ReadEeprom.c 15 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338
  1. /*********************************************************************************************************
  2. * 模块名称:ReadEeprom.c
  3. * 摘 要:ReadEeprom模块,读写数据
  4. * 当前版本:1.0.0
  5. * 作 者:anycrying
  6. * 完成日期:2021年04月26日
  7. * 内 容:
  8. * 注 意:
  9. **********************************************************************************************************
  10. * 取代版本:
  11. * 作 者:
  12. * 完成日期:
  13. * 修改内容:
  14. * 修改文件:
  15. *********************************************************************************************************/
  16. /*********************************************************************************************************
  17. * 包含头文件
  18. *********************************************************************************************************/
  19. #include "ReadEeprom.h"
  20. #include "Main.h"
  21. #include "gd32e230x_conf.h"
  22. #include "At24cxx.h"
  23. #include "string.h"
  24. #include "Relay.h"
  25. #include "Sn74hc573.h"
  26. /*********************************************************************************************************
  27. * 宏定义
  28. *********************************************************************************************************/
  29. /*********************************************************************************************************
  30. * 枚举结构体
  31. *********************************************************************************************************/
  32. /*********************************************************************************************************
  33. * 内部变量定义
  34. *********************************************************************************************************/
  35. //static uint8_t Eeprom_Rbuf[RELAY_para_sum]={0};
  36. extern uint8_t AC3PPDU_active_chn;
  37. extern uint32_t AC3PPDU_Modbus_Reg[AC3PPDU_Modbus_Reg_len];
  38. extern uint32_t hlw8110_base[Output_ChN_default + 1];
  39. /*********************************************************************************************************
  40. * 内部函数声明
  41. *********************************************************************************************************/
  42. /*********************************************************************************************************
  43. * 内部函数实现
  44. *********************************************************************************************************/
  45. /*********************************************************************************************************
  46. * 函数名称:ReadEeprom
  47. * 函数功能:读出Eeprom的数据
