TE CONNECTIVITY SENSORS HPP845E031R4
Specifications
Manufacturer
TE Connectivity Sensors
Manufacturers Part #
HPP845E031R4
Industry Aliases
HPP845E031R4
Sub-Category
Temperature and Humidity Sensors
Brand
MEAS
Packaging
Tape and Reel
Factory Pack Quantity
400
Datasheet

DDEController?Action=srchrtrv&DocNm=HPC199_6&DocType=Data+Sheet&DocLang=English&DocFormat=pdf&PartCntxt=CAT-HSC0004.pdf
1456 KiB
Extracted Text
HTU21D(F) RH/T SENSOR IC
Digital Relative Humidity sensor with
Temperature output
• DFN type package
• Relative Humidity and Temperature Digital Output, I²C interface
• Fully calibrated
• Lead free sensor, reflow solderable
• Low power consumption
• Fast response time
The HTU21D(F) is a new digital humidity sensor with temperature output
by MEAS. Setting new standards in terms of size and intelligence, it is
embedded in a reflow solderable Dual Flat No leads (DFN) package with
a small 3 x 3 x 0.9 mm footprint. This sensor provides calibrated,
linearized signals in digital, I²C format.
FEATURES
HTU21D(F) digital humidity sensors are dedicated humidity and
temperature plug and play transducers for OEM applications where
• Full interchangeability with no calibration
reliable and accurate measurements are needed. Direct interface with a
required in standard conditions
micro-controller is made possible with the module for humidity and
• Instantaneous desaturation after long periods in
temperature digital outputs. These low power sensors are designed for
saturation phase
high volume and cost sensitive applications with tight space constraints.
• Compatible with automatized assembly
Every sensor is individually calibrated and tested. Lot identification is
processes, including Pb free and reflow
printed on the sensor and an electronic identification code is stored on
processes
the chip – which can be read out by command. Low battery can be
• Individual marking for compliance to stringent
detected and a checksum improves communication reliability. The
traceability requirements
resolution of these digital humidity sensors can be changed by command
(8/12bit up to 12/14bit for RH/T).
APPLICATIONS
With MEAS’ improvements and miniaturization of this sensor, the
• Home Appliance performance-to-price ratio has been improved – and eventually, any
device should benefit from its cutting-edge energy saving operation
• Medical
mode.
• Printers
Optional PTFE filter/membrane (F) protects HTU21D digital humidity
• Humidifier
sensors against dust and water immersion, as well as against
contamination by particles. PTFE filter/membranes preserve a high
response time. The white PTFE filter/membrane is directly stuck on the
sensor housing. This membrane is allowing an IP67 compliant
protection.
TE CONNECTIVITY SENSORS /// HTU21D(F) RH/T SENSOR IC 05/2017
Page 1
HTU21D(F) RH/T SENSOR IC
Digital Relative Humidity sensor with Temperature output
NOMENCLATURE
HTU2XY(F)
With embedded PTFE filter: HTU2XYF
Output Sensor:
Y = D/A for Digital, I2C protocol
= P for PWM interface, analog output
Humidity accuracy :
X = 0: +/-5%RH max tolerance @55%RH
= 1: +/-3%RH max tolerance @55%RH
HTU2XY Modules HTU2XYF Modules
PERFORMANCE SPECS
Maximum Ratings
Ratings Symbol Value Unit
Storage Temperature T -40 to 125 °C
stg
Supply Voltage (Peak) Vcc 3.8V Vdc
Humidity Operating Range RH 0 to 100 %RH
Temperature Operating Range Ta -40 to +125 °C
-0.3 to 3.6V V
VDD to GND
-0.3 to VDD+0.3 V
Digital I/O pins (DATA/SCK) to VDD
-10 to +10 mA
Input current on any pin
Graph above show peak conditions: less than 10% of the operating life
Exposure to absolute maximum rating conditions for extended periods may affect the sensor reliability.
TE CONNECTIVITY SENSORS /// HTU21D(F) RH/T SENSOR IC 05/2017 Page 2
HTU21D(F) RH/T SENSOR IC
Digital Relative Humidity sensor with Temperature output
ELECTRICAL AND GENERAL ITEMS
(@T = 25°C, @Vdd = 3V)
Characteristics Symbol Min Typ Max Unit
1.5 3.0 3.6
Voltage Supply VDD V
0.02 0.14
Current Sleep mode µA
idd
(1)
300 450 500
consumption Measuring µA
0.06 0.5
Sleep mode µW
Power Dissipation
(2)
2.7
Average 8bit µW
Communication digital 2-wire interface, I²C protocol
Heater VDD=3V 5.5mW/ΔT=+0.5-1.5°C
Storage -40°C/125°C
(1)
Conditions: V = 3V, SCK= 400kHz at 25°C
dd
(2)
Conditions: V = 3V, SCK= 400kHz, Temp<60°C, duty cycle <10%
dd
SENSOR PERFORMANCE
Relative Humidity
(@T = 25°C, @Vdd = 3V)
Characteristics Symbol Min Typ Max Unit
12 bits 0.04 %RH
Resolution
8 bits 0.7 %RH
Humidity Operating Range RH 0 100 %RH
Relative Humidity Accuracy typ ±2 %RH
@25°C (20%RH to 80%RH)
max See graph 1 %RH
Replacement fully interchangeable
Temperature coefficient (from 0°C to 80°C) Tcc -0.15 %RH/°C
Humidity Hysteresis ±1 %RH
12 bits 14 16 ms
11 bits 7 8 ms
(1)
Measuring Time
10 bits 4 5 ms
8 bits 2 3 ms
PSRR ±10 LSB
Recovery time after 150 hours of condensation t 10 s
Long term drift 0.5 %RH/yr
(2)
Response Time (at 63% of signal) from 33 to 75%RH τRH 5 10 s
(1)
Typical values are recommended for calculating energy consumption while maximum values shall be applied for calculating
waiting times in communication.
