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waterless diffuser hd723

Dual-Atomizer Waterless Diffuser HD723

الفئات: Diffuser
  • Dual-atomizer design for two fragrances
  • 100% pure essential oil diffusion

  • Waterless & mess-free

  • Built-in 4000mAh rechargeable battery

  • Whisper-quiet operation (<35dB)

  • Soft-touch button with fabric finish

  • Timer: 1H / 2H / 4H

  • Ideal for home, office, or outdoor use

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وصف المنتج

Two Fragrances, One Device

The HD723 features a dual-atomizer system that allows effortless switching between two essential oil scents. Perfect for dynamic moods or shared spaces.

Waterless Aromatherapy Experience

Enjoy pure, undiluted essential oils with no water needed. The advanced atomization delivers consistent fragrance without spills or humidity.

Cordless, Powerful, and Stylish

With a built-in 4000mAh rechargeable lithium battery, this diffuser gives you wireless freedom and hours of soothing aroma—anywhere you need it.

Designed for Everyday Elegance

Wrapped in a soft-touch fabric and topped with a simple button interface, the HD723 blends seamlessly into any interior. Its handle makes it easy to carry from room to room.

Customizable Timing for Your Routine

Choose from 1H, 2H, or 4H timer settings for controlled aromatherapy sessions, whether you're relaxing, focusing, or sleeping.

waterless diffuser hd723

المواصفات

الطاقة

Built-in 4000mAh rechargeable lithium battery

Control Method

Touch button

المؤقِّت

1H / 2H / 4H

Essential Oil Type

Pure essential oils only, no water required

لماذا تختار أجهزة تنقية الهواء التي نقدمها؟

High-Performance Air Purification
Advanced Filtration Options
99.91.9% البكتيرية
معدل الإزالة
ارتفاع CADR
(معدل توصيل الهواء النظيف)
H13/H14 HEPA Filtration Options
Optional 270–280 nm UVC Module
H14 H13 extended filter life
lifespan HEPA filters
Third-Party Tested Filtration Performance

أفضل 3 مصنعي أجهزة تنقية الهواء OEM/ODM في الصين

وضع العلامات الخاصة لأجهزة تنقية الهواء ذات العلامات التجارية لعقود من الزمن

تقدم شركة HisoAir خدمات وضع العلامات الخاصة على أجهزة تنقية الهواء للعملاء الذين قاموا بالفعل بمراجعة تصميم ومواصفات أجهزة تنقية الهواء من HisoAir ووافقوا عليها. بمجرد توقيع الاتفاقية، سيتم وضع علامة باسم العميل على المنتجات المختارة.

أجهزة تنقية الهواء من OEM من البداية إلى النهاية

تقدم شركة HisoAir خدمات تنقية الهواء من مصنعي المعدات الأصلية للشركاء الذين لديهم المواصفات اللازمة في المنتج. تقدم شركة HisoAir خدمات البحث والتصميم والهندسة والنماذج أو التعديلات والاختبار والإنتاج بكميات كبيرة بناءً على التصميم النهائي للعميل.

شعار شركة 3M 3M باللون الأحمر.
شعار الناقل
شعار هاير
شعار ألين - موثوق به في مجال تنقية الهواء
شعار tcl 0
شعار هانيويل - الشركة الرائدة في مجال حلول تنقية الهواء والترشيح
شعار LG - شركة مبتكرة في الأجهزة المنزلية الذكية وحلول تنقية الهواء
شعار فيليبس - شركة رائدة في مجال التكنولوجيا الصحية وحلول تنقية الهواء

موثوق بها من قبل علامات تجارية عالمية شهيرة

مع أكثر من 20 عاماً من الخبرة، نحن متخصصون في تقديم حلول IAQ التي تتكامل بسلاسة مع احتياجات العلامات التجارية الأكثر شهرة في العالم. كن شريكاً معنا لتحقيق أداء استثنائي مصمم خصيصاً لسوقك

