the weighting filter 8121FT-1 (IEC-268-1) 1 8121FT-1 is the weighting filter made by IEC-268-1 requirement, it must linked with either Model-8121C, to enable it to generate a weighting noise filter that complies with IEC-268-1 requirements, for undergoing the life testing of the loudspeaker and defining the rated power of the loudspeaker 2 When using please take note that: The input signal adopts the Pink Noise, and not other signal of noise sources. 3 Furthermore, the noise generated from this weighting filter also complies with the filter noise required by the JIS C5532. SUNLIGHT AUDIO SWEEPER 7116C Loudspeaker Polarity Tester 139B NOISE GENERATOR 8121C GAUSS METER 138 IMPEDANCE METER 152A DIGITAL HIGH-SPEED Fo METER 7117 C.
Model-8121C uses a logic circuit to generate Pseudo Random Noise, it is the newest and the most advanced design to generate audio white noise. It has a much flatter frequency response than using a diode. Model-8121C has: (1)White noise source. (2)Weighting filters. (3)Built-in power amplifier. (4) TRUE RMS voltage meter circuit. It can generate five different kinds of the noise spectrum, including White Noise, Pink Noise, and three kinds of Weighted Noise, that conform to the following nations standards:(1) JIS C5531, IEEE 219, CNS 4785 (2) EIA 426B(3) DIN 45573 1. White Noise: -3dB Bandwidth: 20Hzï½?100kHz, Roll off:-24dB / Oct. Flatness: �±1dB 2. Pink Noise: -3dB Bandwidth: 20Hzï½?20 kHz Roll-off: -24dB / Oct. Crest factor: 4 ( IEEE 219 ) Amplifier: 1.100W output is defined at an unclipped maximum output of sine wave. 2.Frequency response : 20 Hz~20 kHz ±0.2dB; 20 kHz~100kHz ±1dB 3. Output: With permanent short circuit protection. Load Impedance:
Even in a very noisy environment, Model-139B still has the ability to determine quickly and precisely the positive and negative polarity of a loudspeaker headphone receiver and every single unit in a loudspeaker system. Model-139B also includes 3 sets of external input terminal and selector which can be used to combine with other instruments, in order to measure the other features of a loudspeaker simultaneously. It is quite suitable for 100% Q.C. testing for loudspeakers in the production line. Loudspeaker Polarity Tester 139B Technical specification: (1) Pulse measuring method. (2) Polarity indicator : (a) Green indicator: Positive polarity with beep sound. (b) Red indicator: Negative polarity with no sound at all. (3) Five touch switches : (a) WF range: Suitable for measuring the polarity of the woofer. (b) M & T range: Suitable for measuring the polarity of midrange and tweeter. (c) EXT.1 to EXT.3: Used to select the instrument connected to the external input terminal. (4) Model-139B can be connected with Model-7116C, to measure the buzz, and rattle of a loudspeaker. Only one operator is needed. (5) Measuring distance: 2 to 4 Cm. from the center point. of the dust cover of the pre-measure loudspeaker. (6) Measuring sensor: Uses ECM. (7) Dimension ( m / m ): 85 ( height ) x 205 ( width ) x 280 ( depth ). (8) Weight: 2.3 Kg. SUNLIGHT AUDIO SWEEPER 7116C Loudspeaker Polarity Tester 139B NOISE GENERATOR 8121C GAUSS METER 138 IMPEDANCE METER 152A DIGITAL HIGH-SPEED Fo METER 7117 C.