  48. * 输入参数:void
  49. * 输出参数:void
  50. * 返 回 值:void
  51. * 创建日期:2024年04月26日
  52. * 注 意:
  53. *********************************************************************************************************/
  54. void ReadEeprom(void)
  55. {
  56. uint8_t i = 0;
  57. uint8_t j = 0;
  58. uint32_t temp0 = 0;
  59. uint32_t temp1 = 0;
  60. //从eeprom中读出数据
  61. AT24CxxRead(0, Eeprom_Rbuf, RELAY_para_sum);
  62. //读出通道数
  63. if((Eeprom_Rbuf[ERom_RL_Ch_N_addr] < 1) || (Eeprom_Rbuf[ERom_RL_Ch_N_addr] > Output_ChN_default))
  64. {
  65. Eeprom_Rbuf[ERom_RL_Ch_N_addr] = Output_ChN_default;
  66. }
  67. AC3PPDU_active_chn = Eeprom_Rbuf[ERom_RL_Ch_N_addr];
  68. //读出输入阈值
  69. for(j = 0;j < ERom_ViLit_max_ByteN;j++)
  70. {
  71. temp0 = 8 * j;
  72. temp0 = 24 - temp0;
  73. AC3PPDU_Modbus_Reg[Mb_Dbuff_ViLit_max_Addr] += Eeprom_Rbuf[ERom_ViLit_max_Addr + j] << temp0;
  74. AC3PPDU_Modbus_Reg[Mb_Dbuff_ViLit_min_Addr] += Eeprom_Rbuf[ERom_ViLit_min_Addr + j] << temp0;
  75. AC3PPDU_Modbus_Reg[Mb_Dbuff_IiLit_max_Addr] += Eeprom_Rbuf[ERom_IiLit_max_Addr + j] << temp0;
  76. AC3PPDU_Modbus_Reg[Mb_Dbuff_WiLit_max_Addr] += Eeprom_Rbuf[ERom_WiLit_max_Addr + j] << temp0;
  77. AC3PPDU_Modbus_Reg[Mb_Dbuff_kWhiLit_max_Addr] += Eeprom_Rbuf[ERom_kWhiLit_max_Addr + j] << temp0;
  78. }
  79. if((AC3PPDU_Modbus_Reg[Mb_Dbuff_ViLit_max_Addr] < Vin_LTmin_default) || (AC3PPDU_Modbus_Reg[Mb_Dbuff_ViLit_max_Addr] > Vin_LTmax_default))
  80. {
  81. AC3PPDU_Modbus_Reg[Mb_Dbuff_ViLit_max_Addr] = Vin_LTmax_default;
  82. }
  83. if((AC3PPDU_Modbus_Reg[Mb_Dbuff_ViLit_min_Addr] < Vin_LTmin_default) || (AC3PPDU_Modbus_Reg[Mb_Dbuff_ViLit_min_Addr] > Vin_LTmax_default))
  84. {
  85. AC3PPDU_Modbus_Reg[Mb_Dbuff_ViLit_min_Addr] = Vin_LTmin_default;
  86. }
  87. if(AC3PPDU_Modbus_Reg[Mb_Dbuff_IiLit_max_Addr] > Iin_LTmax_default)
  88. {
  89. AC3PPDU_Modbus_Reg[Mb_Dbuff_IiLit_max_Addr] = Iin_LTmax_default;
  90. }
  91. if(AC3PPDU_Modbus_Reg[Mb_Dbuff_WiLit_max_Addr] > Win_LTmax_default)
  92. {
  93. AC3PPDU_Modbus_Reg[Mb_Dbuff_WiLit_max_Addr] = Win_LTmax_default;
  94. }
  95. if(AC3PPDU_Modbus_Reg[Mb_Dbuff_kWhiLit_max_Addr] > kWhin_LTmax_default)
  96. {
  97. AC3PPDU_Modbus_Reg[Mb_Dbuff_kWhiLit_max_Addr] = kWhin_LTmax_default;
  98. }
  99. //读出输出阈值
  100. for(i = 0;i < Output_ChN_default;i++)
  101. {
  102. for(j = 0;j < 4;j++)
  103. {
  104. temp0 = 8 * j;
  105. temp0 = 24 - temp0;
  106. temp1 = 4 * i;
  107. temp1 += j;
  108. AC3PPDU_Modbus_Reg[Mb_Dbuff_VLit1_max_Addr + i] += Eeprom_Rbuf[ERom_VLit1_max_Addr + temp1] << temp0;
  109. AC3PPDU_Modbus_Reg[Mb_Dbuff_VLit1_min_Addr + i] += Eeprom_Rbuf[ERom_VLit1_min_Addr + temp1] << temp0;
