A6275ELWTR

A6275ELWTR

  • Description:IC LED DRVR LINEAR 75.5MA 16SOIC
  • Series:-
  • Mfr:Allegro MicroSystems
  • Package:Tape & Reel (TR)

SKU:ad8972219f24 Category: Brand:

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Product Detailed Parameters

  • Description:IC LED DRVR LINEAR 75.5MA 16SOIC
  • Series:-
  • Mfr:Allegro MicroSystems
  • Package:Tape & Reel (TR)
  • Type:Linear
  • Topology:Shift Register
  • Internal Switch(s):Yes
  • Number of Outputs:8
  • Voltage - Supply (Min):4.5V
  • Voltage - Supply (Max):5.5V
  • Voltage - Output:4V
  • Current - Output / Channel:75.5mA
  • Frequency:20MHz
  • Dimming:-
  • Applications:-
  • Operating Temperature:-40°C ~ 85°C (TA)
  • Mounting Type:Surface Mount
  • Package / Case:16-SOIC (0.295", 7.50mm Width)
  • Supplier Device Package:16-SOIC
  • Grade:-
  • Qualification:-

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A6275ELWTR

Buying Guide
Summary

Allegro MicroSystems A6275ELWTR is used in LED Drivers IC category where optical output and mechanical fit must be validated in the real enclosure. Key specs include Description (IC LED DRVR LINEAR 75.5MA 16SOIC), Temperature (-40°C ~ 85°C (TA)), Package/case (16-SOIC (0.295", 7.50mm Width)), and Mounting (Surface Mount).

Selection Notes
  • For A6275ELWTR, confirm Number of Outputs (8) and ensure it matches your integration requirements.
  • Make sure the mounting type (Surface Mount) matches how the part will be installed and inspected.
  • Verify the converter topology (Shift Register) is suitable for your step-up/down needs and noise profile.
  • Check that the operating frequency (20MHz) aligns with your system clocking plan.
Alternates & Substitutions
  • In LED Drivers IC designs, define acceptance criteria up front so alternates can be qualified and repeated in production.
  • Begin with the constraints that are hardest to change later: package/case 16-SOIC (0.295", 7.50mm Width), supplier package 16-SOIC, mounting Surface Mount.
  • For LEDs/opto parts, match optical output requirements and confirm drive current and thermal limits to avoid early degradation.
  • Always compare the datasheet test conditions behind key specs (load, frequency, temperature) to avoid swapping in a part that was characterized differently.
FAQ

What details help you quote A6275ELWTR quickly?
Share the part number (A6275ELWTR), quantity, target delivery date, and any packaging or documentation requirements.

What Voltage - Output is listed for A6275ELWTR?
4V

What current consumption is specified for A6275ELWTR?
75.5mA

What is the Supplier Device Package of A6275ELWTR?
16-SOIC

Application Scenarios

In the LED Drivers IC category, Allegro MicroSystems A6275ELWTR is often evaluated by how well it fits electrical, thermal, and mechanical constraints in the target system. Engineers often evaluate efficiency, thermal rise, transient response, EMI behavior, and fault handling to protect sensitive downstream circuits. They frequently integrate protections such as OCP/OVP/UVLO/OTP and telemetry features that simplify system monitoring and compliance. In medical devices, power integrity and fault response are validated as part of safety and reliability requirements. Across industrial indicators and lighting, LED drivers regulate current across temperature and supply variation so brightness and lifetime stay consistent. In automotive and transportation, constant-current drivers must tolerate transients and thermal cycling while meeting EMC and fault-detection requirements. The end result is more predictable performance, faster troubleshooting, and fewer surprises during production ramp.

Compatibility Advice
  • In practice, check derating and lifetime assumptions so luminous output remains stable across temperature and aging before freezing the BOM.
  • For production stability, confirm PWM and analog dimming methods meet flicker and EMI targets in the final wiring and enclosure. This avoids one-off tuning in production.
Project Fit
  • A weaker fit when integrating Allegro MicroSystems A6275ELWTR for LED Drivers IC, flicker and EMI behavior cannot be measured in the final enclosure and harness, because validation would rely on assumptions that cannot be re-tested later.
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