10.5±0.5
Hall IC
(
Operating Temperature Range
Topr
=
–40 to + 100˚C,
Operating in Alternative Magnetic Field
)
s
Overview
The DN8897/SE/TE/S is a combination of a Hall element,
amplifier, Schmidt circuit, and stabilized power supply/temper-
ature compensator integrated on an identical chip by using the
IC technology. It amplifies Hall element output at the amplifi-
er, converts into a digital signal through the Schmidt circuit,
and drives the TTL or MOS IC directly.
4.0±0.3
0.8±0.1
0.7
DN8897/SE/TE/S
DN8897
4.5±0.3
1.0
2.0±0.3
Unit : mm
5˚
0.5±0.1
1.27
1 2 3
5˚
2˚
5˚
0.43
– 0.05
1 : V
CC
2 : GND
3 : Output
+0.1
2˚ SSIP003-P-0000A (E-3S)
Unit : mm
4.52±0.3
4.52±0.3
(1.0)
2˚
DN8897SE
s
Features
•
High sensitivity and low drift
•
Stable temperature characterstics due to the additional tem-
•
•
•
•
•
perture compensator
Wide operating supply voltage range (V
CC
=4.5 to 16V)
Operatig in alternative magnetic field
TTL and MOS ICs directly drivable by output
Provided with the output pull-up resistors (typ 27kΩ)
“0” gauss point in the zero cross type hysteresis width
0.55±0.15
45˚
(1.0)
12.5±06.5
(0.72)
0.4±0.1
1.27
2 to 5˚
1 2 3
(0.4)
1.54±0.1
1 : V
CC
2 : GND
3 : Output
Unit : mm
(0.6)
0.5±0.1
10.0±0.6
3.3±0.3
s
Applications
•
Speed sensors
•
Position sensors
•
Rotation sensors
•
Keyboard switches
•
Microswitches
Note) This IC is not suitable for car electrical equipment.
DN8897TE
2˚
R0.25
SSIP003-P-0000C (SE-3S)
4.0±0.3
(1.0)
(0.7)
s
Block Diagram
· DN8897/SE/TE
Stabilized power supply
temperature correction circuit
0.6±0.15
(1.0)
1.27
27kΩ
1
V
CC
Output
DN8897S
1.2±0.1
(0.2)
1 : V
CC
2 : GND
3 : Output
Unit : mm
1 2 3
3
SSIP003-P-0000B (TE-3S)
1
2
4
3
0.6±0.2
1.6
Hall element
Amp.
Schmitt trigger
Output stage
· DN8897S
NC
or
GND
2
Stabilized power supply
temperature correction circuit
27kΩ
1
0.95±0.2
V
CC
Output
0.4±0.2
0.3 to 0.5
3.0±0.3
5.4±0.4
0.15
0 to 0.1
3
4
Hall element
Amp.
Schmitt trigger
Output stage
GND
ESOP004-P-0200 (SOH-4D)
1 : V
CC
2 : NC or GND
3 : Output
4 : GND
1.5±0.3
3.0±0.3
2
GND
s
Absolute Maximum Ratings (Ta=25˚C)
Parameter
Supply voltage
Supply current
Circuit current
Power dissipation
Operating ambient temperature
Storage temperature
Symbol
V
CC
I
CC
I
O
P
D
T
opr
T
stg
Rating
18
8
20
150
–40 to +100
–55 to +125
Unit
V
mA
mA
mW
˚C
˚C
s
Electrical Characteristics (Ta=25˚C)
Parameter
Operating flux density
Hysteresis width
Symbol
B
1 (L→H)
B
2 (H→L)
BW
V
OL
Output voltage
V
OH
V
CC
=12V
V
CC
=12V
V
CC
=12V
V
CC
=4.5 to16V, I
O
=12mA,
B=12mT
V
CC
=16V, I
O
=–30µA,
B=–12mT
V
CC
=4.5V, I
O
=–30µA,
B=–12mT
V
CC
=16V, V
O
=0V,
B=–12mT
V
CC
=16V
V
CC
=4.5V
Condition
min
–12
0.1
7
typ
–6
6
10
0.4
14.7
2.9
0.4
1
1
0.9
6
5.5
max
– 0.1
12
Unit
mT
mT
mT
V
V
V
mA
mA
mA
Output short-circuit current
Supply current
–I
OS
I
CC
s
Hall Element Position
· DN8897
1.0 1.75
· DN8897SE
1.0 1.63
1.25
1.3
· DN8897TE
1.0 1.5
1.15
· DN8897S
1.
0
0
1.
1.5
Unit : mm
The center of the Hall
element is in the hatched
area in the right figure.
1.0
1.0
1.0
1.5
Distance from package
surface to sensor (mm)
DN8897
0.7
DN8897SE
0.42
DN8897TE
0.4
DN8897S
0.65
s
Flux-Voltage Conversion Characteristics
Marking surface
Output voltage (V
O
)
B
1
B
2
Applied flux direction
Flux density (B)
s
Precaution on Use
1. Change of the operation magnetic flux density dose not depend on the supply voltage, because the stabilization power supply
is built-in. (only for the range ; V
CC
= 4.5 to 16V)
2. Change from “H” to “L” level increases the supply current by approx. 1mA.
s
Characteristics Curve
Supply Voltage – Ambient Temperature
8
V
CC
=12V
7
20
20
to L
Sample 1, B
H
Sample 2, B
H to L
Operating Flux Density – Ambient Temperature Operating Flux Density – Supply Voltage
Ta = 25˚C
Operating Flux Density (mT)
Supply Current (mA)
6
V
CC
=16V
5
4
V
CC
=4.5V
3
2
1
0
Operating Flux Density (mT)
B
H to L
10
10
Sample 3, B
H to
0
L
–10
Sample 1, B
L to
Sample 2, B
L to H
Sample 3, B
L
to H
H
0
B
L to H
–10
–20
–50 –25
0
25
50
75 100 125
–50 –25
0
25
50
75 100 125
–20
0
2
4
6
8 10 12 14 16 18 20
Ambient Temperature (˚C)
Ambient Temperature (˚C)
Supply Voltage (V)
Output Low Level Voltage – Ambient Temperature
100
90
V
CC
= 12V
I
O
= 12mA
Output “L” Level Voltage (mV)
80
70
60
50
40
30
20
10
0
–50 –25
0
25
50
75 100 125
Ambient Temperature (˚C)