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  9. Omron E5CC-8 Series User manual

Omron E5CC-8 Series User manual

60ԛр
45
45
+0.6
0
+0.6
0
+0.6
0
δ48hঋݹᮦ䠅 - 2.5ε
+1
0
45
㺞⽰▒൞Ⲻধ䲟᛻߫θྸуࣖԛ䱨↘θᖾ㜳ሲ㠪䖱
ᓜᡌѣᓜⲺӰ䓡՚ᇩᡌ䍘ӝᦕඅȾ൞ֵ⭞䈛ӝ૷ࢃᓊ
Ԋ㓼䰻䈱ᵢᢁ߂Ⱦ
E5CC-8
ᮦᆍᕅ᧝࡬ಞ
䈭ࣗᗻ䚫ᆾԛс⌞ᝅӁ亯θԛ䚵ރᬃ֒ཧȽ䈥ࣞ֒ᡌሯӝ૷⢯ᙝࣕ㜳䙖ᡆу㢥ᖧଃȾࡏθ㜳Րሲ㠪ᝅ
ཌӁ᭻Ⱦ䈭൞᤽ᇐ㤹പ޻ֵ⭞ᵢӝ૷Ⱦ
δ1ε 䈛ӝ૷㻡䇴䇗Ѱᇚ޻ֵ⭞Ⱦ䈭൞ᇚཌֵ⭞Ⱦу㾷൞ԛсԱ֋൦ᯯֵ⭞ᡌᆎ᭴䈛ӝ૷Ⱦ
g⴪᧛ࣖ✣䇴༽✣䗆ሺⲺ൦ᯯȾ
gᴿ⏨։ᡌ⋯≊伔ⒻⲺ൦ᯯȾ
g䱩ݿ⴪ሺⲺ൦ᯯȾ
g⚦቎䖹ཐᡌᴿ㞆㲶ᙝ≊։δ⢯ࡡᱥ⺡⢟≊։ૂ≞≊εⲺ൦ᯯȾ
g⑟ᓜ࢝⛾Ⲻ൦ᯯȾ
g㔉ߦૂ㔉䵨Ⲻ൦ᯯȾ
gᴿ䴽ࣞᡌཝⲺߨ࠱Ⲻ൦ᯯȾ
δ2ε ൞仓ᇐⲺ⑟ᓜૂ⒵ᓜ㤹പ޻ֵ⭞/ᆎ۞䈛䇴༽Ⱦᗻ㾷ᰬᓊ䟽ᕰ࡬߭পȾ
δ3ε Ѱ࡟ӄᮙ✣θу㾷ມດ䈛ӝ૷ઞപⲺグ䰪Ⱦ
у㾷๫ດӝ૷Ⲻ䙐伄ᆊȾ
δ4ε ᤿ㄥᆆⲺᶷᙝ䘑㺂↙⺤Ⲻ᧛㓵Ⱦ
δ5ε 䈭ֵ⭞㿺ᇐተሮδM3θᇳᓜቅӄᡌㅿӄ5.8 mmεⲺু᧛ㄥᆆ䘑㺂᧛㓵Ⱦֵ⭞ḽᴿAWG24ЊAWG18δ⴮
ᖉӄ⁠ᡠ䶘〥0.205Њ0.8231 mm2εⲺ䬒㔔㓵ᡌᇔᗹ⭫㔼䘔᧛㼮㓵ૂ᧛㓵ᶵȾδ࢛㓵䮵ᓜѰ6Њ8 mmȾε
жѠㄥᆆ޻ᴶཐᨈޛњṯ⴮ශተሮⲺሲ㓵ᡌু᧛ㄥᆆȾ
δ6ε у⭞Ⲻㄥᆆу㾷᧛㓵Ⱦ
δ7ε൞᧝࡬ಞфԛӝ⭕儎仇ૂ⎠⏂Ⲻ䇴༽ҁ䰪ᓊؓᤷ䏩ཕ䘒Ⲻ䐓⿱Ⱦሼ儎ুᡌཝ⭫⍷⭫Ⓠ㓵фެᆹሲ
㓵䳊⿱θ൞ㄥᆆ᧛㓵ᰬ䚵ރф⭫Ⓠ㓵ާㄥᡌᒬ㚊Ⱦ
δ8ε ൞仓ᇐ䍕䖳ૂב⭫⭫Ⓠсֵ⭞䈛ӝ૷Ⱦ
δ9εֵ⭞ᔶީᡌ㔝⭫ಞ䀜⛯ԛ⺤ؓ൞њ〈޻ሼ⭫ⓆѰ仓ᇐ⭫ুȾྸ󰵳⭫ুᱥ䙆⑆рⲺθ⭫Ⓠ㜳ᰖ
⌋གྷփᡌ㘻⭕䗉࠰䈥ࣞ֒Ⱦ
δ10ε൞᧛䙐⭫Ⓠࡦᔶခᇔ䱻ᬃ֒ࢃᓊ⺤ؓ᧝࡬ಞ䘑㺂30࠼䫕ԛрⲺ人✣θԛؓ䇷↙⺤Ⲻ⑟ᓜᱴ⽰Ⱦ
δ11εᢝ㺂㠠ṗ↙ᰬθ䈭ᰬ᧛䙐䍕䖳ૂ䇴༽ᡌ㘻൞᧛䙐᧝࡬ಞࢃ᧛䙐䍕䖳Ⱦ
δ12ε൞䈛ӝ૷Ⲻ䱺䘇ᓊ䈛ᴿᔶީᡌ㘻ᯣ䐥ಞȾᔶީᡌ㘻ᯣ䐥ಞᓊ䈛൞ᬃ֒㘻׵ӄཕࡦⲺ൦ᯯθᒬъᴿ᱄ᱴ
ⲺᯣᔶḽᘍȾ
δ13ε␻⌷ᰬθ䈭⭞䖥ᐹᬜᤣȾ䈭ֵ⭞〶䠀ࡸθ⊳⋯Ƚ䞈㋴ㅿ⓬ࡸⲺ㦥૷ȾࡏՐሲ㠪ᖘᡌ㢨Ⱦ
δ14ε൞䇴䇗㌱㔕δྸ᧝࡬䶘ᶵεⲺᰬُθ䴶㾷㘹㲇ࡦ᧝࡬ಞⲺ䗉࠰൞⭫Ⓠр⭫ᴿ2〈ⲺᔬᰬȾ
δ15εᖉ࠽ᦘࡦࡓခ䇴ᇐ㨒ঋᰬθ䗉࠰㜳Րީ䰣Ⱦ൞ᇔ᯳᧝࡬ᰬ䴶㾷㘹㲇ࡦ䘏ж⛯Ⱦ
δ16ε䶔ᥛ޻ᆎⲺߏ⅗ᮦᱥᴿ䲆ⲺȾᡶԛ൞䙐ؗᡌެᆹᬃ֒䴶㾷仇㑷䠃ߏᮦᦤᰬθ䈭ֵ⭞RAMߏ⁗ᕅȾ
δ17ε᣼ম᧝࡬ಞ䘑㺂ᓕᔹ༺⨼ᰬθ䈭ֵ⭞䘸ᖉⲺᐛޭȾ
δ18ε䈭䎻䗽㿺Ṳѣ㔏࠰Ⲻ䙐ؗ䐓⿱ᒬֵ⭞᤽ᇐⲺ䙐ؗ⭫㔼Ⱦᴿީ䙐ؗ䐓⿱ૂ⭫㔼㿺Ṳθ䈭৸䰻
ɅE5CC/E5ECᮦᆍᕅ᧝࡬ಞ⭞ᡭᢁ߂ɆδCat. No. H180εȾ
δ19ε䘔᧛ҼUSB㌱ࡍ䖢ᦘ⭫㔼ᰬθ䈭ᔶȽީ᧝࡬ಞⲺ⭫ⓆȾࡏՐሲ㠪᧝࡬ಞ᭻䳒Ⱦ
δ20εㄥᆆ⑟ᓜ儎䗴đθ䈭ཐࣖቅᗹȾ
ᆿޞֵ⭞⌞ᝅӁ亯
ᴿީ䈜㓼Ⲻᓊ⭞↛僚θ䈭৸䰻ɅE5CC/E5ECᮦᆍᕅ᧝࡬ಞ⭞ᡭᢁ߂Ɇ
δCat. No. H180εȾ
ֵ⭞ᢁ߂
᝕䉘ᛞ䍣Ҧ⅝࿼嗏E5CCᮦᆍᕅ᧝࡬ಞȾ
ᵢᢁ߂ᨅ䘦Ҽӝ૷Ⲻࣕ㜳Ƚᙝ㜳ԛֵӝ૷䗴ࡦᴶֵ֩⭞᭾
󰵳Ⲻᓊ⭞ᯯ⌋Ⱦ
䈭൞ֵ⭞䈛ӝ૷ᰬ⌞ᝅԛсӁ亯φ
gֵ⭞䈛ӝ૷ⲺӰᗻ亱ޭ༽䏩ཕⲺ⭫≊㌱㔕⸛䇼Ⱦ
g൞ֵ⭞䈛ӝ૷ࢃᓊ䙐䈱ᒬ⨼䀙ᵢᢁ߂ԛ⺤ؓ↙⺤Ⲻֵ⭞Ⱦ
g࿛஺ؓ㇗䈛ᢁ߂ԛ⺤ؓ൞䴶㾷ᰬԛ䳅ᰬḛ䰻Ⱦ
⅝࿼嗏ޢ
©All Rights Reserved
ᴿީ儎㓝ࣕ㜳䇴ᇐ㨒ঋȽᢁࣞ᧝࡬㨒ঋԛެᆹࣕ㜳Ⲻؗᚥθ䈭৸㘹
ɅE5CC/E5ECᮦᆍᕅ᧝࡬ಞ⭞ᡭᢁ߂ɆδCat. No. H180εȾ
ᴿީ䙐ؗⲺ䈜㓼ؗᚥθ䈭৸䰻ɅE5CC/E5ECᮦᆍᕅ᧝࡬ಞ䙐ؗᢁ
߂ɆδCat. No. H181εȾ
ב⭫⭫ু 100Њ240 VACθ50/60 Hzᡌ㘻
24 VACθ50/60 Hz/24 VDC
ᐛ֒⭫ু㤹പ 仓ᇐ⭫ুⲺ85Њ110%
ࣕ⦽⎾㙍
䘿亯800: ᴶཝ5.2 VAδAC100-240Vε
ᴶཝ3.1 VAδAC24Vε/ᴶཝ1.6 WδDC24Vε
ᡶᴿެᆹ㿺Ṳφ ᴶཝ6.5 VAδAC100-240Vε
ᴶཝ4.1 VAδAC24Vε/ᴶཝ2.3 WδDC24Vε
᤽⽰㋴ᓜ ✣⭫ڬ䗉ޛφ
δ⧥ູ⑟ᓜφ23°Cεδᱴ⽰ٲⲺ±0.3%ᡌ㘻±1°CѣⲺ䖹ཝٲε
ᴶཝ±1փᮦ
䫸⭫䱱䗉ޛφ
δᱴ⽰ٲⲺ±0.2%ᡌ㘻±0.8°CѣⲺ䖹ཝٲε
ᴶཝ±1փᮦ
⁗ᤕ䠅䗉ޛφ
±0.2 % FS ᴶཝ±1փᮦ
ӁԬ䗉ޛ 䗉࠰⭫⍷φ∅Ѡ䀜⛯㓜7 mAȾ
䀜⛯䗉ޛ ONφᴶཝ1 k:θOFFφ㠩ቇ100 k:
䶔䀜⛯䗉ޛ ONφ⇁֏⭫ুᴶཝ1.5 V
OFFφ╅⭫⍷ᴶཝ0.1 mA
᧝࡬䗉࠰1 㔝⭫ಞ䗉࠰φSPST-NOθ
250 VACθ3 Aδ䱱ᙝ䍕䖳ε
㔝⭫ಞ⭫≊ስળφ100,000⅗䘆㺂
⭫ু䗉࠰δ⭞ӄ傧ࣞSSRεφ
12 VDC ±20%θ21 mA
⭫⍷䗉࠰φ4Њ20 mA DCθ0Њ20mA DC
䍕䖳φᴶཝ500 :
᧝࡬ᯯ⌋ ON/OFFᡌ2䐥PID᧝࡬
䖻ࣟ䗉࠰ 㔝⭫ಞ䗉࠰φSPST-NOθ