Model-8121C uses a logic circuit to generate Pseudo Random Noise , it is the newest and the most advanced design to generate audio white noise. It has a much flatter frequency response than using a diode. Model-8121C has: (1)White noise source.(2)Weighting filters. (3)Built-in power amplifier. (4)�¢?? TRUE RMS �¢?? voltage meter circuit. It can generate five different kinds of noise spectrum, including White Noise, Pink Noise, and three kinds of �¢??Weighted Noise�¢??, that conforms to the following nation�¢??s standards:(1) JIS C5531, IEEE 219, CNS 4785 (2) EIA 426B(3) DIN 45573 1. White Noise: -3dB Bandwidth: 20Hz 100kHz, Roll off:-24dB / Oct. Flatness: �?�±1dB 2. Pink Noise: -3dB Bandwidth: 20Hz�¯�½?20 kHz Roll-off: -24dB / Oct. Crest factor: 4 ( IEEE 219 ) Amplifier: 1.100W output is defined at an unclipped maximum output of sine wave. 2.Frequency response : 20 Hz~20 kHz �±0.2dB; 20 kHz~100kHz �±1dB 3. Output: With permanent short circuit protection. Load Impedance: 3.2
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Many pretty colors are available for 2835 led strip light--- Red, Yellow, Blue, Green, and White RGB 2835 LED, you can use these indoor led strip lights DIY for your home or your commercial lighting. It has so wonderful heat dissipation, which makes it much more durable and stable. With 2835 RGB led stripes, it is a very high-brightness led chip, so the 2835 rgb led strip light is extremely bright than others. Difference Between RGB 5050 and 2835 Size: The numbers 5050 led strip light and 2835 led strip light refer to the dimensions of the individual interior strip lighting. 5050 led strip lumens are 5.0mm wide and 5.0mm long, while a 2835 LED is 2.8mm wide and 3.5mm long. Therefore, the led strip RG 5050 5m is physically larger than the 2835 led lights. Brightness: Due to their larger size, 5050 LEDs generally produce brighter illumination compared to the 2835 led size. The larger size allows for more diodes and, therefore, greater light output. If you want a more luminous lighting effect, the 5050 LED strip would be a better choice. Power Consumption: In terms of power efficiency, led strip 2835 RGBs are typically more energy-saving than 5050 led rope lights. This is because they are smaller and require less power to operate. If you prioritize minimizing power consumption, the 2835 LED strip may be more suitable for your needs. Flexibility: Both 5050 and 2835 LED strips are flexible and can be bent around corners or curved surfaces. However, the main difference lies in the number of diodes per segment. 5050 LED strips usually have three diodes (red, green, and blue) per segment, while 2835 LED strips often have only one diode per segment. Consequently, 5050 LED strips offer more color variation and can produce more dynamic lighting effects. In summary, if you prefer brighter illumination and more vibrant colors, the RGB 5050 LED strip is a better choice. On the other hand, if you prioritize power efficiency and still want flexible lighting options, the RGB 2835 LED strip may be a more suitable option for you. 2835 RGB LED Strip Details 2835 LED Strip Light. High Brightness 2835 LED chip. 120pcs LEDs/METER. DC12V, DC24V. It is extremely low heat with a voltage of 24V or 12V. It is touchable and safe for children with low voltage. Our led strip has ultra-strong 3M to a sticker. It can be cut the strip light as necessary. It is used in interior or exterior decoration. Single-color led strips and multi-color led strips are available. For home decoration, making it is very romantic.
Suja Global offers top-tier Magnetic Floor Sweeper designed to effortlessly remove metal debris, ensuring a safe . Explore our range of solutions. Suja Global prides itself on delivering innovative solutions that prioritize safety and efficiency in the workplace.Besides, one such solution is our range of Magnetic Floor Sweepers, meticulously designed to enhance cleanliness. Our Magnetic Floor Sweepers are engineered with advanced magnetic technology, enabling them. Moreover,this powerful magnetic capability ensures thorough cleanup of floors, pathways, and work areas, promoting a safer environment for employees . Designed for versatility and convenience, our Magnetic Floor Sweepers are available in various sizes and configurations to suit different applications and environments. Whether you need a compact sweeper for tight spaces or a heavy-duty model for larger areas, Suja Global has you covered. Our sweepers feature durable construction, ergonomic handles. At Suja Global, we understand the importance of efficiency in every aspect of business operations. Thats why our Magnetic Floor Sweepers are engineered for maximum effectiveness and minimal downtime. With their efficient magnetic pickup and quick-release mechanisms. Furthermore, our commitment to quality and customer satisfaction drives us to continuously innovate and improve our products. We conduct rigorous testing and quality assurance procedures to ensure that our Magnetic Floor Sweepers meet the highest standards. By choosing Suja Global, you can trust that youre investing in a solution that delivers exceptional results and long-term value for your business. In conclusion, Suja Globals Magnetic Floor Sweepers are essential tools for maintaining a safe, clean, and productive work environment. With their advanced magnetic technology, versatile design, and commitment to quality. Experience the difference with Suja Global and elevate the cleanliness and safety.
