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 InSb Hall Element
HW-108C
*High-linearity InSb Hall element. *Super mini-mold SMT package (fits SOT 343 land pattern). *Shipped in packet-tape reel (4000pcs per reel).
Note : It is requested to read and accept "IMPORTANT NOTICE".
Please be aware that AKE products are not intended for use in life support equipment, devices, or systems. Use of AKE products in such applications requires the advance written approval of the appropriate AKE officer. Certain applications using semiconductor devices may involve potential risks of personal injury, property damage, or loss of life. In order to minimize these risks, adequate design and operating safeguards should be provided by the customer to minimize inherent or procedural hazards. Inclusion of AKE products in such applications is understood to be fully at the risk of the customer using AKE devices or systems.
*Absolute Maximum Ratings
Item Symbol Limit Unit
Max. Input Current
Ic
Const. Current Drive
20
mA
Operating Temp. Range
Topr.
-40 to +110
C
Storage Temp. Range
Tstg.
-40 to +125
C
*Classification of Output Hall Voltage (VH)
Rank VH [ mV ] Conditions
*Electrical Characteristics(Ta=25C)
Item Symbol Conditions Min. Typ. Max. Unit Q 41 to 57 B=50mT, Vc=IV Constant Voltage Drive R 250 250 -7 450 450 51 to 74
Output Hall Voltage
VH
Const. Voltage Drive
B=50mT, Vc=IV B=0mT, Ic=0.1mA B=0mT, Ic=0.1mA B=0mT, Vc=IV
41
74
mV
Input Resistance Output Resistance Offset Voltage
Rin Rout Vos
*Input Current Derating Curve
+7 mV
Temp. Coefficient of VH
VH
B=50mT, Ic=5mA
20
-1.8 %/C Input Current(mA)
Input Resistance Rin : 250 to 450 450
Temp. Coefficient of Rin
Rin
B=0mT, Ic=0.1mA
-1.8
%/C
10
Dielectric Strength
100V D.C
1.0
M
Notes : 1. VH = VHM - Vos (VHM:meter indication)
1 -V 2. VH = VH (T1) X VH (T3) - T H) (T2) X 100 (T3 2 1 -R 3. Rin = Rin (T1) X Rin (T3) - T in (T2) X 100 (T )
3 2
T1 = 20C, T2 = 0C, T3 = 40C
0 -60
-40
- 20
0
20
40
60
80
100
120
Ambient Temperature.(C) Note : Rin of Hall element decreases rapidly as ambient temperature increases. Ensure compliance with input current derating curve envelope, throughout the operating temperature range.
0.25
*Dimensional Drawing (mm)
2.10.1 0.4 1.3 0.4 0.3
*Input Voltage Derating Curve
Input Resistance 2.0
Input Voltage(V) Rin : 250 to 450
2
1.250.1 2.10.2
1
0 to 0.1
N
5 5
3
4
0.1
1.0
0.25
5
+0.1 0.8 0
0.55
Pinning
5
0 -60
3 4 () ()
-40
- 20
0
20
40
60
80
100
120
Input Output
1() 2()
Ambient Temperature.(C) Note : For constant-voltage drive, stay within this input voltage derating curve envelope.
33
HW-108C
*Characteristic Curves
Rin-T
1600 1400
Input Resistance:Rin( ) Output Voltage:VH(mV)
VH-B
100 90 80 70 60 50 40 30 20 10 0 50
Ambient Temperature(C) Ic const Vc const Ic = 5 (mA) Vc = 1 (V) Ta = 25 (C)
b
1200 1000 800 600 400 200 0 -50 100 150
Ic
Vin
c
0 0
10
20
30
40
50
Magnetic Flux Density B (mT)
VH-T
390 360 330 Ic 300 270 240 210 180 150 120 90 Vin 60 30 0 -50
Ic const Vc const
VH-Vc, VH-Ic
300 250 200 150 100 50 0 0.0 5 0.5 10 1.0
Ic (mA) Input Current Vc (V) Input Voltage Ic const Vc const B = 50 (mT) Ta = 25 (C)
Output Voltage:VH(mV)
Output Voltage:VH(mV)
Ic = 5 (mA) Vc = 1 (V) B = 50 (mT)
Ic
Vin
g
15 1.5 20 Ic:(mA) 2.0 Vc:(V)
0
50
Ambient Temperature(C)
100
150
Vos-T
20
Ic const Vc const
Vos-Vc, Vos-Ic
20 18
Offset Voltage:Vos(mV) Ic const Vc const B = 0 (mT) Ta = 25 (C)
Offset Voltage:Vos(mV)
16 14 12 10 8 6 4
Ic = 5 (mA) Vc = 1 (V) B = 0 (mT)
i
Ic
Ic 10
Vin 0 -50 0 50
Ambient Temperature(C)
Vin
5
2 100 150 0 0.0 10 1.0
Ic (mA) Input Current Vc (V) Input Voltage
15 1.5
0.5
20 Ic:(mA) 2.0 Vc:(V)
*Magnetic Flux Density 1(mT)=10(G)
In This Example : Rin=340( ), Vos=2.4(mV), Vc=1(V)
34


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