资料介绍
I noted over a period of years, a persistent reported problem in supplier defect data. One of the top 5 problems every month
was related to incorrect part marking. The rejection may have been called ‘wrong part received’, ‘wrong part number sent’,
‘wrong PO number’, ‘paperwork does not match part’, or other. This rejection category was often the #1 supplier defect
month-to-month, it was always in the top 5, and was typically the #1 defect code when data was totaled for the year. It did
not matter what quality system was in place at the suppliers (ISO, QS, MIL, or other) if a supplier had the problem at all it
was typically a repeat problem.
Supplier Corrective actions had been ineffective at stopping the problem and I was at a loss as to what to do to significantly
reduce the number of occurrences. The typical SCAR (Supplier Corrective Action Request) reply was that the supplier had
instructions in place to check the part number and revision of the part, they attributed the problem to operator error, mixed
paperwork, mixed factory order packets, etc. and took ‘action’ to prevent the problem. However, the problem persisted, it
would typically dip for a time when a concerted effort was directed at the supplier, but it seemed to always come back.
Finally, I took the time to do some benchmarking and examined data to find suppliers that did not have problems with
shipping us the wrong part number. In some cases it may have been purely a result of ‘luck’ or dedicated personnel that was
the cause of not shipping us wrong part number since I could find no significant difference in their systems as compared to
others. I finally came across a supplier that had taken effective corrective action a couple of years before and had eliminated
the problem. Both their data and mine showed that they had not had a problem with mis-marked parts for the two years
since. It had become simply a non-issue for them. I had a chance to visit their facility and look closely at their method.
They had been using the method so long that they were curious that I would find it interesting.
was related to incorrect part marking. The rejection may have been called ‘wrong part received’, ‘wrong part number sent’,
‘wrong PO number’, ‘paperwork does not match part’, or other. This rejection category was often the #1 supplier defect
month-to-month, it was always in the top 5, and was typically the #1 defect code when data was totaled for the year. It did
not matter what quality system was in place at the suppliers (ISO, QS, MIL, or other) if a supplier had the problem at all it
was typically a repeat problem.
Supplier Corrective actions had been ineffective at stopping the problem and I was at a loss as to what to do to significantly
reduce the number of occurrences. The typical SCAR (Supplier Corrective Action Request) reply was that the supplier had
instructions in place to check the part number and revision of the part, they attributed the problem to operator error, mixed
paperwork, mixed factory order packets, etc. and took ‘action’ to prevent the problem. However, the problem persisted, it
would typically dip for a time when a concerted effort was directed at the supplier, but it seemed to always come back.
Finally, I took the time to do some benchmarking and examined data to find suppliers that did not have problems with
shipping us the wrong part number. In some cases it may have been purely a result of ‘luck’ or dedicated personnel that was
the cause of not shipping us wrong part number since I could find no significant difference in their systems as compared to
others. I finally came across a supplier that had taken effective corrective action a couple of years before and had eliminated
the problem. Both their data and mine showed that they had not had a problem with mis-marked parts for the two years
since. It had become simply a non-issue for them. I had a chance to visit their facility and look closely at their method.
They had been using the method so long that they were curious that I would find it interesting.
