빠른 답변: 구매자가 선택하는 photoinitiator for electronic material inks usually get a better shortlist when they separate three different jobs before they request samples: thin printed electronic inks or TFT-LCD-style color systems, darker or more opaque electronic inks that are harder to cure through, 그리고 visible-light or laser-oriented imaging materials. In Longchang’s current product positioning, 광개시제 1206 deserves the first look when the job is close to 전자 재료 잉크, 감광성 잉크, TFT-LCD color filters, 365nm 공정, 그리고 thin or black-pigment-sensitive films. 광개시제 369 moves up when the formulation behaves more like a dark, opaque, or deeper-curing electronic ink and the line needs stronger 350 to 380 nm long-wave response. 광개시제 784 becomes the stronger route when the project is really about precision imaging, 가시광선 활성화, laser-assisted patterning, 또는 photosensitive electronic materials where optical control matters as much as cure speed.
That is the commercially useful split. Electronic-material ink is not one uniform buying problem. A thin printed conductive or functional ink, a dark photoresist-adjacent electronic ink, and a visible-light imaging material should not automatically start from the same photoinitiator sample list.
Why this page deserves its own place in the cluster
롱창은 이미 관련 지원 페이지를 운영하고 있습니다. 감광성 잉크, 레이저 직접 이미징, 전자 코팅, 그리고 PCB solder mask. But buyers often start higher up the chain with a sourcing question like which photoinitiator family should we screen for an electronic material ink program?
That search intent is not the same as a display-only ink page, a PCB coating page, or a pure laser-direct-imaging page. It is a cluster-entry page for buyers working across printed electronics, imaging inks, and thin functional UV-curable layers.
What electronic-ink buyers usually screen first
General industry material on UV-curable inks and printed electronics tends to separate these systems by 광원, optical density or pigment load, 그리고 patterning precision. That framing is useful here too, even before the product shortlist is finalized.
- Is the film very thin or display-style? Thin patterned films often reward a different first screen than more forgiving coatings.
- Is the ink dark, opaque, or heavily light-blocking? Cure-through becomes a real risk in black, dark, or filled systems.
- Is the process conventional UV-first, long-wave UV, visible-light, or laser-assisted? The shortlist changes quickly once the real exposure route is known.
- Is the job closer to printed electronics, photoresist, or imaging resin? Similar names can hide different process bottlenecks.
- Does appearance or optical cleanliness matter after cure? Some electronic-material inks live inside precision optical or patterned structures, not just bulk protective films.
Those are the screening questions that usually remove weak candidates fastest.
Quick comparison table: 1206 vs 369 vs 784 for electronic material inks
| 구매 요인 | 1206 | 369 | 784 |
|---|---|---|---|
| Direct electronic-ink relevance on company page | Electronic material inks and photosensitive inks are named directly | Electronics-industry uses include solder mask inks and photoresist | Electronics, photoresists, and precision electronic materials are named directly |
| 최적의 첫 화면 파장 논리 | 365nm에서 높은 감도 | Strong long-wave UV capture at 350 to 380 nm | 자외선과 가시광선 또는 적절한 레이저 조사 |
| Dark or opaque system logic | Suitable for colored systems including black pigment systems; up to 35 wt% carbon black on current page | Built for pigmented, dark-color, and deeper-curing systems | Suitable for dark curing systems and high-pigment coatings, but usually chosen when imaging precision or visible-light response matters too |
| 필름 제작 논리 | Ultra-thin film 1 to 30 μm route is explicit | Stronger case when deeper cure-through is part of the problem | Useful when the task is precision imaging rather than only thin-film benchmark screening |
| 최적 첫 번째 적합 | Thin printed electronic inks, TFT-LCD-style color systems, and black-pigment-sensitive 365 nm films | Darker or more opaque electronic inks needing deeper long-wave cure | Visible-light, laser, or precision imaging materials in electronic applications |
1206이 더 적합할 때
1206 deserves the first sample slot when the electronic-material ink program is really a thin-film 365 nm job with strong links to 감광성 잉크, 전자 재료 잉크, 또는 display-style color systems. Longchang’s current product page directly states that 1206 is suitable for the production of TFT-LCD 평면 패널 디스플레이 컬러 필터, 감광성 잉크, 그리고 전자 재료 잉크. The same page also describes 365nm 파장에 대한 높은 감도적합성 검정색 안료 시스템을 포함한 유색 시스템허용 오차 최대 35 wt% 카본 블랙 안료그리고 관련성 초박막 1~30μm 경화 시스템.
That combination makes 1206 the cleanest first screen when:
- the line is close to a 365 nm production route
- the printed layer is thin and cure efficiency matters early
- the system includes black pigment or other strong light-blocking colorants
- the buyer wants a benchmark already positioned by Longchang for electronic material inks rather than only general coatings
If the project is basically a thin printed functional ink with display-style or imaging-ink behavior, 1206 is usually the most defensible place to begin.
