MT869X
Uni-polar, Nano Power Hall-Effect Switch IC
1 Product Description
The MT869X family is produced with CMOS
technology. The Hall IC internally includes high
sensitivity horizontal hall plates, sleep/awake logics
for mode control, a low-power on-chip oscillator, low
noise analog signal chain with dynamic offset
cancellation, hysteresis comparators and an output
driver.
The product responds to North pole or South pole
magnetic fields. The output will be turned on (Low)
when the magnetic flux density (B) is larger than the
operating point (BOP), and be turned off (High) when
the magnetic flux density (B) is lower than the
releasing point (BRP).
4 Applications
■
■
■
■
■
■
■
The MT869X family provides a variety of packages to
customers: DFN & SOT-23 for surface mount and flat
TO-92 for through-hole mount. All packages are
RoHS compliant.
2 Features
Out
GND
SOT-23
1
2
3
Flat TO-92
1
3
2
DFN1608
1
2
3
DFN1616
4
5
2
Description
Power
Output
Ground
SOT-23
Top-View
OUT
OUT
Vcc
Vcc
5
54
4
1
3
NCNC
GND
NC
2
2
GND
NC
按钮
OUT
13
OUT
2
1
3
2
GND
TO-92
Top-View
OUT
3
3
GND
2
2
Vcc
1
1
OUT
GND
Vcc
Figure.1
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Vcc
OUT
MT8691DT-1616
3
MT8691DT-1608
DFN1608
Top-View
TO-92
Top-View
SOT-23, tape & reel
(3000pcs/bag)
DFN1608, tape & reel
(10000pcs/bag)
DFN1616, tape & reel
(3000pcs/bag)
SOT-553
Top-View
SOT-553
Top-View
GND
MT8691AT
Vcc
Flat TO-92, bulk packaging
(1000pcs/bag)
2
1
MT8691A
Vcc
Description
1
Part No.
3
3 Product Overview of MT869X
Push Pull
SOT-23
Top-View
GND
■
VCC
按钮
■
■
5. Pin Configuration and Functions
按钮
■
CMOS Technology
Uni-polar Switch
2.0~5.5V Operating Vcc Range
-40℃~125℃ Operating Temperature
Package Option:
SOT-23
Flat TO-92
DFN1608
DFN1616
Magnetic Sensitivity Option:
BOP=35Gs, BRP=25Gs
Push Pull Output
Nano Power Consumption:
Average Supply Current =600nA (Vcc=2.0V)
RoHS Compliant: (EU)2015/863
按钮
■
■
■
■
■
Home appliances, Industrial
Position Detection
Solid-State Switch
Proximity Switch
Smart Meter
Handheld Device
Consumer Device
1
Pin Configuration & Functions
Rev
1.3
MT869X
Uni-polar, Nano Power Hall-Effect Switch IC
Table of Contents
1
Product Description…………...….……………….……...…………………………………….…….………1
2
Features……………………………….……..……………………………………………………………….…….1
3
Product Overview of MT869X ..…………………………………………………………………………1
4
Applications……………………………………………………………………………………………………….1
5
Pin Configuration and Functions…………………………………………………….………………….1
6
Definition of Switching Function……………………………………………………………………….3
7
Function Description…......…………………………………………………………………………………..3
8
Feature Description……………………………………………………………………………………………3
9
Functional Block Diagram…………………………………………………………………………………..4
10
Electrical and Magnetic Characteristics………………………………………………………………4
10.1 Absolute Maximum Ratings……………………………………………………………………………….4
10.2 Electrical Specifications………………………………….………………………………………………..5
10.3 Magnetic Characteristics……………………………………………………………………………………5
10.4 ESD Ratings………………………………………………………………………………………………………..5
10.5 Characteristic Performance………………………………………………………………….…………….6
10.6 Typical Output Waveform…………………………………………………………………………………..7
11
Typical Application Circuit………………………………………………………………………………….7
12
Package Material Information……………………………………………………………………………8
12.1 SOT-23 Package Information…………………………...………………………………………………8
12.2 Flat TO-92 Package Information……………..…………………………………………………………..9
12.3 DFN1608 Package Information…..…………..………………………………………………………10
12.4 DFN1616 Package Information…..…………..………………………………………………………11
13
Copy Rights and Disclaimer…………...………….……………………………………………………..12
1
2
3
4
Originally Version
1.1 Version
1.2 Version
1.3 Version
Reversion History
Update the IAW max spec from 4mA to 5mA
Update the marking spec of SOT-23
Update DFN1616
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2
Rev
1.3
MT869X
Uni-polar, Nano Power Hall-Effect Switch IC
6 Definition of Switching Function
Figure.2 & Figure.3 shows the device functionality and hysteresis
Vcc
Vcc
North
Figure.2
BOP
South
BRP
Switching Function Uni-polar (North)
North
BOP
South
Switching Function Uni-polar (South)
Figure.3
SOT-23
BRP
Flat TO-92 / DFN1608 / DFN1616
7 Function Description
BOP: Operating Point, Magnetic flux density applied on the branded side of the package which turns the
output driver ON (VOUT=Low)
BRP: Releasing Point, Magnetic flux density applied on the branded side of the package which turns the
output driver OFF (VOUT=High)
BHYST: Hysteresis Window, |BOP - BRP|
Devices that have a lower magnetic threshold (VOUT=High) detect magnets at a farther distance. Higher
thresholds (VOUT=Low) generally require a closer distance or larger magnet.
