RD4247MAG3110 Freescale Semiconductor, RD4247MAG3110 Datasheet

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RD4247MAG3110

Manufacturer Part Number
RD4247MAG3110
Description
DEV KIT MAG3110 LFSTBUSB
Manufacturer
Freescale Semiconductor
Series
-r
Datasheets

Specifications of RD4247MAG3110

Sensor Type
Accelerometer, 3 Axis
Sensing Range
±10g
Interface
I²C
Sensitivity
1mg/bit
Voltage - Supply
1.95 V ~ 3.6 V
Embedded
No
Utilized Ic / Part
MAG3110
Features
LFSTBUSB For Communication To PC, MAG3110FC & MMA8451Q For System Calibration
Peak Reflow Compatible (260 C)
Yes
Rohs Compliant
Yes
Application Sub Type
Magnetic Sensor
Lead Free Status / Rohs Status
Lead free / RoHS Compliant

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Part Number
Manufacturer
Quantity
Price
Part Number:
RD4247MAG3110
Manufacturer:
FSL
Quantity:
18
Freescale Semiconductor
Data Sheet: Advance Information
An Energy Efficient Solution by Freescale
© Freescale Semiconductor, Inc., 2011. All rights reserved.
3-Axis,
orientation independent accurate compass heading information. It features a
standard I
Rate (ODR) up to 80 Hz; these output data rates correspond to sample intervals
from 12 ms to several seconds.
operate over the extended temperature range of -40°C to +85°C.
Features
Applications
This document contains information on a new product.
Specifications and information herein are subject to change without notice.
Freescale’s MAG3110 is a small, low-power, digital 3-axis magnetometer.
The device can be used in conjunction with a 3-axis accelerometer to produce
The MAG3110 is capable of measuring magnetic fields with an Output Data
The MAG3110 is available in a plastic DFN package and it is guaranteed to
1.95V to 3.6V Supply Voltage (VDD)
1.62V to VDD IO Voltage (VDDIO)
Ultra Small 2 mm x 2 mm x 0.85 mm, 0.4 mm Pitch, 10 Pin Package
Full Scale Range ±1000 μT
Sensitivity of 0.10 μT
Noise down to 0.25 μT rms
Output Data Rates (ODR) up to 80 Hz
I
7-bit I
Sampled Low Power Mode
RoHS compliant
Electronic Compass
Dead-reckoning assistance for GPS backup
Location-based Services
2
C digital output interface (operates up to 400 kHz Fast Mode)
MAG3110FCR1
MAG3110FCR2
2
Part Number
2
C address = 0x0E
C serial interface output and smart embedded functions.
Digital Magnetometer
Temperature Range
-40°C to +85°C
-40°C to +85°C
ORDERING INFORMATION
Package Description
DFN-10
DFN-10
Cap-R
Cap-A
GND
VDD
MAG3110: 3-AXIS DIGITAL
NC
Document Number: MAG3110
2 mm x 2 mm x 0.85 mm
Top and Bottom View
MAGNETOMETER
MAG3110
1
3
4
2
5
Pin Connections
CASE 2154-01
10 PIN DFN
MAG3110
Top View
Tape and Reel (1000)
Tape and Reel (4000)
Shipping
Rev 5, 05/2011
10
9
8
7
6
GND
INT1
VDDIO
SCL
SDA

Related parts for RD4247MAG3110

RD4247MAG3110 Summary of contents

Page 1

... Part Number Temperature Range MAG3110FCR1 MAG3110FCR2 This document contains information on a new product. Specifications and information herein are subject to change without notice. © Freescale Semiconductor, Inc., 2011. All rights reserved. ORDERING INFORMATION Package Description -40°C to +85°C DFN-10 -40°C to +85°C ...

Page 2

... Y-axis Z-axis 1.2 Pin Description Cap VDD 2 MAG3110 NC 3 Cap GND (TOP VIEW) Figure 2. Pin Connections Sensors Freescale Semiconductor MUX Clock Oscillator Trim Logic Figure 1. Block Diagram GND INT1 9 VDDIO 8 SCL 7 SDA 6 Figure 3. Measurement Coordinate System SDA SCL Digital Signal ADC ...

Page 3

... SCL and SDA will clamp any logic signals with their internal ESD protection diodes. 100 nF VDD 1 μF 100 nF 100 nF MAG3110 3 Function C Serial Data (Write = 0x1C; Read = 0x1D) C Serial Clock MAG3110 8 3 (Top View Figure 4. Electrical Connection INT1 VDDIO 100 nF 4.7K 4.7K SCL SDA Sensors Freescale Semiconductor ...

Page 4

... Charge Device Model Latch-up Current 85°C This device is sensitive to mechanical shock. Improper handling can cause permanent damage of the part or cause the part to otherwise fail. This device is sensitive to ESD, improper handling can cause permanent damage to the part. Sensors Freescale Semiconductor Test Conditions ( μ ...

Page 5

... VOL I = 500 µA O VOLS ODR Min Typ Max Unit 1.95 2.4 3.6 1.62 VDD 900 550 275 137.5 68.8 34.4 17.2 8.6 2 0.3* VDDIO 0.1* VDDIO 0.1* VDDIO 0.8*ODR ODR 1.2 *ODR ODR -40 +85 Sensors Freescale Semiconductor V V µA µ °C ...

Page 6

... This allows series protection resistors to be connected in between the SDA and the SCL pins and the SDA/SCL bus lines without exceeding the maximum specified 10.In Fast mode Plus, fall time is specified the same for both output stage and bus timing. If series resistors are used, designers should allow for this when considering bus timing. Sensors Freescale Semiconductor Symbol Min f SCL t 1.3 ...

