Rohm BDE0400G Detect temperaturechangeable thermostat output temperature sensor ic Datasheet

Small and High Accuracy Temperature Sensor IC Series
Detect TemperatureChangeable
Thermostat Output Temperature Sensor IC
BDE□□□0G Series
No.09047EAT03
●Description
Low quiescent current (16µA), high accuracy thermostat (temperature switch) ICs. Built in temperature sensor, reference
voltage regulator, D/A converter, and comparator. Detecting temperature by itself, OS terminal state is changed at logically.
Open Drain Output ( Active L ) is available in BDE□□□0G series.
●Features
1) Detection Temperature Range -25~+125℃ by 15 products.
2) ±5℃ Step Selectable Detection Temperature with CTRL.
3) Hysteresis Temperature ( typically 10℃ )
4) High Accuracy Analog Output ( typically ±3.5℃@Ta=30℃ )
5) Analog Output Temperature Sensitivity ( typically -10.8mV/℃ )
6) Low Supply Current ( typically 16µA )
7) Small Package ( typically 2.90mm×2.80mm×1.25mm )
8) ESD Rating 8kV ( HBM )
9) Excellent Ripple Rejection Characteristic
●Applications
Thermal Protection for Electrical Equipment (NoteBook PC, Cell phone, FPD-TV, etc.) FAN Control for Thermal Management
●Products Line up
BDE
0
□□□
Detection Temperature
(Center Temperature)
120:120℃
040: 40℃
110:110℃
030: 30℃
100:100℃
020: 20℃
090: 90℃
010: 10℃
080: 80℃
000: 0℃
070: 70℃
910:-10℃
060: 60℃
920:-20℃
050: 50℃
G
Output Format
(OpenDrain, Active Low)
Temperature / Output Format Table
CTRL status description ( L : Low, O : Open,
H
O
115
105
95
85
75
65
55
45
120
110
100
90
80
70
60
50
125
115
105
95
85
75
65
55
Open Drain
Open Drain
Open Drain
Open Drain
Open Drain
Open Drain
Open Drain
Open Drain
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Active L
Active L
Active L
Active L
Active L
Active L
Active L
Active L
eA
eB
eC
eD
eE
eF
eG
eH
1/8
Product
Name
BDE0400G
BDE0300G
BDE0200G
BDE0100G
BDE0000G
BDE9100G
BDE9200G
H : High )
Detection
Temperature (℃)
CTRL
L
H
O
35
25
15
5
-5
-15
-25
40
30
20
10
0
-10
-20
45
35
25
15
5
-5
-15
OS Output Format
Open Drain
Open Drain
Open Drain
Open Drain
Open Drain
Open Drain
Open Drain
Active L
Active L
Active L
Active L
Active L
Active L
Active L
Marking
BDE1200G
BDE1100G
BDE1000G
BDE0900G
BDE0800G
BDE0700G
BDE0600G
BDE0500G
L
OS Output Format
Marking
Product
Name
Detection
Temperature (℃)
CTRL
Package
(SSOP5)
eJ
eK
eL
eM
eN
eP
eQ
2009.06 - Rev.A
Technical Note
BDE□□□0G Series
●Absolute Maximum Ratings ( Ta = 25℃ )
Parameters
Power Supply Voltage
Input Voltage ( CTRL )
Input Current ( CTRL )
OS terminal Voltage
OS terminal Current
Power dissipation
Storage Temperature Range
Symbol
Limit
Unit
VDD
VIN
IIN
VOS
IOS
Pd
Tstg
-0.3 to 7.0*1
-0.3 to VDD+0.3
-1.0, +0.1
-0.3 to 7.0
5.0
540※2
-55 to 150
V
V
mA
V
mA
mW
℃
*1. Not to exceed Pd
*2. Reduced by 5.40mW for each increase in Ta of 1℃ over 25℃( mounted on 70mm×70mm×1.6mm Glass-epoxy PCB )
●Recommended Operating Condition
Parameters
Power Supply Voltage
Operating Temperature Range
Symbol
Min.
Typ.
Max.
Unit
VDD
Topr
2.9
-30
3.0
-
5.5
130
V
℃
Min.
Limit
Typ.
Max.
Tacc
-
0
Thys
7.5
10.0
±4.0
±5.0
12.5
TTemp
-
-
±3.5
●Temperature Accuracy ( Unless otherwise specified, VDD = 3.0V )
Parameters
Symbol
Unit
Conditions
Thermostat ( Temperature Switch )
Detection TemperatureAccuracy
Detection Temperature Hysteresis
Analog Output
VTemp Temperature Accuracy
●Electrical Characteristics ( Unless otherwise specified, VDD = 3.0V, Ta = 25℃ )
LIMIT
PARAMETER
SYMBOL
MIN.
TYP.
MAX.
Supply Current
IDD
16.0
20.0
Analog Output
VTemp Output Voltage
VTemp
1.716
1.753
1.790
VTemp Temperature Sensitivity
VSE
-10.28
-10.68
-11.08
VTemp Load Regulation
OS Output Open Drain
OS Leakage Current
OS Output Voltage
CTRL
Input L Voltage
Input H Voltage
℃
Ta = -20℃~115℃
Ta = ~125℃
℃
℃
UNIT
µA
V
mV/℃
⊿VTempRL
-
-
1
mV
IL
VOL
-
-
1.0
0.4
µA
V
VIL
VIH
GND
2.4
-
0.6
VDD
V
V
Ta = 30℃
CONDITIONS
CTRL = 3.0V
Ta = 30℃
Ta = -30 to 100℃
difference of
IOUT : 0µA / 2µA
OS : 5.0V
IinOS = 1.2mA
*Radiation hardiness is not designed.
