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PDF HMC5883L Data sheet ( Hoja de datos )

Número de pieza HMC5883L
Descripción 3-Axis Digital Compass IC
Fabricantes Honeywell 
Logotipo Honeywell Logotipo



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3-Axis Digital Compass IC
HMC5883L
Advanced Information
The Honeywell HMC5883L is a surface-mount, multi-chip module designed for
low-field magnetic sensing with a digital interface for applications such as low-
cost compassing and magnetometry. The HMC5883L includes our state-of-the-
art, high-resolution HMC118X series magneto-resistive sensors plus an ASIC
containing amplification, automatic degaussing strap drivers, offset cancellation,
and a 12-bit ADC that enables 1° to 2° compass heading accuracy. The I2C
serial bus allows for easy interface. The HMC5883L is a 3.0x3.0x0.9mm surface
mount 16-pin leadless chip carrier (LCC). Applications for the HMC5883L
include Mobile Phones, Netbooks, Consumer Electronics, Auto Navigation
Systems, and Personal Navigation Devices.
The HMC5883L utilizes Honeywell’s Anisotropic Magnetoresistive (AMR) technology that provides advantages over other
magnetic sensor technologies. These anisotropic, directional sensors feature precision in-axis sensitivity and linearity.
These sensors’ solid-state construction with very low cross-axis sensitivity is designed to measure both the direction and
the magnitude of Earth’s magnetic fields, from milli-gauss to 8 gauss. Honeywell’s Magnetic Sensors are among the most
sensitive and reliable low-field sensors in the industry.
FEATURES
3-Axis Magnetoresistive Sensors and
ASIC in a 3.0x3.0x0.9mm LCC Surface
Mount Package
12-Bit ADC Coupled with Low Noise
AMR Sensors Achieves 2 milli-gauss
Field Resolution in ±8 Gauss Fields
Built-In Self Test
Low Voltage Operations (2.16 to 3.6V)
and Low Power Consumption (100 μA)
Built-In Strap Drive Circuits
I2C Digital Interface
Lead Free Package Construction
Wide Magnetic Field Range (+/-8 Oe)
Software and Algorithm Support
Available
Fast 160 Hz Maximum Output Rate
BENEFITS
Small Size for Highly Integrated Products. Just Add a Micro-
Controller Interface, Plus Two External SMT Capacitors
Designed for High Volume, Cost Sensitive OEM Designs
Easy to Assemble & Compatible with High Speed SMT Assembly
Enables 1° to 2° Degree Compass Heading Accuracy
Enables Low-Cost Functionality Test after Assembly in Production
Compatible for Battery Powered Applications
Set/Reset and Offset Strap Drivers for Degaussing, Self Test, and
Offset Compensation
Popular Two-Wire Serial Data Interface for Consumer Electronics
RoHS Compliance
Sensors Can Be Used in Strong Magnetic Field Environments with a
1° to 2° Degree Compass Heading Accuracy
Compassing Heading, Hard Iron, Soft Iron, and Auto Calibration
Libraries Available
Enables Pedestrian Navigation and LBS Applications
Free Datasheet http://www.Datasheet4U.com

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HMC5883L pdf
HMC5883L
0.300
0.450
1.275
1.275
3.000
0.500 x 12
0.100 x 8
3.000
HMC5883 Land Pad Pattern
(All dimensions are in mm)
LAYOUT CONSIDERATIONS
Besides keeping all components that may contain ferrous materials (nickel, etc.) away from the sensor on both sides of
the PCB, it is also recommended that there is no conducting copper under/near the sensor in any of the PCB layers. See
recommended layout below. Notice that the one trace under the sensor in the dual supply mode is not expected to carry
active current since it is for pin 4 pull-up to VDDIO. Power and ground planes are removed under the sensor to minimize
possible source of magnetic noise. For best results, use non-ferrous materials for all exposed copper coding.
www.honeywell.com
5
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HMC5883L arduino
HMC5883L
REGISTERS
This device is controlled and configured via a number of on-chip registers, which are described in this section. In the
following descriptions, set implies a logic 1, and reset or clear implies a logic 0, unless stated otherwise.
Register List
The table below lists the registers and their access. All address locations are 8 bits.
Address Location
00
01
02
03
04
05
06
07
08
09
10
11
12
Name
Configuration Register A
Configuration Register B
Mode Register
Data Output X MSB Register
Data Output X LSB Register
Data Output Z MSB Register
Data Output Z LSB Register
Data Output Y MSB Register
Data Output Y LSB Register
Status Register
Identification Register A
Identification Register B
Identification Register C
Access
Read/Write
Read/Write
Read/Write
Read
Read
Read
Read
Read
Read
Read
Read
Read
Read
Table2: Register List
Register Access
This section describes the process of reading from and writing to this device. The devices uses an address pointer to
indicate which register location is to be read from or written to. These pointer locations are sent from the master to this
slave device and succeed the 7-bit address (0x1E) plus 1 bit read/write identifier, i.e. 0x3D for read and 0x3C for write.
To minimize the communication between the master and this device, the address pointer updated automatically without
master intervention. The register pointer will be incremented by 1 automatically after the current register has been read
successfully.
The address pointer value itself cannot be read via the I2C bus.
Any attempt to read an invalid address location returns 0’s, and any write to an invalid address location or an undefined bit
within a valid address location is ignored by this device.
To move the address pointer to a random register location, first issue a “write” to that register location with no data byte
following the commend. For example, to move the address pointer to register 10, send 0x3C 0x0A.
www.honeywell.com
11
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