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5.46 Inch 1080x1920 FHD IPS TFT LCD Capacitive Touch Display MIPI 4-Lane 1100nits Panel

5.46 Inch 1080x1920 FHD IPS TFT LCD Capacitive Touch Display MIPI 4-Lane 1100nits Panel

MOQ: 1 Piece
Price: USD 25-50 / Piece
Standard Packaging: Anti-static bag with shock-proof foam insert, export-grade corrugated carton
Delivery Period: 3-7 working days for samples, 15-25 days for mass production
Payment Method: T/T,L/C,PayPal,Western Union
Supply Capacity: 40000 Pieces per Month
Detail Information
Place of Origin
Guangdong, China
Brand Name
TXW
Certification
RoHS, ISO 9001:2015
Model Number
TXW550052N0-AS
Display Size:
5.46 Inch
Resolution:
1080 X RGB X 1920 Dots
LCD Type:
IPS TFT Active Matrix, Normally Black
Pixel Density:
~403 PPI
Driver IC:
HX8399-C
Interface:
4-Lane MIPI
Touch Structure:
G+F+F Capacitive
Touch Driver IC:
GT911
Touch Interface:
I2C (1.8V)
Touch Surface:
6H, >=85% Transmittance, AF Coating
Viewing Direction:
ALL
Pixel Pitch:
63 X 63 Um
Active Area:
68.04 X 120.96 Mm
LCM Size:
70.04 X 128.29 X 1.68 Mm
LCM+CTP Size:
85.00 X 140.36 X 2.91 Mm
Brightness:
1100 Cd/m2
Uniformity:
85%
Backlight:
15 White LEDs, 60mA, 28-32V
IO Voltage:
1.8V
Operating Temperature:
-20C To +70C
Storage Temperature:
-30C To +80C
Certification:
RoHS
Highlight:

5.46 inch FHD IPS TFT LCD

,

MIPI 4-lane capacitive touch display

,

1100nits brightness TFT LCD panel

Product Description
Product Dossier  /  TXW550052N0-AS

5.46-inch full-HD IPS touch display — the spec, step by step

A plain-language walk-through of a 1080×1920 IPS display with built-in capacitive touch and a 4-lane MIPI link — from pixel density to first light, for handheld and embedded products. By Shenzhen Tianxianwei Technology.

5.46"
Screen+Touch
1080x1920
FHD
~400
PPI
1100
cd/m²
1.68
mm
STEP 01

What this part is, in one line

A 5.46-inch full-HD IPS touch display — screen, touch sensor, and backlight built as a single bonded part. It shows a sharp, colourful image, senses your finger, and is thin enough for handheld products. One part number to buy, mount, and wire.

STEP 02

How sharp the picture is

The panel carries 1080×1920 pixels (full HD, portrait) on a 5.46-inch diagonal — about 400 pixels per inch, or roughly the sharpness of a modern smartphone. Text looks crisp, photos look detailed, and fine lines stay clean with no visible pixel gaps.

Rule of thumb: if it looks smooth on a good phone screen at reading distance, it will look smooth here.
STEP 03

Touch is built in

A G+F+F capacitive touch panel driven by the GT911 controller over I2C. The cover glass is 6H (scratch-resistant) with an anti-fingerprint (AF) coating and passes ≥85% of the light, so the picture stays bright. Display and touch ship together — no sensor bonding, no alignment between two parts.

STEP 04

Brightness and readability

1,100 cd/m² typical brightness with 85% uniformity — the corners stay almost as bright as the centre, with no visible dim patches. That is bright enough for well-lit shops, offices, and many daylight-facing tasks, and clearly brighter than an ordinary indoor panel.

Because it is a bonded, laminated stack, there is no reflective air gap between touch glass and display, so the image keeps more of its contrast in bright rooms than an air-bonded panel at the same nit rating.

STEP 05

How to connect it

Pixels arrive over a fast 4-lane MIPI interface — the simple, low-pin-count link used by phones and many embedded systems. Touch data travels over I2C. Two wiring notes: the I/O runs at 1.8 V logic, and the panel needs AVDD 4.8-6 V plus AVEE -6 to -4.8 V from your supply.

