HMC1512 Honeywell Microelectronics & Precision Sensors, HMC1512 Datasheet - Page 4

SENSOR DISPLACEMENT ROTARY

HMC1512

Manufacturer Part Number
HMC1512
Description
SENSOR DISPLACEMENT ROTARY
Manufacturer
Honeywell Microelectronics & Precision Sensors
Datasheet

Specifications of HMC1512

Position - Sensing
±90°
Sensor Type
Angular, Linear - Magnetoresistive
Voltage - Supply
1 V ~ 25 V
Resistance (ohms)
2.1K
Operating Temperature
-40°C ~ 125°C
Sensitivity Range
2.1mV/°
Sensor Output
Voltage
Terminal Type
PCB Thru Hole
Output Type
Differential
Supply Voltage
5V
Sensor Terminals
SMD
Leaded Process Compatible
No
Supply Current
1mA
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
342-1010-2
342-1010-5
342-1010-5

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HMC1501/1512
MAGNETIC MOUNTING CONSIDERATIONS
The HMC1501 has an internal sensor die placed toward the forward edge, between pins 1 and 8, to make linear
translation applications more convenient. The figure below indicates this location.
The HMC1512 has two sensor bridges optimized for rotary translation applications. Thus the die is centered in all three
dimensions within the SOIC-8 package. The figure below indicates location.
BASIC DEVICE OPERATION
The Honeywell HMC15xx magnetoresistive sensors are Wheatstone bridges to measure magnetic field direction. The
bridge elements change their resistance when a magnetic field is applied across the silicon die with the thin films of
magneto-resistive ferrous material forming the resistive elements. The magnetoresistance is a function of cos2
is the angle between the applied magnetic field (M) and the current flow direction in the thin film.
When the applied magnetic field becomes moderate (50 Oerstad or larger), the magnetization of the thin films align in the
same direction as the applied field; and becomes the saturation mode. In this mode,
of the applied field and the bridge current flow, and the magnetoresistive sensor is only sensitive to the direction of the
applied field (not amplitude).
The sensor is in the form of a Wheatstone bridge (see figures below). The resistance (R) of all four bridge legs is the
same. The bridge power supply Vb or Vbridge, causes current to flow through the bridge elements as indicated in the
figures.
4
0.029”
0.029”
max
max
0.003”
0.003”
GND1
GND1
VO1-
VO1-
GND2
GND2
VO2-
VO2-
VO2+
VO2+
VB2
VB2
VO1+
VO1+
VB1
VB1
is the angle between the direction
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where

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