Page 7

... C clock rates can be well in excess of a few megahertz. Function Description Only POR and digital blocks are enabled. Analog subsystem is disabled. All blocks are enabled (POR, Digital, Analog bus clock operating frequencies. C, bus capacitance will need to be kept low, Sensors Freescale Semiconductor 2 C ...

Page 8

... MAG3110 device does clock stretching. A data transfer is always terminated by a STOP. 2 The MAG3110 I C 7-bit device address is 0x0E write bit is set in the lowest bit position. The I Sensors Freescale Semiconductor 2 C communications bus. The MAG3110 also has an interrupt signal indicating that new Pin Name Pin Description ...

Page 9

... The ASIC shall continue current measurement at fastest applicable ODR for programmed OSR. The ASIC shall return to programmed ODR after completing the triggered measurement. IIC — STOP IIC Slave ADDR Data0* Data1 — (R/W bit = 1) STOP 2 C bus. Auto-increment 2 C data registers and re- Sensors Freescale Semiconductor IIC ...

Page 10

... Register contents are preserved when transitioning from “ACTIVE” to “STANDBY” mode. 3. Modification of this register’s contents can only occur when device is “STANDBY” mode, except the TM and AC bit fields in CTRL_REG1 . register Sensors Freescale Semiconductor Auto-Increment Default Value (1) Address (Fast Read) ...

Page 11

... YDR is set to 1 whenever new Y-axis data acquisition is completed. YDR is cleared any time OUT_Y_MSB register is read. XDR is set to 1 whenever new X-axis data acquisition is completed. XDR is cleared any time OUT_X_MSB register is read. MAG3110 11 Bit 4 Bit 3 Bit 2 XOW ZYXDR ZDR Bit 1 Bit 0 YDR XDR Sensors Freescale Semiconductor ...

Page 12

... YD7 YD6 YD5 Table 16. OUT_Z_MSB Register Bit 7 Bit 6 Bit 5 ZD15 ZD14 ZD13 Table 17. OUT_Z_LSB Register Bit 7 Bit 6 Bit 5 ZD6 ZD6 ZD5 Sensors Freescale Semiconductor Bit 4 Bit 3 Bit 2 XD12 XD11 XD10 Bit 4 Bit 3 Bit 2 XD4 XD3 XD2 Bit 4 Bit 3 Bit 2 YD12 YD11 ...

Page 13

... Bit 4 Bit 3 YD4 YD3 YD2 Bit 2 Bit 1 Bit Bit 2 Bit 1 Bit 0 0 SYSMOD1 SYSMOD0 section 5.5.2) to Bit 2 Bit 1 Bit 0 XD9 XD8 XD7 Bit 2 Bit 1 Bit 0 XD1 XD0 0 Bit 2 Bit 1 Bit 0 YD9 YD8 YD7 Bit 2 Bit 1 Bit 0 YD1 YD0 0 Sensors Freescale Semiconductor ...

Page 14

... In STANDBY mode triggered measurement will occur immediately and part will return to STANDBY mode as soon as the measurement is complete. Operating mode selection. Note: see 0: STANDBY mode ACTIVE mode. ACTIVE mode will make periodic measurements based on values programmed in the Data Rate (DR) and Over Sampling Ratio bits (OS). Sensors Freescale Semiconductor Bit 4 Bit 3 ZD11 ZD10 Bit 4 Bit 3 ZD3 ZD2 ...

Page 15

... Sensors Freescale Semiconductor ...

Page 16

... When asserted, initiates a magnetic sensor reset cycle that will restore correct operation after exposure to an excessive magnetic field which exceeds the Full Scale Range (see (see Table 3). When the cycle is finished, value returns to 0. Sensors Freescale Semiconductor Bit 5 Bit 4 Bit 3 RAW Mag_RST — ...

Page 17

... The magnitude of the geomagnetic field varies from 25 μT in South America to about 60 μT over Northern China. The horizontal component of the field varies from zero at the magnetic poles to 40 μT. These web sites have further information: MAG3110 17 http://wdc.kugi.kyoto-u.ac.jp/igrf/ http://geomag.usgs.gov Sensors Freescale Semiconductor ...

Page 18

... The placement of MAG3110 on the application PCB should be done based on the guidelines given in AN4247, “PCB Layout Guidelines and Recommendations” to minimize magnetic interference to the MAG3110 from other components and ensure that the MAG3110 output does not saturate in fields above 1000 μT. Sensors Freescale Semiconductor Geomagnetic Field MAG3110 Full Scale Sensitivity μ ...

Page 19

... Please see Freescale application note AN1902 for additional information on guidelines for QFN and DFN printed circuit board design and assembly. Footprint Compiles with IPC-7351A Footprint Tolerance: 0.02 mm Solder Paste Stencil: 4 mil thickness, type 3 paste is recommended. MAG3110 19 1.82 mm 0.40 mm 0.80 mm Figure 7. PCB Footprint Dimensions 0.22 mm Freescale Semiconductor Sensors ...

Page 20

... Sensors Freescale Semiconductor PACKAGE DIMENSIONS CASE 2154-01 ISSUE O 10 PIN DFN MAG3110 20 ...

Page 21

... MAG3110 21 PACKAGE DIMENSIONS CASE 2154-01 ISSUE O 10 PIN DFN Sensors Freescale Semiconductor ...

Page 22

... Sensors Freescale Semiconductor PACKAGE DIMENSIONS CASE 2154-01 ISSUE O 10 PIN DFN MAG3110 22 ...

Page 23

... Freescale Semiconductor makes no warranty, representation or guarantee regarding the suitability of its products for any particular purpose, nor does Freescale Semiconductor assume any liability arising out of the application or use of any product or circuit, and specifically disclaims any and all liability, including without limitation consequential or incidental damages. “ ...

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