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TLC555IDG4
+BOMIC OSC SGL TIMER 2.1MHZ 8-SOIC
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メーカーSTマイクロエレクトロニクス
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メーカー品番 #TLC555IDG4
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データシート TLC555IDG4 DataSheet
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在庫状況8069
365 日間品質保証
7*24 日間の品質保証
90-時間単位のサービス保証
1日間のアフターサービス保証
仕様
| 属性 | 値 |
| Supplier | Rochester Electronics, LLC,Texas Instruments |
| Package | Bulk,Tube |
| Series | LinCMOS™ |
| ProductStatus | Discontinued at Digi-Key |
| Type | 555 Type, Timer/Oscillator (Single) |
| Frequency | 2.1MHz |
| Voltage-Supply | 3V ~ 15V |
| Current-Supply | 360 µA |
| OperatingTemperature | -40°C ~ 85°C |
| Package/Case | 8-SOIC (0.154, 3.90mm Width) |
| SupplierDevicePackage | 8-SOIC |
概要
Description
The TLC555IDG4 timer can be configured in several modes, including monostable, astable, and bistable, allowing it to generate accurate time delays or oscillations. It features low supply current, typically 170 µA at 5 V, and a high output drive capability. The device also has improved characteristics over the traditional bipolar 555 timers, such as faster switching speeds and reduced power consumption.
Encapsulated in a standard SOIC-8 package, the TLC555IDG4 is suitable for surface-mount applications. Its reliability and precision make it ideal for use in devices requiring accurate timing and pulse generation.
Equivalent
1. NE555: Standard bipolar 555 timer with similar functionality.
2. LM555: Another popular bipolar 555 timer variant.
3. LMC555: A low-power CMOS version from Texas Instruments.
4. ICM7555: A low-power CMOS timer from Intersil.
5. TS555: A low-power CMOS timer from STMicroelectronics.
These ICs perform similar functions, but differences in power consumption and operating parameters may exist.
Features
1. Low Supply Current: It operates with minimal power consumption, making it suitable for battery-powered applications.
2. Wide Voltage Range: Supports a supply voltage ranging from 2 V to 15 V, providing versatility for various applications.
3. High Output Drive Capability: Can source or sink up to 200 mA, suitable for driving loads directly.
4. Adjustable Duty Cycle: Offers flexibility in timing applications by allowing adjustments to the duty cycle.
5. Temperature Stability: Features excellent temperature stability, crucial for reliable operation in varying environmental conditions.
6. Operating Frequency: Capable of operating at frequencies up to 2 MHz.
7. Package Options: Available in several package types, including the standard SOIC, which facilitates easy integration into designs.
Overall, the TLC555IDG4 is a versatile and efficient choice for timing applications in a wide range of electronic projects.
Pinout
1. Ground (GND): Connects to the negative supply voltage.
2. Trigger: This input pin is used to start the timing interval in a monostable configuration. It reacts to a falling edge.
3. Output: This pin outputs the timer's high or low states.
4. Reset: A low signal on this pin resets the timer. If not used, it should be connected to the supply voltage to prevent accidental resets.
5. Control Voltage: Alters the threshold and trigger levels. If not used, it should be connected to a capacitor to ground.
6. Threshold: Compares the voltage at this pin to the control voltage to determine when to reset the flip-flop in a monostable operation.
7. Discharge: Connects to the collector of the discharge transistor, which discharges the timing capacitor in an astable operation.
8. VCC: Connects to the positive supply voltage.
The TLC555IDG4 is used in applications requiring precise timing, pulse generation, and oscillator functions.
Manufacturer
Application
1. Timing Circuits: Used in monostable and astable configurations for accurate timing durations.
2. Pulse Generation: Ideal for generating precise pulse widths and intervals.
3. Oscillators: Utilized in creating square wave oscillators for clock generation.
4. PWM Circuits: Used in pulse-width modulation applications for controlling motor speeds and LED brightness.
5. Frequency Division: Employed in frequency division circuits.
6. Delay Timers: Useful in creating time delays in electronic circuits.
7. Capacitance Measurement: Applied in capacitance measurement setups.
Its reliability and flexibility make it suitable for use in consumer electronics, automotive applications, and industrial systems.