STEP 06

How thin and small

The display module alone is 70.04 × 128.29 × 1.68 mm — very thin. With the touch cover the whole assembly is 85.00 × 140.36 × 2.91 mm. A thin graphene sheet (0.06 mm) sits in the backlight to spread heat, helping the LEDs stay cool and brightness stay stable.

STEP 07

Temperature and environment

Operating range -20 °C to +70 °C; storage -30 °C to +80 °C; humidity to 90%. Fine for normal indoor and sheltered equipment across a wide span of climates.

STEP 08

What drives the backlight

An edge-lit backlight uses 15 white LEDs at a nominal 60 mA with forward voltage 28-32 V — a higher-voltage, lower-current string that is easy to drive with a small constant-current circuit. The built-in graphene layer helps keep those LEDs cool.

STEP 09

Colour and image quality

The panel renders 16.7 million colours — true 8-bit depth on each of the red, green, and blue channels. That means 256 levels per colour, which is what lets gradients, subtle status colours, and anti-aliased text render without banding or visible “steps”.

IPS is the other half of the story: it keeps colour consistent across the screen and stable as the viewing angle changes, so a picture or chart does not shift colour from centre to corner. For a device that shows photos, maps, or live data, this is what makes the image look “correct” rather than merely bright.

STEP 10

Viewing angle, in plain terms

The panel is rated ALL O'CLOCK — there is no single best direction to face it from. A device read from the side, tilted in the hand, or set flat on a counter keeps a consistent, legible image. You are not forced to orient the module a particular way just to keep it readable.

STEP 11

Bringing it up without surprises

First light is usually quick if you respect a short sequence. Supply the I/O rail (1.8 V) and the panel rails (AVDD, AVEE) first, then assert RESET (active low), then start the MIPI stream. The TE (tearing-effect) pin can synchronise your host to the frame if you need tear-free updates, and PWM is the control line for the external backlight driver.

Keep a grey-ramp and colour-bar test pattern handy. It reveals a timing mistake or a bad lane in seconds and separates a bus problem from an image-setting problem immediately.
STEP 12

Layout and EMC, in plain terms

The 4-lane MIPI link is fast and differential, so treat it well: keep the pairs equal in length, keep a continuous ground return beneath them, avoid sharp layer changes, and route them away from the backlight's switching node and any motors. Keep the touch I2C pair short and quiet, and wire its interrupt line cleanly back to the host.

Then give the module a good home: leave clearance where the FPC exits, respect its bend radius during assembly, and thermally couple the LED edge to any available copper or chassis. Good layout is the cheapest reliability measure you will ever take.

STEP 13

Why you can trust it

The module passes a standard battery of checks: high- and low-temperature storage (+80 °C / -30 °C, 96 h), high- and low-temperature operation (+70 °C / -20 °C, 96 h), a 60 °C/90%RH humidity soak (96 h), and 10 thermal-shock cycles between -20 °C and +70 °C — screening out dead lines, abnormal display, seal problems, bubbles, and leakage.

STEP 14

Where it is usually used

Handheld and portable devices, compact medical and diagnostic instruments, industrial control panels, smart-home and appliance interfaces, portable test tools, and any product that needs a phone-quality full-HD touch screen in a small footprint.

STEP 15

How we tailor it to your product

Everything is designed for OEM/ODM flexibility. Cover-glass printing can carry your logo and finish; touch settings and FPC layout can be adjusted to your enclosure and connector; backlight brightness can be tuned to your ambient conditions; and interface details can be matched to your host. Samples are available for evaluation, and our team works with yours from first prototype to volume — because the fastest path to a great display is to bring us in early, while decisions are still cheap to change.

Integration checklist

  • Provide 1.8 V I/O logic and the panel rails (AVDD 4.8-6 V, AVEE -6~-4.8 V).
  • Route the 4-lane MIPI pairs with matched lengths and a continuous ground return.
  • Keep the touch I2C pair short and away from switching noise; wire the interrupt line cleanly.
  • Leave clearance at the FPC exit and respect the bend radius during assembly.
  • Follow the recommended power-up order, asserting RESET before streaming pixels.

