Microchip MIC5801YWM-TR
Microchip MIC5801YWM-TR

Microchip MIC5801YWM-TR

Manufacturer No:

MIC5801YWM-TR

Manufacturer:

Microchip

Package:

24-SOIC (0.295, 7.50mm Width)

Description:

8-Bit Parallel-in Latched Driver

Delivery:

DHL
DHL
DHL
DHL

Payment:

DHL
DHL
DHL
DHL
DHL
DHL
DHL

In Stock :Available

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MIC5801YWM-TR information

Microchip MIC5801YWM-TR technical specifications, attributes, parameters and parts with similar specifications to Microchip MIC5801YWM-TR.

  • Type
  • Parameter
  • Type
  • Sink
  • Output Channels
  • 8
  • Vout Operating (V) - Transient
  • 50
  • Vout Operating (V) - Sustained
  • 50
  • Iout (mA) per Channel
  • 500
  • Output Structure
  • Darlington Open Collector
  • Input Structure
  • Parallel
  • Minimum Data Clock (MHz)
  • --
  • General Description
  • 4.4MHz (min) Data@5V, Higher@12V; TTL/CMOS/PMOS Logic; Integ. Clamp Diodes; CLR/Strobe/Enable Out
  • Package
  • 24/SOIC 300mil 28/PLCC

Download datasheets and manufacturer documentation for Microchip MIC5801YWM-TR.

The MIC5800/5801 latched drivers are high-voltage, high-current integrated circuits comprised of four or eight CMOS data latches, a bipolar Darlington transistor driver for each latch, and CMOS control circuitry for the common CLEAR, STROBE, and OUTPUT ENABLE functions. The bipolar/MOS combination provides an extremely low-power latch with maximum interface flexibility. MIC5800 contains four latched drivers; MIC5801 contains eight latched drivers. Data input rates are greatly improved in these devices. With a 5V supply, they will typically operate at better than 5MHz. With a 12V supply, significantly higher speeds are obtained. The CMOS inputs are compatible with standard CMOS, PMOS, and NMOS circuits. TTL or DTL circuits may require the use of appropriate pull-up resistors. The bipolar outputs are suitable for use with relays, solenoids, stepping motors, LED or incandescent displays, and other high-power loads. Both units have open-collector outputs and integral diodes for inductive load transient suppression. The output transistors are capable of sinking 500mA and will sustain at least 50V in the OFF state. Because of limitations on package power dissipation, the simultaneous operation of all drivers at maximum rated current can only be accomplished by a reduction in duty cycle. Outputs may be paralleled for higher load current capability.

    • 4.4MHz minimum data input rate
    • High-voltage, current sink outputs
    • Output transient protection
    • CMOS, PMOS, NMOS, and TTL-compatible inputs
    • Internal pull-down resistors
    • Low-power CMOS latches

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Step2:Desiccant Protection

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Step4:Individual Package

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Step5:Anti-collision Filling

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