الشهادات

" لقد وجدت موقع hisoair الإلكتروني من جوجل، ولأكون صادقًا، لم أكن متأكدًا من موثوقيتهم في البداية، لكنهم أكملوا متطلبات مشروعي في شهر ونصف. وعندما تطلب المشروع الإضافة العاجلة لمستشعر ثاني أكسيد الكربون، أنجزوا عينة جديدة في غضون أسبوع، مما يجعلهم أكثر الشركات المصنعة احترافية وتركيزًا على العملاء الذين تعاملت معهم على الإطلاق "
TMS 1
توماس
مورد حكومي من ألمانيا
" نعلم جميعًا أن كوفيد كان كارثة رهيبة للعالم بأسره، خاصة بالنسبة للهند، لقد اشتريت جهاز تنقية الهواء من هيسو اير، لقد كان هذا مفيدًا جدًا لي ولمكتبي ومنزلي وعائلتي وأصدقائي، لقد عملت مع ألوين على مدار السنوات السبع الماضية، وهو من هيسو اير، يمكنني أن أؤكد أنه شخص موثوق به للغاية وفعال للغاية ومحترف للغاية "
شهادات العملاء 2
رانجيث بالا
مستورد المنتجات الطبية من الهند
" نحن شركة لديها أكثر من 15 عامًا من الخبرة في العمل مع المؤسسات الخاصة والقطاعات الخاصة، وقد تعاونا مع شركة هيسو لمدة 3 سنوات، ونحن ممتنون حقًا للأعمال التي قدمتها لنا شركة هيسو. نحن ممتنون للتعاون مع شيري والسيد لي "
شهادات العملاء
هيرينا
المستشفيات والمورد الحكومي من رومانيا

انضم إلى الرواد العالميين الذين يعتمدون على خبرتنا في حلول تنقية الهواء.

استفسارك يهمنا. سنتصل بك قريباً، وستظل بياناتك آمنة دائماً.
لقد تعاونا مع هيسو لمدة 3 سنوات، ونحن ممتنون حقًا للأعمال التي قدمها لنا هيسو. نحن ممتنون للتعاون مع شيري والسيد لي.
TMS 1
توماس
مورد حكومي من ألمانيا
Contaminant Engineering•3 min read

PFAS Water Filtration Technologies Explained: Carbon, Resin & RO

Key Takeaway:

PFAS reduction depends on the specific compounds present, treatment media, contact time, water chemistry, and system design. Activated carbon, ion exchange, and Reverse Osmosis address PFAS through different mechanisms.

PFAS are a large family of persistent fluorinated compounds that can occur in drinking-water supplies. Their treatment behavior varies significantly by molecular structure, chain length, functional group, concentration, and the chemistry of the source water.

Granular Activated Carbon (GAC) removes PFAS primarily through adsorption. It is generally more effective for many longer-chain PFAS, while shorter-chain compounds tend to break through more quickly. Carbon performance depends on media properties, Empty Bed Contact Time (EBCT), competing organic matter, loading, and replacement frequency.

Ion-exchange resins use charged functional sites to capture many PFAS compounds. Properly selected anion-exchange media can provide high capacity and may perform better than conventional activated carbon for some shorter-chain PFAS, although performance still depends on water chemistry and competing ions.

Reverse Osmosis (RO) uses membrane separation rather than adsorption. Properly designed RO systems can provide broad reduction across many PFAS compounds as well as dissolved salts and other contaminants. Unlike carbon or resin, however, RO also produces a concentrate stream that must be managed.

No single technology should be selected from a PFAS label alone. System design should consider which PFAS compounds are present, their concentrations, required reduction targets, flow rate, media life, and the applicable third-party certification or validation requirements.

HisoAir Water Technical Series
Product Discovery•3 min read

How to Choose an Under-Sink Water Purifier for Modern Kitchens

Key Takeaway:

Match the treatment technology to your water quality first, then evaluate cabinet space, faucet configuration, flow rate, drain and power requirements, and filter replacement needs.

Choosing an under-sink water purifier starts with water chemistry. Carbon filtration is well suited to chlorine, taste, odor, and many organic contaminants, while Reverse Osmosis is more appropriate when dissolved salts, fluoride, nitrates, or broader dissolved contaminants need to be reduced.

For compact kitchens, tankless RO systems eliminate the conventional storage tank and can significantly reduce the space required under the sink. However, membrane capacity stated in GPD does not directly equal faucet flow. When comparing systems, check the actual dispensing flow rate, inlet-pressure requirement, recovery ratio, and whether a booster pump is required.

Installation architecture also matters. Many RO systems require a drain connection, electrical power, and either a dedicated drinking-water faucet or a compatible multi-function faucet. High-flow carbon systems can often connect directly to the existing cold-water line with a simpler installation, but pressure drop and available faucet flow should still be verified.

