画像はイメージの場合もございます。
商品詳細は仕様をご覧ください。
HEC4060BT,118

HEC4060BT,118

Basic Information Overview

Category: Integrated Circuit (IC)

Use: The HEC4060BT,118 is a 14-stage binary counter and oscillator IC. It is commonly used in digital electronics for frequency division, time delay generation, and clock synchronization applications.

Characteristics: - Low power consumption - Wide operating voltage range - High noise immunity - Compact size - Easy to integrate into electronic circuits

Package: The HEC4060BT,118 is available in a standard SOIC-16 package, which stands for Small Outline Integrated Circuit. This package provides good thermal performance and ease of handling during assembly.

Essence: The essence of the HEC4060BT,118 lies in its ability to accurately divide input frequencies and generate precise time delays, making it an essential component in various digital systems.

Packaging/Quantity: The HEC4060BT,118 is typically sold in reels containing 2500 units per reel.

Specifications

  • Supply Voltage Range: 3V to 15V
  • Maximum Clock Frequency: 8 MHz
  • Number of Stages: 14
  • Output Drive Capability: 10 TTL Loads
  • Operating Temperature Range: -40°C to +85°C

Detailed Pin Configuration

The HEC4060BT,118 has a total of 16 pins, each serving a specific function. Here is the detailed pin configuration:

  1. Pin 1: Oscillator Input (OSC)
  2. Pin 2: Ripple Carry Output (RCO)
  3. Pin 3: Counter Reset (MR)
  4. Pin 4: Clock Input (CP)
  5. Pin 5: Binary Outputs (Q1)
  6. Pin 6: Binary Outputs (Q2)
  7. Pin 7: Binary Outputs (Q3)
  8. Pin 8: Binary Outputs (Q4)
  9. Pin 9: Binary Outputs (Q5)
  10. Pin 10: Binary Outputs (Q6)
  11. Pin 11: Binary Outputs (Q7)
  12. Pin 12: Binary Outputs (Q8)
  13. Pin 13: Binary Outputs (Q9)
  14. Pin 14: Binary Outputs (Q10)
  15. Pin 15: Binary Outputs (Q11)
  16. Pin 16: VCC (Supply Voltage)

Functional Features

  • Frequency Division: The HEC4060BT,118 can divide an input clock frequency by powers of 2 up to 2^14.
  • Time Delay Generation: By utilizing the oscillator and counter features, precise time delays can be generated.
  • Oscillator Function: The IC includes an internal oscillator that can be controlled by an external resistor and capacitor.
  • Ripple Carry Output: The RCO pin provides a carry signal when the counter reaches its maximum value.

Advantages and Disadvantages

Advantages: - Low power consumption makes it suitable for battery-powered applications. - Wide operating voltage range allows compatibility with various systems. - High noise immunity ensures reliable operation in noisy environments. - Compact size enables integration into space-constrained designs. - Easy to use and integrate into digital circuits.

Disadvantages: - Limited maximum clock frequency may restrict its use in high-speed applications. - Lack of built-in synchronization features may require additional circuitry for synchronization purposes.

Working Principles

The HEC4060BT,118 operates based on the principle of binary counting. It consists of a 14-stage binary counter and an oscillator. The oscillator generates clock pulses, which are then fed into the counter. Each clock pulse increments the counter by one, causing the binary outputs to change accordingly. When the counter reaches its maximum value, a carry signal is generated at the Ripple Carry Output (RCO) pin. The counter can be reset to its initial state using the Counter Reset (MR) pin.

Detailed Application Field Plans

The HEC4060BT,118 finds applications in various fields, including:

  1. Frequency Division: It is used in communication systems, where precise frequency division is required for signal processing and modulation.
  2. Time Delay Generation: It is utilized in digital circuits for generating accurate time delays, such as in timing circuits and sequential logic designs.
  3. Clock Synchronization: The IC is employed in systems that require synchronization between multiple devices or modules, ensuring coordinated operation.
  4. Pulse Width Modulation (PWM): It can be used in PWM applications, where precise control of pulse width is necessary for motor speed control, lighting dimming, etc.

Detailed and Complete Alternative Models

  1. CD4060BE: This is a similar 14-stage binary counter and oscillator IC manufactured by Texas Instruments.
  2. MC14060B: Another alternative from ON Semiconductor, offering similar functionality and performance.
  3. HEF4060BP: A compatible IC produced by NXP Semiconduct

技術ソリューションにおける HEC4060BT,118 の適用に関連する 10 件の一般的な質問と回答をリストします。

Sure! Here are 10 common questions and answers related to the application of HEC4060BT,118 in technical solutions:

  1. Q: What is the HEC4060BT,118? A: The HEC4060BT,118 is a high-speed CMOS ripple-carry binary counter/divider integrated circuit.

  2. Q: What is the maximum clock frequency supported by HEC4060BT,118? A: The HEC4060BT,118 can support clock frequencies up to 50 MHz.

  3. Q: How many stages does the HEC4060BT,118 have? A: The HEC4060BT,118 has 14 stages.

  4. Q: What is the power supply voltage range for HEC4060BT,118? A: The power supply voltage range for HEC4060BT,118 is typically between 3V and 15V.

  5. Q: Can HEC4060BT,118 be used as a frequency divider? A: Yes, HEC4060BT,118 can be used as a frequency divider by connecting the desired output stage to the input stage.

  6. Q: What is the typical propagation delay of HEC4060BT,118? A: The typical propagation delay of HEC4060BT,118 is around 30 ns.

  7. Q: Does HEC4060BT,118 have any built-in oscillator or clock source? A: No, HEC4060BT,118 does not have a built-in oscillator or clock source. An external clock signal needs to be provided.

  8. Q: Can HEC4060BT,118 be cascaded to achieve higher division ratios? A: Yes, multiple HEC4060BT,118 ICs can be cascaded to achieve higher division ratios.

  9. Q: What is the maximum output current that HEC4060BT,118 can sink or source? A: The maximum output current that HEC4060BT,118 can sink or source is typically 4 mA.

  10. Q: Can HEC4060BT,118 be used in battery-powered applications? A: Yes, HEC4060BT,118 can be used in battery-powered applications as it operates at low power and has a wide voltage range.

Please note that these answers are general and may vary depending on specific datasheet specifications and application requirements.