devices.
7. TTL-Compatible: Designed to be compatible with TTL logic, facilitating easy integration into existing circuits.
These features make the SN74AC74DR ideal for applications in data storage, timing control, and sequential logic circuits.
1. Dual Functionality: Contains two independent D flip-flops, each with a data (D) input, clock (CLK) input, and output (Q).
2. Edge-Triggered: Operates on the rising edge of the clock signal, ensuring reliable data capture.
3. Asynchronous Set and Reset: Each flip-flop has asynchronous set (PRE) and reset (CLR) inputs for immediate state control.
4. High-Speed Performance: Fast propagation delay, supporting high-frequency applications.
5. Wide Supply Voltage Range: Operates within a supply voltage range of 2V to 6V, compatible with various logic levels.
6. Low Power Consumption: Consumes low static and dynamic power, making it suitable for battery-operated devices.
7. TTL-Compatible: Designed to be compatible with TTL logic, facilitating easy integration into existing circuits.
These features make the SN74AC74DR ideal for applications in data storage, timing control, and sequential logic circuits.
Package
The SN74AC74DR is packaged in a small SOIC (Small Outline Integrated Circuit) type, specifically a 14-pin SOIC package. It features a surface mount design suitable for automated assembly and compact applications.
Pinout
The SN74AC74DR is a dual D-type flip-flop integrated circuit with a total of 14 pins. Its primary functions include data storage and synchronization. Each flip-flop has two inputs (D and clock) and two outputs (Q and Q’), allowing it to capture and hold data based on the clock signal.
Pin Count and Functions:
- Total Pins: 14
- Pin Functions:
- 1, 2: Q outputs of Flip-Flop 1 (Q1, Q1’)
- 3, 4: D input and clock input of Flip-Flop 1 (D1, CLK1)
- 5: Clear input for Flip-Flop 1 (CLR1)
- 6: Pre-set input for Flip-Flop 1 (PRE1)
- 7: Ground (GND)
- 8, 9: Q outputs of Flip-Flop 2 (Q2, Q2’)
- 10, 11: D input and clock input of Flip-Flop 2 (D2, CLK2)
- 12: Clear input for Flip-Flop 2 (CLR2)
- 13: Pre-set input for Flip-Flop 2 (PRE2)
- 14: Power supply (VCC)
This device is widely used in digital circuits for memory functions and state storage.
Pin Count and Functions:
- Total Pins: 14
- Pin Functions:
- 1, 2: Q outputs of Flip-Flop 1 (Q1, Q1’)
- 3, 4: D input and clock input of Flip-Flop 1 (D1, CLK1)
- 5: Clear input for Flip-Flop 1 (CLR1)
- 6: Pre-set input for Flip-Flop 1 (PRE1)
- 7: Ground (GND)
- 8, 9: Q outputs of Flip-Flop 2 (Q2, Q2’)
- 10, 11: D input and clock input of Flip-Flop 2 (D2, CLK2)
- 12: Clear input for Flip-Flop 2 (CLR2)
- 13: Pre-set input for Flip-Flop 2 (PRE2)
- 14: Power supply (VCC)
This device is widely used in digital circuits for memory functions and state storage.
Manufacturer
The SN74AC74DR is manufactured by Texas Instruments (TI), a multinational semiconductor design and manufacturing company. Founded in 1930, Texas Instruments is renowned for its development of analog and embedded processing chips, as well as digital signal processors. The company serves various sectors, including automotive, industrial, communications, and consumer electronics. TI is recognized for its innovation in integrated circuits and is a leading provider of analog and mixed-signal semiconductor solutions. The SN74AC74DR itself is a dual D-type flip-flop, commonly used in digital circuits for data storage and transfer applications.
Application
The SN74AC74DR is a dual D-type flip-flop used in various digital applications, including data storage, frequency division, data synchronization, and state machine design. It is commonly employed in counters, shift registers, and memory devices. Additionally, it serves in clocked sequential circuits for edge-triggered operations, making it suitable for use in microcontroller interfacing, communication systems, and programmable logic devices.
Equivalent
The SN74AC74DR is a dual D-type flip-flop. Equivalent products include:
1. MC74AC74
2. CD74HC74
3. 74HC74
4. 74HCT74
Ensure to check specifications for voltage levels and other features before substituting.
1. MC74AC74
2. CD74HC74
3. 74HC74
4. 74HCT74
Ensure to check specifications for voltage levels and other features before substituting.
船舶
運輸管道我們
通過DHL、FedEx、TNT、UPS或您選擇的任何其他貨運代理提供全球運輸服務。
運費參攷(DHL/FedEx):
動態主要裝載: 運費從25美元到45美元(0.5公斤)不等,預計交貨時間為2-5個工作日。
聯邦快遞: 運費從25美元到40美元(0.5公斤)不等,預計交貨時間為3-7個工作日。
不斷電供應系統: 運費從25美元到45美元(0.5公斤)不等,預計交貨時間為3-7個工作日。
三硝基甲苯: 運費從25美元到65美元(0.5公斤)不等,預計交貨時間為3-7個工作日。
增强型短消息: 運費從30美元到50美元(0.5公斤)不等,預計交貨時間為7-15個工作日。
掛號: 運費為2-4美元(0.1公斤),預計交貨時間為5-20個工作日。
支付
Payment Methods
付款條件為100%預付。
現時,我們只接受以下付款方式:
1. 貝寶
2. 信用卡/借記卡
3. 電匯
類似的
-
MX25V1635FZNI
Macronix
-
MX25V5126FM1I
Macronix
-
MX25V2033FM1I
Macronix
-
MX25V16066M2I02
Macronix
-
MX25L8035EM2I-10G
Macronix
-
MX25L25673GMI-10G
Macronix
-
MX29GL512FHXFI-11..
Macronix
-
MX25U25643GZNI00
Macronix
-
MX25L2006EM1I-12G
Macronix
-
MX25U3232FZBI02
Macronix
-
MX25U6435FM2I-10G
Macronix
-
MX25L12833FM2I-10..
Macronix