Common questions

Is 400 PPI overkill for a small screen?
No. Higher density means smaller text stays readable, icons can sit closer without colliding, and fine line-work renders cleanly — all useful in instruments, not just in photography.
Do I need a separate touch controller?
No. The GT911 touch controller is already integrated and talks over I2C, so your host only needs the MIPI link for image and I2C for touch.
Will it work in a warm enclosure?
Its -20 to +70 °C range plus the graphene heat-spreading sheet make it suitable for sealed handhelds and panels, provided you give the LED edge some thermal relief.

Glossary

PPI
Pixels per inch — how tightly pixels are packed, i.e. how sharp it looks.
IPS
A wide-view LCD mode with stable colour and consistent angles.
MIPI
A fast, low-pin-count interface for sending image data over differential lanes.
I2C
A simple two-wire bus — here it carries touch data.
cd/m²
Candela per square metre — screen brightness (“nits”).
GT911
The capacitive touch controller IC used in this module.
6H
A pencil-hardness rating for scratch resistance of the cover glass.
AF
Anti-fingerprint coating that reduces smudges on the surface.
G+F+F
Glass + film + film touch stack construction.

At a glance

Display Size
5.46 inch
Resolution
1080 × 1920
Panel Type
IPS, normally black
Viewing Angle
ALL O'CLOCK
Driver IC
HX8399-C
Interface
4-lane MIPI
Touch
G+F+F, GT911
Touch Bus
I2C, 1.8V
Brightness
1100 cd/m² / 85%
Backlight
15 LEDs, 60mA
LCM Size
70.04 × 128.29 × 1.68 mm
LCM+CTP Size
85.00 × 140.36 × 2.91 mm
Op. Temp.
-20 to +70 °C
Compliance
RoHS, lead-free

Request a sample

The TXW550052N0-AS is available for sampling and volume production, with OEM/ODM options for cover-glass printing, touch settings, brightness, and FPC layout.

Contact us for samples and pricing — we will help you match it to your product.

Products
PRODUCTS DETAILS
5.46 Inch 1080x1920 FHD IPS TFT LCD Capacitive Touch Display MIPI 4-Lane 1100nits Panel
MOQ: 1 Piece
Price: USD 25-50 / Piece
Standard Packaging: Anti-static bag with shock-proof foam insert, export-grade corrugated carton
Delivery Period: 3-7 working days for samples, 15-25 days for mass production
Payment Method: T/T,L/C,PayPal,Western Union
Supply Capacity: 40000 Pieces per Month
Detail Information
Place of Origin
Guangdong, China
Brand Name
TXW
Certification
RoHS, ISO 9001:2015
Model Number
TXW550052N0-AS
Display Size:
5.46 Inch
Resolution:
1080 X RGB X 1920 Dots
LCD Type:
IPS TFT Active Matrix, Normally Black
Pixel Density:
~403 PPI
Driver IC:
HX8399-C
Interface:
4-Lane MIPI
Touch Structure:
G+F+F Capacitive
Touch Driver IC:
GT911
Touch Interface:
I2C (1.8V)
Touch Surface:
6H, >=85% Transmittance, AF Coating
Viewing Direction:
ALL
Pixel Pitch:
63 X 63 Um
Active Area:
68.04 X 120.96 Mm
LCM Size:
70.04 X 128.29 X 1.68 Mm
LCM+CTP Size:
85.00 X 140.36 X 2.91 Mm
Brightness:
1100 Cd/m2
Uniformity:
85%
Backlight:
15 White LEDs, 60mA, 28-32V
IO Voltage:
1.8V
Operating Temperature:
-20C To +70C
Storage Temperature:
-30C To +80C
Certification:
RoHS
Minimum Order Quantity:
1 Piece
Price:
USD 25-50 / Piece
Packaging Details:
Anti-static bag with shock-proof foam insert, export-grade corrugated carton
Delivery Time:
3-7 working days for samples, 15-25 days for mass production
Payment Terms:
T/T,L/C,PayPal,Western Union
Supply Ability:
40000 Pieces per Month
Highlight

5.46 inch FHD IPS TFT LCD

,

MIPI 4-lane capacitive touch display

,

1100nits brightness TFT LCD panel

Product Description
Product Dossier  /  TXW550052N0-AS

5.46-inch full-HD IPS touch display — the spec, step by step

A plain-language walk-through of a 1080×1920 IPS display with built-in capacitive touch and a 4-lane MIPI link — from pixel density to first light, for handheld and embedded products. By Shenzhen Tianxianwei Technology.

