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LM2750SD-ADJ/NOPB

10 Terminals 2.7V 10-Pin LM2750 DC DC Voltage Regulator SWITCHED CAPACITOR REGULATOR 1 Outputs 1.7MHz Tape & Reel (TR) 10-WFDFN Exposed Pad


  • Manufacturer: Texas Instruments
  • Origchip NO: 815-LM2750SD-ADJ/NOPB
  • Package: 10-WFDFN Exposed Pad
  • Datasheet: -
  • Stock: 190
  • Description: 10 Terminals 2.7V 10-Pin LM2750 DC DC Voltage Regulator SWITCHED CAPACITOR REGULATOR 1 Outputs 1.7MHz Tape & Reel (TR) 10-WFDFN Exposed Pad (Kg)

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Details

Tags

Parameters
Factory Lead Time 6 Weeks
Lifecycle Status ACTIVE (Last Updated: 2 days ago)
Contact Plating Tin
Mount Surface Mount
Mounting Type Surface Mount
Package / Case 10-WFDFN Exposed Pad
Number of Pins 10
Operating Temperature -40°C~125°C TA
Packaging Tape & Reel (TR)
JESD-609 Code e3
Pbfree Code yes
Part Status Active
Moisture Sensitivity Level (MSL) 1 (Unlimited)
Number of Terminations 10
ECCN Code EAR99
Terminal Position DUAL
Peak Reflow Temperature (Cel) 260
Terminal Pitch 0.5mm
Base Part Number LM2750
Function Step-Up
Number of Outputs 1
Voltage - Input (Max) 5.6V
Output Voltage 5.2V
Output Type Adjustable
Max Output Current 120mA
Voltage - Input (Min) 2.7V
Input Voltage-Nom 3.1V
Min Supply Voltage 2.7V
Analog IC - Other Type SWITCHED CAPACITOR REGULATOR
Operating Supply Current 5mA
Output Configuration Positive
Quiescent Current 5mA
Max Output Voltage 5.2V
Topology Charge Pump
Frequency - Switching 1.7MHz
Synchronous Rectifier No
Min Output Voltage 3.8V
Switcher Configuration DOUBLER INVERTER
Height 800μm
Length 3mm
Width 3mm
Thickness 750μm
RoHS Status ROHS3 Compliant
Lead Free Lead Free

LM2750SD-ADJ/NOPB Overview


For optimal performance, this voltage regulator makes use of the Tape & Reel (TR) package. As you can see, this harley voltage regulator contains 10 terminations. This regulator voltage is equipped with a type of analog integrated circuit that is called a SWITCHED CAPACITOR REGULATOR voltage regulator. There is a 10-WFDFN Exposed Pad package available for this voltage regulator, as DC DC switching regulator is space-saving. 1 outputs have been configured in the voltage regulator 12v. On the output pins of this DC DC switching regulator, there is a Adjustable output generated. A Surface Mount mounting is required for this switching regulator. As long as its operating temperature is -40°C~125°C TA, dc to dc voltage regulator should perform well. 1.7MHz is the switching frequency of this DC-DC switching regulator. Input voltage 2.7V is the dc to dc voltage regulator's minimum input voltage required for operation of the voltage regulators. There is a maximum input voltage of 5.6V for this voltage regulator 12v. Due to its 260 high peak reflow temperature, this voltage regulator 12v is virtually indestructible. As a result of DC DC switching regulator's design, it is designed to provide an input voltage of 3.1V for the purposes of operation. LM2750 is a family of voltage regulators that belong to the DC/DC industry. At 5.2V volts, voltage regulator can provide voltage. The switching regulator operation of the system is controlled by 10 pins. As a general rule, this voltage regulator 12v should keep its output voltage at least at 3.8V. To meet its operating requirements, dc to dc voltage regulator can deliver a maximum output current of 120mA A. With a maximum output voltage of 5.2V, DC DC switching regulator has a very high efficiency. Without external influences, harley voltage regulator consumes 5mAA of quiescent current. The 2.7V V dc to dc voltage regulator's minimum supply voltage ensures reliable performance. This DC DC switching regulator operates from a supply current of 5mA.

LM2750SD-ADJ/NOPB Features


1 outputs
Peak reflow temperature (Cel) of 260
10 pins

LM2750SD-ADJ/NOPB Applications


There are a lot of Texas Instruments LM2750SD-ADJ/NOPB Voltage Regulators applications.

  • Industrial robots
  • CMM
  • Flexible manufacturing cells
  • CNC system
  • Alternators
  • Computer application technology
  • Experimental setup
  • Surface processing equipment
  • Arc suppression circuits
  • Adjustable voltage or current linear circuits