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Texas Instruments dmd
Dmd, supplied by Texas Instruments, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/digital+micromirror+array+device/dmd/us06975366-65-8-16
Average 86 stars, based on 1 article reviews
dmd - by Bioz Stars, 2026-10
86/100 stars

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Related Articles

Fluorescence:

Article Title: Super-resolution imaging of limited-size objects
Article Snippet: The objective’s back focal plane was imaged onto a DMD (DLP500YX, Texas instruments) via a 2 f relay, with a pupil diameter of ~4.4 mm at the DMD.

Article Title: All-Optical Nonlinear Real and Fourier-Space Shaping with All-Dielectric Fano Resonant Metasurfaces
Article Snippet: The pump projects a 50× demagnified image ( f = 200 mm lens, Thorlabs, focuses in the BFP of the 50×, NA 0.8 microscope objective) of the DMD (Texas Instruments, DLP LightCrafter Single DLPC900 EVM, controller: DLPC900, chip: DLP6500) onto our disk-bar metasurface.

Article Title: Anamorphic directional illumination device
Article Snippet: Alternatively the spatial light modulator 48 may be a reflective spatial light modulator 48 such as Liquid Crystal on Silicon (LCOS) or a Microoptoelectromechanical (MOEMS) array of micro-mirrors such as the DMD from Texas Instruments.

Article Title: Deep feature-specific imaging
Article Snippet: As shown in Fig. 5, the setup consists of a DMD (digital micromirror device), specifically the DLP7000 model from Texas Instruments, and a PMT (photomultiplier tube), specifically the PMA Series from PicoQuant.

Article Title: Photogrammetric camera and method for the two-dimensional measurement of objects
Article Snippet: By way of example, micromirror devices from the DLP9000 product category by Texas Instruments® are suitable micromirror devices.



Similar Products

86
Texas Instruments digital micromirror array device
A) Schematic of the custom top-down FLight printer: Laser (405 nm) projection patterns were modulated with a digital <t>micromirror</t> device (DMD) and relayed through a lens-aperture assembly and mirror optics to project spatially patterned structures onto the mammary resin during fabrication. B) Light-dose matrices (intensity × exposure time) projected onto Matrigel/Col-I, dECM mam /Col-I and dECM mam /Matrigel photoresins. Each dot (1 × 1 mm) represents one tested light dose for printing. Exposure time range: 4-64 sec; Light intensity range: 2-64 mW cm -2 . C) Bright-field images and confocal reconstructions of millimeter-scale cylinders printed from each formulation. Constructs contained dense and continuously aligned filament networks (dashed boxes delimit the cylinder) Scale bars: 900 μm (left) and 100 μm (right). D) Histograms of filament angle orientation (alignment), with the percentage of filaments within ±15° of the dominant axis ( left ); quantification of filament-to-filament spacing (void spaces) for each resin (n = 60 void spaces from three technical replicates). Scale bars: 50 μm ( right ). E) Diffusion kinetics (10 kDA Rhodamine) in the three mammary hydrogels crosslinked with FLight printing or with homogenous UV light (bulk) at matched light intensities.
Digital Micromirror Array Device, supplied by Texas Instruments, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/digital+micromirror+array+device/device+digital+micromirror/bio_rxiv__64898__2026__01__30__702762-199-33-39
Average 86 stars, based on 1 article reviews
digital micromirror array device - by Bioz Stars, 2026-10
86/100 stars
  Buy from Supplier

86
Texas Instruments digital micromirror array device dmd chip
A) Schematic of the custom top-down FLight printer: Laser (405 nm) projection patterns were modulated with a digital <t>micromirror</t> device (DMD) and relayed through a lens-aperture assembly and mirror optics to project spatially patterned structures onto the mammary resin during fabrication. B) Light-dose matrices (intensity × exposure time) projected onto Matrigel/Col-I, dECM mam /Col-I and dECM mam /Matrigel photoresins. Each dot (1 × 1 mm) represents one tested light dose for printing. Exposure time range: 4-64 sec; Light intensity range: 2-64 mW cm -2 . C) Bright-field images and confocal reconstructions of millimeter-scale cylinders printed from each formulation. Constructs contained dense and continuously aligned filament networks (dashed boxes delimit the cylinder) Scale bars: 900 μm (left) and 100 μm (right). D) Histograms of filament angle orientation (alignment), with the percentage of filaments within ±15° of the dominant axis ( left ); quantification of filament-to-filament spacing (void spaces) for each resin (n = 60 void spaces from three technical replicates). Scale bars: 50 μm ( right ). E) Diffusion kinetics (10 kDA Rhodamine) in the three mammary hydrogels crosslinked with FLight printing or with homogenous UV light (bulk) at matched light intensities.
Digital Micromirror Array Device Dmd Chip, supplied by Texas Instruments, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/digital+micromirror+array+device/device+digital+micromirror/us12364609-230-34-40
Average 86 stars, based on 1 article reviews
digital micromirror array device dmd chip - by Bioz Stars, 2026-10
86/100 stars
  Buy from Supplier