(2)
At 1m/s air flow
TE CONNECTIVITY SENSORS /// HTU21D(F) RH/T SENSOR IC 05/2017 Page 3
HTU21D(F) RH/T SENSOR IC
Digital Relative Humidity sensor with Temperature output
GRAPH 1 : RELATIVE HUMIDITY ERROR BUDGET CONDITIONS AT 25°C
10
Maximal Tolerance
9
Typical Tolerance
8
7
6
5
4
3
2
1
0
0 10 20 30 40 50 60 70 80 90 100
Relative Humidity (%RH)
▪ HTU21D(F) sensors are specified for optimum accuracy measurements within 5 to 95%RH.
▪ Operation out of this range (< 5% or > 95% RH, including condensation) is however possible.
TEMPERATURE COEFFICIENT COMPENSATION EQUATION
For other temperatures than 25°C, the following temperature coefficient compensation equation can be used and will
guarantee Relative Humidity accuracy given in table1, from 0°C to 80°C:
RH RH f (T )
compensatedT actualT
RHactualT Ambient humidity in %RH, computed from HTU21D(F) sensor
Tactual Humidity cell temperature in °C, computed from HTU21D(F) sensor
f (T )
RH correction (in %RH) is a linear function of the temperature T (°C) as described below :
f (T )0.15 * (25 T )
TE CONNECTIVITY SENSORS /// HTU21D(F) RH/T SENSOR IC 05/2017 Page 4
Delta Relative Humidity (%RH)
HTU21D(F) RH/T SENSOR IC
Digital Relative Humidity sensor with Temperature output
TEMPERATURE
Characteristics Symbol Min Typ Max Unit
14 bit 0.01 °C
Resolution
12 bit 0.04 °C
Temperature Operating Range T -40 +125 °C
typ ±0.3 °C
Temperature Accuracy @25°C
max See graph 2 °C
Replacement fully interchangeable
14 bit 44 50 ms
13 bit 22 25 ms
(1)
Measuring time
12 bit 11 13 ms
11 bit 6 7 ms
PSSR ±25 LSB
Long term drift 0.04 °C/yr
(2)
Response Time (at 63% of signal) from 15°C to 45°C τT 10 s
(1)
Typical values are recommended for calculating energy consumption while maximum values shall be applied for calculating
waiting times in communication.
(2)
At 1m/s air flow
GRAPH 2 : TEMPERATURE ERROR BUDGET
Maximal Tolerance
Typical Tolerance
2
1.8
1.6
1.4
1.2
1
0.8
0.6
0.4
0.2
0
-40 -20 0 20 40 60 80 100 120
Temperature (°C)
TE CONNECTIVITY SENSORS /// HTU21D(F) RH/T SENSOR IC 05/2017 Page 5
Delta Temperature (°C)
HTU21D(F) RH/T SENSOR IC
Digital Relative Humidity sensor with Temperature output
USER GUIDE HTU21D(F)
Application Information
• Soldering instructions: Lead free reflow soldering recommended process
For soldering HTU21D (F) sensor standard reflow soldering ovens may be used.
HTU21D(F) sensor as a humidity sensitive component (as classified by IPC/JEDEC J-STD-020 or equivalent documented
procedure with peak temperature at 260°C during up to 30 seconds for Pb-free assembly in IR/convection reflow ovens) must
be handled in a manner consistent with IPC/JEDEC J-STD-033 or an equivalent documented procedure. IPC-1601 provides
humidity control, handling and packing of PCBs.
The HTU21D (F) sensor is qualified to withstand one lead free reflow soldering recommended process profile below according
to JEDEC standard.
Mount parts within 24 hours after printing solder paste to avoid potential dry up.
For manual soldering, contact time must be limited to 5 seconds at up to 350°C.
For the design of the HTU21D(F) sensor footprint, it is recommended to use dimensions according to figure below.
Recommended footprint for HTU21D(F) sensors. Values in mm.
No specific conditioning of devices is necessary after soldering process, either manual or reflow soldering. Optimized
performance in case of metrological measurements can be reached with stabilization of devices (24 hours at 25°C / 55%RH).
Similar process is advised after exposure of the devices to extreme relative humidity conditions.