下载该资料的人也在下载
下载该资料的人还在阅读
更多 >
- AD常用3D封装库(STEP)下载 370次下载
- 如何使用STEP 7和COM PROFIBUS配置EM 277? 0次下载
- 如何使用STEP-BY-STEP在KEIL5中建立TM4C1294项目 23次下载
- 基于RFSA3715下的5MHz to 4000MHz Digital Step Attenuator
- 基于RFSA3613下的5MHz to 6000MHz Digital Step Attenuator
- 基于RFSA3413下的5MHz to 6000MHz Digital Step Attenuator
- 基于RFSA3513下的5MHz to 6000MHz Digital Step Attenuator
- 基于RFSA3523下的5MHz to 6000MHz Digital Step Attenuator
- 基于RFSA2534下的50 MHz to 4000 MHz Digital Step Attenuator
- 基于RFSA3623下的5MHz to 6000MHz Digital Step Attenuator
- 基于RFSA2524下的SERIAL CONTROLLED DIGITAL STEP ATTENUATOR 50MHz TO 4000MHz 5-BIT 1dB LSB
- Step-by-step-design-of-a-basic-embedded-system-using-an-Intel-MAX10-FPGA.pdf 22次下载
- 西门子STEP5教程 (SIMATIC step5 inst
- 5Step Supplier Development Pro
- 5Step Supplier Development Flo
- 定时器在STEP 7V5.x及STEP 7(TIA Portal)的不同处理步骤 1066次阅读
- 西门子博途:通过STEP 7在线诊断的方法 2118次阅读
- 西门子STEP7 5.X 系统兼容性问题解析 1165次阅读
- 机器人如何用来进行STEP跳步变量 546次阅读
- 基于一步步蒸馏(Distilling step-by-step)机制 957次阅读
- CP340的ASCII通讯(STEP7) 2512次阅读
- TIA V16与STEP 7 V5.5控制面板对比 1744次阅读
- STEP 7 V16在工程工作流的新功能 1815次阅读
- 如何使用.step命令模拟电容器的充电时间 1189次阅读
- Altium Designer导出3D STEP模型的方法 4w次阅读
- 关于STEP7库功能字符串转换 3661次阅读
- 5G Release 15中4-Step RACH介绍 3025次阅读
- 如何成功导入STEP9 2869次阅读
- Check Point宣布订立新的安全保护标准 可检测SSL加密流量却不影响正常工作 1219次阅读
- 关于Step-7硬件故障的检测方法 6876次阅读
下载排行
本周
- 1HFSS电磁仿真设计应用详解PDF电子教程免费下载
- 24.30 MB | 128次下载 | 1 积分
- 2雷达的基本分类方法
- 1.25 MB | 4次下载 | 4 积分
- 3电感技术讲解
- 827.73 KB | 2次下载 | 免费
- 4从 MSP430™ MCU 到 MSPM0 MCU 的迁移指南
- 1.17MB | 2次下载 | 免费
- 5有源低通滤波器设计应用说明
- 1.12MB | 2次下载 | 免费
- 6RA-Eco-RA2E1-48PIN-V1.0开发板资料
- 35.59 MB | 2次下载 | 免费
- 7面向热插拔应用的 I2C 解决方案
- 685.57KB | 1次下载 | 免费
- 8爱普生有源晶体振荡器SG3225EEN应用于储能NPC、新能源
- 317.46 KB | 1次下载 | 免费
本月
- 12024年工控与通信行业上游发展趋势和热点解读
- 2.61 MB | 763次下载 | 免费
- 2HFSS电磁仿真设计应用详解PDF电子教程免费下载
- 24.30 MB | 128次下载 | 1 积分
- 3继电保护原理
- 2.80 MB | 36次下载 | 免费
- 4正激、反激、推挽、全桥、半桥区别和特点
- 0.91 MB | 32次下载 | 1 积分
- 5labview实现DBC在界面加载配置
- 0.57 MB | 21次下载 | 5 积分
- 6在设计中使用MOSFET瞬态热阻抗曲线
- 1.57MB | 15次下载 | 免费
- 7GBT 4706.1-2024家用和类似用途电器的安全第1部分:通用要求
- 7.43 MB | 14次下载 | 免费
- 8H桥中的电流感测
- 545.39KB | 7次下载 | 免费
总榜
- 1matlab软件下载入口
- 未知 | 935113次下载 | 10 积分
- 2开源硬件-PMP21529.1-4 开关降压/升压双向直流/直流转换器 PCB layout 设计
- 1.48MB | 420061次下载 | 10 积分
- 3Altium DXP2002下载入口
- 未知 | 233084次下载 | 10 积分
- 4电路仿真软件multisim 10.0免费下载
- 340992 | 191360次下载 | 10 积分
- 5十天学会AVR单片机与C语言视频教程 下载
- 158M | 183329次下载 | 10 积分
- 6labview8.5下载
- 未知 | 81578次下载 | 10 积分
- 7Keil工具MDK-Arm免费下载
- 0.02 MB | 73804次下载 | 10 积分
- 8LabVIEW 8.6下载
- 未知 | 65985次下载 | 10 积分
评论
查看更多