AMR1341D

AMR1341D

$0.53
  • Description:AMR SW OMNI 15G 1.6-5V ACTIVE-HI
  • Series:AMR134x
  • Mfr:MDT
  • Package:Bulk

SKU:1c1cfc6d4d08 Category: Brand:

  
  • Quantity
    • -
    • +
  •    
ChipApex WhatsApp

Consult the customer manager about the wholesale price.

consultation hotline:86-132-6715-2157

email:chipapexlimited@gmail.com
Contact the product manager for consultation. One-stop consultation is available.


Do you want a lower wholesale price? Please send us your inquiry and we will reply immediately.

*
*
*
*
Submitting!
Submission successful!
Submission failed!
Email error!
Phone number error!

Product Detailed Parameters

  • Description:AMR SW OMNI 15G 1.6-5V ACTIVE-HI
  • Series:AMR134x
  • Mfr:MDT
  • Package:Bulk
  • Function:Latch, Omnipolar Switch
  • Technology:Magnetoresistive
  • Polarization:North Pole, South Pole
  • Sensing Range:±1.5mT Trip, ±1mT Release
  • Test Condition:25°C
  • Voltage - Supply:1.6V ~ 5V
  • Current - Supply (Max):40µA
  • Current - Output (Max):20mA
  • Output Type:CMOS
  • Features:Temperature Compensated
  • Operating Temperature:-40°C ~ 125°C (TA)
  • Mounting Type:Surface Mount
  • Supplier Device Package:3-DFN (2x2)
  • Package / Case:3-PowerUDFN
  • Grade:-
  • Qualification:-

Download product information

AMR1341D

Buying Guide
Summary

MDT AMR1341D is evaluated in Switches (Solid State) category where failure modes and qualification evidence matter as much as headline ratings. Key specs include Description (AMR SW OMNI 15G 1.6-5V ACTIVE-HI), Temperature (-40°C ~ 125°C (TA)), Package/case (3-PowerUDFN), Mounting (Surface Mount), and Packaging (Bulk).

Selection Notes
  • For AMR1341D, ensure the supply current (40µA) is acceptable for battery life and thermal limits.
  • Ensure the output type (CMOS) is compatible with the downstream interface.
  • Confirm the operating temperature range (-40°C ~ 125°C (TA)) meets your deployment conditions.
  • Confirm Features (Temperature Compensated) and ensure it matches your integration requirements.
Alternates & Substitutions
  • For Switches (Solid State), compare the datasheet test conditions behind key specs and re-check the margins that were tightest during bring-up.
  • Verify the alternate can be tested with your existing fixtures and acceptance criteria so production verification stays repeatable.
  • Check that supply 1.6V ~ 5V, temperature -40°C ~ 125°C (TA) matches your system, then validate at corners instead of relying on typical values.
  • For switching devices, derate for inrush/inductive loads and verify thermal rise at worst case.
FAQ

Who is the manufacturer of AMR1341D?
MDT

How do I choose an alternate for AMR1341D?
Match footprint and ratings first, then confirm operating conditions and test conditions behind key specs before approval.

Which Polarization is specified for AMR1341D?
North Pole, South Pole

What Features does AMR1341D have?
Temperature Compensated

Application Scenarios

In practice, mDT AMR1341D in the Switches (Solid State) category is typically selected when engineers need predictable, spec-driven behavior in a production design. They provide controlled switching for signals and power, enabling isolation, routing, and safe user interaction. Designers typically balance lifetime, inrush behavior, leakage, and environmental sealing depending on load type and duty cycle. Solid-state switching focuses on leakage, thermal rise, dv/dt immunity, and load transients so behavior remains predictable over temperature. In real deployments, a few targeted measurements can quickly show whether the design is margin-driven or tuning-driven. A handful of focused measurements often reveals whether stability comes from real margin or from a fragile tuning window. In appliances, user-facing switching is validated for cycle life and ingress protection. By keeping assumptions testable, teams can iterate faster without accumulating hidden technical debt.

Compatibility Advice
  • In qualification work, confirm wiring, labeling, and service procedures so maintenance does not introduce unsafe states during bring-up and production test.
Project Fit
  • Best fit when you can measure and verify MDT AMR1341D for Switches (Solid State) integration across temperature and supply corners, especially if you need deterministic behavior in safety, interlock, or control paths.
  • Not ideal when integrating MDT AMR1341D for Switches (Solid State), the control chain is sensitive to bounce but debounce behavior cannot be verified, because it becomes difficult to prove margin across production variance.
AMR1341DAMR1341D
$0.53
Buy Now