  110. AC3PPDU_Modbus_Reg[Mb_Dbuff_ILit1_max_Addr + i] += Eeprom_Rbuf[ERom_ILit1_max_Addr + temp1] << temp0;
  111. AC3PPDU_Modbus_Reg[Mb_Dbuff_WLit1_max_Addr + i] += Eeprom_Rbuf[ERom_WLit1_max_Addr + temp1] << temp0;
  112. AC3PPDU_Modbus_Reg[Mb_Dbuff_kWhLit1_max_Addr + i] += Eeprom_Rbuf[ERom_kWhLit1_max_Addr + temp1] << temp0;
  113. }
  114. if(AC3PPDU_Modbus_Reg[Mb_Dbuff_VLit1_max_Addr + i] > Default_Voltage_Max)
  115. {
  116. AC3PPDU_Modbus_Reg[Mb_Dbuff_VLit1_max_Addr + i] = 0;
  117. }
  118. if(AC3PPDU_Modbus_Reg[Mb_Dbuff_VLit1_min_Addr + i] > Default_Voltage_Max)
  119. {
  120. AC3PPDU_Modbus_Reg[Mb_Dbuff_VLit1_min_Addr + i] = 0;
  121. }
  122. if(AC3PPDU_Modbus_Reg[Mb_Dbuff_ILit1_max_Addr + i] > Default_Current_Max)
  123. {
  124. AC3PPDU_Modbus_Reg[Mb_Dbuff_ILit1_max_Addr + i] = 0;
  125. }
  126. if(AC3PPDU_Modbus_Reg[Mb_Dbuff_WLit1_max_Addr + i] > Default_Power_Max)
  127. {
  128. AC3PPDU_Modbus_Reg[Mb_Dbuff_WLit1_max_Addr + i] = 0;
  129. }
  130. if(AC3PPDU_Modbus_Reg[Mb_Dbuff_kWhLit1_max_Addr + i] > AC3MAX_CONSUME)
  131. {
  132. AC3PPDU_Modbus_Reg[Mb_Dbuff_kWhLit1_max_Addr + i] = 0;
  133. }
  134. }
  135. //读出输入状态阈值
  136. AC3PPDU_Modbus_Reg[Mb_Dbuff_LT_ST_Addr] = Eeprom_Rbuf[ERom_LT_ST_Addr];
  137. //读出输出状态阈值
  138. for(i = 0;i < Output_ChN_default;i++)
  139. {
  140. temp0 = 2 * i;
  141. AC3PPDU_Modbus_Reg[Mb_Dbuff_CH1LT_ST_Addr + i] = Eeprom_Rbuf[ERom_CH1LT_ST_Addr + temp0];
  142. }
  143. //check threshoud enable
  144. for(i = 0;i < Output_ChN_default;i++)
  145. {
  146. if(AC3PPDU_Modbus_Reg[Mb_Dbuff_VLit1_max_Addr + i] < THRESHOULD_JUDGMENT)
  147. {
  148. AC3PPDU_Modbus_Reg[Mb_Dbuff_CH1LT_ST_Addr + i] &= (Shield_Vmax_Threshould_Disable);
  149. }
  150. if(AC3PPDU_Modbus_Reg[Mb_Dbuff_VLit1_min_Addr + i] < THRESHOULD_JUDGMENT)
  151. {
  152. AC3PPDU_Modbus_Reg[Mb_Dbuff_CH1LT_ST_Addr + i] &= (Shield_Vmin_Threshould_Disable);
  153. }
  154. if(AC3PPDU_Modbus_Reg[Mb_Dbuff_ILit1_max_Addr + i] < THRESHOULD_JUDGMENT)
  155. {
  156. AC3PPDU_Modbus_Reg[Mb_Dbuff_CH1LT_ST_Addr + i] &= (Shield_Imax_Threshould_Disable);
  157. }
  158. if(AC3PPDU_Modbus_Reg[Mb_Dbuff_WLit1_max_Addr + i] < THRESHOULD_JUDGMENT)
  159. {
  160. AC3PPDU_Modbus_Reg[Mb_Dbuff_CH1LT_ST_Addr + i] &= (Shield_Wmax_Threshould_Disable);
  161. }
  162. if(AC3PPDU_Modbus_Reg[Mb_Dbuff_kWhLit1_max_Addr + i] < THRESHOULD_JUDGMENT)
  163. {
  164. AC3PPDU_Modbus_Reg[Mb_Dbuff_CH1LT_ST_Addr + i] &= (Shield_Kwhmax_Threshould_Disable);
  165. }
  166. }
  167. //read ChN status
  168. AC3PPDU_Modbus_Reg[Mb_Dbuff_CHNLT_ST_Addr] = Eeprom_Rbuf[ERom_CHNLT_ST_Addr]; //add by liyi
