MAX5048BAUT+T Analog Devices

MAX5048BAUT+T electronic component of Analog Devices
MAX5048BAUT+T Analog Devices
MAX5048BAUT+T Gate Drivers
MAX5048BAUT+T  Semiconductors
Images are for reference only, See Product Specifications

X-On Electronics has gained recognition as a prominent supplier of MAX5048BAUT+T Gate Drivers across the USA, India, Europe, Australia, and various other global locations. MAX5048BAUT+T Gate Drivers are a product manufactured by Analog Devices. We provide cost-effective solutions for Gate Drivers, ensuring timely deliveries around the world.

Part No. MAX5048BAUT+T
Manufacturer: Analog Devices
Category: Gate Drivers
Description: Maxim Integrated Gate Drivers 7.6A 12ns MOSFET Driver
Datasheet: MAX5048BAUT+T Datasheet (PDF)
Price (USD)
1: USD 2.6103 ea
Line Total: USD 2.61 
Availability : 0
  
QtyUnit Price
1$ 2.6103
10$ 1.6351
30$ 1.31
100$ 1.0253
500$ 0.9445
1000$ 0.9079

Availability 0
Ship by Fri. 03 Oct to Thu. 09 Oct
MOQ : 1
Multiples : 1
QtyUnit Price
1$ 11.7868
10$ 7.8967
25$ 7.6183
100$ 7.1965
250$ 7.0577
500$ 6.9289


Availability 0
Ship by Fri. 03 Oct to Thu. 09 Oct
MOQ : 2500
Multiples : 2500
QtyUnit Price
2500$ 3.4111


Availability 0
Ship by Fri. 03 Oct to Thu. 09 Oct
MOQ : 2500
Multiples : 2500
QtyUnit Price
2500$ 3.8687


Availability 0
Ship by Fri. 03 Oct to Thu. 09 Oct
MOQ : 2500
Multiples : 2500
QtyUnit Price
2500$ 4.1578
5000$ 3.935
10000$ 3.8786
15000$ 3.8222
20000$ 3.7658
25000$ 3.7094
250000$ 3.6529


Availability 0
Ship by Wed. 01 Oct to Fri. 03 Oct
MOQ : 1
Multiples : 1
QtyUnit Price
1$ 7.8307
10$ 5.1181
25$ 4.8723
100$ 4.4342
250$ 4.4022


Availability 0
Ship by Fri. 03 Oct to Thu. 09 Oct
MOQ : 1
Multiples : 1
QtyUnit Price
1$ 2.6103
10$ 1.6351
30$ 1.31
100$ 1.0253
500$ 0.9445
1000$ 0.9079

   
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We are delighted to provide the MAX5048BAUT+T from our Gate Drivers category, at competitive rates not only in the United States, Australia, and India, but also across Europe and beyond. A long established and extensive electronic component distribution network has enhanced our global reach and dependability, ensuring cost savings through prompt deliveries worldwide. Client satisfaction is at the heart of our business, where every component counts and every customer matters. Our technical service team is ready to assist you. From product selection to after-sales support, we strive to deliver a seamless and satisfying experience. Are you ready to experience the best in electronic component distribution? Contact X-ON Electronics today and discover why X-On are a preferred choice for the MAX5048BAUT+T and other electronic components in the Gate Drivers category and beyond.

