HMC1052L Honeywell Microelectronics & Precision Sensors, HMC1052L Datasheet - Page 8

IC, MAGNETO RESISTIVE SENSOR, LCC-16

HMC1052L

Manufacturer Part Number
HMC1052L
Description
IC, MAGNETO RESISTIVE SENSOR, LCC-16
Manufacturer
Honeywell Microelectronics & Precision Sensors
Datasheets

Specifications of HMC1052L

Supply Voltage Range
1.8 To 20 V
Sensor Case Style
LCC
Sensitivity Range
1.2mV/V/G
No. Of Pins
16
Operating Temperature Range
-40°C To +125°C
Sensor Output
Voltage
Terminal Type
PCB
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

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HMC1051/HMC1052/HMC1053
APPLICATION NOTES
Low Cost 2-Axis Compass
Very high precision measurements can be made using the HMC105X family of sensors when interfaced with low noise
amplifiers and 12 to 16-bit Analog-to-Digital (A/D) converters. For lower resolution (3° accuracy or more) or low cost
compass applications, 8 or 10-bit A/D converters may be used with general purpose operational amplifiers. Figure 2
shows a typical 2-axis compassing application using readily available off-the-shelf components.
The basic principle of two-axis compassing is to orient the two sensor bridge elements horizontal to the ground
(perpendicular to the gravitational field) and to measure the resulting X and Y analog output voltages. With the amplified
sensor bridge voltages near-simultaneously converted (measured) to their digital equivalents, the arc-tangent Y/X can be
computed to derive the heading information relative to the X-axis sensitive direction. See the application notes on
compassing at Honeywell Magnetic Sensors website (www.magneticsensors.com) for basic principles and detailed
application information.
Set/Reset Circuit Notes
The above set/reset circuit in Figure 1using the IRF7507
dual complementary MOSFETs is shown in detail by Figure
2 in its H-bridge driven configuration. This configuration is
used primarily in battery operated applications were the
500mA nominal set/reset pulsed currents can be best
obtained under low voltage conditions.
The 200-ohm resistor trickle charges the 1uf supply
reservoir capacitor to the Vcc level, and isolates the battery
from the high current action of the capacitors and MOSFET
switches. Under conventional logic states one totem pole
switch holds one node of the 0.1uf capacitor low, while the
other switch charges Vcc into the capacitors opposite node.
At the first logic change, the capacitor exhibits almost a
twice Vcc flip of polarity, giving the series set/reset strap
load plenty of pulse current. A restoring logic state flip uses
the 0.1uf capacitors stored energy to create a second nearly
equal but opposite polarity current pulse through the
set/reset strap.
8
2.5 to 3.6v
2.5 to 3.6v
Vcc
Vcc
set/reset
set/reset
offset
offset
U1
U1
HMC1052
HMC1052
.1uf
.1uf
5.00k
5.00k
5.00k
5.00k
5.00k
5.00k
5.00k
5.00k
(2) IRF7509
(2) IRF7509
500k
500k
500k
500k
1nf
1nf
1nf
1nf
Vref/2
Vref/2
Vref/2
Vref/2
LMV358
LMV358
LMV358
LMV358
U4
U4
U5
U5
Rset/reset
Rset/reset
500k
500k
500k
500k
U2
U2
4Ω
4Ω
set/reset
set/reset
_set/reset
_set/reset
1
1
0
0
.1µf
.1µf
D
D
D
D
S
S
S
S
Vsr
Vsr
MAX1118
MAX1118
U3
U3
Vref
Vref
IRF7509(P)
IRF7509(P)
IRF7509(N)
IRF7509(N)
1µf
1µf
Two-Axis Compass
G
G
G
G
+
+
-
-
Figure 2
D
D
D
D
S
S
S
S
Vsr
Vsr
enable
enable
data_out
data_out
clk_in
clk_in
H-Bridge Driver
www.honeywell.com
IRF7509(N)
IRF7509(N)
IRF7509(P)
IRF7509(P)
G
G
G
G
Figure 3
200Ω
200Ω
set/reset
set/reset
_set/reset
_set/reset
Vcc
Vcc

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