5.5-27 Inch Industrial Control High Brightness Display Kits CUSTOMIZABLE

12.1 Inch 1000nits High Brightness TFT LCD Module Screen

MODEL: HT121FHD-1000

BRIGHTNESS 1000 nits
SIZE 12.1 inch
RESOLUTION 1024*768
ASPECT RATIO 4:3

SERVICES

  • Accountability: Every unit ships standard with CE/FCC/RoHS certification. UL/CCC/EAC certification can be arranged upon request — additional cost and lead time apply depending on the specific standard; please contact us for a quote before ordering.
  • Return Policy: 12-month warranty with remote troubleshooting first, followed by free replacement and expedited reshipment once a hardware fault is confirmed.
  • Lead Time: 2–3 weeks for standard products, 4–6 weeks for custom orders, and 6–8 weeks for bulk orders of 500+ units, with clear scheduling confirmed before order placement.
  • Customer Support: 24/7 engineering support with a direct WhatsApp link on the website, ensuring fast responses across time zones without waiting on email.
  • Production Capacity: Monthly production capacity: 12,000+ units (customizable specs), supporting both small-batch prototyping and large-volume orders.
  • Inventory & Lead Time Assurance: We maintain safety stock of common panel sizes and standard components to buffer against supply chain fluctuations. For repeat orders, we offer scheduled/forecasted production slots to guarantee on-time delivery.

certification standard

Need customized solution?

Our engineering team is always ready to provide you with professional technical support and flexible customized services.

Understand light customization services

Technical Specifications

LCD PANEL PARAMETERSHDMI/CONTROL BOARD SPECIFICATIONS
ITEMDETAILSITEMDETAILS
DescriptionHANNTU 12.1" QLED QUANTUM DOT HIGH COLOR GAMUT 350CDInput InterfaceHDMI, VGA,
Size12.1'Power InputDC12V-2A
Display area (mm)245.76(H)×184.32(V) mmOSD KEYS5 KEYS (POWER SWITCH, MENU, +, -, EXIT)
Resolution1024*768OSD CONTROLBRIGHTNESS, COLOR, CONTRAST, AUTO ROTATION, H/V POSITION, ETC.
Aspect ratio4:3

Contrast ratio1000:1

Pixel per inch (PPI)106

Viewing angle178(H),178(V)

Display Colors262K, 72% NTSC

Response time(Typical)13ms

Signal TypeLVDS (1 ch, 6/8-bit) 20pins

BacklightWLED, 30K hrs, With LED Driver

Power consumption10W

Dimensions (mm)260.5(H)×204(V)×8.9(D) mm

MountingVESA

Bezel size (U/B/L/R)10/10/8/8

Operating temperature-20℃~+70℃

Storage temperature-30℃~+80℃

Weight (Net)1KG

OEM/ODM at HITULCD: One Factory, Every Stage of the Display

For engineers, procurement managers, and project leads sourcing a display partner — not just a display

Most display sourcing problems aren't about the panel itself — they're about everything around it: who bonds the driver IC without damaging yield, who validates the touch stack, who builds the housing, who proves reliability before you commit to volume. Splitting these steps across multiple vendors is where OEM/ODM projects lose time, margin, and accountability. HITULCD keeps the entire chain — design, bonding, touch and housing integration, and reliability testing — inside one factory, under one quality system, since 2014.


1. Design-to-Production Under One Roof

A custom display project usually touches four disciplines: electrical (driving/interface), optical (brightness, viewing angle, color), mechanical (housing, bezel, mounting), and reliability (environmental, structural). We run all four internally, so your spec doesn't get reinterpreted — and potentially degraded — every time it crosses a vendor boundary. That means one technical point of contact from your first drawing to your first production run, not a different subcontractor's engineer at every stage.

2. Core LCD Module Manufacturing — Not Outsourced, Not Assembled from Kits

Our automated COG/FOG bonding lines (JYD-I900E full-automatic COG series, JYD-F900E/F900A atomization bonding system) run micron-level alignment control for stable signal transmission and long service life — the step where most quality problems in a custom LCD module actually originate. Because bonding happens on our own floor, alignment tolerance and driver-IC placement are things we control directly, not variables we inherit from a supplier's supplier.

