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  • Reusable Cotton Sanitary Pad
  • Reusable Cotton Sanitary Pad
Reusable Cotton Sanitary Pad

Reusable Cotton Sanitary Pad

Rs 69  / PackGet Best Price

Minimum Order Quantity: 50 Pack

SizeMedium
TypeRegular Pads
FabricCotton
ScentedNO
AbsorbencyHigh
Protection Layer5 to 7 layer
WeightLight Weight
ColorPrinted All Colors
BrandSafexi
Country of OriginMade in India

Product NameCloth Pads
Absorbency High Absorbency
Surface LayerBamboo Charcoal/Super Soft CottonInner LayerMicrofiberBottom LayerWaterproof PULLayer1-4 LayersMaterialOrganic Cotton/ Waterproff PUL/ Bamboo Fiber/Bamboo Charcoal/VelourShapeWinged/ WinglessWeightS:18g to 47gColorPrinting Colorful or Plain Color More Than 100 ColorsFeaturesBreathable/Anti-leak/ Soft/ Safe/ Waterproof/ DurableBrand NameSafexiStyleReusableTime UsedDay And NightDesignFree DesignOEM/ODMWelcomedPlace of OriginNew Delhi,IndiaSamplePayable Sample  AvailableMOQ50 PcsPackageOPP/PVC/ or CustomizedDeliveryAbout 7-25Days After Receiving Deposit and Confirmation of Package Layout



Additional Information:

  • Production Capacity: 10000

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Oscillating Saw Blade

Oscillating Saw Blade

Rs 1,500  / PieceGet Best Price

Minimum Order Quantity: 10 Piece

An oscillating saw blade, also known as a multitool blade or oscillating multitool blade, is a specialized cutting tool designed for use with oscillating multitools. These blades are versatile and can be used for a wide range of cutting tasks in woodworking, construction, remodeling, and DIY projects. Here are some key features and characteristics of oscillating saw blades:

  1. Design: Oscillating saw blades typically have a straight or curved shape and are made from high-quality steel or bi-metal materials. The blade may have teeth along its edge for cutting through various materials, including wood, metal, plastic, drywall, and composite materials.

  2. Universal Compatibility: Oscillating saw blades are designed to fit most oscillating multitool brands and models available on the market. They feature a universal blade mount or attachment mechanism that allows for quick and easy blade changes.

  3. Variety of Blade Types: There are many different types of oscillating saw blades available, each designed for specific cutting applications. Common blade types include:

    • Woodcutting Blades: These blades feature fine teeth for cutting through wood and wood-based materials such as plywood, hardwood, and particleboard.
    • Metal Cutting Blades: Blades designed for cutting through various metal materials, including pipes, nails, screws, and thin metal sheets. They are typically made from high-speed steel (HSS) or bi-metal materials for durability and longevity.
    • Bi-Metal Blades: These blades combine high-speed steel (HSS) teeth for cutting hard materials with a flexible steel body for durability and flexibility. They are suitable for cutting through wood, metal, plastics, and other materials.
    • Carbide-Tipped Blades: Blades featuring carbide-tipped teeth for cutting through hard materials such as hardwood, laminate flooring, ceramic tile, and cement board. Carbide-tipped blades offer increased durability and cutting performance.
    • Grout Removal Blades: Blades designed specifically for removing grout from tile joints. They feature carbide-grit or diamond-coated edges for effective grout removal without damaging the surrounding tiles.
    • Scraper Blades: Blades with flat edges used for scraping tasks, such as removing adhesives, paint, caulk, and stickers from surfaces. They can also be used for surface preparation and cleaning.
  4. Quick and Easy Blade Changes: Oscillating multitools feature a tool-free blade change mechanism that allows users to quickly and easily swap out blades without the need for additional tools. This makes it convenient to switch between different blade types for various cutting tasks.

  5. Versatility: Oscillating saw blades are highly versatile and can be used for a wide range of cutting, scraping, sanding, and grinding tasks. They are ideal for precision cutting in tight spaces and hard-to-reach areas where traditional saws cannot reach.

  6. Precision Cutting: The oscillating motion of the multitool blade provides precise and controlled cutting, allowing users to achieve clean and accurate cuts with minimal effort. This makes oscillating saw blades suitable for detailed work and intricate cuts.

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Mri Machine

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An MRI (Magnetic Resonance Imaging) machine is a sophisticated medical imaging device used to visualize internal structures and organs within the body. It employs a powerful magnetic field, radio waves, and computer technology to generate detailed images of soft tissues, organs, bones, and other anatomical structures. MRI machines are widely used in healthcare settings to aid in the diagnosis, monitoring, and treatment planning of various medical conditions.