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2/8
2009.06 - Rev.A
Technical Note
BDE□□□0G Series
●Package Outline
Product Type
Lot No.
SSOP5 (Unit:mm )
●Pin Description
Pin No.
Pin Name
Function
1
CTRL
Detection temperature setting
2
GND
GROUND
3
Vtemp
4
VDD
5
OS
Comment
Refer to 2/7 page for the emperature set.
( Temperature / Output Format Table )
-
Output voltage in inverse proportion to the
temperature( TYP. -10.68mV/℃)
POWER SUPPLY
Open Drain type
Use the pull-up resistor over 10kΩ.
Digital thermostat output
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Set the OPEN state or
Connect high impedance input node.
3/8
2009.06 - Rev.A
Technical Note
BDE□□□0G Series
●Equivalence Circuit
CTRL
OS
VDD
OS
CTRL
GND
GND
Please connect the pull-up resistor over 10kΩ.
VTemp
VDD
VTemp
GND
Please don’t connect the pull-down resistor
●Block Diagram
CTRL
1
GND
2
VTemp
3
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OUT
Vref
5 OS
+
-
TEMP
SENSOR
Iref
4/8
4 VDD
2009.06 - Rev.A
Technical Note
BDE□□□0G Series
Analog Output Voltage ( VTemp ) [V]
●Functional Diagram ( ex. Detection Temperature 110℃ )
3.0
2.5
Temperature
Sensitivity
( -10.68mV/℃ Typical )
2.0
VTemp@30℃
( 1.753V Typical )
1.5
1.0
0.5
-50
-30
-10
10
30
50
70
90
110
130
110
130
OS Output Voltage ( VOS ) [V]
Temperature [℃]
Temperature Hysteresis
( 10℃ Typical )
Vos
0
-50
-30
-10
10
30
50
70
90
Temperature [℃]
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5/8
2009.06 - Rev.A
Technical Note
BDE□□□0G Series
●Reference Data
25
3.0
VDD=3V
20
2.0
IDD [uA]
VTemp [V]
2.5
1.5
1.0
15
10
5
0.5
Ta=25℃
0.0
-80 -40
0
0
40
80
120 160
0
1
2
Temperature [℃]
4
5
6
7
8
VDD [V]
Fig2. Supply Current vs. Supply Voltage
Fig1. VTemp Voltage vs. Temperature
(Temperature Sensitivity)
25
3.0
Ta=25℃
0
2.5
-25
2.0
-50
ΔVTemp [mV]
VTemp [V]
3
1.5
1.0
0.5
-75
-100
-125
-150
-175
0.0
0
1
2
3
4
5
6
7
VDD=3V, Ta=25℃
-200
8
0
1
2
3
4
5
ITemp [uA]
VDD [V]
Fig3. VTemp Voltage vs. Supply Voltage
Fig4. VTemp Voltage vs. Output Current
3.0
VDD=3V, Ta=25℃
2.5
VOS[V]
2.0
1.5
1.0
0.5
0.0
0
5
10
15
20
25
IOS [mA]
Fig5. OS Output Voltage vs. Load Current
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6/8
2009.06 - Rev.A
Technical Note
BDE□□□0G Series
●Notes for use
1) Absolute Maximum Ratings
An excess in the absolute maximum ratings, such as supply voltage, temperature range of operating conditions, etc., can
break down devices, thus making impossible to identify breaking mode such as a short circuit or an open circuit. If any
special mode exceeding the absolute maximum ratings is assumed, consideration should be given to take physical safety
measures including the use of fuses, etc.
2) GND voltage
Make setting of the potential of the GND terminal so that it will be maintained at the minimum in any operating state.
3) Pin short and mistake fitting
When mounting the IC on the PCB, pay attention to the orientation of the IC. If there is a placement mistake, the IC may be
burned up.
4) Operation in strong electric field
Be noted that using ICs in the strong electric field can malfunction them.
5) Mutual impedance
Use short and wide wiring tracks for the power supply and ground to keep the mutual impedance as small as possible.
Use a capacitor to keep ripple to a minimum.
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7/8
2009.06 - Rev.A
Technical Note
BDE□□□0G Series
●Ordering part number
B
D
E
0
Part No.
0
Part No.
0000 0100
0300 0400
0600 0700
0900 1000
1200 9100
0
0
G
-
Package
G: SSOP5
0200
0500
0800
1100
9200
T
R
Packaging and forming specification
TR: Embossed tape and reel
(SSOP5)
SSOP5
5
4
1
2
0.2Min.
+0.2
1.6 −0.1
2.8±0.2
<Tape and Reel information>
+6°
4° −4°
2.9±0.2
3
Tape
Embossed carrier tape
Quantity
3000pcs
Direction
of feed
TR
The direction is the 1pin of product is at the upper right when you hold
( reel on the left hand and you pull out the tape on the right hand
1pin
+0.05
0.13 −0.03
0.05±0.05
1.1±0.05
1.25Max.
)
+0.05
0.42 −0.04
0.95
0.1
Direction of feed
Reel
(Unit : mm)
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8/8
∗ Order quantity needs to be multiple of the minimum quantity.
2009.06 - Rev.A
Notice
Notes
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which can be obtained from ROHM upon request.
Examples of application circuits, circuit constants and any other information contained herein
illustrate the standard usage and operations of the Products. The peripheral conditions must
be taken into account when designing circuits for mass production.
Great care was taken in ensuring the accuracy of the information specified in this document.
However, should you incur any damage arising from any inaccuracy or misprint of such
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The technical information specified herein is intended only to show the typical functions of and
examples of application circuits for the Products. ROHM does not grant you, explicitly or
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