250 VACθ3 Aδ䱱ᙝ䍕䖳ε
㔝⭫ಞ⭫≊ስળφ100,000⅗䘆㺂
⧥ູ⑟ᓜ -10Њ55°C
δᓊ䚵ރ㔉ߦᡌ㔉䵨ε
⧥ູ⒵ᓜ 25%Њ85%
ᆎ۞⑟ᓜ -25Њ65°C
δᓊ䚵ރ㔉ߦᡌ㔉䵨ε
儎ᓜ ᴶ儎2,000㊩
᧞㦆ؓ䲟ѓ T2Aθ250 VACθᰬᔬθք⟊ᯣᇯ䠅
䠃䠅 㓜120 gδӻ᧝࡬ಞε
䱨ᣚㅿ㓝 ࢃ䶘ᶵφIP66
༩φIP20θㄥᆆφIP00
ᆿ㻻⧥ູ ᆿ㻻〃㊱IIθ⊗ḉ
ㅿ㓝2δIEC61010-1ε
޻ᆎؓᣚ 䶔ᥛ޻ᆎ
δߏ⅗ᮦφ1,000,000ε
Ჸᰬ䗽⭫ু ⸣ᰬ䰪䗽⭫ু9⭫Ⓠ⭫ুε
 䮵ᰬ䰪䗽⭫ু9δ⭫Ⓠ⭫ুε
䆜઀
䆜઀
䙐⭫ᵕ䰪θ䈭䀜᪮ㄥᆆȾ
ࡏՐഖ䀜⭫㙂ሲ㠪䖱՚Ⱦ
уᗍ䇟䠇ኔ⢟։Ƚሲ㓵ᡌᆿ㻻ᰬӝ⭕Ⲻ࠽ኇᡌ⒵≊䘑ޛ᧝࡬ಞȽ䈹䈋ᐛޭㄥᡌ䈹䈋ᐛޭ⭫㔼䘔᧛
ಞⲺᕋ㝐рȾࡏՐሲ㠪䀜⭫Ƚ⚡⚴ᡌᵰಞ䈥ࣞ֒Ⱦ
䈭ሼ䈛ӝ૷⭞ӄᴿ᱉⟹᱉⠼≊։Ⲻ൰Ⱦࡏᴿ㜳ഖѰ⠼⛮㙂䙖ᡆ䖱ᓜ՚ᇩȾ
㔓ሯу㾷᣼মȽ᭯㻻ԛؤ⨼䈛ӝ૷ᡌ᧛䀜Ա֋޻䜞ݹԬȾࡏՐሲ㠪䖱ᗤ䀜⭫Ƚ⚡⚴ᡌᵰಞ䈥ࣞ
֒Ⱦ
⌞ᝅι⚡⚴ᡌ䀜⭫Ⲻধ䲟
aε䈛ӝ૷ѰUL䇚䇷Ⲻᔶ᭴ශ䗽ぁ᧝࡬䇴༽θᗻ亱ᆿ㻻൞㜳ཕ䱨↘⚡㣧䘮࠰Ⲻᵰ༩ѣȾ
bε൞ֵ⭞њѠԛрᯣ⭫ᔶީⲺ᛻߫сθ㔪ؤࢃ䈭ݾᯣᔶᡶᴿᔶީθ⺤ؓᵢӝ૷༺ӄᯣ⭫⣬ᘷȾ
cεؗ䗉ޛѰSELVδᆿޞքু⭫Ⓠεθഔ䐥䲆Ⱦ
dε⌞ᝅφѰҼࠅቇ⚡⚴ᡌ䀜⭫Ⲻধ䲟θ䈭ሼуⲺ2㊱ഔ䐥Ⲻ䗉࠰ӈ㚊Ⱦ
ྸ󰵳䗉࠰㔝⭫ಞ䎻䗽Ҽ人ᵕⲺֵ⭞ስળθᴿᰬՐ⭕䀜⛯⟊ᡌ⟹✝Ⱦခ㓾㾷⌞ᝅ䗉࠰㔝⭫ಞⲺᓊ
⭞⧥ູθᒬ൞仓ᇐ䍕䖳人ᵕስળԛ޻ֵ⭞Ⱦ䗉࠰㔝⭫ಞⲺ人ᵕስળ䳅⵶䗉࠰䍕䖳ԛᔶީᶗԬⲺ
㙂Ⱦ
ᶴࣞⲺ㷰ѓ㜳ሲ㠪⚡⚴Ⱦ䈭ԛ᤽ᇐⲺ0.43Њ0.58 NgmⲺ᤽ᇐᢣ⸟ᤝ㍝㷰ѓȾ
䈭䇴ᇐ䘸㌱㔕᧝࡬⭞Ⲻӝ૷৸ᮦȾྸ󰵳䇴ᇐуᖉθ㜳Րഖᝅཌᬃ֒㙂䙖ᡆ䍘ӝᦕཧᡌӁ᭻Ⱦ
᧝࡬ಞ䈥ࣞ֒ᖾ㜳䙖ᡆ᧝࡬ᬃ֒ཧ᭾ᡌ䱱↘ᣛ䆜䗉࠰θሲ㠪䍘ӝᦕཧȾѰҼ൞᧝࡬ಞ⭕䈥ࣞ֒
ᰬ⺤ؓᆿޞθᓊ䟽䘸ᖉⲺᆿޞ᧠᯳θྸֵ⭞ঋ⤢Ⲻ㓵䐥ᆿ㻻ⴇ᧝䇴༽Ⱦ
CHN
ᆿޞ⌞ᝅӁ亯
䆜઀ㅜⲺ㾷⛯
ተሮ㿺Ṳ
2φ䭏䈥ᱴ⽰䪾ሯć䗽ぁٲ/䇴ᇐٲĈθ㙂у䪾ሯެᆹ⣬ᘷȾ
ᖉ⭕жѠ䭏䈥ᰬθㅢжᱴ⽰ሼᱴ⽰䭏䈥ԙ⸷Ⱦ৸㘹с㺞θṯᦤ䭏䈥ԙ⸷䟽䘸ᖉⲺ᧠᯳Ⱦ
ྸ󰵳䗉ޛٲ䎻䗽ᱴ⽰㤹പδ-1999Њ9999εθ঩ֵԃ༺ӄ᧝࡬㤹പ޻θքӄ-1999Ⲻሼᱴ⽰
[[[[ θ儎ӄ9999Ⲻᱴ⽰

]]]]
Ⱦ൞䘏〃᛻߫сθ᧝࡬䗉࠰ૂᣛ䆜䗉࠰ൽሼ↙ᑮᐛ֒Ⱦ
ީӄ᧝࡬Ⲻ㤹പθ䈭৸䰻ɅE5CC/E5ECᮦᆍᕅ᧝࡬ಞ⭞ᡭᢁ߂ɆδCat. No. H180εȾ
Ỷḛ䗉ޛ㊱ශ৸ᮦⲺ䇴㖤θỶḛ䗉ޛ᧛㓵ᒬỶḛ⑟
ᓜՖ᝕ಞᱥᆎ൞⹪ᦕᡌ⸣᧛Ⱦ
ީᦿ⭫Ⓠ߃ᢉᔶȾྸ󰵳ᱴ⽰уθࡏ亱ؤ⨼᧝࡬ಞȾ
ྸ󰵳ᱴ⽰ᚘགྷ↙ᑮθࡏ㜳ᱥ᧝࡬㌱㔕ࡦཌ䜞ᒨ
ᢦȾ䈭Ỷḛཌ䜞ᒨᢦȾ
㓖↙A/D䖢ᦘ䭏䈥ҁθީᦿ⭫Ⓠ߃ᢉᔶȾྸ󰵳ᱴ
⽰уθࡏ亱ؤ⨼᧝࡬ಞȾྸ󰵳ᱴ⽰ᚘགྷ↙ᑮθࡏ
᭻䳒৕ഖ㜳ᱥ᧝࡬㌱㔕ࡦཌ䜞ᒨᢦȾ䈭Ỷḛཌ
䜞ᒨᢦȾ
ㅢжᱴ⽰ ѿ
A/D䖢ᦘ䭏䈥
2
޻ᆎ䭏䈥
䗉ޛ䭏䈥
2
s.errδS. Errε
e111δE111ε
ᬃ֒
OFF
ᣛ䆜
࠰䭏⣬ᘷ
OFF
OFF
OFF
OFF
e333δE333ε
䭏䈥ᱴ⽰δ᭻䳒䈀ᯣε
䆜઀ㅜ
ᆿ㻻 䘔᧛δㄥᆆ䘸⭞ᙝഖᵰಞශ㙂ᔸȾε
㿺Ṳ
ެᆹࣕ㜳
᧛㓵
ࢃ䶘ᶵⲺݹԬ〦
g°C / °Fφ⑟ᓜঋփ
ᖉᱴ⽰޻ᇯѰ⑟ᓜᰬᱴ⽰⑟ᓜঋփȾṯᦤ⑟ᓜঋփⲺ
䇴ᇐٲᱴ⽰CᡌFȾ
g⁗ᕅ䭤
᤿↚䭤᭯ᱴ⽰޻ᇯȾ
᤿↚䭤1〈ԛрᯯᱴ⽰޻ᇯȾ
gᰬ᤿օO䭤ૂM䭤㠩ቇ3〈ᶛ࠽ᦘ㠩ؓᣚ㨒ঋȾ
g㨒ঋ䭤
ֵ⭞䈛䭤࠽ᦘ㨒ঋφ
g〱փ䭤δPF䭤ε
PF䇴㖤৸ᮦ唎䇚䇴ᇐѰֵᮦփ〱փȾ↚䭤Ѱࣕ㜳
䭤Ⱦᖉ᤿с↚䭤θѰPF䇴ᇐ৸ᮦ䇴ᇐⲺࣕ㜳ሼ⭕
᭾Ⱦ
ᬃ֒㨒ঋ
1: 㾷ֵ৸ᮦ1Ƚ4Ƚ5ᨆבуⲺᣛ䆜㊱ශθሯެ䇴ᇐр䲆фс䲆Ⱦ
с䲆ૂр䲆࠼ࡡ⭞ᆍ∃ LૂH᤽⽰Ⱦ
唎䇚Ⲻᣛ䆜㊱ශѰ“2”
ᣛ䆜
gφؓᣚ᤽⽰
ᖉ䇴ᇐᴪؓᣚѰONδ⾷⭞р/с䭤εᰬ⛯
ӤȾ
gMANUφᢁࣞ䗉࠰᤽⽰
ᖉ㠠ࣞ/ᢁࣞ⁗ᕅ䇴ᇐѰᢁࣞ⁗ᕅᰬ⛯ӤȾ
р䘦р䲆
ᣛ䆜ᐛ֒
᧝࡬䗉࠰
CC6
Ȏ㚊㌱ᯯᕅ
Ș࡬䙖୼
Șᢶᵥ૞䈘
⅝࿼嗏р⎭ᴿ䲆ޢ
൦൶ѣളр⎭ᐸ⎜ђ᯦䠇ẛ࠰ࣖᐛ䠇䐥
⭫䈓(86)21-50509988
⅝࿼嗏㠠ࣞѣളᴿ䲆ޢ
൦൶ѣളр⎭ᐸ⎜ђ᯦䬬คѣ䐥ѣ䬬ཝড়ᇚ
⭫䈓(86)21-5307-2222
ᢶᵥ૞䈘✣㓵400-820-4535
㖇൶http://www.fa.omron.com.cn
䘸⭞ᙝ
൞ᇘᡭⲺᓊ⭞ѣθ⅝࿼嗏у䍕䍙ӝ૷фԱ֋ᇘᡭㄥӝ૷ᡶ⎿Ⲻ㿺ṲȽ㿺㤹ૂḽ߼
ؓᤷж㠪ᙝȾ䈭ࣗᗻ㘹㲇ᵢӝ૷ሯӄᡶᓊ⭞Ⲻ㌱㔕Ƚᵰಞૂ䇴༽䰪Ⲻ䘸⭞ᙝȾֵ⭞
ᰬ䈭⌞ᝅᒬ䚫ᆾᵢӝ૷Ⲻ⾷↘Ӂ亯Ⱦ
൞⋗ᴿ⺤䇚᮪Ѡ㌱㔕䇴䇗ᰬᡶ㘹㲇ࡦⲺ伄䲟θԛ⋗ᴿ⺤䇚൞䇴༽ૂ㌱㔕ѣ䈛⅝࿼
嗏ӝ૷Ⲻ仓ᇐֵ⭞ᶗԬૂ↙⺤ᆿ㻻ᶗԬⲺ᛻߫сθ⾷↘ሼᵢӝ૷ᓊ⭞ӄሯӰ䓡䍘
ӝᆎ൞ћ䠃ধ䲟Ⲻ൰Ⱦ
䈜㿷ӝ૷㿺ṲҜѣؓ䇷ރ䍙Ӂ亯޻ᇯȾ
䘆㺂ڒ↘
δ᧝࡬ᣛ䆜ൽڒ↘Ⱦε 5
ࡓခ䇴ᇐ㨒ঋ
ሯ∊ׁ㕟᭴䟽⭞сࡍ㤹പφ-1999Њ9999Ƚ
-199.9Њ999.9Ƚ-19.99Њ99.99Ƚ-1.999Њ
9.999
⭫⍷䗉ޛ
⭫ু䗉ޛ
⁗ᤕ䠅䗉ޛ
㊱ශ
䈭൞⚦㢨ㄥᆆр䘔᧛Ա֋ಞԬȾ
ተሮδmmε
䙐⭫ҁࢃỶḛ᧛㓵Ⱦ
1
1
1
ᣛ䆜㊱ශ
ṯᦤLȽHٲ
Ⲻу㙂у
ṯᦤLȽHٲ