  169. //读出输出通道开通和断开延时
  170. for(i = 0;i < Output_ChN_default;i++)
  171. {
  172. AC3PPDU_Modbus_Reg[Mb_Dbuff_RL_Ton1_Addr + i] = Eeprom_Rbuf[ERom_RL_Ton1_Addr + i];
  173. AC3PPDU_Modbus_Reg[Mb_Dbuff_RL_Toff1_Addr + i] = Eeprom_Rbuf[ERom_RL_Toff1_Addr + i];
  174. if((AC3PPDU_Modbus_Reg[Mb_Dbuff_RL_Ton1_Addr + i] < RELAY_ontime_default) || (AC3PPDU_Modbus_Reg[Mb_Dbuff_RL_Ton1_Addr + i] > RELAY_ontime_max))
  175. {
  176. AC3PPDU_Modbus_Reg[Mb_Dbuff_RL_Ton1_Addr + i] = RELAY_ontime_default;
  177. }
  178. if((AC3PPDU_Modbus_Reg[Mb_Dbuff_RL_Toff1_Addr + i] < RELAY_offtime_default) || (AC3PPDU_Modbus_Reg[Mb_Dbuff_RL_Toff1_Addr + i] > RELAY_offtime_max))
  179. {
  180. AC3PPDU_Modbus_Reg[Mb_Dbuff_RL_Toff1_Addr + i] = RELAY_offtime_default;
  181. }
  182. }
  183. // read Ch N open or close delay
  184. AC3PPDU_Modbus_Reg[Mb_Dbuff_RL_TonN_Addr] = Eeprom_Rbuf[ERom_RL_TonN_Addr]; //add by liyi
  185. AC3PPDU_Modbus_Reg[Mb_Dbuff_RL_ToffN_Addr] = Eeprom_Rbuf[ERom_RL_ToffN_Addr];
  186. if((AC3PPDU_Modbus_Reg[Mb_Dbuff_RL_TonN_Addr] < RELAY_ontime_default) || (AC3PPDU_Modbus_Reg[Mb_Dbuff_RL_TonN_Addr] > RELAY_ontime_max))
  187. {
  188. AC3PPDU_Modbus_Reg[Mb_Dbuff_RL_TonN_Addr] = RELAY_ontime_default; //add by liyi
  189. }
  190. if((AC3PPDU_Modbus_Reg[Mb_Dbuff_RL_ToffN_Addr] < RELAY_offtime_default) || (AC3PPDU_Modbus_Reg[Mb_Dbuff_RL_ToffN_Addr] > RELAY_offtime_max))
  191. {
  192. AC3PPDU_Modbus_Reg[Mb_Dbuff_RL_ToffN_Addr] = RELAY_offtime_default; //add by liyi
  193. }
  194. //read consumer from eeprom
  195. for(i =0; i < Output_ChN_default;i++)
  196. {
  197. // temp0 = i << 2;
  198. // temp1 = 8 * i;
  199. // AC3PPDU_Modbus_Reg[Mb_Dbuff_Out1Para_Addr + temp1 + 6] += (Eeprom_Rbuf [ERom_TotalWh1_Addr +temp0+0] << 24);
  200. // AC3PPDU_Modbus_Reg[Mb_Dbuff_Out1Para_Addr + temp1 + 6] += (Eeprom_Rbuf [ERom_TotalWh1_Addr +temp0+1] << 16);
  201. // AC3PPDU_Modbus_Reg[Mb_Dbuff_Out1Para_Addr + temp1 + 6] += (Eeprom_Rbuf [ERom_TotalWh1_Addr +temp0+2] << 8);
  202. // AC3PPDU_Modbus_Reg[Mb_Dbuff_Out1Para_Addr + temp1 + 6] += (Eeprom_Rbuf [ERom_TotalWh1_Addr +temp0+3]);
  203. //Mb_Dbuff_kWhAP_Addr
  204. // temp0 = i << 2;
  205. // AC3PPDU_Modbus_Reg[Mb_Dbuff_kWhAP_Addr + i] += (Eeprom_Rbuf [ERom_TotalWh1_Addr +temp0+0] << 24);
  206. // AC3PPDU_Modbus_Reg[Mb_Dbuff_kWhAP_Addr + i] += (Eeprom_Rbuf [ERom_TotalWh1_Addr +temp0+1] << 16);
  207. // AC3PPDU_Modbus_Reg[Mb_Dbuff_kWhAP_Addr + i] += (Eeprom_Rbuf [ERom_TotalWh1_Addr +temp0+2] << 8);
  208. // AC3PPDU_Modbus_Reg[Mb_Dbuff_kWhAP_Addr + i] += (Eeprom_Rbuf [ERom_TotalWh1_Addr +temp0+3]);
  209. temp0 = i << 2;
