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    • 2. 发明申请
    • ERROR RESPONSE TEST SYSTEM AND METHOD USING TEST MASK VARIABLE
    • 错误响应测试系统和使用测试掩码变量的方法
    • WO2004001599A3
    • 2004-02-19
    • PCT/US0318206
    • 2003-06-03
    • HONEYWELL INTERNATION INC
    • GENDER THOMAS K
    • G06F11/28G06F11/36
    • G06F11/3688
    • An error response test system and method with increased functionality and improved performance is provided. The error response test system provides the ability to inject errors into the application under test to test the error response of the application under test in an automated and efficient manner. The error response system injects errors into the application through a test mask variable. The test mask variable is added to the application under test. During normal operation, the test mask variable is set to allow the application under test to operate normally. During testing, the error response test system can change the test mask variable to introduce an error into the application under test. The error response system can then monitor the application under test to determine whether the application has the correct response to the error.
    • 提供了具有增加的功能和改进的性能的错误响应测试系统和方法。 错误响应测试系统提供将错误注入到测试中的应用程序的能力,以自动化和高效的方式测试被测应用的错误响应。 错误响应系统通过测试掩码变量向应用程序中注入错误。 测试掩码变量被添加到被测应用程序。 在正常操作期间,测试掩码变量被设置为允许被测应用程序正常运行。 在测试期间,错误响应测试系统可以更改测试掩码变量,以将错误引入到被测应用程序中。 然后,错误响应系统可以监视被测应用程序,以确定应用程序是否对错误进行了正确响应。
    • 4. 发明申请
    • HYDRODYNAMIC THRUST BEARING
    • 水动力轴承
    • WO2002099296A1
    • 2002-12-12
    • PCT/US2002/017748
    • 2002-06-05
    • HONEYWELL INTERNATION INC.
    • AGUILAR, Scott, Grover
    • F16C17/04
    • F16C33/106F16C17/047F16C33/1075F16C2360/24
    • A hydrodynamic thrust bearing (10) having a series arrangement of three differently configured land sections (20) across the bearing axial surface that are separated by an oil supply groove (32) (on one side) and an oil return or collection groove (34) (on an opposite side). Configured in this manner, oil is provided onto the series of land sections by the oil supply groove and is collected after passing over the series of land sections by the separate oil collection groove. The use of separate oil supply and collection grooves acts to minimize mixing, of input oil with the heated return oil, thereby reducing oil film temperature and increasing bearing thrust load capacity.
    • 一种流体动力推力轴承(10),其具有穿过所述轴承轴向表面的三个不同构型的陆部区段(20)的串联布置,所述陆地区域由供油槽(32)(一侧)和回油或收集槽 )(在相对侧)。 以这种方式配置,通过供油槽将油提供到一系列的陆部区域上,并且在通过单独的采集槽通过一系列的陆部区域之后被收集。 使用单独的供油和收集槽用于最小化输入油与加热的返回油的混合,从而降低油膜温度并增加轴承推力负载能力。
    • 5. 发明申请
    • FLASH MEMORY MANAGEMENT SYSTEM AND METHOD
    • 闪存管理系统和方法
    • WO2003102782A1
    • 2003-12-11
    • PCT/US2003/018207
    • 2003-06-03
    • HONEYWELL INTERNATION INC.
    • CHOW, JamesGENDER, Thomas, K.
    • G06F12/02
    • G06F3/0616G06F3/064G06F3/0679G06F11/076G06F12/0246
    • The present invention provides a flash memory management system and method with increased performance. The flash memory management system provides the ability to efficiently manage and allocate flash memory use in a way that improves reliability and longevity, while maintaining good performance levels. The flash memory management system includes a free block mechanism, a disk maintenance mechanism, and a bad block detection mechanism. The free block mechanism provides efficient sorting of free blocks to facilitate selecting low use blocks for writing. The disk maintenance mechanism provides for the ability to efficiently clean flash memory blocks during processor idle times. The bad block detection mechanism provides the ability to better detect when a block of flash memory is likely to go bad. The flash status mechanism stores information in fast access memory that describes the content and status of the data in the flash disk. The new bank detection mechanism provides the ability to automatically detect when new banks of flash memory are added to the system. Together, these mechanisms provide a flash memory management system that can improve the operational efficiency of systems that utilize flash memory.
