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ZSSC3138BA2R

Description
Sensor Interface Sensor Signal Conditoner
Categorysemiconductor    Analog mixed-signal IC   
File Size267KB,25 Pages
ManufacturerIDT (Integrated Device Technology)
Environmental Compliance
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ZSSC3138BA2R Overview

Sensor Interface Sensor Signal Conditoner

ZSSC3138BA2R Parametric

Parameter NameAttribute value
Product AttributeAttribute Value
ManufacturerIDT (Integrated Device Technology)
Product CategorySensor Interface
RoHSDetails
Mounting StyleSMD/SMT
Package / CaseTSSOP-14
PackagingReel
Moisture SensitiveYes
Factory Pack Quantity2000
Unit Weight0.004949 oz
Sensor Signal Conditioner for
Ceramic Sensor Applications
ZSSC3138
Datasheet
Brief Description
The ZSSC3138 is a member of the ZSSC313x
product family of CMOS integrated circuits designed
for automotive/ industrial sensor applications. All
family members are well suited for highly accurate
amplification and sensor-specific correction of
resistive bridge sensor signals. An internal 16-bit
RISC microcontroller running a correction algorithm
compensates sensor offset, sensitivity, temperature
drift, and non-linearity of the connected sensor
element. The required calibration coefficients are
stored by the one-pass calibration procedure on chip
(EEPROM).
The ZSSC3138 offers a maximum analog gain of
420 and two offset compensation features. These fit
perfectly with the requirements of ceramic thick-film-
based sensor elements as well as strain gauges.
The high amplification in combination with the offset
compensation offers the capability to set up ceramic
thick-film-based sensor applications without laser
trimming, which leads to better long-term stability.
Benefits
Family approach offers the best fitting IC selec-
tion to build cost-optimized applications
No external trimming components required
Low number of external components needed
PC-controlled configuration and one-pass/
end-of-line calibration via I²C™* or ZACwire™
interface: simple, cost efficient, quick, and precise
High accuracy (0.25% FSO** @ -25 to +85°C;
0.5% FSO @ -40 to +125°C)
Optimized for automotive/industrial environments
due to robust protection circuitries, excellent
electromagnetic compatibility and AEC-Q100
qualification
Available Support
Evaluation Kits
Application Notes
Mass Calibration System
Features
Physical Characteristics
Adjustable to nearly all resistive bridge sensor
types, analog gain of 420, maximum overall gain
of 1680
Enhanced sample rate: 7.8 kHz maximum
High ADC resolution 15/16 bit
Safety functionality sensor connection
Internal temperature compensation
Digital compensation of sensor offset, sensitivity,
temperature drift, and non-linearity
Output options: ratiometric analog voltage output
(5 - 95% maximum, 12.4 bit resolution) or
TM
ZACwire (digital One-Wire Interface (OWI))
Sensor biasing by voltage
High voltage protection up to 33 V
Supply current: 5.5mA maximum
Reverse polarity and short circuit protection
Wide operation temperature range between
-40 to +150°C
Traceability by user-defined EEPROM entries
* Note: I
2
C™ is a trademark of NXP.
** FSO = Full Scale Output.
Supply voltage 4.5 to 5.5 V
Operation temperature: -40°C to +125°C
(-40°C to +150°C extended temperature range
depending on product version)
Available in RoHS-compliant JEDEC-SSOP14
package or delivery as die
ZSSC3138 Minimum Application Requirements
VCC
Sensor
Module
OUT
ZSSC3138
GND
© 2016 Integrated Device Technology, Inc.
1
January 25, 2016

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Description Sensor Interface Sensor Signal Conditoner Sensor Interface Sensor Signal Conditoner Integrated Device Technology Wafer (unsawn) - box Integrated Device Technology Dice (Wafer sawn) - frame Integrated Device Technology Wafer (unsawn) - box
Product Attribute Attribute Value Attribute Value Attribute Value Attribute Value Attribute Value
Manufacturer IDT (Integrated Device Technology) IDT (Integrated Device Technology) IDT (Integrated Device Technology) IDT (Integrated Device Technology) IDT (Integrated Device Technology)
Product Category Sensor Interface Sensor Interface Integrated Device Technology Integrated Device Technology Integrated Device Technology
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