DS2450

1-Wire Quad A/D Converter

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Status Explanations for product status codes

Part Number Status Explanation
DS2450 This product is Not Recommended for New Designs. Some versions may be No Longer Available or being discontinued and subject to Last Time Buy, after which new orders can not be placed. See Ordering Information for details. DS2450 is available only for existing customers due to process nonavailability for new builds. 

Description

The DS2450 1-Wire® Quad A/D Converter is based on a successive-approximation analog to digital converter with a four to one analog multiplexer. Each input channel has its own register set to store the input voltage range, resolution, and alarm threshold values as well as flags to enable participation of the device in the conditional search if the input voltage leaves the specified range. Two alarm flags for each channel indicate if the voltage measured was too high or too low without requiring the bus master to do the comparison. Each A/D conversion is initiated by the bus master. A channel not used as analog input can serve as a digital open-drain output. After disabling the input the bus master can directly switch on or off the open-drain transistor at the selected channel. All device settings are stored in SRAM and kept non-volatile while the device gets power either through the 1-Wire bus or through its VCC pin. After powering up, a power-on reset flag signals the bus master the need to restore the device settings before the regular operation can resume. All device registers and conversion read-out registers are organized as three 8-byte memory pages similar to the Status Memory of a DS2505/6 device. An on-chip CRC16 generator protects the communication against transmission errors when reading through the end of a memory page as well as when writing individual bytes.
 

Data Sheet

Download this datasheet in PDF formatDownload Rev 3 (PDF, 708kB)
Send this datasheet to any email addressE-Mail

Key Features

  • Four high-impedance inputs to measure analog voltages over the 1-Wire bus
  • User programmable input range (2.56V, 5.12V), resolution (1 to 16 bits) and alarm thresholds
  • 5V, single supply operation
  • Very low power: 2.5mW active, 25µW idle
  • Built-in multidrop controller allows multiple DS2450's to be identified and operated on a common 1-Wire bus
  • Responds to Conditional Search if the analog voltage crosses the alarm thresholds
  • Channels not used as analog input can serve as open drain digital outputs for closed-loop control
  • Directly connects to a single port pin of a microprocessor and communicates at up to 16.3k bits per second
  • Overdrive mode boosts communication speed to 142k bits per second
  • On-chip 16-bit CRC-generator for safeguarding data transfers
  • Unique, factory-lasered and tested 64-bit registration number (8-bit family code + 48-bit serial number 8-bit CRC tester) assures absolute traceability because no two parts are alike
  • 8-bit family code specifies device communication requirements to bus master
  • Operating temperature range from -40°C to +85°C
  • Compact, low cost 8-pin SOIC surface mount package
   
   

Diagram

DS2450: Block Diagram
Block Diagram

Application Notes

Application Note 27   Understanding and Using Cyclic Redundancy Checks with Maxim iButton Products
Application Note 74   Reading and Writing 1-Wire® Devices Through Serial Interfaces
Application Note 126   1-Wire® Communication Through Software
Tutorial 148   Guidelines for Reliable Long Line 1-Wire® Networks
Application Note 155   1-Wire® Software Resource Guide Device Description
Application Note 158   1-Wire® Tagging with XML
Application Note 187   1-Wire Search Algorithm
Application Note 192   Using the DS2480B Serial 1-Wire® Line Driver
Reference Design 244   Advanced 1-Wire Network Driver
Application Note 1097   White Paper 2: Using the 1-Wire® Public Domain Kit
Application Note 1100   White Paper 5: Using 1-Wire APIs for Data Sheet Commands
Application Note 3989   Add Control, Memory, Security, and Mixed-Signal Functions with a Single Contact
Application Note 4255   How to Power the Extended Features of 1-Wire® Devices
Reference Design 4477   Reference Design of a 1-Wire® Bidirectional Voltage-Level Translator for 1.8V to 5V

Product Guides

1-Wire® Products (PDF)

Reliability Reports

Reliability Report: DS2450.pdf

Software/Models

none

Ordering Information

Filters: Part Number: Package: Temperature: Tape and Reel Sample
Part Number Free
Sample
Buy Status Explanations for product status codes Recommended Replacement Package:
TYPE PINS FOOTPRINT
DRAWING  CODE/VAR *
Temp RoHS/Lead-Free?
Materials Analysis
DS2450S     N/A No Longer Available DS2450S+

 
SOIC;8 pin;44.1 mm²
Outline Drawing:21-0262 (PDF)
Land Pattern: 90-0258 (PDF)
Use pkgcode/variation: W8-2*
-40°C to +85°C RoHS/Lead-Free: No
Materials Analysis
DS2450S+    
NRND   SOIC;8 pin;44.1 mm²
Outline Drawing:21-0262 (PDF)
Land Pattern: 90-0258 (PDF)
Use pkgcode/variation: W8+2*
-40°C to +85°C RoHS/Lead-Free: Lead Free
Materials Analysis
DS2450S+T&R    
NRND   SOIC;8 pin;44.1 mm²
Outline Drawing:21-0262 (PDF)
Land Pattern: 90-0258 (PDF)
Use pkgcode/variation: W8+2*
-40°C to +85°C RoHS/Lead-Free: Lead Free
Materials Analysis
DS2450S/T&R     N/A No Longer Available DS2450+T&R

 
SOIC;8 pin;44.1 mm²

Land Pattern: Not Available
Use pkgcode/variation: W8+3*
-40°C to +85°C RoHS/Lead-Free: Lead Free
Materials Analysis

Notes:
  1. Other options and links for purchasing parts are listed at: http://www.maxim-ic.com/sales.
  2. Didn't Find What You Need? Ask our applications engineers. Expert assistance in finding parts, usually within one business day.
  3. Part number suffixes: T or T&R = tape and reel; + = RoHS/lead-free; # = RoHS/lead-exempt; -D = drypack; -U/+U on DS parts = cut tape. More: See Full Data Sheet or Maxim Product Naming Conventions.
  4. * Some packages have variations, listed on the drawing. "PkgCode/Variation" tells which variation the product uses. Note that "+", "#", "-" in the part number suffix describes RoHS status. Package drawings may show a different suffix character.


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Rev 3; 2006-11-27
This page last modified: 2009-10-15


 


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