Ⲻу㙂у
ṯᦤLȽHٲ
Ⲻу㙂у
ᰖᣛ䆜ࣕ㜳 ᰖ䗉࠰
㔓ሯٲр䲆
㔓ሯٲс䲆
LBAδӻሯᣛ䆜1ε
څᐤр/с㤹പ
څᐤр䲆
څᐤр/с䲆
څᐤс䲆
ᣛ䆜䗉࠰ࣕ㜳
↙ᣛ䆜ٲδXε
䍕ᣛ䆜ٲδXε
䇴ᇐ
PV⦽ᣛ䆜
X
ON
OFF SP
X
ON
OFF SP
ON
OFF SP
X
X
ON
OFF SP
LH
ON
OFF SP
X
ON
OFF SP
X
ON
OFF SP
X
ON
OFF 0
ON
OFF
X
0
X
ON
OFF 0
X
ON
OFF 0
ON
OFF
X
0
X
ON
OFF 0
X
ON
OFF 0
X
ON
OFF 0
X
ON
OFF 0
X
ON
OFF 0
ON
OFF
X
0
ON
OFF
X
0
ON
OFF
X
0
ON
OFF
X
0
LH
ON
OFF SP
SP
ON
OFF
X
ON
OFF
X
0
1
0
2
3
4
5
6
7
8
9
SP㔓ሯٲр䲆
SP㔓ሯٲс䲆
14
15
MV㔓ሯٲр䲆
MV㔓ሯٲс䲆
16
17
10
11
12
13
SP
X
ON
OFF
ON
OFF
X
0
䙐⭫
4Њ20mA
0Њ20mA
1Њ5V
0Њ5V
0Њ10V
25
26
27
28
29
䇴ᇐ㤹പ
䗉ޛ㊱ශ 䗉ޛ
Pt100
JPt100
✣⭫ڬ K
J
T
E
L
U
N
R
S
B
W
PL II
䇴ᇐ
10Њ70°C
60Њ120°C
115Њ165°C
140Њ260°C
0
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
17
18 12
15
16
1
2
13
14
3
11
4
6
7
8
9
10
5
ㅜEN/IECḽ߼
ᐛ֒᤽⽰
gSUB1φ䖻ࣟ䗉࠰1᤽⽰
gSUB2φ䖻ࣟ䗉࠰2᤽⽰
gOUT1φ᧝࡬䗉࠰1᤽⽰
6
4
5
6
A
B
B5
6
Pt +

mA

+
5
4
2 Ֆ᝕ಞ⑟ᓜ/⁗ᤕ䠅䗉ޛ
V
5
V6
+
4
TC
4
I
δᰖᶷᙝε
11
12
4 䗉ޛ⭫Ⓠ
11
12
100Њ240 VAC 24 VAC/DC
δ64ε
58
604
144.8u44.8 5. 䘿亯
1. ᧝࡬䗉࠰
10
7
8
9
3 䖻ࣟ䗉࠰
䖻ࣟ䗉࠰1Ƚ2
䖻ࣟ䗉࠰1
䖻ࣟ䗉࠰2
16
17
18
13
14
15
13
14
15
18
16
804
13
14
15
16
5 䘿亯
801
1717
18
802
EV1
EV2
EV3
EV4
CT1 CT1
Bδ+ε
Aδε
RS-485
Bδ+ε
Aδε
RS-485
+

3
1
2
3
1
2
1Ѡ㔝⭫ಞ
䗉࠰
3
1 ᧝࡬䗉࠰1
1
2
1Ѡ⭫ু䗉࠰
+
RX QX CX
䈭᣼с᧛㓵ᶵȾࡏθՐሲ㠪᭻䳒ᡌ䈥ࣞ֒Ⱦ
ӝ૷Ⲻр䜞༽ᴿ䈹䈋ᐛޭㄥȾᖉ䴶ֵ⭞䈹䈋ᐛޭᰬθ䙐䗽䈛ㄥሼѠӰ䇗㇍ᵰфᵢӝ૷⴮䘔Ⱦ䘔᧛ѠӰ䇗㇍ᵰфӝ૷䴶㾷
E58-CIFQ2 USBѨ㺂䖢ᦘ⭫㔼Ⱦδֵ⭞䈛ӝ૷ᰬуж⴪䘔᧛USBѨ㺂䖢ᦘ⭫㔼Ⱦε
䈜㓼Ⲻ䘔᧛ᯯ⌋θ䈭৸➝USBѨ㺂䖢ᦘ⭫㔼䱺ᑜⲺֵ⭞䈪᱄ҜȾ
㔝⭫ಞ䗉࠰
250 VACθ3 Aδ䱱ᙝ䍕䖳ε
⭫ু䗉࠰δ⭞ӄ傧ࣞSSRε
12 VDCθ21 mA
⭫⍷䗉࠰
0Њ20 mA DC
䍕䖳φᴶཝ500 :
4Њ20 mA DC
᧝࡬䗉࠰1
gㅢжᱴ⽰
䗽ぁٲᡌ䇴ᇐᮦᦤ㊱ශ
gㅢӂᱴ⽰
䇴ᇐٲȽ䇴ᇐᮦᦤ䈱࠰ٲᡌᴪ᭯Ⲻ䗉ޛٲ
gрૂс䭤
∅᤿ж⅗U䭤θㅢӂᱴ⽰рⲺٲሼ໔ཝᡌᱴ
⽰сжѠٲȾ
∅᤿ж⅗D䭤θㅢӂᱴ⽰рⲺٲሼࠅቅᡌ䘊
ഔржѠٲȾ
gTUNEφ
㠠ṗ↙ᰬ䰠⛷Ⱦ
㠠᮪ᇐᰬ⛯ӤȾ
gSTOPφ᧝࡬ڒ↘᤽⽰
ᖉӁԬ䗉ޛᡌ൞䘆㺂ѣć䘆㺂ڒ↘Ĉڒ↘ᰬ⛯
ӤȾ
൞᧝࡬ڒ↘ᵕ䰪θ䲚᧝࡬䗉࠰ԛཌⲺࣕ㜳ൽᴿ
᭾Ⱦ
gCMWφ䙐ؗߏݷ䇮/⾷↘᤽⽰
ᖉ䙐ؗߏݷ䇮ᰬ⛯Ӥθ⾷↘ᰬ➺⚣Ⱦ
㔝⭫ಞ䗉࠰
250 VACθ3 Aδ䱱ᙝ䍕䖳ε
䖻ࣟ䗉࠰1Ƚ2
E5CC
䗉ޛ㊱ශ
-200Њ850
-199.9Њ500.0
0.0Њ100.0
-199.9Њ500.0
0.0Њ100.0
-200Њ1300
-20.0Њ500.0
-100Њ850
-20.0Њ400.0
-200Њ400
-199.9Њ400.0
-200Њ600
-100Њ850
-200Њ400
-199.9Њ400.0
-200Њ1300
0Њ1700
0Њ1700
100Њ1800
0Њ2300
0Њ1300
0Њ90
0Њ120
0Њ165
0Њ260
-300Њ1500
-199.9Њ900.0
0.0Њ210.0
-199.9Њ900.0
0.0Њ210.0
-300Њ2300
0.0Њ900.0
-100Њ1500
0.0Њ750.0
-300Њ700
-199.9Њ700.0
-300Њ1100
-100Њ1500
-300Њ700
-199.9Њ700.0
-300Њ2300
0Њ3000
0Њ3000
300Њ3200
0Њ3200
0Њ2300
0Њ190
0Њ240
0Њ320
0 Њ500
䫸⭫䱱
⑟ᓜ䇗
唎䇚ٲᱥ“5”Ⱦ
ᖉ䗉ޛ㊱ශуᱥ䫸⭫䱱㙂䭏䈥Ⲻሼ䫸⭫䱱᧛ޛᰬθሼՐᱴ⽰s.errȾѰҼ␻䲚s.err
ᱴ⽰θ䴶㾷↙⺤᧛㓵ᒬ䠃᯦р⭫Ⱦ
3: ީӄ䗉ޛ㊱ශૂᣛ䆜㊱ශⲺ䈜㓼᛻߫θ䈭৸㘹᯷䗯Ⲻ㺞ṲȾ
4: 䘸⭞ӄᴿᣛ䆜ࣕ㜳ⲺශȾ