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A student physiograph, also known as a kymograph or physiological recording system, is a laboratory instrument used in physiology and biomedical research to record and analyze physiological signals and responses. Here's how it's used: Recording Physiological Signals: A student physiograph records various physiological signals such as heart rate, blood pressure, respiratory rate, muscle contractions, and electrical activity of the heart (ECG) or brain (EEG). These signals are typically measured using sensors or transducers that convert physiological phenomena into electrical signals. Experimental Setup: Researchers set up experiments by attaching sensors or electrodes to the subject (e.g., human, animal, or tissue preparation) to measure specific physiological parameters. The signals from these sensors are then transmitted to the physiograph for recording and analysis. Data Visualization: The physiograph records physiological signals over time, displaying them graphically on a rotating drum or digital screen. This allows researchers to visualize and analyze changes in physiological parameters in response to experimental manipulations, interventions, or stimuli. Data Analysis: Physiological recordings obtained from the student physiograph can be analyzed to extract various parameters such as amplitude, frequency, duration, and latency of physiological responses. This data analysis helps researchers quantify and interpret the physiological effects of experimental conditions or treatments. Teaching Tool: Student physiographs are commonly used in educational settings, such as undergraduate physiology or biomedical science laboratories, to teach students fundamental principles of physiological measurement, experimental design, and data analysis. Students learn how to set up experiments, record physiological signals, and interpret the results. Research Applications: In research laboratories, student physiographs are used for conducting experiments to investigate physiological mechanisms, pathophysiology of disease, effects of drugs or interventions, and responses to environmental stimuli. They are valuable tools for generating data that contributes to scientific understanding and medical advancements. Demonstration of Biological Concepts: Physiographs can also be used for demonstration purposes in public outreach events or scientific presentations. By recording and displaying physiological responses in real-time, researchers can illustrate biological concepts and engage audiences in understanding the complexity of living systems. Overall, student physiographs are versatile instruments that play a vital role in physiological research and education. They enable researchers and students to study, record, and analyze physiological responses, fostering a deeper understanding of human and animal biology.
Isolated organ baths are essential tools in pharmacology for studying the effects of drugs on isolated organs or tissues. Here's how they are used: Drug Screening and Testing: Isolated organ baths allow pharmacologists to assess the pharmacological activity of drugs on specific organs or tissues in a controlled environment. By exposing the isolated tissue to different concentrations of a drug, researchers can observe and measure its effects on physiological parameters such as contraction, relaxation, or electrical activity. Mechanism of Action Studies: Pharmacologists use isolated organ baths to investigate the underlying mechanisms of drug action. By examining how drugs modulate the contractile or electrical properties of isolated tissues, researchers can elucidate the pharmacodynamic pathways involved and gain insights into the drug's mode of action. Receptor Pharmacology: Isolated organ baths are particularly useful for studying receptor pharmacology. Researchers can assess the interaction between drugs and specific receptors present in the isolated tissue by measuring the dose-response relationship and determining the potency and efficacy of various pharmacological agents. Toxicity Testing: Isolated organ baths can also be used to evaluate the toxic effects of drugs on specific organs or tissues. By exposing the isolated tissue to increasing concentrations of a drug, researchers can assess its potential to induce adverse reactions such as tissue damage, impaired function, or cytotoxicity. Drug Development: Isolated organ baths play a crucial role in the early stages of drug development by providing valuable data on the pharmacological properties and safety profile of new drug candidates. Pharmacologists use this information to prioritize lead compounds for further preclinical and clinical evaluation. Teaching and Research: Isolated organ baths are widely used in academic settings for teaching pharmacology principles and conducting research experiments. They provide students and researchers with hands-on experience in experimental pharmacology techniques, allowing them to explore the effects of drugs on biological systems in a laboratory setting. Overall, isolated organ baths are versatile tools that facilitate the study of drug effects on isolated tissues, providing valuable insights into pharmacological mechanisms, drug-receptor interactions, and potential therapeutic applications. They are indispensable instruments in pharmacological research and drug discovery efforts.
