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 XC31B Series
CMOS Temperature Sensor
ETR0901_001
GENERAL DESCRIPTION
The XC31B series are ultra small CMOS temperature sensor ICs. As a bandgap type temperature sensor is built-into the XC31B, linearity, in comparison to thermistor type temperature sensors, is much better. The operating temperature range of the series is from -30 USP-6B packages with a supply current of only 7 A (@VOUT=2.0V) and as such, is suitable for use with various portable devices. Output voltage is selectable in 100mV increments within a range of 2.0V to 6.0V (at 25 ). to +80 . The XC31B comes in a mini molded SOT-25 and
APPLICATIONS
Mobile phones Portable AV equipment Palm top computers, PDAS Battery powered equipment
FEATURES
Operating Voltage Range Output Voltage Range Output Voltage Accuracy Detectable Temperature Range Low Power Consumption Packages : 3.0V ~ 10.0V : 2.0V~ 6.0V : 3% ~ +80 (TYP.) : -30
Output Voltage Temp. Coefficient : -3900ppm/
: 7 A (@VOUT=2.0V) : SOT-25, USP-6B
PIN CONFIGURATION
PIN ASSIGNMENT
PIN NUMBER SOT25 USP-6B PIN NAME NC VSS CE VOUT VIN FUNCTION No Connection Ground Chip Enable Output Power Supply
VSS NC CE
VIN NC VOUT
1 2 3 4 5
2, 5 6 4 3 1
*The dissipation pad for the USP-6B package should be solder-plated in recommended mount pattern and metal masking so as to enhance mounting strength and heat release. If the pad needs to be connected to other pins, it should be connected to the VSS pin.
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XC31B Series
PRODUCT CLASSIFICATION
Ordering Information
XC31B DESIGNATOR DESCRIPTION Polarity of Output Voltage Temperature Coefficient Output Voltage (25 ) Revision Character Package SYMBOL P N 20~60 A~ M D Device Orientation R L DESCRIPTION : + (Positive) : - (Negative) : e.g. 20=2.0V, 30=3.0V :: SOT-25 (SOT-23-5) : USP-6B : Embossed tape, standard feed : Embossed tape, reverse feed
BLOCK DIAGRAM
ABSOLUTE MAXIMUM RATINGS
PARAMETER Input Voltage Output Voltage CE Pin Voltage Output Current Power Dissipation SOT-25 USP-6B SYMBOL VIN VOUT VCE IOUT Pd Topr Tstg RATINGS 0.3 0.3 0.3 20 150 100 40 40 +85 +125 12 12 VIN+0.3
Ta=25
VSS=0V UNIT V V V mA mW
Operating Temperature Range Storage Temperature Range
2/9
XC31B
Series
ELECTRICAL CHARACTERISTICS
XC31BPN20A VOUT(T) (*1) =2.0V PARAMETER Input Voltage Output Voltage Detectable Temperature Range Output Voltage Temperature Coefficient Temperature Sensitivity Linearity Margin Error Load Regulation Supply Current 1 Supply Current 2 CE "High" Level Voltage CE "Low" Level Voltage XC31BPN40A VOUT(T) (*1) =4.0V PARAMETER Input Voltage Output Voltage Detectable Temperature Range Output Voltage Temperature Coefficient Temperature Sensitivity Linearity Margin Error Load Regulation Supply Current 1 Supply Current 2 CE "High" Level Voltage CE "Low" Level Voltage SYMBOL VIN VOUT CONDITIONS
(*2) IOUT=100 A , VIN=6.0V,Ta=25
SYMBOL VIN VOUT
CONDITIONS
(*2) IOUT=100 A , VIN=4.0V, Ta=25
MIN. 1.94 -30
TYP. 2.0
MAX. 10 2.06 +80
UNITS V V
TD (*3) TSE TL (*4) VOUT ISS1 ISS2 VCEH VCEL
IOUT=100 A, VIN=4.0V -30 Ta 80 -30 -30 Ta 80 Ta 80
-3400 -6.8
-3900 -7.8 1 2.0 7
-4400 -8.8 3.5
ppm/ mV/ % mV
VIN=4.0V 1 A IOUT 100 A VIN=VCE=4.0V, Ta=25 VIN=4.0V, VCE=VSS, Ta=25 1.5
17 0.1 0.3
A A V V
MIN. 3.88 -30
TYP. 2.0
MAX. 10 4.12 +80
UNITS V V
TD (*3) TSE TL (*4) VOUT ISS1 ISS2 VCEH VCEL
IOUT=100 A, VIN=6.0V -30 Ta 80 Ta 80 Ta 80 VIN=6.0V 1 A IOUT 100 A VIN=VCE=6.0V, Ta=25 VIN=6.0V, VCE=VSS, Ta=25 -30 -30
