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1)  CCP-MAC protocol
CCP-MAC协议
2)  CCP Protocol
CCP协议
1.
Based on CAN bus and CCP protocol,and using CANape as the software of its master machine,a calibration system for ECU products of electronically-controlled diesel engine is developed.
基于CAN总线,采用CCP协议,使用商业化标定软件CANape作为标定系统的上位机软件,针对电控柴油机产品ECU开发了一套标定系统。
2.
The principle and communication method of CCP protocol and the various working modes of ECU′s calibration were introduced,and the design method of calibration system based on CPP protocol on automobile electronic control unit was discussed.
介绍了CCP协议的基本原理、通信方式以及用于ECU标定的各种工作模式,讨论了一种基于该协议的汽车电控单元标定系统的设计方法。
3.
The rational calibration for the parameter on HEV battery management system can optimize entire vehicle control tactics This paper instroduced a calibration system which based on CCP protocol,do calibration to the parameter on HEV battery managemen system,integrated CCP driver in BMS source program,use INCA software realized the calibration on BMS,optimize the performance o vehicle.
本文介绍了一种基于CCP协议,对HEV蓄电池管理系统各种参数进行标定的系统,在BMS源程序中开发集成了CCP的驱动程序,利用INCA软件实现了对BMS的标定,优化了整车的性能。
3)  CCP
CCP协议
1.
Development of Hybrid Electric Vehicle ECU Calibration System Based on CCP;
基于CCP协议的HEV用ECU标定系统设计
2.
Calibration of HEV Vehicle Control Unit Based on CCP;
基于CCP协议标定混合动力车整车控制器
3.
ABS Calibration System Based on CCP
基于CCP协议的ABS标定系统
4)  IEEE 802.11 MAC protocol
IEEE802.11 MAC协议
5)  New-MAC protocol
New-MAC协议
6)  S-MAC protocol
S-MAC协议
1.
S-MAC protocol with service differentiation;
一种结合业务区分的S-MAC协议
2.
This paper analyzes the working process of S-MAC protocol and the principle of backoff algorithm.
在分析S-MAC协议的工作过程以及退避算法的基础上,针对二进制指数退避机制的缺点进行了改进。
3.
While S-MAC protocol combines advantages of fixed allocation category and random competition category of MAC protocol,and its main design goals are energy efficiency and expansibility.
11的DCF机制是基于竞争类的代表;而S-MAC协议则综合了固定分配类和随机竞争类的优点并以节能和可扩展性为主要设计目标。
补充资料:CC
分子式:C9H11N3O4·HCl
分子量:261.66
CAS号:10212-25-6

性质:白色针状晶体或结晶性粉末。熔点248-250℃(分解)。易溶于水,微溶于醇,几乎不微于乙醚、氯仿和苯。

制备方法:D-阿拉伯糖与氰氨、甲醇、氨水在40-45℃反应4小时,生成2-氨基-β-D-阿拉伯糖噁唑啉,将其与盐酸制成盐酸盐,与丙炔腈在60℃反应1小时,即生成环胞苷盐酸盐,总收率68%。

用途:抗肿瘤药。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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