The Franz diffusion cell apparatus is a laboratory instrument used in pharmaceutical research to study the release of drugs or active ingredients from topical formulations, such as creams, gels, ointments, or transdermal patches, across biological membranes. Here's how it's used: In Vitro Drug Release Studies: The Franz diffusion cell apparatus is primarily employed for conducting in vitro drug release studies. It consists of two compartments separated by a biological membrane (usually animal or human skin), with the test formulation applied to one side (donor compartment) and a suitable receptor medium (often a buffer solution) in the other side (receptor compartment). Membrane Permeation Studies: The apparatus allows researchers to investigate the permeation of drugs or active ingredients through biological membranes, mimicking the conditions encountered in vivo. By monitoring the concentration of the drug in the receptor medium over time, researchers can quantify the rate and extent of drug permeation across the membrane. Formulation Optimization: Pharmaceutical scientists use the Franz diffusion cell apparatus to evaluate the performance of different topical formulations and optimize their composition for enhanced drug delivery. Factors such as the type of excipients, formulation viscosity, drug concentration, and pH can be varied to assess their impact on drug permeation and skin penetration. Transdermal Patch Evaluation: For transdermal drug delivery systems, such as patches, the Franz diffusion cell apparatus is instrumental in assessing the release kinetics and permeation characteristics of drugs through the skin. This information is crucial for designing patches with optimal drug delivery profiles and ensuring therapeutic efficacy. Skin Penetration Studies: In addition to drug release, the Franz diffusion cell apparatus can be used to investigate the penetration of drugs or active ingredients into different layers of the skin. By analyzing samples collected from various depths within the skin, researchers can assess the distribution and localization of the drug following topical application. Bioequivalence Studies: The Franz diffusion cell apparatus is also utilized in bioequivalence studies to compare the performance of generic and reference topical formulations. By measuring the rate and extent of drug release and permeation, researchers can determine whether the generic formulation is therapeutically equivalent to the reference product.
In pyrogen testing on rabbits, a telethermometer plays a crucial role in monitoring body temperature changes. Here's how it's used: Temperature Measurement: Pyrogen testing involves the administration of a test substance (e.g., potential pharmaceutical products or medical devices) to the rabbit, followed by monitoring for signs of fever (pyrexia). A telethermometer is used to continuously measure the rabbit's body temperature before and after the administration of the test substance. Baseline Measurement: Before conducting the test, baseline body temperature readings are taken to establish a reference point. This helps in identifying any deviations from the normal temperature range during the test period. Detection of Pyrogenic Response: Following the administration of the test substance, the rabbit's body temperature is monitored closely using the telethermometer. An increase in body temperature above a predefined threshold indicates a pyrogenic response, suggesting the presence of fever-inducing substances (pyrogens) in the test substance. Real-time Monitoring: A telethermometer allows for real-time monitoring of body temperature changes, providing researchers with immediate feedback on the rabbit's physiological response to the test substance. This enables prompt decision-making regarding the continuation or termination of the test based on the observed pyrogenic response. Data Recording and Analysis: Telethermometers often come with data recording capabilities, allowing researchers to log temperature measurements at regular intervals throughout the testing period. This data can be analyzed to assess the onset, duration, and magnitude of the pyrogenic response, aiding in the interpretation of test results. Animal Welfare: Continuous temperature monitoring with a telethermometer helps ensure the welfare of the test animals by enabling early detection of fever and prompt intervention if necessary. This minimizes potential discomfort or distress experienced by the animals during the testing process. Overall, the use of a telethermometer in pyrogen testing on rabbits enhances the accuracy, reliability, and efficiency of the testing procedure, ultimately contributing to the safety evaluation of pharmaceutical products and medical devices intended for human use.
