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          Anterwell Technology Ltd.

 

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Electronics Circuit Board Chips CMOS Monostable Multivibrator CD4098BE

Good quality Programmable IC Chips for sales
Good quality Programmable IC Chips for sales
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Electronics Circuit Board Chips CMOS Monostable Multivibrator CD4098BE

China Electronics Circuit Board Chips CMOS Monostable Multivibrator CD4098BE supplier

Large Image :  Electronics Circuit Board Chips CMOS Monostable Multivibrator CD4098BE

Product Details:

Place of Origin: Thailand
Brand Name: T I
Certification: Original Factory Pack
Model Number: CD4098BE

Payment & Shipping Terms:

Minimum Order Quantity: 15pcs
Price: negotiation
Packaging Details: please contact me for details
Delivery Time: 1 Day
Payment Terms: T/T in advance or others, Western Union,Payapl
Supply Ability: 5200PCS
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Detailed Product Description
Operating Temperature Range: -55---125 Delivery: Stock Offer
Input/Output Type: CMOS Package: DIP
VCC: 3-18V Voltage: 10V

Electronics Circuit Board Chips CMOS Monostable Multivibrator CD4098BE

 

 

 

CMOS DUAL MONASTABLE MULTIVIBRATOR CD4098BE

 

       CD4098B dual monostable multivibrator provides stable retriggerable/resettable one-shot operation for any fixed-voltage timing application.

An external resistor (RX) and an external capacitor (CX) control the timing for the circuit. Adjustment of RX and CX provides a wide range of output pulse widths from the Q and Q terminals. The time delay from trigger input to output transition (trigger progagation delay) and the time delay from set input to output transition (reset progagation delay) are independent of RX and CX.

 

       In normal operation the circuit triggers (extends the output pulse one period) on the application of each new trigger pulse. For operation in the non-retriggerable mode, Q is connected to -TR when leading-edge triggering (+TR) is used or Q is connected to +TR when trailing-edge triggering (-TR) is used.

The time period (T) for this multivibrator can be approximated by: TX= ½ RXCX for CXElectronics Circuit Board Chips CMOS Monostable Multivibrator CD4098BE 0.01 uF. Time periods as a function of RX for values of CX and VDD are given in Fig. 8. Values of T vary from unit to unit and as a function of voltage, temperature, and RXCX.

The minimum value of external resistance, RX, is 5 kElectronics Circuit Board Chips CMOS Monostable Multivibrator CD4098BE. The maximum value of external capacitance, CX, is 100uF. Fig.9 shows time periods as a function of CX for values of RX and VDD.

The output pulse width has variations of ±2.5% typically, over the temperature range of -55°C to 125°C for CX= 1000 pF and RX= 100 kElectronics Circuit Board Chips CMOS Monostable Multivibrator CD4098BE.

         For power supply variations of ±5%, the output pulse width has variations of ±0.5% typically, for VDD= 10 V and 15 V and ±1% typically, for VDD= 5 V at CX= 1000 pF and RX= 5 kElectronics Circuit Board Chips CMOS Monostable Multivibrator CD4098BE.

These types are supplied in 16-lead hermetic dual-in-line ceramic packages (F3A suffix), 16-lead dual-in-line plastic package (E suffix), 16-lead small-outline packages (M, M96, and MT suffixes), and 16-lead thin shrink small-outline packages (PW and PWR suffixes).

 

  • Retriggerable/resettable capability
  • Trigger and reset propagation delays independent of RX, CX
  • Triggering from leading or trailing edge
  • Q and Q buffered outputs available
  • Separate resets
  • Wide range of output-pulse widths
  • 100% tested for maximum quiescent current at 20 V
  • Noise margin (full package-temperature range):
    • 1 V at VDD = 5 V
    • 2 V at VDD = 10 V
    • 2.5 V at VDD = 15 V
  • 5-V, 10-V, and 15-V parametric ratings
  • Standardized, symmetrical output characteristics
  • Meets all requirements of JEDEC Tentative Standard No. 13B, "Standard Specifications for Description of 'B' Series CMOS Devices."
  • Applications:
    • Pulse delay and timing
    • Pulse shaping
    • Astable multivibrator

Electronics Circuit Board Chips CMOS Monostable Multivibrator CD4098BE

 

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Anterwell Technology Ltd.

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