RO also removes much of the naturally occurring dissolved mineral content. Where taste or mineral balance is a priority, a post-RO remineralization stage can be added. Filter life should be evaluated by both rated capacity and local water quality rather than replacement time alone.

The right system is therefore not simply the smallest or highest-GPD model. It is the configuration that matches the target contaminants, available cabinet space, desired faucet setup, peak dispensing demand, and maintenance expectations.

HisoAir Water Technical Series
Water Quality•2 min read

What Does TDS Mean in Drinking Water? Measurement vs Contaminant Reality

Key Takeaway:

A TDS meter estimates the overall concentration of dissolved ionic substances from electrical conductivity. It cannot identify specific contaminants or determine whether water is chemically safe.

Total Dissolved Solids (TDS) refers to the combined concentration of dissolved substances in water. Most handheld TDS meters do not measure TDS directly. Instead, they measure electrical conductivity (EC) and convert that reading into an estimated parts-per-million (ppm) value.

This means a TDS reading can indicate how much dissolved ionic material is present, but not what that material actually is. Calcium, magnesium, sodium, nitrates, and other dissolved ions can all contribute to conductivity, yet a simple TDS meter cannot distinguish between them.

TDS meters are also not suitable for detecting trace contaminants such as PFAS, many VOCs, pesticides, pharmaceuticals, or disinfection byproducts. These substances may be present at concentrations far below the level needed to noticeably change electrical conductivity.

A low TDS reading therefore does not guarantee safe drinking water, and a higher TDS reading does not automatically indicate contamination. Water-treatment decisions should be based on laboratory testing for specific contaminants of concern rather than TDS alone.

HisoAir Water Technical Series
Technology Selection•2 min read

RO vs UF Water Filtration: Understanding Pore Sizes & Dissolved Minerals

Key Takeaway:

Ultrafiltration can reduce bacteria, turbidity, and suspended particles while retaining most naturally occurring dissolved minerals. Reverse Osmosis provides much broader reduction of dissolved salts and smaller contaminants.

Ultrafiltration (UF) typically uses hollow-fiber membranes with pore sizes in the approximate 0.01–0.1 micron range. These membranes physically retain turbidity, suspended solids, colloids, and many microorganisms while allowing dissolved minerals and salts to remain in the water.

Reverse Osmosis (RO) operates at a much finer separation level. Unlike UF, RO can substantially reduce dissolved ions such as sodium, calcium, fluoride, nitrates, and other contributors to total dissolved solids (TDS). This makes RO more suitable when dissolved-salt reduction is a primary treatment objective.

UF generally requires less system pressure and produces little or no continuous concentrate stream in many point-of-use configurations. RO typically requires greater pressure and produces a reject-water stream, but delivers broader contaminant reduction.

For water with acceptable TDS and mineral content, UF can be a simpler mineral-retaining treatment option. Where dissolved salts, fluoride, nitrates, or broader dissolved contaminants are a concern, RO is generally the more appropriate technology.

HisoAir Water Technical Series
Technology Selection•4 min read

Carbon Block vs Reverse Osmosis: Which Fits Your Need?

Key Takeaway:

Choose RO for dissolved inorganic salts and heavy metals; choose Carbon Block for chemical taste/odor, no wastewater, and high line-pressure flow.

Reverse Osmosis (RO) and Carbon Block filtration represent two fundamentally different treatment methods: membrane separation and adsorption. Understanding these differences helps determine which technology is better suited to a specific water-quality requirement.

Reverse Osmosis uses a semi-permeable membrane with pore sizes of approximately 0.0001 microns. It can significantly reduce dissolved inorganic contaminants such as TDS, fluoride, nitrates, and certain heavy metals. Because water must be forced through the membrane, RO systems require sufficient pressure or a booster pump and generate a concentrated wastewater stream.

Carbon Block filtration relies primarily on adsorption through compressed activated carbon, commonly with nominal pore sizes around 0.5–5 microns. It is highly effective for chlorine, chloramines, VOCs, taste, and odor, while allowing substantially higher direct-flow rates without producing wastewater.

From an operating perspective, Carbon Block systems are generally simpler, require less energy, and avoid the water loss associated with RO. RO involves higher system complexity and operating cost, but provides substantially broader reduction of dissolved contaminants that Carbon Block alone cannot address.

HisoAir Water Technical Series

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