90
Texas Instruments digital micromirror device array dlp lightcrafter 4500
A) Schematic of the custom top-down FLight printer: Laser (405 nm) projection patterns were modulated with a digital <t>micromirror</t> device (DMD) and relayed through a lens-aperture assembly and mirror optics to project spatially patterned structures onto the mammary resin during fabrication. B) Light-dose matrices (intensity × exposure time) projected onto Matrigel/Col-I, dECM mam /Col-I and dECM mam /Matrigel photoresins. Each dot (1 × 1 mm) represents one tested light dose for printing. Exposure time range: 4-64 sec; Light intensity range: 2-64 mW cm -2 . C) Bright-field images and confocal reconstructions of millimeter-scale cylinders printed from each formulation. Constructs contained dense and continuously aligned filament networks (dashed boxes delimit the cylinder) Scale bars: 900 μm (left) and 100 μm (right). D) Histograms of filament angle orientation (alignment), with the percentage of filaments within ±15° of the dominant axis ( left ); quantification of filament-to-filament spacing (void spaces) for each resin (n = 60 void spaces from three technical replicates). Scale bars: 50 μm ( right ). E) Diffusion kinetics (10 kDA Rhodamine) in the three mammary hydrogels crosslinked with FLight printing or with homogenous UV light (bulk) at matched light intensities.
Digital Micromirror Device Array Dlp Lightcrafter 4500, supplied by Texas Instruments, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/digital+micromirror+array+device/digital+micromirror+device+dlpc300+light+crafter/10__1364_slash_oe__534163-43-7-15
Average 90 stars, based on 1 article reviews
digital micromirror device array dlp lightcrafter 4500 - by Bioz Stars, 2026-10
90/100 stars
  Buy from Supplier

86
Texas Instruments digital micromirror device dmd array
A) Schematic of the custom top-down FLight printer: Laser (405 nm) projection patterns were modulated with a digital <t>micromirror</t> device (DMD) and relayed through a lens-aperture assembly and mirror optics to project spatially patterned structures onto the mammary resin during fabrication. B) Light-dose matrices (intensity × exposure time) projected onto Matrigel/Col-I, dECM mam /Col-I and dECM mam /Matrigel photoresins. Each dot (1 × 1 mm) represents one tested light dose for printing. Exposure time range: 4-64 sec; Light intensity range: 2-64 mW cm -2 . C) Bright-field images and confocal reconstructions of millimeter-scale cylinders printed from each formulation. Constructs contained dense and continuously aligned filament networks (dashed boxes delimit the cylinder) Scale bars: 900 μm (left) and 100 μm (right). D) Histograms of filament angle orientation (alignment), with the percentage of filaments within ±15° of the dominant axis ( left ); quantification of filament-to-filament spacing (void spaces) for each resin (n = 60 void spaces from three technical replicates). Scale bars: 50 μm ( right ). E) Diffusion kinetics (10 kDA Rhodamine) in the three mammary hydrogels crosslinked with FLight printing or with homogenous UV light (bulk) at matched light intensities.
Digital Micromirror Device Dmd Array, supplied by Texas Instruments, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/digital+micromirror+array+device/device+digital+micromirror/us11986883-176-16-28
Average 86 stars, based on 1 article reviews
digital micromirror device dmd array - by Bioz Stars, 2026-10
86/100 stars
  Buy from Supplier

86
Texas Instruments digital micromirror device array
A) Schematic of the custom top-down FLight printer: Laser (405 nm) projection patterns were modulated with a digital <t>micromirror</t> device (DMD) and relayed through a lens-aperture assembly and mirror optics to project spatially patterned structures onto the mammary resin during fabrication. B) Light-dose matrices (intensity × exposure time) projected onto Matrigel/Col-I, dECM mam /Col-I and dECM mam /Matrigel photoresins. Each dot (1 × 1 mm) represents one tested light dose for printing. Exposure time range: 4-64 sec; Light intensity range: 2-64 mW cm -2 . C) Bright-field images and confocal reconstructions of millimeter-scale cylinders printed from each formulation. Constructs contained dense and continuously aligned filament networks (dashed boxes delimit the cylinder) Scale bars: 900 μm (left) and 100 μm (right). D) Histograms of filament angle orientation (alignment), with the percentage of filaments within ±15° of the dominant axis ( left ); quantification of filament-to-filament spacing (void spaces) for each resin (n = 60 void spaces from three technical replicates). Scale bars: 50 μm ( right ). E) Diffusion kinetics (10 kDA Rhodamine) in the three mammary hydrogels crosslinked with FLight printing or with homogenous UV light (bulk) at matched light intensities.
Digital Micromirror Device Array, supplied by Texas Instruments, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/digital+micromirror+array+device/device+digital+micromirror/10__1002_slash_adem__202301609-962-1-6
Average 86 stars, based on 1 article reviews
digital micromirror device array - by Bioz Stars, 2026-10
86/100 stars
  Buy from Supplier