5.46"
Screen+Touch
1080x1920
FHD
~400
PPI
1100
cd/m²
1.68
mm
STEP 01

What this part is, in one line

A 5.46-inch full-HD IPS touch display — screen, touch sensor, and backlight built as a single bonded part. It shows a sharp, colourful image, senses your finger, and is thin enough for handheld products. One part number to buy, mount, and wire.

STEP 02

How sharp the picture is

The panel carries 1080×1920 pixels (full HD, portrait) on a 5.46-inch diagonal — about 400 pixels per inch, or roughly the sharpness of a modern smartphone. Text looks crisp, photos look detailed, and fine lines stay clean with no visible pixel gaps.

Rule of thumb: if it looks smooth on a good phone screen at reading distance, it will look smooth here.
STEP 03

Touch is built in

A G+F+F capacitive touch panel driven by the GT911 controller over I2C. The cover glass is 6H (scratch-resistant) with an anti-fingerprint (AF) coating and passes ≥85% of the light, so the picture stays bright. Display and touch ship together — no sensor bonding, no alignment between two parts.

STEP 04

Brightness and readability

1,100 cd/m² typical brightness with 85% uniformity — the corners stay almost as bright as the centre, with no visible dim patches. That is bright enough for well-lit shops, offices, and many daylight-facing tasks, and clearly brighter than an ordinary indoor panel.

Because it is a bonded, laminated stack, there is no reflective air gap between touch glass and display, so the image keeps more of its contrast in bright rooms than an air-bonded panel at the same nit rating.

STEP 05

How to connect it

Pixels arrive over a fast 4-lane MIPI interface — the simple, low-pin-count link used by phones and many embedded systems. Touch data travels over I2C. Two wiring notes: the I/O runs at 1.8 V logic, and the panel needs AVDD 4.8-6 V plus AVEE -6 to -4.8 V from your supply.

STEP 06

How thin and small

The display module alone is 70.04 × 128.29 × 1.68 mm — very thin. With the touch cover the whole assembly is 85.00 × 140.36 × 2.91 mm. A thin graphene sheet (0.06 mm) sits in the backlight to spread heat, helping the LEDs stay cool and brightness stay stable.

STEP 07

Temperature and environment

Operating range -20 °C to +70 °C; storage -30 °C to +80 °C; humidity to 90%. Fine for normal indoor and sheltered equipment across a wide span of climates.

STEP 08

What drives the backlight

An edge-lit backlight uses 15 white LEDs at a nominal 60 mA with forward voltage 28-32 V — a higher-voltage, lower-current string that is easy to drive with a small constant-current circuit. The built-in graphene layer helps keep those LEDs cool.

STEP 09

Colour and image quality

The panel renders 16.7 million colours — true 8-bit depth on each of the red, green, and blue channels. That means 256 levels per colour, which is what lets gradients, subtle status colours, and anti-aliased text render without banding or visible “steps”.

IPS is the other half of the story: it keeps colour consistent across the screen and stable as the viewing angle changes, so a picture or chart does not shift colour from centre to corner. For a device that shows photos, maps, or live data, this is what makes the image look “correct” rather than merely bright.

STEP 10

Viewing angle, in plain terms

The panel is rated ALL O'CLOCK — there is no single best direction to face it from. A device read from the side, tilted in the hand, or set flat on a counter keeps a consistent, legible image. You are not forced to orient the module a particular way just to keep it readable.

STEP 11

Bringing it up without surprises

First light is usually quick if you respect a short sequence. Supply the I/O rail (1.8 V) and the panel rails (AVDD, AVEE) first, then assert RESET (active low), then start the MIPI stream. The TE (tearing-effect) pin can synchronise your host to the frame if you need tear-free updates, and PWM is the control line for the external backlight driver.