369가 앞으로 나아가야 할 시점
369 becomes the better first screen when the electronic ink stops behaving like a simple thin-film benchmark and starts behaving like a darker, more opaque, or deeper-curing UV system. Longchang’s current 369 page places it in the 전자 산업 ~을 위한 솔더 마스크 잉크 및 포토레지스트, and repeatedly emphasizes its ability to capture 350~380nm의 장파 자외선. The page also frames 369 as especially valuable in 색소 코팅, 어두운 색상 시스템, and other jobs where deeper cure is harder to achieve.
일반적으로 다음과 같은 경우에 369가 앞으로 이동합니다.
- the ink is darker, more opaque, or more filled than a standard thin photoresist-style layer
- the process problem is cure-through, not just surface response
- the electronic-material ink behaves more like a photoresist or solder-mask-adjacent formulation
- the buyer wants stronger long-wave support before broadening the shortlist
In short, 369 is the safer first move when the main risk is not thin-film sensitivity but light penetration into a difficult electronic ink.
784번 노선이 더 강력한 노선이 될 때
784는 다른 차선에 속해야 합니다. 왜냐하면 그것은 더 명확하게 다음과 연관되어 있기 때문입니다. 정밀 이미징 및 가시광선 처리 가능 소재롱창은 784번째 포지션을 맡고 있습니다. 감광성 층, 홀로그램 사진 촬영, 레이저 직접 이미징, 3차원 리소그래피그리고 더 넓은 범위 전자, 포토레지스트 및 정밀 전자 재료현재 페이지에는 경화 과정이 다음 조건에서 진행될 수 있다고 명시되어 있습니다. 자외선, 가시광선 또는 적절한 레이저 조사, and notes its usefulness in 암경화 시스템 및 고농축 안료 코팅.
784는 다음과 같은 경우에 더 빨리 관심을 가져야 합니다.
- the process is not just UV-curable ink, but a precision imaging material
- visible-light or laser exposure is part of the real production route
- the buyer cares about optical performance and photo-bleaching behavior after cure
- the electronic material sits closer to imaging resin, photosensitive layer, or advanced patterning chemistry than to a routine printed ink
That makes 784 a more natural lead candidate for high-value electronic imaging materials than for a basic thin printed UV-ink benchmark.
구매자가 샘플을 요청하기 전에 선택해야 할 사항
1. Start with the real line constraint
Do not begin with product names. Begin with the real bottleneck: thin-film efficiency, dark-system cure-through, or visible-light imaging precision.
2. Keep the light source specific
1206 is the clean 365 nm benchmark here. 369 gets stronger when long-wave UV matters more. 784 becomes more relevant when the process expands into visible-light or laser-assisted patterning.
3. Treat pigment burden as a decision trigger
A black or heavily filled electronic ink changes the shortlist quickly. That is where 1206 and 369 often separate from each other in practical screening.
4. Separate printed functional inks from imaging materials
Some electronic-material inks are mostly about thin-film cure and pattern retention. Others are really imaging systems with stricter optical and exposure demands. Those two jobs should not be screened the same way.
5. 첫 번째 샘플은 꽉 조여 두세요.
A practical first screen is often one thin-film 365 nm benchmark, one dark-system long-wave route, and one visible-light precision route if the program truly needs it. That usually gives cleaner signal than comparing many similar photoinitiators at once.
롱창 추천 상품 및 기사 경로
- Thin-film 365 nm electronic-ink route: 광개시제 1206
- Dark or opaque long-wave electronic-ink route: 광개시제 369
- 가시광선 및 정밀 이미징 경로: 광개시제 784
- 관련 페이지: Photoinitiator for Photosensitive Inks
- 관련 페이지: 레이저 직접 이미징용 광개시제
- 관련 페이지: Photoinitiator for Electronic Coatings
자주 묻는 질문
Which photoinitiator is the best starting point for electronic material inks?
There is no single winner for every formulation. In Longchang’s current product positioning, 1206 is usually the strongest first benchmark for thin 365 nm electronic material inks, 369 is stronger for darker or more opaque long-wave systems, and 784 moves ahead when visible-light or precision imaging requirements become central.
구매자는 언제 1206호에서 369호로 이사해야 할까요?
Move from 1206 toward 369 when the real risk is no longer thin-film efficiency but cure-through in a darker, more opaque, or more difficult electronic ink that behaves closer to photoresist or solder mask chemistry.
784는 언제 최종 후보 명단에 포함되어야 할까요?
784 belongs in the shortlist when the project is tied to visible-light curing, laser-assisted imaging, precision photosensitive layers, or advanced patterning where optical behavior matters alongside cure.
Are 1206, 369, and 784 interchangeable in electronic inks?
No. They can all appear in UV-curing discussions, but Longchang’s supported application paths and wavelength logic are different enough that buyers should shortlist them by film build, pigment burden, and exposure route rather than by name alone.
Need a tighter electronic-material-ink shortlist?
If your program is being limited by thin-film cure efficiency, long-wave penetration in a dark ink, or visible-light imaging precision, define that bottleneck first and then compare only the most relevant Longchang routes. That usually produces a cleaner qualification plan than treating every electronic material ink as the same job.