90
Texas Instruments digital micromirror device (dmd) arrays
A) Schematic of the custom top-down FLight printer: Laser (405 nm) projection patterns were modulated with a digital <t>micromirror</t> device (DMD) and relayed through a lens-aperture assembly and mirror optics to project spatially patterned structures onto the mammary resin during fabrication. B) Light-dose matrices (intensity × exposure time) projected onto Matrigel/Col-I, dECM mam /Col-I and dECM mam /Matrigel photoresins. Each dot (1 × 1 mm) represents one tested light dose for printing. Exposure time range: 4-64 sec; Light intensity range: 2-64 mW cm -2 . C) Bright-field images and confocal reconstructions of millimeter-scale cylinders printed from each formulation. Constructs contained dense and continuously aligned filament networks (dashed boxes delimit the cylinder) Scale bars: 900 μm (left) and 100 μm (right). D) Histograms of filament angle orientation (alignment), with the percentage of filaments within ±15° of the dominant axis ( left ); quantification of filament-to-filament spacing (void spaces) for each resin (n = 60 void spaces from three technical replicates). Scale bars: 50 μm ( right ). E) Diffusion kinetics (10 kDA Rhodamine) in the three mammary hydrogels crosslinked with FLight printing or with homogenous UV light (bulk) at matched light intensities.
Digital Micromirror Device (Dmd) Arrays, supplied by Texas Instruments, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/digital+micromirror+array+device/digital+micromirror+device/us11762284-284-15-21
Average 90 stars, based on 1 article reviews
digital micromirror device (dmd) arrays - by Bioz Stars, 2026-10
90/100 stars
  Buy from Supplier

Image Search Results


A) Schematic of the custom top-down FLight printer: Laser (405 nm) projection patterns were modulated with a digital micromirror device (DMD) and relayed through a lens-aperture assembly and mirror optics to project spatially patterned structures onto the mammary resin during fabrication. B) Light-dose matrices (intensity × exposure time) projected onto Matrigel/Col-I, dECM mam /Col-I and dECM mam /Matrigel photoresins. Each dot (1 × 1 mm) represents one tested light dose for printing. Exposure time range: 4-64 sec; Light intensity range: 2-64 mW cm -2 . C) Bright-field images and confocal reconstructions of millimeter-scale cylinders printed from each formulation. Constructs contained dense and continuously aligned filament networks (dashed boxes delimit the cylinder) Scale bars: 900 μm (left) and 100 μm (right). D) Histograms of filament angle orientation (alignment), with the percentage of filaments within ±15° of the dominant axis ( left ); quantification of filament-to-filament spacing (void spaces) for each resin (n = 60 void spaces from three technical replicates). Scale bars: 50 μm ( right ). E) Diffusion kinetics (10 kDA Rhodamine) in the three mammary hydrogels crosslinked with FLight printing or with homogenous UV light (bulk) at matched light intensities.

Journal: bioRxiv

Article Title: A 3D printed model of human lactation

doi: 10.64898/2026.01.30.702762

Figure Lengend Snippet: A) Schematic of the custom top-down FLight printer: Laser (405 nm) projection patterns were modulated with a digital micromirror device (DMD) and relayed through a lens-aperture assembly and mirror optics to project spatially patterned structures onto the mammary resin during fabrication. B) Light-dose matrices (intensity × exposure time) projected onto Matrigel/Col-I, dECM mam /Col-I and dECM mam /Matrigel photoresins. Each dot (1 × 1 mm) represents one tested light dose for printing. Exposure time range: 4-64 sec; Light intensity range: 2-64 mW cm -2 . C) Bright-field images and confocal reconstructions of millimeter-scale cylinders printed from each formulation. Constructs contained dense and continuously aligned filament networks (dashed boxes delimit the cylinder) Scale bars: 900 μm (left) and 100 μm (right). D) Histograms of filament angle orientation (alignment), with the percentage of filaments within ±15° of the dominant axis ( left ); quantification of filament-to-filament spacing (void spaces) for each resin (n = 60 void spaces from three technical replicates). Scale bars: 50 μm ( right ). E) Diffusion kinetics (10 kDA Rhodamine) in the three mammary hydrogels crosslinked with FLight printing or with homogenous UV light (bulk) at matched light intensities.

Article Snippet: A fiber coupled laser (405 n, 1000 mW power) with a high speckle contrast ratio (for modulation instability enabling microfilament formation), was expanded with a 4 f magnification system and projected onto a digital micromirror array device (DMD; DLP6500FYE, Texas instruments) with a pixel resolution 1920 × 1080 and a pixel pitch 7.56 μ m.[ ] The DMD allowed to project the light in digitally designed images (Microsoft PowerPoint for Microsoft 365), through a plano convex lenses (1:1 magnification) with an aperture in between (for isolation of the reflected image from the DMD diffraction pattern), onto a mirror for top-down Flight printing.

Techniques: Formulation, Construct, Diffusion-based Assay