5: ᖉ䖢㠩ࡓခ䇴ᇐ㨒ঋᰬ䘆㺂ڒ↘Ⱦ
δ᧝࡬/ᣛ䆜ൽڒ↘Ⱦε
6: ሯӄḆӑශԛެᆹ䇴ᇐ亯ⲺḆӑ䇴ᇐθуᱴ⽰⚦㢨䇴ᇐ亯Ⱦ
7: 䘸⭞ӄᴿࣖ✣ಞᯣ㓵ࣕ㜳ⲺශȾ
ᬃ֒㨒ঋ
ؓᣚ㨒ঋ
䘏ᱥж〃A㊱ӝ૷Ⱦ
ഖެ൞օᆻѣՐሲ㠪ᰖ㓵⭫ᒨᢦθᡶԛ㾷≸⭞ᡭ䟽䘸ᖉⲺ᧠᯳ࠅቇᒨᢦȾ
䈹᮪㨒ঋ
2215104-0B
ѰㅜEMCḽ߼θ䘔᧛Ֆ᝕ಞⲺ⭫㔼уᗍ䮵ӄ30㊩Ⱦ
ྸ󰵳⭫㔼䮵ᓜ䎻䗽30㊩θࡏуㅜEMCḽ߼Ⱦ
ঋѠᆿ㻻δmmε ᒬᧈᆿ㻻δmmε
gሼѱঋݹᨈޛ䶘ᶵδ1Њ5mm৐εⲺᆿ㻻ᆊѣȾᣀᆿ㻻᭥󰶍δᨆבεᨈޛ༩京䜞ૂᓋ䜞Ⲻ
രᇐ″ѣȾ
gᤝ㍝䘸䞃ಞ京䜞ૂᓋ䜞Ⲻњ仍ᆿ㻻㷰ѓֵެؓᤷᒩ㺗θᴶ㓾ֵެᢣ⸟ؓᤷ൞0.29㠩
0.39Ngmҁ䰪Ⱦ
gᖉᆿ㻻ཐᵰಞᰬθ䈭⺤ؓ⧥ູ⑟ᓜу䎻䗽㿺ᇐ䲆ٲȾ
ᒬᧈᆿ㻻ᰖ⌋⺤ؓ䱨≪ᙝ㜳Ⱦ
ᖉᴿ䱨≪㾷≸ᰬθ䈭൞ࢃ䶘
ᶵⲺםᆿ㻻䱨≪ᇼሷാȾ
°C °F
E5CC唎䇚䇴ᇐѰжKශ✣⭫ڬδ䗉ޛ㊱ශ5εȾ
ྸ󰵳ֵ⭞уⲺՖ᝕ಞθࡏՐ⭕䗉ޛ䭏䈥δs.errεȾ
Ỷḛ䗉ޛ㊱ශ৸ᮦⲺ䇴㖤Ⱦ
1Ѡ㓵ᙝ⭫⍷
䗉࠰
ӁԬ䗉ޛ1Ƚ2ૂ
CT1
䙐ؗδRS-485ε
ૂCT1
䙐ؗδRS-485εૂ
ӁԬ䗉ޛ3Ƚ4
㓘ཌ⑟ᓜՖ᝕
ಞES1B
δㅢжᱴ⽰䰠⛷θ❬
᧝࡬ڒ↘Ⱦε
᤿օO
㠩ቇ3〈
᤿օO
㠩ቇ1〈
᤿O
δу䎻䗽1〈ε
څᐤр/с䲆ᖻᵰᓅࡍON
څᐤр䲆ᖻᵰᓅࡍON
څᐤс䲆ᖻᵰᓅࡍON
㔓ሯٲр䲆ᖻᵰᓅࡍON
㔓ሯٲс䲆ᖻᵰᓅࡍON
᤿օOૂM䭤㠩ቇ1〈᤿օOૂM䭤㠩ቇ3〈
⑟ᓜ䗉ޛ
䗉࠰1
Q
䗉࠰1
C
൞㻻޻ᴿφ
gѱঋݹ
gֵ⭞䈪᱄Ҝ
g䱨≪ᇼሷാδY92S-P8εφc
g䘸䞃ಞδY92F-49εφd
୤Ԭ
gㄥᆆⴌδශφE53-COV23ε
gUSBѨ㺂䖢ᦘ⭫㔼
δE58-CIFQ2ε
48u48
䶔❀᧛ㄥᆆተሮφM3 8
䗉࠰1
R
stnd
h-c
on
off
or-r
or-d
in-t
5
in-h
100
in-l
0
dp
0
d-u
c
sl-h
1300
sl-l
-200
cntl
onof
s-hc
stnd
st
on
cp
20
c-cp
20
orev
or-r
alt1
2
ev-1
msp0
ev-2
stop
ev-3
none
ev-4
none
amov
0
alh1
0.2
alh2
0.2
alt2
2
o1st
4-20
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
at
off
ct1
0.0
cmwt
off
hb1
0.0
ol-h
100.0
of-r
50.0
sprt
off
chys
1.0
ins
0.0
lcr1
0.0
i
233
d
40
ol-l
0.0
hs1
50.0
SP 0
sp-0
0
SP 1
sp-1
0
SP 3
sp-3
0
SP 4
sp-4
0
SP 5
sp-5
0
SP 6
sp-6
0
SP 7
sp-7
0
SP 2
sp-2
0
c-db
0.0
hys
1.0
p
8.0
c-i
233
c-d
40
c-p
8.0
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
ᴿćinsᰬφ⑟ᓜ䗉ޛڅ〱Ĉ৸ᮦѣⲺ䇴ᇐٲᓊ⭞ӄ᮪Ѡ⑟ᓜ䗉ޛ㤹പȾྸ󰵳䗉ޛڅ〱ٲ䇴ᇐѰ1.2°Cθ
ࡏ䗽ぁٲѰ200°Cᰬθ㔅䗽䗉ޛڅ〱᤿➝201.2°C༺⨼Ⱦ㙂ྸ󰵳䗉ޛڅ〱ٲ䇴ᇐѰ-1.2°Cθࡏ㔅䗽䗉ޛڅ
〱䗽ぁٲ᤿➝198.8°C༺⨼Ⱦ
o
0.0
c-o
0.0
al1l
0
al-2
0
al2h
0
al2l
0
25
0
sp-m
0
ct1
0.0
m-sp
0
a-m
lcr1
0.0
r-s
run
al-1
0
al1h
0
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
oapt
0
icpt
1
wtpt
off
pfpt
off
M
M
M
M
M
chgp
off
ࡓခ䇴ᇐ㨒ঋԛֵ⭞ᡭ᤽ᇐ௒⅘Ⲻᐛ֒ᶗԬδ䗉ޛ㊱ශȽᣛ䆜㊱ශȽ
᧝࡬ᯯ⌋ㅿㅿεȾ
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
6
᧝࡬䗉࠰1ؗ
ӁԬ䗉ޛ࠼䞃4
ӁԬ䗉ޛ࠼䞃3
ӁԬ䗉ޛ࠼䞃2
ӁԬ䗉ޛ࠼䞃1
䖢㠩儎㓝ࣕ㜳䇴
ᇐ㨒ঋ
䗽ぁٲ/䇴ᇐٲ
䘔᧛ⲺՖ᝕ಞф䗉ޛ
㊱ශуᰬθᱴ⽰
s.errȾ
SPᯒ඗ᵕ䰪Ⲻ䇴ᇐٲ
ཐSP䇴ᇐٲ䘿᤟
㠠ࣞ/ᢁࣞ࠽ᦘӻ䲆
PID 1᧝࡬
㠠ࣞ/ᢁࣞ࠽ᦘ␱ࣖ
ࣖ✣ಞ⭫⍷1
ٲⴇ᧝
╅⭫⍷1
ٲⴇ᧝
ᣛ䆜ٲ1 4
ᣛ䆜ٲ
р䲆1 4
ᖉ᧝࡬ࣞ=runᰬ
ᖉ᧝࡬ڒ↘=stopᰬ
ᣛ䆜ٲ
с䲆1 4
ᣛ䆜ٲ2 4
ᣛ䆜ٲ
р䲆2 4
ᣛ䆜ٲ
с䲆2 4
MVⴇ᧝
δࣖ✣ε
MVⴇ᧝
δ߭পε


ᬃ֒ᰬᓊ↙ᑮֵ⭞ᬃ֒㨒ঋȾ
䲆࡬PF䭤ᬃ֒Ⱦ
䲆࡬ԛᱴ⽰ᡌ᭯Ⲻ䇴ᇐ㊱ශԛ䙐䗽᤿䭤ᬃ֒䘑㺂Ⲻᴪ᭯Ⱦ
ᬃ֒/䈹᮪ؓᣚ
䲆࡬൞ᬃ֒㨒ঋȽ䈹᮪㨒
ঋૂᢁࣞ᧝࡬㨒ঋѣᱴ⽰
ૂؤ᭯㨒ঋ亯Ⱦ
ࡓခ䇴ᇐ/䙐ؗؓᣚ
䲆࡬࠽ᦘ㠩ࡓခ䇴ᇐ㨒ঋȽ
䙐ؗ䇴ᇐ㨒ঋૂ儎㓝ࣕ㜳
䇴ᇐ㨒ঋȾ
䇴ᇐᴪؓᣚ
䲆࡬䙐䗽ᬃ֒ࢃ䶘
ᶵ᤿䭤ᶛ᭯䇴ᇐȾ
ӻ䲆ᐨᴪ᭯Ⲻ৸
ᮦ
䙐ؗߏޛ
ࣖ✣ಞᯣ㓵Ỷ⎁1
δঋփφAε7
HSᣛ䆜1
δঋփφAε7
ATᢝ㺂/⎾