-3400 -13.6
-3900 -15.6 1 3.0 8
-4400 -17.6 3.5
ppm/ mV/ % mV
18 0.1 0.3
1.5
A A V V
NOTE: *1: VOUT(T) =Specified output voltage at 25 . *2: When output current exceed 100 A, output voltage drop will increase. If this IC is to be used in applications where such currents are required, please use a buffer on the output *3: Output voltage temperature coefficient (TD) is defined as:
TD=
V OUT
Ta V OUT
*4: Linearity margin error (TL) is calculated as follows:
emax TL= Tse Ta
where emax = maximum error. The maximum error is the maximum difference between the actual measured value and the value on an approximated straight line.
3/9
XC31B Series
TYPICAL APPLICATION CIRCUIT
NOTE ON USE
1. When the load capacitance CL is too large, oscillation may occur on the output signal. 2. Output signal overshoot will occur when the power (VIN) is switched on or when the power drastically fluctuates. The chip enable (CE) function is effective for helping to avoid overshoot and also in saving consumption current.
4/9
XC31B
Series
TYPICAL PERFORMANCE CHARACTERISTICS
(1) Output Voltage vs. Ambient Temperature
XC31BPN20A
2.0V
XC31BPN40A
4.0V
2.1
(2) Supply Current vs. Ambient Temperature
XC31BPN20A 2.0V XC31BPN40A 4.0V
(3) Output Voltage vs. Input Voltage
XC31BPN20A
2.0V
XC31BPN40A
4.0V
5/9
XC31B Series
TYPICAL PERFORMANCE CHARACTERISTICS(Continued)
(4) Input Transient Response 1
(5) Input Transient Response 2
(6) CE Pin Transient Response
6/9
XC31B
Series
TYPICAL PERFORMANCE CHARACTERISTICS(Continued)
(7) Ripple Rejection Rate
PACKAGING INFORMATION
SOT-25 USP-6B
7/9
XC31B Series
PACKAGING INFORMATION (Continued)
USP-6B Recommended Pattern Layout
USP-6B Recommended Metal Mask Design
MARKING RULE
SOT-25
Based on internal standards Represents integer of output voltage MARK 2 3 4 5 6 VOLTAGE (V) 2.x 3.x 4.x 5.x 6.x
SOT-25 (TOP VIEW)
Represents decimal number point of output voltage MARK 0 1 2 3 4 5 6 7 8 9 Represents assembly lot number (Based on internal standards) VOLTAGE (V) x.0 x.1 x.2 x.3 x.4 x.5 x.6 x.7 x.8 x.9
8/9
XC31B
Series
1. The products and product specifications contained herein are subject to change without notice to improve performance characteristics. Consult us, or our representatives before use, to confirm that the information in this catalog is up to date. 2. We assume no responsibility for any infringement of patents, patent rights, or other rights arising from the use of any information and circuitry in this catalog. 3. Please ensure suitable shipping controls (including fail-safe designs and aging protection) are in force for equipment employing products listed in this catalog. 4. The products in this catalog are not developed, designed, or approved for use with such equipment whose failure of malfunction can be reasonably expected to directly endanger the life of, or cause significant injury to, the user. (e.g. Atomic energy; aerospace; transport; combustion and associated safety equipment thereof.) 5. Please use the products listed in this catalog within the specified ranges. Should you wish to use the products under conditions exceeding the specifications, please consult us or our representatives. 6. We assume no responsibility for damage or loss due to abnormal use. 7. All rights reserved. No part of this catalog may be copied or reproduced without the prior permission of Torex Semiconductor Ltd.
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