8 Feature Description
S
N
N
N
S
SOT-23
Flat TO-92
Figure.4
N
S
S
DFN1608
DFN1616
Motion
The MT869X device is sensitive to the magnetic field component that is perpendicular to the top of
the package
S
N
N
N
N
S
S
S
DFN1608
DFN1616
SOT-23
Flat TO-92
PCB
PCB
VOUT = Low
VOUT= High
Flux Direction Polarity
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3
Rev
1.3
MT869X
Uni-polar, Nano Power Hall-Effect Switch IC
9 Functional Block Diagram
Vcc
OSC
Sleep/Awake
Logic
Phase Gen
POR
ESD
Output
Control
Out
ESD
Hall Plate
SW
AMP
Filter
COMP
Latch
ESD
Bias
VREF
GND
Figure.5
Functional Block Diagram
10 Electrical and Magnetic Characteristics
10.1 Absolute Maximum Ratings
Absolute maximum ratings are limited values to be applied individually, and beyond which the
serviceability of the circuit may be impaired. Functional operability is not necessarily implied. Exposure to
absolute maximum rating conditions for an extended period of time may affect device reliability.
Symbol
Parameters
Min
Max
Units
VCC
Supply Voltage
-
7
V
VRCC
Reverse Battery Voltage
-0.5
-
V
VOUT
Output Voltage
-
7
V
IOUT
Continuous Output Current
-
8
mA
TA
Operating Ambient Temperature
-40
125
℃
TS
Storage Temperature
-50
150
℃
TJ
Junction Temperature
-
165
℃
B
Magnetic Flux Density
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No Limit
4
Gs
Rev
1.3
MT869X
Uni-polar, Nano Power Hall-Effect Switch IC
10.2 Electrical Specifications
At TA=-40~125℃, VCC=2.0V~5.5V (unless otherwise specified)
Symbol
Parameters
Test Condition
Min
Typ
Max
Unit
VCC
Supply Voltage
Operating
2.0
3.6
5.5
V
ICC
Supply Current
VCC=3.6V
-
1.2
2.0
uA
VCC=2.0V
-
600
-
nA
IAW
Awake Current
VCC=3.6V
-
3.0
5.0
mA
ISL
Sleep Current
VCC=3.6V
-
0.6
1.4
uA
VOL
Output Low Voltage
IOUT=5mA, ∣B∣>∣BOP∣
-
-
0.4
V
VOH
Output High Voltage
IOUT=5mA, ∣B∣5V/us,
∣B∣>∣BOP∣
-
-
120
us
Thermal Resistance of SOT-23
-
301
-
℃/W
Thermal Resistance of DFN
-
301
-
℃/W
Thermal Resistance of Flat TO-92
-
230
-
℃/W
RTH
10.3 Magnetic Characteristics
At VCC=2.0V~5.5V (unless otherwise specified)
Part No.
Symbol
MT8691 Series
Min
Typ
Max
Unit
BOP, TA =25℃
15
35
55
Gs
BRP, TA =25℃
10
25
40
Gs
-
10
-
Gs
BHYST, TA =25℃
10.4 ESD Ratings
Symbol
VESD
Reference
Values
Unit
Human-body model (HBM)
AEC-Q100-002
±5000
V
Charged-device model (CDM)
AEC-Q100-011
±1000
V
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5
Rev
1.3
MT869X
Uni-polar, Nano Power Hall-Effect Switch IC
10.5 Characteristic Performance
At VCC=3.6V
Supply Current (uA)
1.8
1.3
0.8
0.3
-0.2
-40
-20
0
25
55
85
125
150
Temperature ℃
Magnetic Field Intensity (Gs)
Figure.6
Supply Current vs. Temperature
60
50
40
30
20
10
Bop
0
-40
Magnetic Field Intensity (Gs)
Figure.7
-20
0
25
55
Temperature ℃
85
Brp
125
150
Magnetic Characteristics vs. Temperature (BOP & BRP)
20
15
10
5
Bhyst
0
-40
Figure.8
-20
0
25
55
Temperature ℃
85
125
150
Magnetic Characteristics vs. Temperature (BHYST)
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6
Rev
1.3
MT869X
Uni-polar, Nano Power Hall-Effect Switch IC
10.6 Typical Output Waveform
MT8691A as example
B
BOP S
BRP S
T
BRP N
BOP N
V
High
Low
Figure.9
T
Digital Output vs. Magnetic Flux Density
11 Typical Application Circuit
MT8691AT as example
C1=100nF
Vcc
1
按钮
Vcc
OUT
3
GND
GND
2
Out
C2=1nF
Figure.10
Typical Application Circuit
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7
Rev
1.3
MT869X
Uni-polar, Nano Power Hall-Effect Switch IC