TE CONNECTIVITY SENSORS /// HTU21D(F) RH/T SENSOR IC 05/2017 Page 6
HTU21D(F) RH/T SENSOR IC
Digital Relative Humidity sensor with Temperature output
In no case, neither after manual nor reflow soldering, a board wash shall be applied. Therefore, it is strongly recommended to
use a “no-clean” solder paste. In case of applications with exposure of the sensor to corrosive gases or condensed water (i.e.
environments with high relative humidity) the soldering pads shall be sealed (e.g. conformal coating) to prevent loose contacts
or short cuts.
• Storage Conditions and Handling Instructions
It is recommended to store HTU21D(F) sensor in its original packaging at following conditions: Temperature shall be in the
range of -40°C – 125°C.
• Temperature Effects
Relative humidity reading strongly depends on temperature. Therefore, it is essential to
keep humidity sensors at the same temperature as the air of which the relative humidity is
to be measured.
In case of testing or qualification the reference sensor and test sensor must show equal
temperature to allow for comparing humidity readings.
The HTU21D(F) sensor should be mounted in a way that prevents heat transfer from
electronic sensor or that keeps it as low as possible. Advice can be ventilation, reduction of
copper layers between the HTU21D(F) sensor and the rest of the PCB or milling a slit into
the PCB around the sensor (1mm minimum width).
Example of HTU21D(F) sensor mounting
with slits mills to minimize heat transfer
• Materials Used for Sealing / Mounting
For sealing and gluing (use sparingly), use high filled epoxy for electronic packaging and silicone. For any specific material
please request to humidity.application@meas-spec.com.
Window must remain uncovered.
• Wiring Considerations and Signal Integrity
Carrying the SCK and DATA signal parallel and in close proximity (e.g. in wires) for more than 10 cm may result in cross talk
and loss of communication.
This may be resolved by routing VDD and/or GND between the two data signals and/or using shielded cables. Furthermore,
slowing down SCK frequency will possibly improve signal integrity.
Power supply pins (VDD, GND) must be bypassed with a 100nF capacitor if wires are used. Capacitor should be placed as
close as possible to the sensor.
• ESD (ElectroStatic Discharge)
ESD immunity is qualified according to:
▪ JEDEC JESD22-A114 method (Human Body Model at ±4kV) for pads & open window
▪ JEDEC JESD22-A115 method (Machine Model ±200V)
▪ ESDA ESD-STM5.3.1-1999 and AEC-Q100-011 (charged device model, 750V corner pins, 500V other pins)
Latch-up immunity is provided at a force current of ±100mA with Tamb=25°C according to JEDEC JESD78. For exposure
beyond named limits the sensor need additional protection circuit.
TE CONNECTIVITY SENSORS /// HTU21D(F) RH/T SENSOR IC 05/2017 Page 7
HTU21D(F) RH/T SENSOR IC
Digital Relative Humidity sensor with Temperature output
INTERFACE SPECIFICATION
N° Function Comment
1 DATA Data bit-stream
2 GND Ground
3 NC Must be left unconnected
4 NC Must be left unconnected
5 VDD Supply Voltage
6 SCK Selector for RH or Temp
Ground or unconnected
PAD
Typical application circuit, including pull-up resistor Rp and decoupling of VDD and GND by a capacitor.
• Power Pins (VDD, GND)
The supply voltage of HTU21D(F) sensors must be in the range of 1.5VDC - 3.6VDC. Recommended supply voltage is 3VDC
(regulated).
However the typical application circuit includes a pull-up resistor R on data wire and a 100nF decoupling capacitor between
VDD and GND, placed as close as possible to the sensor.
• Serial clock input (SCK)
SCK is used to synchronize the communication between microcontroller and HTU21D(F) sensor. Since the interface consists
of fully static logic there is no minimum SCK frequency.
• Serial data (DATA)The DATA pin is used to transfer data in and out of the device. For sending a command to the
HTU21D(F) sensor, DATA is valid on the rising edge of SCK and must remain stable while SCK is high. After the
falling edge of SCK, the DATA value may be changed. For safe communication DATA shall be valid tSU and tHD
before the rising and after the falling edge of SCK, respectively. For reading data from the HTU21D(F) sensor, DATA
is valid tVD after SCK has gone low and remains valid until the next falling edge of SCK.
An external pull-up resistor (e.g. 10kΩ) on SCK is required to pull the signal high only for open collector or open drain
technology microcontrollers. In most of the cases, pull-up resistors are internally included in I/O circuits of microcontrollers.
TE CONNECTIVITY SENSORS /// HTU21D(F) RH/T SENSOR IC 05/2017 Page 8
HTU21D(F) RH/T SENSOR IC
Digital Relative Humidity sensor with Temperature output
ELECTRICAL CHARACTERISTICS
• Input/output DC characteristics
(VDD=3V, Temperature=25°C unless otherwise noted)
Characteristics Symbol Min Typ Max Unit
Low level output VDD=3V
VOL 0 - 0.4 V
voltage -4mA
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