Four New Sensing Circuits Help Solve Industrial Design Challenges


TI's innovative products offer low-power sensing solutions for temperature, ambient light, humidity, proximity, fluid levels and more



DALLAS, -- Texas Instruments (TI) (NASDAQ: TXN) today expanded its broad portfolio of industry-leading sensing integrated circuits (ICs) with four new devices that allow engineers to accurately sense key parameters in tight spaces with very low power. These new products provide solutions for temperature, humidity, ambient light and capacitive sensing in a host of industrial and enterprise applications. For information about TI's sensing portfolio, visit ti.com/sensing-pr.



Contactless, infrared temperature sensing

The TMP007 is a highly integrated, non-contact infrared (IR) temperature sensor, joining TI's family of the world's smallest thermopile sensors. The new sensor features an integrated math engine, which performs calculations on-chip for direct reading of the object's temperature, and delivers low power consumption of only 675 uJ per measurement. Measuring only 1.9 mm by 1.9 mm by 0.625 mm, the TMP007 allows designers to monitor temperature in space-constrained industrial applications, including protection relays and process control equipment, and other factory and building automation applications, as well as enterprise equipment, such as laser printers and network servers.



Integrated humidity and temperature sensor

Designers of building control equipment can implement accurate, energy-saving climate control in small spaces, while designers of home appliances and consumer goods can easily add humidity sensing capabilities to their products with the HDC1000 integrated humidity and temperature sensor. TI's humidity sensor provides high accuracy and low power in a small, dust-resistant package. The HDC1000 consumes only 1.2 uA of average current when measuring relative humidity and temperature at 11-bit resolution, once per second. This low current can extend battery life in remote applications.  The sensor's 2.0-mm by 1.6-mm wafer level chip scale package (WLCSP) simplifies board design and minimizes system size. In addition, the innovative placement of the sensing element on the bottom of the device provides resistance to dust, dirt and other environmental contaminants.



Precise ambient light detection

The OPT3001 is a precision ambient light sensor tuned to closely replicate the human eye's photopic response. With its industry-leading spectral response, the sensor can deliver greater than 99 percent IR rejection, to provide consistent light metering regardless of the light source. At 2.0 mm by 2.0 mm by 0.65 mm and supports down to 1.6 V at typical operating current of 2 uA, the ambient light sensor can be used for a variety of battery-powered applications.Additionally, the OPT3001 enables measurement over a 23-bit effective dynamic range, giving designers the high resolution needed for enterprise, lighting control and building and factory automation applications. The new ambient light sensor is compatible with TI's Sensor Hub BoosterPack.



High-performance capacitive sensing

The four-channel FDC1004 capacitance-to-digital converter combines unique features and functions with low power and 16-bit noise performance, over a range of +/-15 pF,  which makes it easy for designers to use capacitive sensing to increase the intelligence and awareness of their systems. The device can support an offset capacitance of up to 100 pF, allowing for remote sensing in harsh environments or where electronics cannot be located. It includes a strong shield driver to help minimize interference, to help focus the sensing direction and reducing the impact of temperature variations on system performance. The FDC1004 can be used in many applications like proximity wake-up sensing, material analysis and liquid level sensing. It is compatible with microcontrollers (MCUs), such as the ultra-low-power MSP430(TM) MCUs.



Availability, packaging and pricing

These four new sensing ICs are available as follows:













































Device

What it senses

Package

Device price
(1,000-unit)

Availability

EVM
Price

TMP007

Temperature

8-pin WCSP

US$1.90

Now

TMP007EVM
US$99

HDC1000

Humidity and temperature

8-pin WLCSP

US$2.50

Now

HDC1000EVM
 US$29

OPT3001

Ambient light

6-pin USON

US$0.99

Samples
Production October 1

OPT3001EVM
US$25

FDC1004

Proximity, fluid level, gesture, more

10-pin WSON

US$2.50

Now

FDC1000EVM
US$29

                                                            

Learn more about TI's entire sensing portfolio:



--  Download a sensing reference design from the TI Designs reference design library, including a wireless gas sensor and an ultrasonic sensor interface.

--  Read how TI's sensing capabilities are advancing the smart factory in a white paper.

--  Join the TI E2E(TM) Community to search for solutions, get help, share knowledge and solve problems with fellow engineers and TI experts, in forums on optical, temperature and humidity sensors and capacitive sensing.

--  Follow what TI experts have to say about sensing and other signal chain design topics on our blog: www.ti.com/analogwire-pr.



Pioneering new and better ways to address sensing design challenges and anticipating future sensor requirements, TI's history includes many industry firsts, such as the first temperature sensor IC, the first gas/chemical sensor analog front end, and the first inductance-to-digital converter.



About Texas Instruments

Texas Instruments Incorporated (TI) is a global semiconductor design and manufacturing company that develops analog ICs and embedded processors. By employing the world's brightest minds, TI creates innovations that shape the future of technology. TI is helping more than 100,000 customers transform the future, today. Learn more at www.ti.com.



Trademarks

MSP430 and TI E2E are trademarks of Texas Instruments. All other trademarks and registered trademarks belong to their respective owners.



CONTACT: Kateri Gemperle, Texas Instruments, 214-567-3671, kateri@ti.com

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