3. Structural & Assembly Integration — From Backlight to Finished Enclosure

Beyond the panel itself, we handle the mechanical build customers usually have to source separately: automated cutting (GH-1111 fiber laser, OC-1200A precision glass cutting), laser marking (LS-900Pro), high-speed SMT mounting (PT-A12-B), and ACF conductive-film lamination (F6-AS120) for stable circuit connection. Whether your project needs a bare module, a touch-integrated panel, or a fully housed open-frame monitor, it's built on the same line — which is what makes flexible customization compatible with stable mass production, rather than a trade-off between the two.

4. Reliability Testing Before You Ever See a Sample

Every project goes through dimensional inspection (2D measuring instruments, microscopy), environmental simulation (high/low temperature and humidity test chambers), and aging testing before it ships to you. This isn't a final spot-check — our 11-step production process (cell feeding → vacuum bonding → ACF attachment → IC alignment and pre-bonding → FOG electrical test → FPC bonding and alignment → IC main bonding → ITO encapsulation → high-temperature adhesive/label attachment → visual inspection) builds quality gates in at each stage, so defects are caught before they compound downstream.

5. Certified for Global Markets, Not Just Domestic Shipment

CE, FCC, RoHS, ISO 9001:2015, ISO 14001:2015, IATF 16949:2016, UL, REACH, and WEEE compliance are in place, with production run in ISO 14644-1 certified cleanrooms. For a procurement or compliance team evaluating a new supplier, this means the certification groundwork for CE-marked or FCC-compliant end products is already done on our side — not something you have to chase down mid-project.

6. Scale That Covers Both Prototyping and Volume

With 120,000+ units of annual capacity and more than a decade in industrial display manufacturing, we support projects from first-sample runs through scheduled, forecasted production slots for repeat orders — the same factory that can turn around a 20-piece prototype can also hold your volume delivery schedule. Our products currently ship to 38+ export markets, so our engineering and QC processes are built around the documentation and testing expectations of international B2B buyers, not adapted after the fact.


What This Means for Your Project

You get one accountable partner for the full OEM/ODM scope — custom size, brightness, touch, interface, and enclosure — instead of coordinating a bonding house, an assembly shop, a test lab, and a broker separately. One drawing review, one quality system, one timeline.

Next Step

Send us your target specification — size, brightness, interface, touch requirement, enclosure constraint — and we'll return a feasibility assessment and quotation directly from our engineering team.

Custom Shape-Cutting Service for the 12.1" 1000nits TFT LCD Module (HT121FHD-1000)

For engineers, procurement managers, and project leads evaluating a non-standard panel size

Many customers who choose the HT121FHD-1000 as their base panel need a modified outline — a shorter height, a notched corner, a cut-down active area — to fit an existing enclosure or bezel. Below is what our engineering team typically walks OEM/ODM customers through before, during, and after a custom-cutting project.


1. Process Feasibility: Can This Panel Be Cut the Way You Need?

Cutting method. Depending on the target dimension, tolerance, and cut-line location relative to the active area, we select either mechanical wheel scribing (lower cost, suited to straight-line cuts with looser tolerance) or ultra-fast laser cutting (tighter tolerance, cleaner edge, required for cuts close to the Gate/Source driving circuitry or for curved/notched profiles). We confirm the recommended method as part of the feasibility review, not before we see your target drawing.

Circuit clearance check. Before quoting, our engineers map your requested cut-line against the panel's Gate/Source trace layout and TFT array boundary to confirm the cut will not interrupt active circuitry or drive signal integrity. To run this check quickly, please send us:

  • A dimensioned drawing (DWG/DXF preferred) of the target outline, with the cut-line referenced to the panel's existing datum/origin

  • The mounting or bezel constraint driving the cut (if applicable)

  • Any keep-out zone your enclosure requires

Edge finish standard. After cutting, edges are inspected against our internal flatness and micro-crack tolerance before proceeding to sealing. Panels with crack propagation beyond spec are rejected at this stage — they do not move forward to sealing or final assembly.