100%ATᢝ㺂at-2
40%ATᢝ㺂at-1
ࣖ✣ಞ⭫⍷1ٲⴇ᧝
δঋփφAε7
╅⭫⍷1ٲⴇ᧝
δঋփφAε7
MVр䲆
ᢁࣞགྷփٲ
SPᯒ඗䇴ᇐٲ
└δ߭পε
PV䗉ޛڅ〱䠅
〥࠼ᰬ䰪
δঋփφ〈ε
ᗤ࠼ᰬ䰪
δঋփφ〈ε
MVс䲆
↱
└δࣖ✣ε
〥࠼ᰬ䰪
δ߭পε
δঋփφsε
ᗤ࠼ᰬ䰪
δ߭পε
δঋփφsε
∊ׁᑜ
δ߭পε
䈹᮪㨒ঋ⭞ӄ൞᧝࡬ᰬ䗉ޛ䇴ᇐٲૂڅ〱ٲȾ
␻䲚PᡌPD᧝࡬ᵕ䰪
Ⲻڅ〱䠅
∊ׁᑜ
RUN/STOP
ㅜᆿޞḽ߼
൞䗉ޛ⭫ⓆȽ㔝⭫ಞ䗉࠰ҁ䰪ԛެᆹㄥᆆҁ䰪ᨆבҼᕰ㔓㕎Ⱦ
ࣗᗻֵᗍ⭫Ⓠж⅗םр⭕Ⲻⷢ䰪䗽⭫ুу㾷䎻䗽ԛс⭫ুٲȾ
䘎䈭᤿➝ᵢӝ૷Ⲻ⭫Ⓠ⭫ু䘑㺂⺤䇚Ⱦ
⸣ᰬ䰪䗽⭫ুφ9δ⭫Ⓠ⭫ুε
䮵ᰬ䰪䗽⭫ুφ9δ⭫Ⓠ⭫ুε
൞ֵ⭞ᵢӝ૷ᰬθ䈭ࣗᗻཌ᧛䈪᱄Ҝр᧞㦆Ⲻؓ䲟ѓȾ
ީӄ⁗ᤕ䗉ޛ
g䗉ޛ⭫ুᡌ⭫⍷ᰬθ䈭᤿➝ᵢӝ૷Ⲻ䗉ޛ㊱ࡡ䇴ᇐ䗉ޛ㊱ශȾ
g䈭ሼᵢӝ૷⭞ᶛ⎁ᇐć⎁䠅㤹⮪Ѱ,,Ƚ,,,Ƚ,9ĈⲺഔ䐥Ⱦ
g䈭ሼᵢӝ૷⭞ᶛ⎁ᇐćদࣖ⭫ু䎻䗽9UPVᡌ9'&ĈⲺሯ䊗Ⱦ
ྸ󰵳ӝ૷ᵠ᤿ᵢޢ᤽ᇐⲺᯯ⌋ֵ⭞θ䛙Ѿӝ૷ޭ༽Ⲻؓᣚࣕ㜳ᖾ㜳
ᦕඅȾ
cd
LH
ON
OFF
SP
䗉ޛ㊱ශ3
SPр䲆
SPс䲆
PIDgON/OFF
ֵ⭞ON/OFF᧝࡬ᰬ=onof
ֵ⭞2䐥PID᧝࡬ᰬ=pid
ḽ߼ᡌࣖ✣/߭প
ḽ߼᧝࡬ᰬ=
ࣖ✣߭প᧝࡬ᰬ=
᧝࡬ઞᵕδࣖ✣ε
δঋփφ〈ε
⭫ু䗉࠰δ⭞ӄ傧ࣞSSRεφ2
ᣛ䆜1㊱ශφ
ӻ䲆᤽ᇐශ
᧝࡬ઞᵕδ߭পε
δঋփφ〈ε
⭫ু䗉࠰δ⭞ӄ傧ࣞSSRεφ2
STδ㠠ṗ↙ε
ST ON =
ST OFF =
↙/䘆㺂
䘆㺂δࣖ✣εѣ=
↙䘆㺂δ߭পεѣ=
3
4
ᣛ䆜1└
ᣛ䆜2└
ᣛ䆜2㊱ශφ
ӻ䲆᤽ᇐශ
°C= c
°F= f
3
4
∊ׁ㕟᭴с䲆δӻ䲆
䇴ᇐ⁗ᤕ䠅䗉ޛᰬε
ቅᮦ⛯δӻ䲆䇴ᇐ
⁗ᤕ䠅䗉ޛᰬε
∊ׁ㕟᭴р䲆δӻ䲆
䇴ᇐ⁗ᤕ䠅䗉ޛᰬε
⑟ᓜঋփ
.nim06
45
54
+0.6
0
6.0+
0
6.0+
0
(48 x number of units - 2.5)
+1
0
54
Indicates a potentially hazardous situation which, if
not avoided, is likely to result in minor or moderate
injury or property damage. Read this manual
carefully before using the product.
E5CC-8
Digital Controller
Be sure to observe the following precautions to prevent operation failure, malfunction, or adverse affects on the
performance and functions of the product. Not doing so may occasionally result in unexpected events.
Use the product within specifications.
(1) The product is designed for indoor use only. Do not use the product outdoors. Do not use or store the product
in any of the following locations.
Places directly subject to heat radiated from heating equipment.
Places subject to splashing liquid or oil atmosphere.
Places subject to direct sunlight.
Places subject to dust or corrosive gas (in particular, sulfide gas and ammonia gas).
Places subject to intense temperature change.
Places subject to icing and condensation.
Places subject to vibration and large shocks.
(2) Use/store within the rated temperature and humidity ranges. Provide forced-cooling if required.
(3) To allow heat to escape, do not block the area around the product.
Do not block the ventilation holes on the product.
(4) Be sure to wire properly with correct polarity of terminals.
(5) Use the specified size of crimped terminals (M3, width 5.8 mm or less) for wiring. To connect bare wires to the
