A5364CA

A5364CA

$0.65
  • Description:IC SMOKE DETECTOR ION 16DIP
  • Series:-

SKU:a1610ec3e286 Category: Brand:

  
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Product Detailed Parameters

  • Description:IC SMOKE DETECTOR ION 16DIP
  • Series:-
  • Mfr:Allegro MicroSystems
  • Package:Tube
  • Type:Smoke Detector
  • Input Type:Ionization
  • Output Type:Voltage
  • Current - Supply:12 µA
  • Operating Temperature:-25°C ~ 75°C
  • Mounting Type:Through Hole
  • Package / Case:16-DIP (0.300", 7.62mm)
  • Supplier Device Package:16-DIP
  • Grade:-
  • Qualification:-

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A5364CA

Buying Guide
Summary

Allegro MicroSystems A5364CA is used in Sensor and Detector Interfaces category in RF signal paths where layout, grounding, and interface choices determine real performance. Key specs include Description (IC SMOKE DETECTOR ION 16DIP), Output type (Voltage), Temperature (-25°C ~ 75°C), Package/case (16-DIP (0.300", 7.62mm)), and Mounting (Through Hole).

Selection Notes
  • For A5364CA, validate the operating temperature range (-25°C ~ 75°C) for your environment and margin.
  • Verify Input Type (Ionization) and compare it against your reference design limits.
  • Verify the package/case (16-DIP (0.300", 7.62mm)) fits your mechanical constraints and assembly process.
Alternates & Substitutions
  • For Sensor and Detector Interfaces, validate alternates under worst-case corners rather than assuming typical-only conditions represent production builds.
  • When replacing parts, validate corner behavior and recovery paths so failures remain diagnosable in the deployed system.
  • Validate the min/max operating conditions (temperature -25°C ~ 75°C) and keep headroom for worst-case corners.
  • For RF parts, validate the alternate in the real enclosure and cabling, not only in a bench setup.
FAQ

Who is the manufacturer of A5364CA?
Allegro MicroSystems

What Input Type is listed for A5364CA?
Ionization

What Supplier Device Package is listed for A5364CA?
16-DIP

What output type does A5364CA have?
Voltage

Application Scenarios

Allegro MicroSystems A5364CA is a common choice in Sensor and Detector Interfaces applications where the goal is to keep validation repeatable and avoid edge-case surprises during bring-up. Within many designs, predictable coexistence and filtering margins matter more than peak gain, because certification and field behavior depend on stability. Teams often validate RF blocks with real cable lengths and connectors because small impedance changes can move margins and spur profiles. In practice, within fixed wireless access, front-end linearity and filtering margins determine throughput in crowded spectrum. Within consumer wearables, compact RF integration must maintain margin under tight ground planes and frequent human-body detuning. In security and access control, RF performance under metal proximity and long cable runs determines reliability in real buildings. A brief worst-case sweep can show whether performance is margin-driven or tuning-driven. This keeps the design closer to the datasheet boundaries and farther from fragile, layout-dependent behavior.

Compatibility Advice
  • In practice, confirm power supply isolation so conducted noise does not translate into emissions or desense in real deployments with the final enclosure and cabling.
Project Fit
  • Ideal when you can test and document Allegro MicroSystems A5364CA for Sensor and Detector Interfaces integration across temperature and supply corners, especially if you have a defined compliance target and can verify spurs and harmonics under real modulation.
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