DS1922E

High-Temperature Logger iButton® with 8KB Data-Log Memory

Industry's Smallest Low-Cost Stand-Alone Data-Logger Measuring and Logging Up to 140°C

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Status Explanations for product status codes

Active: In Production.

Description

The DS1922E temperature logger iButton is a rugged, self-sufficient system that measures temperature and records the result in a protected memory section. The recording is done at a user-defined rate. A total of 8192 8-bit readings or 4096 16-bit readings, taken at equidistant intervals ranging from 1s to 273hr, can be stored. Additionally, 576 bytes of SRAM store application-specific information. A mission to collect data can be programmed to begin immediately, after a user-defined delay, or after a temperature alarm. Access to the memory and control functions can be password protected. The DS1922E is configured and communicates with a host-computing device through the serial 1-Wire® protocol, which requires only a single data lead and a ground return. Every DS1922E is factory lasered with a guaranteed unique 64-bit registration number that allows for absolute traceability. The durable stainless-steel package is highly resistant to environmental hazards such as dirt, moisture, and shock.

While all iButton data loggers are calibrated/validated against NIST traceable reference devices, Maxim offers a web application to generate validation certificates for the DS1922L/T data loggers. Input is an iButton registration number (or list of numbers) and the output is a validation certificate in PDF format.
 

Data Sheet

Download this datasheet in PDF formatDownload Rev 3 (PDF, 420kB)
Send this datasheet to any email addressE-Mail
This product contains lithium-metal batteries. See applicable regulations for transport requirements for batteries in equipment.

Key Features

  • Automatically Wakes Up, Measures Temperature, and Stores Values in 8KB of Data-Log Memory in 8- or 16-Bit Format
  • Digital Thermometer Measures Temperature with 8-Bit (0.5°C) or 11-Bit (0.0625°C) Resolution
  • Temperature Accuracy: ±1.5°C from +110°C to +140°C, ±7°C typical from +15°C to +110°C
  • Water Resistant or Waterproof if Placed Inside DS9107 iButton Capsule (Exceeds Water Resistant 3 ATM Requirements)
  • Sampling Rate from 1s Up to 273hr
  • Programmable High and Low Trip Points for Temperature Alarms
  • Programmable Recording Start Delay After Elapsed Time or Upon a Temperature Alarm Trip Point
  • Quick Access to Alarmed Devices Through 1-Wire Conditional Search Function
  • 576 Bytes of General-Purpose Memory
  • Two-Level Password Protection of All Memory and Configuration Registers
  • Communicates to Host with a Single Digital Signal Up to 15.4kbps at Standard Speed or Up to 125kbps in Overdrive Mode Using 1-Wire Protocol
  • Operating Temperature Range: +15°C to +140°C
 

Applications/Uses

  • Stand-alone high-temperature measuring and logging applications
  • Steam sterilization applications
   

Key Specifications:

iButton Products
Part Number Applications Memory Type Memory Size Data Logger Type Data Logger Size Data Logger Sample Rate Data Logger Accuracy Data Logger Resolution Data Logger Measuremt. Range Security Features Prog. Alarm Unique Ware Real Time Clock Smallest Available Pckg.
(mm2)
Budgetary Price
max w/pins See Notes
DS1922E 
Asset Management
Temperature Data Logging
NV SRAM 512 Bytes Temperature 8192 Byte 1s to 273hrs ±1.5°C from 110°C to 140°C Selectable 8-bit (0.5°C) or 11-bit (0.0625°C)
+15°C to +140°C
0°C to +125°C
Password Protected Temperature High/Low No Yes 301 $55.59 @1k
See All iButton Products (26)
Pricing Notes:
This pricing is BUDGETARY, for comparing similar parts. Prices are in U.S. dollars and subject to change. Quantity pricing may vary substantially and international prices may differ due to local duties, taxes, fees, and exchange rates. For volume-specific prices and delivery, please see the price and availability page or contact an authorized distributor.


Diagram

DS1922E: Block Diagram
Block Diagram

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Information Index

Document Ref.: 19-4646 Rev 3; 2011-04-27
This page last modified: 2011-04-27




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