M39003/01-7200H Allicdata Electronics
Allicdata Part #:

M39003/01-7200H-ND

Manufacturer Part#:

M39003/01-7200H

Price: $ 3.72
Product Category:

Capacitors

Manufacturer: Vishay Sprague
Short Description: CAP TANT 1.5UF 20% 50V AXIAL
More Detail: 1.5µF Hermetically Sealed Tantalum Capacitors 50V ...
DataSheet: M39003/01-7200H datasheetM39003/01-7200H Datasheet/PDF
Quantity: 1000
Moisture Sensitivity Level (MSL): 1 (Unlimited)
Lead Free Status / RoHS Status: Contains lead / RoHS non-compliant
100 +: $ 3.37932
Stock 1000Can Ship Immediately
$ 3.72
Specifications
Operating Temperature: -55°C ~ 125°C
Failure Rate: C (0.01%)
Features: Military
Manufacturer Size Code: B
Lead Spacing: --
Height - Seated (Max): --
Size / Dimension: 0.185" Dia x 0.474" L (4.70mm x 12.04mm)
Package / Case: Axial
Mounting Type: Through Hole
Lifetime @ Temp.: --
Series: Military, MIL-PRF-39003/1, CSR13
ESR (Equivalent Series Resistance): --
Type: Hermetically Sealed
Voltage - Rated: 50V
Tolerance: ±20%
Capacitance: 1.5µF
Moisture Sensitivity Level (MSL): --
Part Status: Active
Lead Free Status / RoHS Status: --
Packaging: Bulk 
Description

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Tantalum capacitors are one of the most widely used components in the electronics industry, and the M39003/01-7200H is a very versatile and reliable type of tantalum capacitor. This capacitor is designed for use in high-temperature, high-reliability applications such as automotive, medical, and aerospace. It is also widely used in military and industrial applications.

The M39003/01-7200H is a cylindrical, polarized capacitor with a long-lasting tantalum anode and an organic electrolyte housed in a hermetically sealed metal case. The anode is covered with a film of metal oxide which acts as the dielectric, and the terminals are connected to the anode and to the organic electrolyte. The casing is made of either stainless steel or aluminum and is designed with a spring-loaded terminal to keep the internal components secure even in extreme conditions.

The M39003/01-7200H is designed to operate at a significantly higher temperature than ordinary capacitors, and is capable of providing stable electrical performance for extended periods of time. The high temperature performance is due in part to the use of the organic electrolyte, which has a lower heat capacity than other capacitor materials, and the partial pressure of oxygen within the case. The combination of these features allows the capacitor to remain stable up to temperatures as high as 225°C (437°F).

The M39003/01-7200H also has excellent electrical characteristics. The DC working voltage of the capacitor is from 6.3V to 16V depending on diameter and capacity, with a tolerance of ±10%. This wide range of voltage types makes it ideal for use in applications such as signal conditioning, DC-DC converters, and surge protection. Additionally, the minimum insulation resistance of these capacitors is 1000 MΩ, while the dissipation factor is in the range of 0.1 - 0.2%.

In terms of its working principle, the M39003/01-7200H is a polarized capacitor, which means it must be correctly oriented in a circuit to ensure proper operation. This capacitor consists of two electrical terminals that connect to an electrolyte, which is essentially a conducting liquid or gel that facilitates electrical flow between the metal oxide film and the electrodes. When a voltage is applied to the terminals, the electrolyte is ionized, resulting in a field of electric charge across the oxide film. This electric field creates a dielectric barrier, allowing current to flow between each electrode.

In summary, the M39003/01-7200H is a reliable and versatile type of polarized tantalum capacitor with excellent electrical characteristics and long-term performance. This capacitor is designed for high-temperature, high-reliability applications such as automotive, medical, and aerospace, and is also widely used in military and industrial applications. Its wide range of voltage types makes it suitable for many applications, while its stable electrical performance and durable construction make it reliable in extreme conditions. Finally, the capacitors working principle is based on a dielectric barrier created by an electric field, which allows for current flow between the terminals.

The specific data is subject to PDF, and the above content is for reference

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