IS200VVIBH1CAC | GE | Suitable for inducing high pressure in drugs
¥7,844.00
Module Number: IS200VVIBH1CAC
Product status: Discontinued
Delivery time: In stock
Sales country: All over the world
Product situation: Brandnew , one year warranty
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Description
IS200VVIBH1CAC | GE | Suitable for inducing high pressure in drugs
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We provide considerate service and complete parts
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As shown in the test results in Figures 7 to 9, the leakage current of tantalum capacitors E and F significantly increases compared to solid-state aluminum electrolytic capacitors when the voltage exceeds 20 V. IS200VVIBH1CAC indicates that tantalum capacitors are not suitable for the high-voltage detonation scheme of sudden sensing agents. Most electronic detonator modules have a power consumption of less than 10 during the delay phase μ A. And the leakage current of tantalum capacitor F is higher than 3 μ A. Occupying 30% of the working current can cause insufficient detonation voltage and result in misfire. Due to the safety hazards of tantalum capacitor E in room temperature ESR testing, IS200VVIBH1CAC only compares solid-state aluminum electrolytic capacitor D and tantalum capacitor F in this high-temperature test under bias voltage of 20 V and ambient temperature of 55 ℃. As shown in Figure 10, there is no abnormality in the ESR of both types of capacitors, and the leakage of tantalum capacitor F is as high as 10 μ A. Similar to the working current, tantalum capacitor F is not suitable for high-voltage detonation of sudden sensing agents and has been verified.
In summary, solid-state aluminum electrolytic capacitors have little change in relative capacity, low high-temperature leakage current, lower ESR, and strong overcurrent ability. They can be matched with various reagents and are suitable for use under high voltage conditions by combining with insensitive reagents. Compared to others, IS200VVIBH1CAC tantalum capacitors can only use sensitive chemical solutions, which is more safe and environmentally friendly. Although tantalum capacitors have no significant differences in some parameters compared to aluminum electrolytic capacitors, they are all inferior to solid-state aluminum electrolytic capacitors. High temperature leakage is one order of magnitude larger than solid-state aluminum electrolytic capacitors, and their application in high-temperature environments should be limited. Tantalum capacitors are limited in their ability to withstand voltage and overcurrent, which limits their use in conjunction with transient sensing agents. After IS200VVIBH1CAC fails, it will burn and can only be used in conjunction with sensitive chemicals, resulting in much lower safety in electronic detonators compared to aluminum electrolytic capacitors. Therefore, it is not suitable for promotion as an energy storage capacitor solution for electronic detonator modules. Compared to tantalum capacitors, solid-state aluminum electrolytic capacitors have stable production, short supply cycles, and significant price advantages. Table 1 lists the characteristics of solid-state aluminum electrolytic capacitors and tantalum capacitors for reference.
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