DLP650LNIRFYL

Texas Instruments
595-DLP650LNIRFYL
DLP650LNIRFYL

Mfr.:

Description:
Display Drivers & Controllers DLP 0.65 NIR WXGA S4 50 DMD 149-CLGA 0 t

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Availability

Stock:
Non-Stocked
Factory Lead-Time:
18 Weeks Estimated factory production time.
Minimum: 33   Multiples: 33
Unit Price:
$-.--
Ext. Price:
$-.--
Est. Tariff:
This Product Ships FREE

Pricing (CAD)

Qty. Unit Price
Ext. Price
$4,067.76 $134,236.08

Product Attribute Attribute Value Select Attribute
Texas Instruments
Product Category: Display Drivers & Controllers
RoHS:  
DLP650LNIR
Display Drivers
WXGA
0 C
+ 90 C
SMD/SMT
FYL-149
Tray
Brand: Texas Instruments
Maximum Output Current: 15 mA
Operating Frequency: 400 MHz
Operating Supply Current: 650 mA
Product Type: Display Drivers & Controllers
Factory Pack Quantity: 33
Subcategory: Driver ICs
Supply Voltage - Max: 3.3 V
Supply Voltage - Min: 3.3 V
Tradename: DLP
Type: Digital Micromirror Device
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USHTS:
8542390090
ECCN:
EAR99

DLP® Devices

Texas Instruments DLP® technology enables innovative optical solutions that disrupt existing end equipment and create new markets. The DLP chip, or Digital Micromirror Device (DMD), is an array of micromirrors that can be used for high-speed, efficient, and reliable spatial light modulation. Not only a leader in consumer projection, but DLP is also redefining industrial, medical, telecom, security, and many other applications. This technology helps customers reduce design cycles and deliver disruptive products.

DLP650LNIR 0.65 NIR WXGA DMD

Texas Instruments DLP650LNIR 0.65 NIR WXGA Digital Micromirror Device (DMD) operates as a spatial light modulator (SLM) to steer near-infrared (NIR) light and generate high-speed patterns for advanced imaging in industrial equipment. The thermally efficient package allows customers to combine the DMD with high-power NIR laser illumination for dynamic digital printing, sintering, and marking solutions. The Texas Instruments DLP650LNIR, DLPC410, DLPR410, and DLPA200 chipset provides 1-bit pattern rates up to 12,500Hz with pixel-accurate control so engineers can design more innovative and precise optical systems than traditional steering lasers allow.