AFE4462YBGR

Texas Instruments
595-AFE4462YBGR
AFE4462YBGR

Mfr.:

Paglalarawan:
Analog Front End - AFE Ultra-small integra ted AFE for optical

Lifecycle:
Bagong Produkto:
Bago mula sa manufacturer na ito.
ECAD Model:
I-download ang libreng Library Loader para i-convert ang file na ito para sa iyong ECAD Tool. Matuto nang higit pa tungkol sa ECAD Model.

May Stock: 2,999

Stock:
2,999 Maaaring Ipadala Agad
Lead-Time ng Pabrika:
18 (na) Linggo Tinatayang oras ng paggawa sa pabrika para sa mga bilang na mas marami kaysa ipinakita.
Minimum: 1   Mga Multiple: 1
Presyo ng Unit:
₱-.--
Ext. Presyo:
₱-.--
Est. Taripa:

Presyo (PHP)

Dami Presyo ng Unit
Ext. Presyo
₱548.10 ₱548.10
₱426.88 ₱4,268.80
₱396.72 ₱9,918.00
₱363.08 ₱36,308.00
₱347.42 ₱86,855.00
₱337.56 ₱168,780.00
₱330.02 ₱330,020.00
Buo Reel (Mag-order sa multiple ng 3000)
₱314.94 ₱944,820.00

Katangian ng Produkto Value ng Attribute Pumili ng Attribute
Texas Instruments
Kategorya ng Produkto: Analog Front End - AFE
RoHS:  
AFE4462
22 bit
4 Channel
I2C, SPI
- 20 C
+ 85 C
DSBGA-36
Reel
Cut Tape
Brand: Texas Instruments
Uri ng Produkto: Analog Front End - AFE
Dami ng Pack ng Pabrika: 3000
Subcategory: Data Converter ICs
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USHTS:
8542390090
MXHTS:
8542399999
ECCN:
EAR99

AFE4462 Ultra-Small Integrated AFE

Texas Instruments AFE4462 Ultra-Small Integrated Analog Front-End (AFE) is an AFE for optical bio-sensing applications, such as saturation of peripheral capillary oxygen (SpO2) and heart-rate monitoring (HRM). The device supports up to four photodiodes (PDs) and up to 16 switching light-emitting diodes (LEDs). The AFE has two LED drivers, each with an 8-bit current control. The Texas Instruments AFE4462 has a high dynamic range transmit-and-receive circuitry that helps sense very small signal levels. Up to 16 signal phase sets can be defined, each phase set comprising a combination of ambient phases and LED. Low noise offset DACs at the receiver inputs can be automatically controlled to cancel DC from LED and ambient light. The current from each of the four PDs in each phase is converted into voltage by TIAs, filtered, and then digitized using a common ADC. The ADC code can be stored in a 256-sample FIFO block. The FIFO can be read out using an SPI or I2C interface.