Product Information

MCP14E3-EP

MCP14E3-EP electronic component of Microchip

Datasheet
Driver; MOSFET gate driver; 4.5A; Channels:2; 4.5÷18V; DIP8

Manufacturer: Microchip
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Price (USD)

1: USD 3.0105 ea
Line Total: USD 3.01

104 - Global Stock
Ships to you between
Mon. 13 May to Wed. 15 May
MOQ: 1  Multiples: 1
Pack Size: 1
Availability Price Quantity
104 - WHS 1


Ships to you between Mon. 13 May to Wed. 15 May

MOQ : 1
Multiples : 1

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MCP14E3-EP
Microchip

1 : USD 2.5645
25 : USD 2.2425
120 : USD 2.0585

     
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RoHS - XON
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Configuration
Number of Drivers
Rise Time
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Output Current
Supply Voltage - Max
Supply Voltage - Min
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Pd - Power Dissipation
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Cnhts
Hts Code
Mxhts
Operating Supply Voltage
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8 7 6 5 1 2 3 4 MCP14E3/MCP14E4/MCP14E5 4.0A Dual High-Speed Power MOSFET Drivers With Enable Features General Description High Peak Output Current: 4.0A (typical) The MCP14E3/MCP14E4/MCP14E5 devices are a family of 4.0A buffers/MOSFET drivers. Dual-inverting, Independent Enable Function for Each Driver dual-noninvertering, and complementary outputs are Output standard logic options offered. Low Shoot-Through/Cross-Conduction Current in Output Stage The MCP14E3/MCP14E4/MCP14E5 drivers are capable of operating from a 4.5V to 18V single power Wide Input Supply Voltage Operating Range: supply and can easily charge and discharge 2200 pF - 4.5V to 18V gate capacitance in under 15 ns (typical). They provide High Capacitive Load Drive Capability: low impedance in both the ON and OFF states to - 2200 pF in 15 ns (typical) ensure the MOSFETs intended state will not be - 5600 pF in 26 ns (typical) affected, even by large transients. The MCP14E3/ MCP14E4/MCP14E5 inputs may be driven directly Short Delay Times: 50 ns (typical) from either TTL or CMOS (2.4V to 18V). Latch-Up Protected: Will Withstand 1.5A Reverse Current Additional control of the MCP14E3/MCP14E4/ Logic Input Will Withstand Negative Swing Up To MCP14E5 outputs is allowed by the use of separate enable functions. The ENB A and ENB B pins are 5V active high and are internally pulled up to V . The pins Space-Saving Packages: DD maybe left floating for standard operation. - 8-Lead 6x5 DFN, PDIP, SOIC The MCP14E3/MCP14E4/MCP14E5 dual-output 4.0A driver family is offered in both surface-mount and pin- Applications through-hole packages with a -40C to +125C Switch Mode Power Supplies temperature rating. The low thermal resistance of the thermally enhanced DFN package allows for greater Pulse Transformer Drive power dissipation capability for driving heavier Line Drivers capacitive or resistive loads. Motor and Solenoid Drive These devices are highly latch-up resistant under any conditions within their power and voltage ratings. They are not subject to damage when up to 5V of noise spiking (of either polarity) occurs on the ground pin. They can accept, without damage or logic upset, up to 1.5A of reverse current being forced back into their outputs. All terminals are fully protect against Electrostatic Discharge (ESD) up to 4 kV. Package Types MCP14E4 MCP14E4 8-Pin 8-Pin MCP14E3 MCP14E5 MCP14E3 MCP14E5 (1) PDIP/SOIC 6x5 DFN ENB A ENB B ENB B ENB B ENB B ENB B ENB B ENB A 1 8 IN A 2 7 IN A OUT A OUT A OUT A OUT A OUT A OUT A GND 3 6 V V V DD DD DD V GND V V DD DD DD IN B 4 5 OUT B OUT B OUT B IN B OUT B OUT B OUT B Note 1: Exposed pad of the DFN package is electrically isolated. 2008 Microchip Technology Inc. DS22062B-page 1MCP14E3/MCP14E4/MCP14E5 Functional Block Diagram V DD Inverting V DD Output Internal Pull-up Non-inverting Enable 4.7 V Input Dual Inverting MCP14E3 Effective 4.7 V MCP14E4 Dual Noninverting Input C = 20 pF MCP14E5 One Inverting, One Noninverting (Each Input) GND DS22062B-page 2 2008 Microchip Technology Inc.

Tariff Desc

8542.39.23 No ..Linear/analogue and peripheral integrated circuits, timers, voltage regulators, A/D and D/A converters, telecommunication and modem integrated circuits, other than board level products Free

Electronic integrated circuits- Processors and controllers, whether or not combined with memories, converters, logic circuits, amplifiers, clock and timing circuits, or other circuits
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