Key components and features of an MRI machine include:

  1. Magnet:

    • The core component of an MRI machine is a large magnet, typically a superconducting magnet or a permanent magnet. This magnet creates a strong, uniform magnetic field that aligns the hydrogen nuclei (protons) in the body's tissues.
  2. Radiofrequency Coils:

    • Radiofrequency coils are positioned around the patient's body or specific body part being imaged. These coils transmit radiofrequency pulses and receive the resulting signals emitted by the protons as they realign after being disturbed by the magnetic field.
  3. Gradient Coils:

    • Gradient coils are smaller coils within the MRI machine that produce varying magnetic field strengths in different directions. These gradients are used to encode spatial information into the MRI signals, allowing for the creation of detailed, three-dimensional images.
  4. RF Shielding:

    • MRI machines are housed in RF-shielded rooms to prevent external radiofrequency interference from affecting image quality. The RF shielding also prevents the transmission of electromagnetic signals from the MRI machine to external electronic devices.
  5. Control Console:

    • The control console is where the MRI technologist operates the MRI machine and controls various imaging parameters such as magnetic field strength, gradient settings, and image acquisition sequences.
  6. Computer System:

    • A sophisticated computer system processes the raw MRI data acquired by the machine and reconstructs it into high-resolution images. Advanced image processing techniques may be used to enhance image quality and extract additional information from the MRI data.
  7. Patient Table:

    • The patient table is a movable platform on which the patient lies during the MRI scan. It can be adjusted to position the patient correctly within the magnet and to facilitate imaging of different body parts.
  8. Bore or Tunnel:

    • The bore or tunnel is the cylindrical opening of the MRI machine through which the patient enters. MRI machines may have different bore sizes and configurations to accommodate various patient sizes and imaging needs.
  9. Safety Features:

    • MRI machines are equipped with safety features to ensure the well-being of patients and staff. These may include emergency stop buttons, intercom systems for communication between the technologist and the patient, and monitoring systems to detect any adverse reactions during the scan.
  10. Patient Comfort Features:

    • To enhance patient comfort during the MRI scan, some machines may include features such as ambient lighting, music or audio systems, and communication devices to provide reassurance and reduce anxiety.

MRI machines are used to diagnose and monitor a wide range of medical conditions, including neurological disorders, musculoskeletal injuries, cardiovascular diseases, and cancer. Their non-invasive nature and ability to produce detailed images without ionizing radiation make them invaluable tools in modern medicine

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Wilson Spinal Frame

Rs 29,500  / PieceGet Best Price

Wilson spinal frame
The Wilson spinal frame is a medical device used in orthopedic surgery to assist in the stabilization and alignment of the spine during surgical procedures. It is commonly used in procedures such as spinal fusion, where two or more vertebrae are joined together to treat conditions such as spinal deformities, degenerative disc disease, or spinal fractures.

Here are some key features and aspects of the Wilson spinal frame:

  1. Design: The Wilson spinal frame typically consists of a rigid, horseshoe-shaped metal frame with adjustable components. The frame is designed to be placed around the patient's torso, providing support and stabilization to the spine during surgery. It may include padded cushions or supports to increase patient comfort and reduce pressure points.

  2. Adjustability: The Wilson spinal frame is adjustable to accommodate patients of different sizes and anatomies. The frame may have telescoping or sliding components that can be lengthened or shortened as needed to fit the patient properly.

  3. Fixation Points: The Wilson spinal frame includes multiple fixation points where surgical instruments, such as retractors or distractors, can be attached to hold the spine in the desired position during surgery. These fixation points allow the surgeon to manipulate and stabilize the spine while performing the surgical procedure.

  4. Compatibility with Imaging: The Wilson spinal frame is often designed to be compatible with imaging equipment such as X-ray machines or fluoroscopy devices. This allows the surgeon to obtain real-time imaging during surgery to ensure accurate placement and alignment of spinal implants or instrumentation.

  5. Sterilization Compatibility: The Wilson spinal frame is made from high-quality, sterilizable materials such as stainless steel or titanium. It can be sterilized using standard methods such as autoclaving or ethylene oxide (ETO) sterilization to ensure its safety and cleanliness for use in the operating room.

  6. Patient Positioning: The Wilson spinal frame may be used in conjunction with other surgical positioning devices to achieve the optimal surgical approach and patient positioning. It helps to maintain the patient in the desired position throughout the procedure, ensuring access to the surgical site and minimizing the risk of complications.

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Surgical Instrument Cable

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A surgical instrument cable is a specialized cable used to connect surgical instruments, such as endoscopes, laparoscopic instruments, or robotic surgical devices, to control units or consoles. These cables are designed to transmit power, signals, or data between the instrument and the control unit with precision and reliability. Surgical instrument cables come in various configurations, including single-use disposable cables and reusable cables that can withstand sterilization processes. They play a crucial role in modern minimally invasive surgeries, allowing surgeons to manipulate instruments remotely and perform complex procedures with greater precision and safety.

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Endoscope Fiber Optic Cable

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An endoscope fiber optic cable is a flexible, thin, and light-transmitting cable used in medical endoscopy procedures. It allows light to be transmitted from a source to illuminate the internal organs or cavities being examined by the endoscope's camera. The cable consists of numerous optical fibers bundled together, encased in a protective sheath, and is designed to be inserted into the body through natural openings or small incisions. This technology enables doctors to visualize and diagnose various medical conditions without the need for invasive surgery.

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Bipolar Forceps Cable Electrosurgery

Rs 2,300  / PieceGet Best Price
Bipolar Forceps Cable electrosurgery

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