terminal block, use copper braided or solid wires with a gage of AWG24 to AWG18 (equal to cross- sectional
area of 0.205 to 0.8231 mm
2
). (The stripping length is 6 to 8 mm.) Up to two wires of same size and type, or
two crimped terminals can be inserted into a single terminal.
(6) Do not wire the terminals which are not used.
(7) Allow as much space as possible between the controller and devices that generate a powerful high- frequency
or surge. Separate the high-voltage or large-current power lines from other lines, and avoid parallel or
common wiring with the power lines when you are wiring to the terminals.
(8) Use this product within the rated load and power supply.
(9) Make sure that the rated voltage is attained within two seconds of turning ON the power using a switch or relay
contact. If the voltage is applied gradually, the power may not be reset or output malfunctions may occur.
(10) Make sure that the Digital Controller has 30 minutes or more to warm up after turning ON the power before
starting actual control operations to ensure the correct temperature display.
(11) When executing self-tuning, turn the load and the unit ON simultaneously, or turn the load ON before you turn
the controller ON.
(12) A switch or circuit breaker should be provided close to this unit. The switch or circuit breaker should be within
easy reach of the operator, and must be marked as a disconnecting means for this unit.
(14) Design system (control panel, etc) considering the 2 second of delay that the controller’s output to be set after
power ON.
(15) The output will turn OFF when you move to the Initial Setting Level. Take this into consideration when
performing control.
(16) The number of non-volatile memory write operations is limited. Therefore, use RAM write mode when
frequently overwriting data during communications or other operations.
(17) When disassembling the Digital Controller for disposal, use suitable tools.
(18) Do not exceed the communications distance that is given in the specifications and use the specified
communications cable. Refer to the E5CC/E5EC Digital Controllers User’s Manual (Cat. No.H174) for the
communications distance and cable specifications.