  210. hlw8110_base[i+1] += (Eeprom_Rbuf [ERom_TotalWh1_Addr +temp0+0] << 24);
  211. hlw8110_base[i+1] += (Eeprom_Rbuf [ERom_TotalWh1_Addr +temp0+1] << 16);
  212. hlw8110_base[i+1] += (Eeprom_Rbuf [ERom_TotalWh1_Addr +temp0+2] << 8);
  213. hlw8110_base[i+1] += (Eeprom_Rbuf [ERom_TotalWh1_Addr +temp0+3] << 0);
  214. if(hlw8110_base[i+1] > AC3MAX_CONSUME)
  215. {
  216. hlw8110_base[i+1] = 0;
  217. }
  218. }
  219. // read over limit configreation add by liyi
  220. for(int i = 0;i < Output_ChN_default;i++)
  221. {
  222. AC3PPDU_Modbus_Reg[Mb_Dbuff_RL_Over_Ch1_Func+i] = Eeprom_Rbuf[ERom_RL_Over_Ch1_Addr+i];
  223. if(AC3PPDU_Modbus_Reg[Mb_Dbuff_RL_Over_Ch1_Func+i] > 0x0000002F)
  224. {
  225. AC3PPDU_Modbus_Reg[Mb_Dbuff_RL_Over_Ch1_Func+i] = 0;
  226. }
  227. }
  228. }
  229. /*********************************************************************************************************
  230. * API函数实现
  231. *********************************************************************************************************/
  232. /*********************************************************************************************************
  233. * 函数名称:WriteEeprom
  234. * 函数功能:写数据到Eeprom
  235. * 输入参数:void
  236. * 输出参数:void
  237. * 返 回 值:void
  238. * 创建日期:2024年04月26日
  239. * 注 意:
  240. *********************************************************************************************************/
  241. void WriteEeprom(void)
  242. {
  243. /*
  244. uint8_t i = 0;
  245. uint8_t j = 0;
  246. uint32_t temp0 = 0;
  247. uint32_t temp1 = 0;
  248. uint32_t temp2 = 0;
  249. uint32_t temp3 = 0;
  250. Eeprom_Rbuf[ERom_RL_Ch_N_addr] = Output_ChN_default;
  251. Eeprom_Rbuf[ERom_RL_ST_Addr] = AC3PPDU_Modbus_Reg[AC3PPDU_RL_ST_Addr - AC3PPDU_Modbus_RegStAd] >> 8;
  252. Eeprom_Rbuf[ERom_RL_ST_Addr + 1] = AC3PPDU_Modbus_Reg[AC3PPDU_RL_ST_Addr - AC3PPDU_Modbus_RegStAd];
  253. Eeprom_Rbuf[ERom_RLft_ST_Addr] = AC3PPDU_Modbus_Reg[AC3PPDU_RLft_ST_Addr - AC3PPDU_Modbus_RegStAd] >> 8;
  254. Eeprom_Rbuf[ERom_RLft_ST_Addr + 1] = AC3PPDU_Modbus_Reg[AC3PPDU_RLft_ST_Addr - AC3PPDU_Modbus_RegStAd];
  255. for(i = 0;i < Output_ChN_default;i++)
  256. {
  257. Eeprom_Rbuf[ERom_RL_Ton1_Addr + i] = AC3PPDU_Modbus_Reg[AC3PPDU_RL_Ton1_Addr + i - AC3PPDU_Modbus_RegStAd];
  258. Eeprom_Rbuf[ERom_RL_Toff1_Addr + i] = AC3PPDU_Modbus_Reg[AC3PPDU_RL_Toff1_Addr + i - AC3PPDU_Modbus_RegStAd];
  259. }
  260. Eeprom_Rbuf[ERom_RL_Allon_Addr] = AC3PPDU_Modbus_Reg[AC3PPDU_RL_Allon_Addr - AC3PPDU_Modbus_RegStAd];
  261. Eeprom_Rbuf[ERom_RL_Alloff_Addr] = AC3PPDU_Modbus_Reg[AC3PPDU_RL_Alloff_Addr - AC3PPDU_Modbus_RegStAd];
