Site
Map • Contact
Us
Datasheets:
A5367: Ionization Smoke Detector with Interconnect and Timer (PDF)
Selection Guides:
Power Integrated Circuits,
Smoke Detector ICs
The A5367 is a low-current, CMOS circuit providing all of the required features for an ionization-type smoke detector. A networking capability allows as many as 125 units to be interconnected so that if any unit senses smoke all units will sound their alarm. In addition, special features are incorporated to facilitate alignment and test of the finished smoke detector. The device is Recognized by Underwriters Laboratories for use in smoke alarms that comply with Standard UL217.
The A5367 is a low-current, CMOS circuit providing all of the required features for an ionization-type smoke detector. A networking capability allows as many as 125 units to be interconnected so that if any unit senses smoke all units will sound their alarm. In addition, special features are incorporated to facilitate alignment and test of the finished smoke detector. The device is Recognized by Underwriters Laboratories for use in smoke alarms that comply with Standard UL217.
The A5367 is supplied in a low-cost 16-pin dual in-line plastic package (DIP). It is rated for continuous operation over the temperature range of -10°C to 60°C. The Pb (lead) free version (suffix –T) has 100% matte tin leadframe plating.
| Part Number | Package Type | RoHS Compliant |
Part Composition/ RoHS Data |
Temperature | Comments | Samples | Distributor Stock |
|---|---|---|---|---|---|---|---|
| A5367CA | 16-pin DIP | No | view data | -10 °C to 60 °C |
Contact Local Sales Representative or check distributor stock |
||
| A5367CA-T | 16-pin DIP | Yes | view data | -10 °C to 60 °C |
Contact Local Sales Representative or check distributor stock |
Allegro's products are not to be used in life support devices or systems, if a failure of an Allegro product can reasonably be expected to cause the failure of that life support device or system, or to affect the safety or effectiveness of that device or system.