12 Package Material Information (For Reference Only – Not for Tooling Use)
12.1 SOT-23 Package Information
3
XXXX
按钮
Product ID
按钮
2
1
OUT
Vcc
Figure.11
DateCode:
Y: Year W: Week
YW
GND
XXXX YW
SOT-23 Chip Marking Spec
Sensing
Center
Figure.12
SOT-23 Package Drawing
Symbol
Dimensions in Millimeters
Dimensions in Inches
Min
Max
Min
Max
A
-
1.300
-
0.0512
A1
0.000
0.150
0.0000
0.0059
A2
1.000
1.200
0.0394
0.0472
b
0.300
0.500
0.0118
0.0197
c
0.080
0.220
0.0031
0.0087
D
2.800
3.000
0.1102
0.1181
E
1.500
1.700
0.0591
0.0669
E1
2.600
3.000
0.1024
0.1181
e
0.870
1.030
0.0343
0.0406
e1
1.820
1.980
0.0717
0.0780
L
0.300
0.600
0.0118
0.0236
θ
0︒
8︒
0︒
8︒
x
1.450 TYP
0.057 TYP
y
0.800 TYP
0.032 TYP
z
0.600 TYP
0.024 TYP
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8
Rev
1.3
MT869X
Uni-polar, Nano Power Hall-Effect Switch IC
12.2 Flat TO-92 Package Information
XXXX
XXXX
YWW
Product ID
YWW
DateCode: week (01~55)
DateCode: year (0~9)
3 OUT
2 GND
1 Vcc
Figure.13
Flat TO-92 Chip Marking Spec
Sensing
Center
Figure.14
Flat TO-92 Package Drawing
Symbol
Dimensions in Millimeters
Dimensions in Inches
Min
Max
Min
Max
A
1.420
1.620
0.056
0.064
A1
0.660
0.860
0.026
0.034
b
0.350
0.480
0.013
0.019
b1
0.400
0.510
0.016
0.020
c
0.330
0.510
0.013
0.020
D
3.900
4.100
0.154
0.161
D1
2.280
2.680
0.090
0.106
E
3.050
3.250
0.120
0.128
e
1.270 TYP
0.050 TYP
e1
2.440
2.640
0.096
0.104
L
14.350
14.750
0.565
0.581
θ
45︒ TYP
45︒ TYP
x
2.025 TYP
0.080 TYP
y
1.545 TYP
0.061 TYP
z
0.500 TYP
0.020 TYP
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9
Rev
1.3
MT869X
Uni-polar, Nano Power Hall-Effect Switch IC
12.3 DFN1608 Package Information
Vcc
GND
XXXX Y
XXXXY
Figure.15
DFN1608 Chip Marking Spec
Figure.16
DFN1608 Package Drawing
Symbol
OUT
DateCode: week (A~z)
Product ID
Dimensions in Millimeters
Dimensions in Inches
Min
Max
Min
Max
A
0.450
0.550
0.018
0.022
A1
0.000
0.050
0.000
0.002
A2
0.150 TYP
0.006 TYP
D
1.550
1.650
0.061
0.065
E
0.750
0.850
0.030
0.033
D1
0.580
0.680
0.023
0.027
E1
0.350
0.450
0.014
0.018
b
0.170
0.270
0.007
0.011
e
L
0.420 TYP
0.185
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0.017 TYP
0.285
10
0.007
0.011
Rev
1.3
MT869X
Uni-polar, Nano Power Hall-Effect Switch IC
12.4 DFN1616 Package Information
Figure.17
DFN1616 Chip Marking Spec
b
e
b
A
L
A1
A2
L
Figure.18
DFN1616 Package Drawing
Symbol
Dimensions in Millimeters
Dimensions in Inches
Min
Max
Min
Max
A
0.450
0.550
0.018
0.022
A1
0.000
0.050
0.000
0.002
A2
0.150 TYP
0.006 TYP
L
1.550
1.650
0.061
0.065
b
0.200
0.300
0.008
0.012
e
1.000 TYP
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0.039 TYP
11
Rev
1.3
MT869X
Uni-polar, Nano Power Hall-Effect Switch IC
13 Copy Rights and Disclaimer
1. This document may not be reproduced or duplicated, in any form, in whole or in part without prior
written consent of MagnTek . Copyrights © 2019, MagnTek Incorporated.
2. MagnTek reserves the right to make changes to the information published in this document
at
anytime without notice.
3. MagnTek’s products are limited for use in normal commercial applications. MagnTek’s products are
not to be used in any device or system, including but not limited to medical life support equipment and
system.
For the latest version of this document, please visit our website: www.magntek.com.cn
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12
Rev
1.3
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