(19) Do not turn the power supply to the Digital Controller ON or OFF while the USB-Serial Conversion Cable is
connected. The Digital Controller may malfunction.
Precautions for Safe Use
Refer to the E5CC/E5EC Digital Controllers User’s Manual (Cat. No. H174)
for detailed application procedures.
INSTRUCTION MANUAL
Thank you for purchasing the
OMRON E5CC Digital Controller.
This manual describes the functions, performance, and
application methods needed for optimum use of the product.
Please observe the following items when using the product.
This product is designed for use by qualified personnel with
a knowledge of electrical systems.
 Before using the product, thoroughly read and understand
this manual to ensure correct use.
 Keep this manual in a safe location so that it is available for
reference whenever required.
OMRON Corporation
©All Rights Reserved
Refer to the E5CC/E5EC Digital Controllers User’s Manual (Cat. No.
H174) for information on the Advanced Function Setting Level,
Manual Control Level, and other functions.
Refer to the E5CC/E5EC Digital Controllers Communications
Manual (Cat. No. H175) for information on communications.
Power supply voltage 100 to 240 VAC, 50/60 Hz or
24 VAC, 50/60 Hz / 24 VDC
Operating voltage range 85 to 110% of the rated voltage
Power consumption
Option 800: 5.2 VA max. (100 to 240 VAC)
3.1 VA max. (24 VAC)/1.6 W max. (24 VDC)
All other specifications: 6.5 VA max. (100 to 240 VAC)
4.1 VA max. (24 VAC)/2.3 W max. (24 VDC)
Indication accuracy Thermocouple:
(Ambient temperature: 23°C) (±0.3 % of indication value or ±1°C,
whichever is greater) ±1 digit max.
Platinum resistance thermometer:
(±0.2 % of indication value or ±0.8°C,
whichever is greater) ±1 digit max.
Analog input:
±0.2 % FS ±1 digit max.
Event input Output current: approx. 7 mA per contact.
Contact input ON:1 kk
No-contact input ON: residual voltage 1.5 V max.,
OFF: leakage current 0.1 mA max.
Control output 1 Relay output :SPST-NO
250VAC, 3A(resistive load)
Electrical life of relay: 100,000 operations
Voltage output (for driving SSR):
12 VDC ±20%, 21 mA
Current output: 4 to 20 mA DC, 0 to 20mA DC
Load: 500 
Control method ON/OFF or 2-PID control
Auxiliary outputs Relay outputs:SPST-NO, 250 VAC,
3 A (resistive load)
Electrical life of relay: 100,000 operations
Ambient temperature -10 to 55°C
(Avoid freezing or condensation)
Ambient humidity 25% to 85%
Storage temperature -25 to 65°C
(Avoid freezing or condensation)
Altitude Max. 2,000m
Recommended fuse
T2A, 250 VAC, time-lag, low-breaking capacity
Weight Approx. 120 g (Digital Controller only)
Degree of protection Front panel: IP66
Rear case: IP20, Terminal section: IP00
Installation environment Installation category II, pollution
degree 2 (as per IEC61010-1)
Memory protection Non-volatile memory
(Number of write operations: 1,000,000)
CAUTION
CAUTION
Minor injury due to electric shock may occasionally occur.
Do not touch the terminals while power is being supplied.
Electric shock, fire, or malfunction may occasionally occur. Do not allow metal objects, conductors,
cuttings from installation work, or moisture to enter the Digital Controller, the Setup Tool ports, or
between the pins on the connectors on the Setup Tool cable.
Do not use the product where subject to flammable or explosive gas. Otherwise, minor injury from
explosion may occasionally occur.
Never disassemble, modify, or repair the product or touch any of the internal parts. Minor electric
shock, fire, or malfunction may occasionally occur.
CAUTION - Risk of Fire and Electric Shock
a) This is the product UL listed as Open Type Process Control Equipment. It must be mounted in an enclosure
that does not allow fire to escape externally.
b) More than one disconnect switch may be required to de-energize the equipment before servicing.
c) Signal inputs are SELV, limited energy.
d) Caution: To reduce the risk of fire or electric shock, do not interconnect the outputs of different Class 2 circuits.
If the output relays are used past their life expectancy, contact fusing or burning may occasionally occur.
Always consider the application conditions and use the output relays within their rated load and
electrical life expectancy. The life expectancy of output relays varies considerably with the output load
and switching conditions.
Loose screws may occasionally result in fire. Tighten the terminal screws to the specified torque of 0.43
to 0.58 
Set the parameters of the product so that they are suitable for the system being controlled. If they are
not suitable, unexpected operation may occasionally result in property damage or accidents.
A malfunction in the Digital Controller may occasionally make control operations impossible or prevent
alarm outputs, resulting in property damage. To maintain safety in the event of malfunction of the Digital
Controller, take appropriate safety measures, such as installing a monitoring device on a separate line.
EN
Safety Precautions
Key to Warning Symbols
Dimensions
*2: Error shown only for "Process value / Set point". Not shown for other status.
When an error has occurred, the No.1 display shows the error code. Take necessary measure
according to the error code, referring the table below.
If the input value exceeds the display limit (-1999 to 9999), though it is within the control
range, [[[[ will be displayed under -1999 and ]]]] above 9999. Under these conditions,
control output and alarm output will operate normally.
Refer to the E5CC/E5EC Digital Controllers User’s Manual (Cat. No. H174) for the controllable
ranges.
Check the setting of the Input Type parameter,
check the input wiring, and check for broken or
shorts in the temperature sensor.
Turn the power OFF then back ON again. If the
display remains the same, the controller must be
repaired. If the display is restored to normal, then
a probable cause can be external noise affecting
the control system. Check for external noise.
After the correction of A/Dconverter error, turn the
power OFF then back ON again. If the display
remains the same, the controller must be repaired.
If the display is restored to normal, then a
probable cause can be external noise affecting the
control system. Check for external noise.
No.1 display Meaning
A/D converter error
*2
Memory error
Input error
*2
s.err (S. Err)
e111 (E111)
Action
OFF
Alarm
Control
output
Status at error
OFF
OFF
Operates
as above the
upper limit.
OFF
OFF
e333 (E333)
Error Display (troubleshooting)
Warning Symbols
Installation Connections (The applicability of the electric terminals varies with the type of machine.)
Specifications
Other functions
Wiring
Names of Parts on Front Panel
 °C / °F : temperature unit
The temperature unit is displayed when the displayed value
is a temperature. Either Cor Fis displayed according to
the set value of the temperature unit.
Mode key
Press this key to change the contents of the display.
Press this button for 1 s or longer for reverse scroll.
 Press the key and the Mkey together for at
least 3 seconds to switch to protect level.
Level key
Use this key to change levels:
 Shift key (PF key)
The default PF Setting parameter is for shifting the digit.
This is a function key. When it is pressed, the function
set for the PF Setting parameter will operate.
 :Protection indicator
Lit when Setting Change Protect is
ON (disables the Up and Down Keys).
MANU: Manual output indicator
Lit when the Auto/Manual Mode is set
to Manual Mode.
Operation Menu
*1: Upper and lower limits can be set for parameters 1, 4 and 5 to
provide for different types of alarm. These are indicated by the
letter "L" and "H".
 The default alarm type is "2"
Alarms
OMRON EUROPE B.V.
Wegalaan 67-69, NL-2132 JD Hoofddorp The Netherlands
Phone 31-2356-81-300
FAX 31-2356-81-388
OMRON ELECTRONICS LLC
One Commerce Drive Schaumburg, IL 60173-5302 U.S.A
Phone 1-847-843-7900
FAX 1-847-843-7787
OMRON ASIA PACIFIC PTE. LTD.
No. 438A Alexandra Road # 05-05/08 (Lobby 2),
Alexandra Technopark, Singapore 119967
Phone 65-6835-3011
FAX 65-6835-2711
OMRON Corporation
Shiokoji Horikawa, Shimogyo-ku, Kyoto 600-8530 JAPAN
Operation stopped.
(Control/alarm are both stopped.) *5
Initial Setting Level
Use the following ranges for scaling: -1999
to 9999, -199.9 to 999.9, -19.99 to 99.99,
-1.999 to 9.999
golanA
epyttupni
Current input
Voltage input
Do not connect anything to the terminals that are shaded gray.
Dimensions (mm)
The E5CC is set for a K thermocouple (input type of 5)
by default. If a different sensor is used, an input error (s.err) will occur.
Check the setting of the Input Type parameter.
Check the wiring before turning ON the power supply.
