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PDF TMG3993 Data sheet ( Hoja de datos )

Número de pieza TMG3993
Descripción Gesture / Color / ALS and Proximity Sensor Module
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General Description
ams Datasheet
[v1-05] 2014-Oct-24
TMG3993
Gesture, Color, ALS, and Proximity
Sensor Module with mobeam™
Barcode Emulation
The device features advanced Gesture detection, Proximity
detection, Digital Ambient Light Sense (ALS), Color Sense
(RGBC), and optical pattern generation/transmission for
broadcast. The slim modular package,
2.36mm × 3.95mm × 1.36mm, incorporates an IR LED and
factory calibrated LED driver.
Gesture detection utilizes four directional photodiodes to
sense reflected IR energy (sourced by the integrated LED) to
convert physical motion information (i.e. velocity, direction and
distance) to a digital information. The architecture of the
gesture engine features automatic activation (based on
Proximity engine results), ambient light subtraction, cross-talk
cancelation, dual 8-bit data converters, power saving
inter-conversion delay, 32-dataset FIFO, and interrupt driven
I2C communication. The gesture engine accommodates a wide
range of mobile device gesturing requirements: simple
North-South-East-West gestures or more complex gestures can
be accurately sensed. Power consumption and noise are
minimized with adjustable IR LED timing.
The Proximity detection feature provides object detection
(E.g. mobile device screen to user’s ear) by photodiode
detection of reflected IR energy (sourced by the integrated
LED). Detect/release events are interrupt driven, and occur
whenever proximity result crosses upper and/or lower
threshold settings. The proximity engine features offset
adjustment registers to compensate for system offset caused
by unwanted IR energy reflections appearing at the sensor. The
IR LED intensity is factory trimmed to eliminate the need for
end-equipment calibration due to component variations.
Proximity results are further improved by automatic ambient
light subtraction.
The Color and ALS detection feature provides red, green, blue
and clear light intensity data. Each of the R, G, B, C channels
have a UV and IR blocking filter and a dedicated data converter
producing16-bit data simultaneously. This architecture allows
applications to accurately measure ambient light and sense
color which enables devices to calculate illuminance and color
temperature, control display backlight, and chromaticity.
mobeam™ barcode emulation is achieved using the IRBeam
optical pattern generation/transmission feature. IRBeam is
primarily intended for 1-D barcode transmission over IR to
point-of-sale (POS) terminals. The IRBeam engine features a
1024-bit RAM for pattern storage and specialized control logic
that is tailored to repetitively broadcast a barcode pattern using
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TMG3993 pdf
TMG3993 − Absolute Maximum Ratings
Absolute Maximum Ratings
Stresses beyond those listed under “Absolute Maximum Rating”
may cause permanent damage to the device. These are stress
ratings only. Functional operation of the device at these or any
other conditions beyond those indicated under Recommended
Operating Conditions is not implied. Exposure to absolute
maximum rating conditions for extended periods may affect
device reliability.
Figure 5:
Absolute Maximum Ratings (all voltages with respect to GND)
Symbol
Parameter
Min Max Units
Comments
VDD
LEDA
Supply voltage
Supply voltage
Digital I/O terminal voltage - 0.5
3.8
4.8
4.4
3.8
V All voltages are with respect to GND
V TA = 0 to 70ºC
V TA = -30 to 85ºC
V
LDR Max voltage
(SDA, INT) Output terminal current
4.4 V TA = -30 to 85ºC (1)
4.8 V TA = 0 to 70ºC (1)
3.8 V TA = -30 to 85ºC (2)
- 1 20 mA
Tstg Storage temperature range - 40 85 ºC
ESD tolerance, human
body model
-2000 2000 V
Note(s) and/or Footnote(s):
1. Measured with LDR = OFF.
2. LDR = ON.
ams Datasheet
[v1-05] 2014-Oct-24
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TMG3993 arduino
TMG3993 − Electrical Characteristics
Parameter
Proximity Offset
(no target response) (5)
Proximity Response (6)
Conditions
Min Typ Max
PGAIN = 2 (4X)
LDRIVE = 0
LEDBOOST = 1
PPLEN = 2
PPULSE= 2 (3 pulses)
100mm X 100mm 90%
reflective Kodak Grey
Card at 100mm
4
PGAIN = 2 (4X)
LDRIVE = 0
LEDBOOST = 1
PPLEN = 2
PPULSE= 2 (3 pulses)
106 132 158
100mm X 100mm 90%
reflective Kodak Grey
Card at 100mm distance
Units
counts
Counts
Note(s) and/or Footnote(s):
1. This parameter ensured by design and characterization and is not 100% tested.
2. Value may be as much as 1.36μs longer than specified.
3. Value is factory-adjusted to meet the Proximity response specification. Considerable variation (relative to the typical value) is possible
after adjustment. LEDBOOST increases current setting (as defined by LDRIVE or GLDRIVE). For example, if LDRIVE = 0 and
LEDBOOST = 300%, LDR current is 300mA.
4. LEDBOOST multiplies LDR current by the percentage selected.
5. Proximity offset value varies with power supply characteristics and system noise.
6. Correlated result by characterization. Refer to Figure 25 and Figure 26 for typical operating settings.
Figure 13:
Proximity and Gesture Test Circuit
22
VDD
1µF
GND
1
3
TMG399x
4 LEDA
LEDK
5
6 LDR
1µF 22µF
Note(s) and/or Footnote(s):
1. The circuit shown above is used during evaluation of the device and during characterization data collection.
ams Datasheet
[v1-05] 2014-Oct-24
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