MLX90316KGO-BCG Melexis Inc, MLX90316KGO-BCG Datasheet - Page 10

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MLX90316KGO-BCG

Manufacturer Part Number
MLX90316KGO-BCG
Description
IC ROTARY POS. SENSOR 16-TSSOP
Manufacturer
Melexis Inc
Series
Triaxis™r
Type
Linear - Programmabler
Datasheet

Specifications of MLX90316KGO-BCG

Sensing Range
±700mT
Voltage - Supply
4.5 V ~ 5.5 V
Current - Supply
11mA
Current - Output (max)
20mA
Output Type
Analog, PWM, SPI
Operating Temperature
-40°C ~ 125°C
Package / Case
16-TSSOP
For Use With
PTC-04-90316 - PROGRAMMER FOR HALL EFFECT 90316PTC-04-DB-90316 - BOARD DAUGHT FOR MELEXIS PTCEVB90316-GO - BOARD EVAL FOR MLX90316-GO
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Features
-
Other names
MLX90316KGO
MLX90316KGO

Available stocks

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Part Number:
MLX90316KGO-BCG-000-RE
0
Those Hall signals are processed through a fully differential analog chain featuring the classic offset
cancellation technique (Hall plate quadrature spinning and chopper-stabilized amplifier).
The conditioned analog signals are converted through an ADC (configurable − 14 or 15 bits) and provided
to a DSP block for further processing. The DSP stage is based on a 16 bit RISC micro-controller whose
primary function is the extraction of the angular position from the two raw signals (after so-called front-end
compensation steps) through the following operation:
The DSP functionality is governed by the micro-code (firmware − F/W) of the micro-controller which is
stored into the ROM (mask programmable). In addition to the ″ATAN″ function, the F/W controls the whole
analog chain, the output transfer characteristic, the output protocol, the programming/calibration and also
the self-diagnostic modes.
In the MLX90316, the ″ATAN″ function is computed via a look-up table (i.e. it is not obtained through a
CoRDiC algorithm).
Due to the fact that the ″ATAN″ operation is performed on the ratio ″V
intrinsically self-compensated vs. flux density variations (due to airgap change, thermal or ageing effects)
affecting both signals. This feature allows therefore an improved thermal accuracy vs. rotary position
sensor based on conventional linear Hall sensors.
In addition to the improved thermal accuracy, the realized rotary position sensor is capable of measuring a
complete revolution (360 Degrees) and the linearity performances are excellent taking into account typical
manufacturing tolerances (e.g. relative placement between the Hall IC and the magnet).
Once the angular information is computed (over 360 degrees), it is further conditioned (mapped) vs. the
target transfer characteristic and it is provided at the output(s) as:
For instance, the analog output can be programmed for offset, gain and clamping to meet any rotary
position sensor output transfer characteristic:
where Voffset, Gain, ClampLo and ClampHi are the main adjustable parameters for the end-user.
The linear part of the transfer curve can be adjusted through either a 2 point or a 3 point calibration
depending on the linearity requirement.
A digital output is also available and used as a programmable angular switch.
The calibration parameters are stored in EEPROM featuring a Hamming Error Correction Coding (ECC).
The programming steps do not require any dedicated pins. The operation is done using the supply and
output nodes of the IC. The programming of the MLX90316 is handled at both engineering lab and
production line levels by the Melexis Programming Unit PTC-04 with the dedicated MLX90316
daughterboard and software tools (DLL − User Interface).
3901090316
Rev. 005
an analog output level through a 12 bit DAC followed by a buffer
a digital PWM signal with 12 bit depth (programmable frequency 100 Hz … 1 kHz)
a digital Serial Protocol (SP − 14 bits computed angular information available)
Vout(α) = ClampLo
Vout(α) = Voffset + Gain × α
Vout(α) = ClampHi
α
=
ATAN
Page 10 of 42
⎜ ⎜
V
V
Y
X
⎟ ⎟
for α ≤ αmin
for αmin ≤ α ≤ αmax
for α ≥ αmax
Rotary Position Sensor IC
Y
/V
X
″, the angular information is
MLX90316
Data Sheet
May. 09

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