ZXLD1366QET5TA

ZXLD1366QET5TA

  • Description:IC LED DRVR RGLTR PWM 1A TSOT25
  • Series:-
  • Mfr:Diodes Incorporated
  • Package:Tape & Reel (TR),Cut Tape (CT)

SKU:2dcfd2b14df3 Category: Brand:

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Product Detailed Parameters

  • Description:IC LED DRVR RGLTR PWM 1A TSOT25
  • Series:-
  • Mfr:Diodes Incorporated
  • Package:Tape & Reel (TR),Cut Tape (CT)
  • Type:DC DC Regulator
  • Topology:Step-Down (Buck)
  • Internal Switch(s):Yes
  • Number of Outputs:1
  • Voltage - Supply (Min):6V
  • Voltage - Supply (Max):60V
  • Voltage - Output:60V
  • Current - Output / Channel:1A
  • Frequency:1MHz
  • Dimming:PWM
  • Applications:Lighting
  • Operating Temperature:-40°C ~ 125°C (TA)
  • Mounting Type:Surface Mount
  • Package / Case:SOT-23-5 Thin, TSOT-23-5
  • Supplier Device Package:TSOT-25
  • Grade:Automotive
  • Qualification:AEC-Q100

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ZXLD1366QET5TA

Buying Guide
Summary

Diodes Incorporated ZXLD1366QET5TA is selected in LED Drivers IC category when brightness/color and thermal behavior need to remain consistent over time. Key specs include Description (IC LED DRVR RGLTR PWM 1A TSOT25), Temperature (-40°C ~ 125°C (TA)), Package/case (SOT-23-5 Thin, TSOT-23-5), and Mounting (Surface Mount).

Selection Notes
  • For ZXLD1366QET5TA, confirm the operating temperature range (-40°C ~ 125°C (TA)) meets your deployment conditions.
  • Verify Dimming (PWM) matches your requirements and the datasheet test conditions.
  • Make sure the mounting type (Surface Mount) matches how the part will be installed and inspected.
  • Verify the converter topology (Step-Down (Buck)) is suitable for your step-up/down needs and noise profile.
Alternates & Substitutions
  • For LED Drivers IC, validate alternates under worst-case corners rather than assuming typical-only conditions represent production builds.
  • Lock the mechanical constraints first (package/case SOT-23-5 Thin, TSOT-23-5, supplier package TSOT-25, mounting Surface Mount) before comparing performance specs.
  • For optoelectronics, validate brightness and color in your real enclosure and ambient conditions.
  • For faster alternate proposals, share the constraints you cannot change (package SOT-23-5 Thin, TSOT-23-5, frequency 1MHz) and your acceptable trade-offs.
FAQ

What details help you quote ZXLD1366QET5TA quickly?
Provide the part number (ZXLD1366QET5TA), quantity, required lead time, and any packaging or documentation requirements.

Who is the manufacturer of ZXLD1366QET5TA?
Diodes Incorporated

What is the supply current of ZXLD1366QET5TA?
1A

What Supplier Device Package is listed for ZXLD1366QET5TA?
TSOT-25

Application Scenarios

In practice, when sourcing Diodes Incorporated ZXLD1366QET5TA for LED Drivers IC, engineers typically focus on de-risking integration and keeping validation repeatable. Good power design here improves uptime, reduces field returns, and enables repeatable bring-up across manufacturing variance. In production power domains, predictable startup and fault behavior often matter more than peak efficiency numbers on paper. In industrial automation, power stages operate near contactors and motors where noise and surges dominate failure modes. In signage and backlight systems, current matching and protection features help prevent color shift and early LED degradation over long duty cycles. In industrial indicators and lighting, LED drivers regulate current across temperature and supply variation so brightness and lifetime stay consistent.

Compatibility Advice
  • In practice, validate thermal rise and optical or luminous output under the real duty cycle so performance does not drift after heat soak. This helps field behavior stay predictable across lots.
  • Validate current regulation, thermal rise, and dimming behavior so brightness remains stable after heat soak with the real source, load, and wiring.
Project Fit
  • Good fit when you can bench-verify Diodes Incorporated ZXLD1366QET5TA for LED Drivers IC integration with the real wiring and cabling, and you can qualify thermal rise and lifetime margins under the real duty cycle.
  • Poor fit when thermal rise and wiring environment are unknown, so brightness and lifetime margins cannot be proven, because the integration depends on constraints that cannot be controlled across builds.
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