产品描述
该IS200DAMAG1BCB是一种印刷电路板 (PCB),设计用作通用电气创新系列低压 620 框架驱动系统中的栅极驱动放大器/接口板。这些驱动器可用作GE的Mark VI Speedtronic系统的一部分,以控制气体或蒸汽工业系统。MKVI是该公司经过数十年的研发和从Mark I开始的多次迭代后发布的最后一批Speedtronic系统之一。
该IS200DAMAG1BCB是一个整洁的电路板,可与IGBT模块的两条腿配合使用。它通过直接连接连接到上相支路和下相支路 IGBT(通常为 CM1000HA-28 H Powerrex)。该板还连接到桥接器个性接口板 (BPIA)。通过两个连接器上的多个引脚进行连接,包括 12 针垂直连接器和 6 针垂直连接器。GE出版物GEI-100262A提供了每个引脚及其使用和连接路线的完整列表。
PCB的特点:
导电性:PCB上通常包含一层或多层导电材料(如铜),用于形成电路路径。
绝缘性:导电材料被绝缘材料(如环氧树脂、玻璃纤维等)所包围,以防止电路之间的短路。
稳定性:PCB材料能够抵抗一定的物理和化学影响,如温度、湿度和震动。
可制造性:PCB设计必须考虑到制造的可行性和成本效益。
可维修性:良好的PCB设计应该易于检测和替换故障元件。
Product description
The IS200DAMAG1BCB is a printed circuit board (PCB) designed to be used as a gate drive amplifier/interface board in GE's innovative series of low-voltage 620 frame drive systems. These drives can be used as part of GE's Mark VI Speedtronic system to control gas or steam industrial systems. The MKVI is one of the last Speedtronic systems to be released by the company after decades of development and multiple iterations starting with the Mark I.
The IS200DAMAG1BCB is a neat circuit board that can be used with both legs of the IGBT module. It is connected to the upper phase branch and the lower phase branch IGBT (usually CM1000HA-28 H Powerrex) by direct connection. The board is also connected to the Bridge Personality Interface Board (BPIA). Connection via multiple pins on two connectors, including a 12-pin vertical connector and a 6-pin vertical connector. The GE publication GEI-100262A provides a complete list of each pin and its use and connection routes.
PCB features:
Electrical conductivity: The PCB usually contains one or more layers of conductive material (such as copper) to form a circuit path.
Insulation: The conductive material is surrounded by insulating materials (such as epoxy resin, glass fiber, etc.) to prevent short circuits between circuits.
Stability: PCB materials can resist certain physical and chemical effects, such as temperature, humidity and vibration.
Manufacturability: PCB design must take into account the feasibility and cost effectiveness of manufacturing.
Maintainability: A good PCB design should be easy to detect and replace failing components.
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