Grip strength meters are commonly used in research settings to assess the muscular strength of rodents, including rats and mice. Here's how they are utilized: Muscular Function Assessment: Grip strength meters provide a quantitative measure of the muscular strength of rodents by assessing their ability to grasp and hold onto a horizontal bar or grid with their forelimbs. This measurement reflects the overall neuromuscular function and is particularly useful in studies focused on muscle physiology, aging, neuromuscular disorders, and drug efficacy testing. Phenotypic Characterization: Grip strength measurements can be used as part of phenotypic characterization in animal models. Differences in grip strength between groups of rodents, such as strains, genders, ages, or experimental conditions, can provide insights into genetic factors, aging processes, disease progression, or the effects of interventions. Neurological and Neuromuscular Disorders: Grip strength meters are valuable tools for studying neurological and neuromuscular disorders in rodents. Changes in grip strength can indicate motor deficits associated with conditions such as muscular dystrophy, amyotrophic lateral sclerosis (ALS), spinal cord injury, or peripheral neuropathy. Researchers can use grip strength measurements to track disease progression, evaluate therapeutic interventions, or screen potential drug candidates. Pharmacological Studies: Grip strength assessments are often included in pharmacological studies to evaluate the effects of drugs or treatments on muscular function. For example, researchers can investigate the impact of muscle relaxants, analgesics, or muscle-building agents on grip strength in rodent models. These studies help assess the safety and efficacy of therapeutic interventions targeting muscular function. Aging Research: Grip strength measurements are commonly used in aging research to assess age-related changes in muscular function and frailty in rodents. By longitudinally monitoring grip strength in aging animals, researchers can evaluate the progression of age-related decline in muscular strength and explore interventions to mitigate age-associated deficits. Overall, grip strength meters serve as valuable tools for assessing muscular function and studying a wide range of physiological and pathological conditions in rodent models, contributing to our understanding of neuromuscular biology and the development of therapeutic strategies.
Digital plethysmometers can indeed be used to measure edema in rodent models. Here's how they can be applied for this purpose: Paw Volume Measurement: One common method involves measuring changes in paw volume as an indicator of edema formation. The rodent's paw is placed in a chamber connected to the digital plethysmometer. By measuring the displacement of water or air caused by the paw, the instrument can accurately quantify changes in paw volume over time. Inflammatory Models: In research settings, edema is often induced by inflammatory stimuli such as carrageenan injection or trauma. Digital plethysmometers allow researchers to monitor the progression of edema by measuring changes in paw volume at various time points post-induction. Drug Screening: Researchers can use digital plethysmometers to evaluate the efficacy of anti-inflammatory drugs or compounds in reducing edema formation. By comparing paw volume measurements between treated and untreated groups, the effectiveness of potential therapeutics can be assessed. Genetic Studies: Digital plethysmometers are also useful in studying the genetic basis of edema formation. By comparing edema responses between different strains of rodents or genetically modified models, researchers can identify genes or pathways involved in regulating inflammation and fluid accumulation. Longitudinal Monitoring: Digital plethysmometers enable longitudinal monitoring of edema progression and resolution over time. This longitudinal approach provides valuable insights into the dynamics of edema formation and the temporal effects of interventions.
Guar gum, also called guaran, is a galactomannan polysaccharide extracted from guar beans. India has about 70 % share of total guar gum production in the world.One use of guar gum is a thickening agent in foods and medicines for humans and animals. Because it is gluten-free, it is used as an additive to replace wheat flour in baked goods. It has been shown to reduce serum cholesterol and lower blood glucose levels.
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