  262. temp0 = AC3PPDU_ILit1_max_Addr - AC3PPDU_Modbus_RegStAd;
  263. temp1 = AC3PPDU_ILit1_min_Addr - AC3PPDU_Modbus_RegStAd;
  264. for(i = 0;i < Output_ChN_default;i++)
  265. {
  266. for(j = 0;j < 4;j++)
  267. {
  268. temp2 = 8 * j;
  269. temp2 = 24 - temp2;
  270. temp3 = Output_ChN_default * i;
  271. temp3 += j;
  272. Eeprom_Rbuf[ERom_ILit1_max_Addr + temp3] = AC3PPDU_Modbus_Reg[temp0 + i] >> temp2;
  273. Eeprom_Rbuf[ERom_ILit1_min_Addr + temp3] = AC3PPDU_Modbus_Reg[temp1 + i] >> temp2;
  274. }
  275. }
  276. //写入通道数
  277. Eeprom_Rbuf[ERom_RL_Ch_N_addr] = AC3PPDU_active_chn;
  278. //写入输入阈值
  279. for(j = 0;j < ERom_ViLit_max_ByteN;j++)
  280. {
  281. temp0 = 8 * j;
  282. temp0 = 24 - temp0;
  283. Eeprom_Rbuf[ERom_ViLit_max_Addr + j] = AC3PPDU_Modbus_Reg[Mb_Dbuff_ViLit_max_Addr] >> temp0;
  284. Eeprom_Rbuf[ERom_ViLit_min_Addr + j] = AC3PPDU_Modbus_Reg[Mb_Dbuff_ViLit_min_Addr] >> temp0;
  285. Eeprom_Rbuf[ERom_IiLit_max_Addr + j] = AC3PPDU_Modbus_Reg[Mb_Dbuff_IiLit_max_Addr] >> temp0;
  286. Eeprom_Rbuf[ERom_WLit_max_Addr + j] = AC3PPDU_Modbus_Reg[Mb_Dbuff_WiLit_max_Addr] >> temp0;
  287. Eeprom_Rbuf[ERom_kWhLit_max_Addr + j] = AC3PPDU_Modbus_Reg[Mb_Dbuff_kWhiLit_max_Addr] >> temp0;
  288. }
  289. //写入输出阈值
  290. for(i = 0;i < Output_ChN_default;i++)
  291. {
  292. for(j = 0;j < 4;j++)
  293. {
  294. temp0 = 8 * j;
  295. temp0 = 24 - temp0;
  296. temp1 = 4 * i;
  297. temp1 += j;
  298. Eeprom_Rbuf[ERom_VLit1_max_Addr + temp1] = AC3PPDU_Modbus_Reg[Mb_Dbuff_VLit1_max_Addr + i] >> temp0;
  299. Eeprom_Rbuf[ERom_VLit1_min_Addr + temp1] = AC3PPDU_Modbus_Reg[Mb_Dbuff_VLit1_min_Addr + i] >> temp0;
  300. Eeprom_Rbuf[ERom_ILit1_max_Addr + temp1] = AC3PPDU_Modbus_Reg[Mb_Dbuff_ILit1_max_Addr + i] >> temp0;
  301. Eeprom_Rbuf[ERom_WLit1_max_Addr + temp1] = AC3PPDU_Modbus_Reg[Mb_Dbuff_WLit1_max_Addr + i] >> temp0;
  302. Eeprom_Rbuf[ERom_kWhLit1_max_Addr + temp1] = AC3PPDU_Modbus_Reg[Mb_Dbuff_kWhLit1_max_Addr + i] >> temp0;
  303. }
  304. }
  305. //写入输入状态阈值
  306. Eeprom_Rbuf[ERom_LT_ST_Addr] = AC3PPDU_Modbus_Reg[Mb_Dbuff_LT_ST_Addr];
  307. //写入输出状态阈值
  308. for(i = 0;i < Output_ChN_default;i++)
  309. {
  310. temp0 = 2 * i;
  311. Eeprom_Rbuf[ERom_CH1LT_ST_Addr + temp0] = AC3PPDU_Modbus_Reg[Mb_Dbuff_CH1LT_ST_Addr + i];
  312. }
  313. //写入输出通道开通和断开延时
  314. for(i = 0;i < Output_ChN_default;i++)
  315. {
  316. Eeprom_Rbuf[ERom_RL_Ton1_Addr + i] = AC3PPDU_Modbus_Reg[Mb_Dbuff_RL_Ton1_Addr + i];
  317. Eeprom_Rbuf[ERom_RL_Toff1_Addr + i] = AC3PPDU_Modbus_Reg[Mb_Dbuff_RL_Toff1_Addr + i];
  318. }
  319. */
  320. AT24CxxWrite(ERom_RL_Ch_N_addr,Eeprom_Rbuf,RELAY_para_sum);
  321. }