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High-Quality Nd:Yag 1064nm 532nm For Tattoo Removal - Company

I bring a compact, reliable Nd:Yag 1064nm 532nm For Tattoo Removal system to your clinic, built for busy practices seeking real results. As a part of our High-Quality line, this multi-wavelength laser targets stubborn inks with precision, delivering faster clearance and less downtime. For your Company, it means lower per-session cost, safer procedures, and happier clients who return for touch-ups and refer others. With 1064nm and 532nm wavelengths, we can break colors at different depths, while built-in cooling protects skin and improves comfort. I’ve seen clinics expand services, boost revenue, and build trust when we offer reliable, simple operation and strong aftercare. Choose this system for High-Quality results and a dependable partner you can rely on.

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Nd:Yag 1064nm 532nm For Tattoo Removal Trusted by Pros Factory-Direct Excellence

Choosing a tattoo removal laser with dual wavelengths Nd:YAG 1064nm and 532nm offers versatile ink targeting across common colors. The 1064nm wavelength treats dark inks; 532nm handles reds, oranges, and some greens. Short pulse, high-energy bursts fragment pigment with minimal collateral damage, delivering reliable results professionals trust. Factory-direct supply often ensures consistent build quality, streamlined service, and competitive pricing for clinics, distributors, and OEM partners. For global buyers, key considerations include strict QA, international safety certifications, and solid after-sales support. Seek stable energy calibration, repeatable pulse performance, easy maintenance, and genuine spare parts. Verify lead times, warranty terms, installation and training, and the option for customization such as software interfaces or cooling configurations. Direct-from-manufacturer sourcing supports flexible MOQs, transparent documentation, and scalable supply for markets worldwide.

Nd:Yag 1064nm 532nm For Tattoo Removal Trusted by Pros Factory-Direct Excellence
Parameter 1064 nm 532 nm Notes
Wavelength (nm) 1064 532 Nd:YAG fundamental at 1064 nm and frequency-doubled 532 nm via KTP crystal
Pulse duration (ns) 5–10 5–10 Q-switched nanosecond pulses for pigment fragmentation
Repetition rate (Hz) 1–10 1–10 Clinical operating range for sequential pulses
Pulse energy (mJ) 180–500 120–350 Depends on spot size and safety limits
Spot size (mm) 2–6 2–6 Interchangeable handpieces; common options 2, 4, 6 mm
Fluence range (J/cm2) 0.6–3.5 0.5–3.0 Adjusted per ink color and skin type
Ink color compatibility Black, Blue, Green Red, Yellow, Orange 1064 targets deeper/persistent colors; 532 for superficial warm colors
Safety certifications IEC 60601-1; IEC 60601-2-22 IEC 60601-1; IEC 60601-2-22 Regional regulatory approvals may vary; verify local data
Cooling system DCD (Dynamic Cooling Device) + epidermal protection DCD Minimizes epidermal damage during pulses
Handpiece / channel Dual handpieces; independent 1064 channel Dual handpieces; independent 532 channel Independent parameter control per wavelength
Treatment sessions (typical) 6–12 sessions 6–12 sessions Depends on ink depth, color, and skin type
Skin type suitability Fitzpatrick I–VI with professional assessment Fitzpatrick I–VI with professional assessment Assess risk of hypopigmentation and adverse effects
Power supply 110–240 VAC, 50/60 Hz 110–240 VAC, 50/60 Hz Typical clinic power requirement
Weight (approx.) 60–90 kg 60–90 kg Stationary clinical unit; mobility limited
Dimensions (W×D×H, cm) 50–60 × 40–50 × 110–130 50–60 × 40–50 × 110–130 Compact footprint for clinic setup
Operating environment Temperature 15–30°C; Humidity 30–60% Temperature 15–30°C; Humidity 30–60% Maintains consistent performance
Warranty 1–2 years 1–2 years Extended service options may apply
Maintenance interval Annual calibration Annual calibration Professional servicing recommended

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Nd:Yag 1064nm 532nm For Tattoo Removal Products Factory

Data Dimension: Wavelength-Based Clearance Efficiency in Tattoo Removal

20 40 60 80 100 0 68% 54% 82% 73% 1064nm Solo 532nm Solo Dual-Wavelength Tunable Pulse Sequence Clearance (%) Treatment Option

Explanation: This chart presents a data dimension called Wavelength-Based Clearance Efficiency in Tattoo Removal. The bars represent the average clearance percentage achieved after a standard series of treatment sessions using different wavelength configurations. The four categories shown are: 1064nm Solo, 532nm Solo, Dual-Wavelength (1064nm + 532nm), and Tunable Pulse Sequence. The idea is to illustrate how wavelength choice influences pigment targeting and treatment speed under comparable clinical conditions. The data in this visualization is synthetic for demonstration purposes and is not derived from a specific clinic or patient cohort. Each bar indicates the mean pigment reduction observed over equivalent session counts, with higher values corresponding to more effective pigment clearance. The 1064nm solo line reflects deeper penetration and is typically more effective for darker pigments, while the 532nm solo is generally more responsive to superficial colors but risks quicker fading of superficial layers. Dual-wavelength configurations aim to combine depth and surface pigment engagement, often producing higher clearance percentages in fewer sessions. Tunable Pulse Sequence represents a hypothetical approach where pulse durations and energy are adjusted to balance efficacy and safety, potentially improving clearance for mixed pigment populations. The chart emphasizes the trade-offs between efficacy, safety, and downtime, since higher clearance can imply greater energy delivery, which may increase transient side effects. In practice, clinicians select wavelength strategies based on tattoo color mix, skin type, and patient tolerance. The visualization can guide product developers in designing tattoo removal devices and protocols that maximize clearance while maintaining acceptable patient experience. It also highlights the need for transparent reporting of metrics such as average clearance, variability across treatments, and the influence of adjunct therapies. For decision makers, this kind of data framing supports prioritization of dual-wavelength capabilities and intelligent sequencing in new device generations. This emphasis guides investment toward safer, faster clearance outcomes.

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