    • 本发明提供一种具有更高性能的闪存管理系统和方法。 闪存管理系统提供了以提高可靠性和寿命的方式有效地管理和分配闪存使用的能力,同时保持良好的性能水平。 闪速存储器管理系统包括空闲块机制,盘维护机制和坏块检测机制。 自由块机制提供了有效排序空闲块以便于选择低使用块进行写入。 磁盘维护机制提供了在处理器空闲时间期间有效地清理闪存块的能力。 坏块检测机制提供了更好地检测闪存块何时可能变坏的能力。 闪存状态机制将快速访问存储器中的信息存储在闪存盘中的数据的内容和状态。 新的银行检测机制提供了自动检测何时将新的闪存库添加到系统中的能力。 这些机制一起提供了可以提高利用闪存的系统的操作效率的闪存管理系统。
    • 8. 发明申请
    • ERROR RESPONSE TEST SYSTEM AND METHOD USING TEST MASK VARIABLE
    • 错误响应测试系统和使用测试掩码变量的方法
    • WO2004001599A2
    • 2003-12-31
    • PCT/US2003/018206
    • 2003-06-03
    • HONEYWELL INTERNATION INC.
    • GENDER, Thomas, K.
    • G06F11/00
    • G06F11/3688
    • An error response test system and method with increased functionality and improved performance is provided. The error response test system provides the ability to inject errors into the application under test to test the error response of the application under test in an automated and efficient manner. The error response system injects errors into the application through a test mask variable. The test mask variable is added to the application under test. During normal operation, the test mask variable is set to allow the application under test to operate normally. During testing, the error response test system can change the test mask variable to introduce an error into the application under test. The error response system can then monitor the application under test to determine whether the application has the correct response to the error.
    • 提供了具有增加的功能和改进的性能的错误响应测试系统和方法。 错误响应测试系统提供将错误注入到测试中的应用程序的能力,以自动化和高效的方式测试被测应用的错误响应。 错误响应系统通过测试掩码变量向应用程序中注入错误。 测试掩码变量被添加到被测应用程序。 在正常操作期间,测试掩码变量被设置为允许被测应用程序正常运行。 在测试期间,错误响应测试系统可以更改测试掩码变量,以将错误引入到被测应用程序中。 然后,错误响应系统可以监视被测应用程序,以确定应用程序是否对错误进行了正确响应。
    • 9. 发明申请
    • INDIUM FREE VERTICAL CAVITY SURFACE EMITTING LASER
    • 无空气垂直孔表面发射激光
    • WO2003058779A1
    • 2003-07-17
    • PCT/US2002/039912
    • 2002-12-13
    • HONEYWELL INTERNATION INC.
    • JOHNSON, Ralph, H.
    • H01S5/183
    • B82Y20/00H01S5/183H01S5/3211H01S5/32358H01S5/32366H01S5/34306H01S5/34346
    • Quantum wells (220) and associated barriers layers (225) can be grown to include nitrogen (N), aluminum (Al), antimony (Sb), phosphorous (P) and/or indium (In) placed within or about a typical GaAs substrate (201) to achieve long wavelength VCSEL performance, e.g., within the 1260 to 1650 nm range. In accordance with features of the present invention, a vertical cavity surface emitting laser (VCSEL), can include at least one quantum well (220) comprised of GaAsSb; barrier layers (225) sandwiching said at least one quantum well (220); and confinement layers (208, 212) sandwiching said barrier layers. Barrier and confinement layers can comprise of AlGaAs. Barrier layers can also be comprised of GaAsP. Nitrogen can be placed in quantum wells. Quantum wells can be developed up to and including 50 Å in thickness. Quantum wells can also be developed with a depth of at least 40 meV.
    • 可以生长量子阱(220)和相关的阻挡层(225)以包括放置在典型GaAs内或周围的氮(N),铝(Al),锑(Sb),磷(P)和/或铟(In) 衬底(201)以实现长波长VCSEL性能,例如在1260至1650nm范围内。 根据本发明的特征,垂直腔表面发射激光器(VCSEL)可以包括由GaAsSb组成的至少一个量子阱(220); 夹持所述至少一个量子阱(220)的阻挡层(225); 以及夹持所述阻挡层的限制层(208,212)。 阻挡层和限制层可以包括AlGaAs。 阻挡层也可以由GaAsP组成。 氮可以放在量子阱中。 量子阱可以开发到包括50 ANGSTROM的厚度。 量子阱也可以开发深度至少40 meV。