Keep a grey-ramp and colour-bar test pattern handy. It reveals a timing mistake or a bad lane in seconds and separates a bus problem from an image-setting problem immediately.
STEP 12

Layout and EMC, in plain terms

The 4-lane MIPI link is fast and differential, so treat it well: keep the pairs equal in length, keep a continuous ground return beneath them, avoid sharp layer changes, and route them away from the backlight's switching node and any motors. Keep the touch I2C pair short and quiet, and wire its interrupt line cleanly back to the host.

Then give the module a good home: leave clearance where the FPC exits, respect its bend radius during assembly, and thermally couple the LED edge to any available copper or chassis. Good layout is the cheapest reliability measure you will ever take.

STEP 13

Why you can trust it

The module passes a standard battery of checks: high- and low-temperature storage (+80 °C / -30 °C, 96 h), high- and low-temperature operation (+70 °C / -20 °C, 96 h), a 60 °C/90%RH humidity soak (96 h), and 10 thermal-shock cycles between -20 °C and +70 °C — screening out dead lines, abnormal display, seal problems, bubbles, and leakage.

STEP 14

Where it is usually used

Handheld and portable devices, compact medical and diagnostic instruments, industrial control panels, smart-home and appliance interfaces, portable test tools, and any product that needs a phone-quality full-HD touch screen in a small footprint.

STEP 15

How we tailor it to your product

Everything is designed for OEM/ODM flexibility. Cover-glass printing can carry your logo and finish; touch settings and FPC layout can be adjusted to your enclosure and connector; backlight brightness can be tuned to your ambient conditions; and interface details can be matched to your host. Samples are available for evaluation, and our team works with yours from first prototype to volume — because the fastest path to a great display is to bring us in early, while decisions are still cheap to change.

Integration checklist

  • Provide 1.8 V I/O logic and the panel rails (AVDD 4.8-6 V, AVEE -6~-4.8 V).
  • Route the 4-lane MIPI pairs with matched lengths and a continuous ground return.
  • Keep the touch I2C pair short and away from switching noise; wire the interrupt line cleanly.
  • Leave clearance at the FPC exit and respect the bend radius during assembly.
  • Follow the recommended power-up order, asserting RESET before streaming pixels.

Common questions

Is 400 PPI overkill for a small screen?
No. Higher density means smaller text stays readable, icons can sit closer without colliding, and fine line-work renders cleanly — all useful in instruments, not just in photography.
Do I need a separate touch controller?
No. The GT911 touch controller is already integrated and talks over I2C, so your host only needs the MIPI link for image and I2C for touch.
Will it work in a warm enclosure?
Its -20 to +70 °C range plus the graphene heat-spreading sheet make it suitable for sealed handhelds and panels, provided you give the LED edge some thermal relief.

Glossary

PPI
Pixels per inch — how tightly pixels are packed, i.e. how sharp it looks.
IPS
A wide-view LCD mode with stable colour and consistent angles.
MIPI
A fast, low-pin-count interface for sending image data over differential lanes.
I2C
A simple two-wire bus — here it carries touch data.
cd/m²
Candela per square metre — screen brightness (“nits”).
GT911
The capacitive touch controller IC used in this module.
6H
A pencil-hardness rating for scratch resistance of the cover glass.
AF
Anti-fingerprint coating that reduces smudges on the surface.
G+F+F
Glass + film + film touch stack construction.

At a glance

Display Size
5.46 inch
Resolution
1080 × 1920
Panel Type
IPS, normally black
Viewing Angle
ALL O'CLOCK
Driver IC
HX8399-C
Interface
4-lane MIPI
Touch
G+F+F, GT911
Touch Bus
I2C, 1.8V
Brightness
1100 cd/m² / 85%
Backlight
15 LEDs, 60mA
LCM Size
70.04 × 128.29 × 1.68 mm
LCM+CTP Size
85.00 × 140.36 × 2.91 mm
Op. Temp.
-20 to +70 °C
Compliance
RoHS, lead-free

Request a sample

The TXW550052N0-AS is available for sampling and volume production, with OEM/ODM options for cover-glass printing, touch settings, brightness, and FPC layout.

Contact us for samples and pricing — we will help you match it to your product.

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