LCSC Electronics logoLCSC Electronics svg logo
Sign In
USD
HXY MOSFET TLC555-HXY product image
  • TLC555-HXY thumbnail 1
  • TLC555-HXY thumbnail 2
  • TLC555-HXY thumbnail 3
  • Pinout
  • Footprint
Images for reference only

HXY MOSFET TLC555-HXYRoHS

Manufacturer
HXY MOSFETAsian Brands
MPN
TLC555-HXY
LCSC Part #
C7427361
Packaging
SOP-8
Customer #
Key Attributes
SOP-8 Programmable Timers and Oscillators RoHS
Datasheetpdf iconHXY MOSFET TLC555-HXY
In-Stock: 90
90 In stock, ships now
Add to BOM List
QtyUnit PriceTotal Amount
5+$ 0.2101$ 1.05
50+$ 0.165$ 8.25
150+$ 0.1456$ 21.84
500+$ 0.1215$ 60.75
2,500+$ 0.1108$ 277.00
5,000+$ 0.1043$ 521.50
Standard Packaging2500/Full Reel
Better price for more quantity?
$

Products Specifications

Show similar products (0) >
TypeDescription
CategoryIntegrated Circuits (ICs)/Clock/Timing/Programmable Timers and Oscillators
ManufacturerHXY MOSFET
PackagingSOP-8
FeaturesAdjustable duty cycle oscillation

Additional Information

TypeDetails
Minimum5
Multiple5
Standard Packaging2500
Sales UnitPiece

Introduction

AI Translation

The TLC555 is a CMOS version of the 555-series general-purpose timer, capable of generating precise time delays and frequencies with ultra-low power consumption and supply current spikes. When used as a triggered delay device, the time delay is precisely controlled by a single external resistor and capacitor. In astable mode, the oscillation frequency and duty cycle are accurately set by two external resistors and one capacitor.

Features

AI Translation
  • Low supply current: 80uA (typical)
  • Steady-state frequency capability up to 500kHz
  • Minimum operating voltage 4.5V
  • Output fully compatible with TTL and CMOS logic levels at 5V
  • Low supply current spikes during output transitions
  • Ultra-low trigger, threshold, and reset current: 20pA (typical)
  • Operates in astable and monostable modes with adjustable duty cycle
  • Pin-compatible with 555 series timers
  • SOP8 (SOIC-8) package

Applications

AI Translation
  • Pulse generator
  • Precise timing
  • Delay generation
  • Pulse width modulation