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MAX5048 7.6A, 12ns, SOT23/TDFN, MOSFET Driver General Description Features The MAX5048A/MAX5048B are high-speed MOSFET Independent Source-and-Sink Outputs for drivers capable of sinking/sourcing 7.6A/1.3A peak cur- Controllable Rise and Fall Times rents. These devices take logic input signals and drive +4V to +12.6V Single Power Supply a large external MOSFET. The MAX5048A/MAX5048B 7.6A/1.3A Peak Sink/Source Drive Current have inverting and noninverting inputs that give the user greater flexibility in controlling the MOSFET. They 0.23 Open-Drain n-Channel Sink Output feature two separate outputs working in complementary 2 Open-Drain p-Channel Source Output mode, offering flexibility in controlling both turn-on and 12ns (typ) Propagation Delay turn-off switching speeds. Matching Delay Time Between Inverting and The MAX5048A/MAX5048B have internal logic circuitry, Noninverting Inputs which prevents shoot-through during output state changes. The logic inputs are protected against volt- V /2 CMOS (MAX5048A)/TTL (MAX5048B) Logic CC age spikes up to +14V, regardless of V+ voltage. Inputs Propagation delay time is minimized and matched 1.6V Input Hysteresis between the inverting and noninverting inputs. The Up to +14V Logic Inputs (Regardless of V+ MAX5048A/MAX5048B have very fast switching times Voltage) combined with very short propagation delays (12ns typ), making them ideal for high-frequency circuits. Low Input Capacitance: 2.5pF (typ) The MAX5048A/MAX5048B operate from a +4V to +12.6V -40C to +125C Operating Temperature Range single power supply and typically consume 0.95mA of 6-Pin SOT23 and TDFN Packages supply current. The MAX5048A has CMOS input logic Ordering Information levels, while the MAX5048B has standard TTL input logic levels. These devices are available in space-saving PIN- LOGIC TOP 6-pin SOT23 and TDFN packages. PART TEMP RANGE PACKAGE INPUT MARK Applications V /2 CC MAX5048AAUT-T -40C to +125C 6 SOT23 ABEC CMOS Power MOSFET Switching MAX5048BAUT-T -40C to +125C 6 SOT23 TTL ABED Switch-Mode Power Supplies V /2 CC DC-DC Converters MAX5048AATT-T -40C to +125C 6 TDFN-EP* AKV CMOS Motor Control MAX5048BATT-T -40C to +125C 6 TDFN-EP* TTL AKW Power-Supply Modules +Denotes a lead(Pb)-free/RoHS-compliant package. T = Tape and reel. *EP = Exposed pad. Pin Configurations Typical Operating Circuit TOP VIEW V+ V+ P OUT + V+ 1 6 IN+ MAX5048A MAX5048B MAX5048A P OUT 2 5 IN- MAX5048B IN+ N OUT N N OUT34 GND IN- GND SOT23 Pin Configurations continued at end of data sheet. For pricing, delivery, and ordering information, please contact Maxim Direct 19-2419 Rev 6 10/14 at 1-888-629-4642, or visit Maxims website at www.maximintegrated.com.MAX5048 7.6A, 12ns, SOT23/TDFN, MOSFET Driver ABSOLUTE MAXIMUM RATINGS Voltages Referenced to GND 6-Pin TDFN (derate 18.2mW/C above +70C) .........1454mW V+...........................................................................-0.3V to +13V Operating Temperature Range .........................-40C to +125C IN+, IN-...................................................................-0.3V to +14V Storage Temperature Range .............................-65C to +150C N OUT, P OUT ............................................-0.3V to (V+ + 0.3V) Junction Temperature......................................................+150C N OUT Continuous Output Current (Note 1) ....................390mA Lead Temperature (soldering, 10s) .................................+300C P OUT Continuous Output Current (Note 1).....................100mA Soldering Temperature (reflow) .......................................+260C Continuous Power Dissipation* (T = +70C) A 6-Pin SOT23 (derate 9.1mW/C above +70C)............727mW Note 1: Continuous output current is limited by the power dissipation of the package. *As per JEDEC51 standard. Stresses beyond those listed under Absolute Maximum Ratings may cause permanent damage to the device. These are stress ratings only, and functional operation of the device at these or any other conditions beyond those indicated in the operational sections of the specifications is not implied. Exposure to absolute maximum rating conditions for extended periods may affect device reliability. PACKAGE THERMAL CHARACTERISTICS (Note 2) SOT23 Junction-to-Case Thermal Resistance ( )......................75C/W JC TDFN Junction-to-Case Thermal Resistance ( ).......................8.5C/W JC Note 2: Package thermal resistances were obtained using the method described in JEDEC specification JESD51-7, using a four-layer board. For detailed information on package thermal considerations, refer to www.maximintegrated.com/thermal-tutorial. ELECTRICAL CHARACTERISTICS (V+ = +12V, T = -40C to +125C, unless otherwise noted. Typical values are at T = +25C.) (Note 3) A A PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS POWER SUPPLY V+ Operating Range V+ 4.0 12.6 V V+ Undervoltage Lockout UVLO V+ rising 3.25 3.6 4.00 V V+ Undervoltage Lockout 400 mV Hysteresis V+ Undervoltage Lockout to V+ rising 300 ns Output Delay Time V+ Supply Current I+ IN+ = IN- = V+ 0.95 1.5 mA n-CHANNEL OUTPUT T = +25C 0.23 0.32 V = +10V, A V+ Driver Output Resistance I = -100mA N-OUT T = +125C 0.38 0.43 A Pulling Down (MAX5048AAUT/ R ON-N T = +25C 0.24 0.34 V = +4.5V, A V+ MAX5048BAUT) I = -100mA N-OUT T = +125C 0.40 0.47 A T = +25C 0.31 0.34 A V = +10V, V+ Driver Output Resistance I = -100mA N-OUT T = +125C 0.46 0.51 A Pulling Down (MAX5048AATT/ R ON-N T = +25C 0.32 0.36 V = +4.5V, A MAX5048BATT) V+ I = -100mA N-OUT T = +125C 0.48 0.55 A 2 Maxim Integrated

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