2. Reliability After Cutting: Will the Sealed Edge Hold Up?

Sealing process. A cut edge exposes the panel to moisture ingress and liquid-crystal leakage risk. We apply a secondary sealing step — typically UV-cure edge dispensing — matched to the cut-line geometry, to restore a moisture and leakage barrier along the new edge.

Reliability testing. Cut-and-sealed samples go through the same reliability program as our standard product line, scaled to industrial-grade requirements given the HT121FHD-1000's -20°C to +70°C operating range: double-85 (85°C/85%RH) high-temperature/humidity soak, thermal shock cycling, and structural drop testing. We're glad to share pass/fail benchmark data from comparable prior cutting projects on request — this is usually the fastest way for a customer's reliability engineer to sign off internally.

Optical performance at the cut edge. The main risk at a modified edge is light leakage or Mura (color shift/unevenness) near the new border, usually from backlight scatter or uneven sealant thickness. We inspect every cut sample under standard viewing conditions before it's approved for sign-off, and flag any edge-zone Mura before you see the sample.

3. Cost, Yield, and Lead Time: What to Budget and Expect

NRE and sampling. Custom cutting carries an NRE (non-recurring engineering) cost that varies with cut complexity — a straight trim priced differently than a laser-cut notch near active circuitry. A first sample run (commonly ~20 pcs) typically takes a defined number of weeks from drawing confirmation to sample shipment; we provide an exact quote and timeline once we've reviewed your drawing, rather than a generic figure that won't reflect your actual cut geometry.

Mass production expectations. Yield in volume production depends on cut-line proximity to the active area and the tightness of your dimensional tolerance — simpler trims run close to standard-panel yield, while cuts near circuitry carry a wider range. We share realistic yield expectations, not best-case numbers, once we've reviewed your specific geometry, along with the MOQ that applies to your custom spec (note: custom cutting can shift MOQ upward from our standard 1-unit minimum — this is confirmed at the quotation stage, before any deposit).


Next Step

Send us your target outline drawing and mounting constraint, and we'll return a feasibility assessment, recommended cutting method, and a sampling quote — usually within a few business days.


Know The Terms Before You Inquire.

No surprises after you send an inquiry. Shipping terms, order minimums and payment protection are all confirmed upfront.

01 — Shipping Terms
Incoterms Available
EXW Ex Works — pick up from our factory
FOB Free On Board — most common for ocean freight
CIF Cost, Insurance & Freight — to your port
02 — Order Minimum
MOQ: 1 Units

Applies to standard specifications. Custom brightness, size-cutting or bezel design may adjust MOQ — confirmed at quotation stage, not after deposit.

Sample units available before bulk order
03 — Payment Protection
Multiple Secured Methods
T/T Bank transfer, standard for bulk orders
L/C Letter of Credit for large-volume orders
PayPal Buyer-protected, for sample orders
O/A Open account terms for repeat partners
All terms confirmed in writing on your quotation — before any deposit is requested.
Request A Quote →

A Real Factory. Publicly Verifiable.

Before you send an inquiry, check us out yourself. All the information below is on public record with Chinese government business registries.

Legal Company Name
Shenzhen Hantu Jiashi Technology Co., Ltd.
Unified Social Credit Code
91440300306068446B
Legal Representative
YUN CHEN
Registered Capital
RMB 2,000,000
Established
May 23, 2014 (11+ years in operation)
Business Status
● Active / In Operation
Registered Factory Address
Building B, Gangshen Innovation Park, Huaning Road, Dalang Sub-district, Longhua District, Shenzhen, Guangdong, China
We maintain full transparency on all official company filings held by Chinese government regulators. If you’d like to confirm our physical factory location ahead of discussions, our registered address is fully searchable on Google Maps.
View On Google Maps →

Contact HITULCD

We'll respond via email within 24 hours. If you'd like to discuss details over WhatsApp or a call, please leave a preferred time and contact method in your message — we will never call you unannounced.

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