*1
*1
*1
Alarm type
Vary with
"L", "H" values
Vary with
"L", "H" values
Vary with
"L", "H" values
No alarm function Output off
Deviation upper/lower limit
standby sequence ON
Absolute value upper limit
Absolute value lower limit
Absolute value upper limit
standby sequence ON
Absolute value lower limit
standby sequence ON
LBA (only for alarm 1)
Deviation lower limit
standby sequence ON
Deviation upper limit
standby sequence ON
Deviation upper/lower range
Deviation upper limit
Deviation upper/lower limit
Deviation lower limit
Alarm output function
Positive alarm value (X)
Negative alarm value (X)
Setting
PV Change Rate Alarm
X
XON
OFF SPSP
X
ON
OFF SP
ON
OFF SP
X
X
ON
OFF
ON
OFF
SP
LH
ON
OFF SP
X
ON
OFF SP
X
ON
OFF SP
X
ON
OFF 0
ON
OFF
X
0
X
ON
OFF 0
X
ON
OFF 0
ON
OFF
X
0
X
ON
OFF 0
X
ON
OFF 0
X
ON
OFF 0
X
ON
OFF 0
X
ON
OFF 0
ON
OFF
X
0
ON
OFF
X
0
ON
OFF
X
0
ON
OFF
X
0
LH
ON
OFF SP
SP
ON
OFF
X
ON
OFF
X
0
1
0
2
3
4
5
6
7
8
9
SP absolute value upper limit
SP absolute value lower limit
14
15
MV absolute value upper limit
MV absolute value lower limit
16
17
10
11
12
13
ON
OFF
X
0
POWER ON
MV Monitor
(Heating)
*6 o
0.0
MV Monitor
(Cooling)
*6 c-o
0.0
Alarm Value
Lower Limit 1 *4
*6
al1l
0
Alarm Value 2 *4
*6 al-2
0
Alarm Value
Upper Limit 2 *4
*6 al2h
0
Alarm Value
Lower Limit 2 *4
*6 al2l
0
Input Type *3
Scaling Upper Limit
(only when setting
analog input)
Scaling Lower Limit
(only when setting
analog input)
Decimal Point
(only when setting
analog input)
Temperature
Unit
SP Upper Limit
SP Lower Limit

In ON/OFF control = onof
In 2-PID control = pid
Standard or Heating/Cooling
Standard control =
stnd
Heating and cooling control =
h-c
Control Period (Heating)
(Unit: Seconds)
*Voltage output (for driving SSR): 2
Alarm 1 Type:
Specified models only
Control Period (Cooling)
(Unit: Seconds)
*Voltage output (for driving SSR): 2
ST (Self-Tuning)
ST ON = on
ST OFF = off
Direct/Reverse Operation
In Reverse operation (Heating) =
or-r
In Direct operation (Cooling) =
or-d
*3
*4
*6
*6
*6
*6
*6
*6
*6
*6
*6
in-t
5
in-h
100
in-l
0
dp
0
d-u
c
sl-h
1300
sl-l
-200
cntl
onof
s-hc
stnd
st
on
cp
20
c-cp
20
orev
or-r
alt1
2
*6
Event Input
Assignment 1
*6 ev-1
msp0
Event Input
Assignment 2
*6 ev-2
stop
Event Input
Assignment 3
*6 ev-3
none
Event Input
Assignment 4
*6 ev-4
none
Move to Advanced
Function Setting
Level
*6 amov
0
*6
Alarm 1
Hysteresis
alh1
0.2
Alarm 2
Hysteresis
alh2
0.2
Alarm 2 Type:
Specified models only
alt2
2
*6 at
off
Heater Current 1 Value
Monitor (unit: A) *7
*6 ct1
0.0
Communications Writing
*6 cmwt
off
*6
Heater Burnout Detection 1
(unit: A) *7
hb1
0.0
MV Upper Limit
*6 ol-h
100.0
Manual Reset Value
Clears the offset
during P or PD control.
*6 of-r
50.0
SP Ramp Set Value
*6
sprt
off
Hysteresis (Cooling)
*6 chys
1.0
PV
Input Shift
*6 ins
0.0
Leakage Current 1 Value
Monitor (unit: A) *7
*6 lcr1
0.0
Integral Time
(Unit: secs)
*6 i
233
Derivative Time
(Unit: secs)
*6 d
40
MV Lower Limit
*6
ol-l
0.0
HS Alarm 1
(unit: A) *7
*6 hs1
50.0
SP 0
*6 sp-0
0
SP 1
*6 sp-1
0
SP 3
*6 sp-3
0
SP 4
*6 sp-4
0
SP 5
*6 sp-5
0
SP 6
*6 sp-6
0
SP 7
*6 sp-7
0
SP 2
*6 sp-2
0
25
0
Process Value/Set Point
s.err is displayed when
connected sensor is
different from input type.
AT Execute / Cancel
100%AT Execute at-2
40%AT Execute at-1
Dead Band
*6 c-db
0.0
Hysteresis (Heating)
*6 hys
1.0
*6
Control Output 1
Signal
o1st
4-20
Proportional
Band
*6 p
8.0
Integral Time
(Cooling)
(unit: s)
*6 c-i
233
Derivative Time
(Cooling)
(unit: s)
*6 c-d
40
Proportional Band
(Cooling)
*6 c-p
8.0
4 to 20mA
0 to 20mA
1 to 5V
0 to 5V
0 to 10V
25
26
27
28
29
Setting range
Input type Input
Pt100
JPt100
Thermocouple
Infrared
Thermosensor
ES1B
K
J
T
E
L
U
N
R
S
B
W
PL II
Setting
10 to 70°C
60 to 120°C
115 to 165°C
140 to 260°C
0
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
17
18 12
15
16
1
2
13
14
3
11
4
6
7
8
9
10
5
Operation indicators
 SUB1: Auxiliary output 1 indicator
 SUB2: Auxiliary output 2 indicator
 OUT1: Control output 1 indicator
6
4
5
6
5
6
Pt
+

mA

+
5
4
*2 Sensor Temperature/Analog Input
V
 5
V6
+
4
TC
4
I
(no polarity)
11
12
*4 Input Power Supply
11
12
100 to 240 VAC 24 VAC/DC
(64)
85
604
144.8u44.8 5. Options
1. Control outputs
10
7
8
9
*3 Auxiliary Outputs
Auxiliary outputs 1 and 2
Auxiliary output 1
Auxiliary output 2
16
17
18
13
14
15
13
14
15
18
16
804
Communications (RS-485)
and event inputs 3 and 4
13
14
15
16
*5 Options
801
Event inputs 1 and 2,
and CT1
1717
18
802
Communications
(RS-485) and CT1
EV1
EV2
EV3
EV4
CT1 CT1
B(+)
A()
RS-485
B(+)
A()
RS-485
+

3
1
2
3
1
2
One linear
current output
One relay
output
3
*1 Control Outputs 1
1
2
One voltage output
+
RX QX CX
Sold Separately
*Terminal cover (E53-COV23)
*USB-Serial Conversion Cable
(E58-CIFQ2)
In the pack:
*Main unit
*Instruction manual
*Watertight packing (Y92S-P8):
c
*Adapter (Y92F-49): d
* Do not remove the terminal block. Doing so may result in failure or malfunction.
* A Setup Tool port is provided on the upper of the product. Use this port to connect a personal computer to the product when using
the Setup Tool. E58-CIFQ2 USB-Serial Conversion Cable is required to connect the personal computer to the product. (Do not use
the product with the USB-Serial Conversion Cable left permanently connected.)
Refer to the instruction manual provided with the USB-Serial Conversion Cable for details on connection methods.
Relay output
250 VAC, 3 A (resistive load)
Voltage output (for driving SSR)
12 VDC, 21 mA
Current output
0 to 20 mA DC

4 to 20 mA DC
Control output 1
No.1 display
Process value or set data type
No.2 display
Set point, set data read-out value or changed input
value
Up and Down keys
Each press of Ukey increments or advances the
values displayed on the No.2 display.
Each press of Dkey decrements or returns the
values displayed on the No.2 display.
TUNE:
Flashing during self-tuning.
Lit during auto-tuning.
STOP: Control stopped indicator
Lit when event input or “Run/Stop” is stopped during
operation.
During control stop, functions other than control output
are valid.
CMW: Communications writing
enabled/disabled indicator
Lit when communications writing is enabled and not lit
when it is disabled.
Relay outputs
250 VAC, 3 A (resistive load)
Auxiliary outputs 1 and 2
E5CC
Input Type
-200 to 850
-199.9 to 500.0
0.0 to 100.0
-199.9 to 500.0
0.0 to 100.0
-200 to 1300
-20.0 to 500.0
-100 to 850
-20.0 to 400.0
-200 to 400
-199.9 to 400.0
-200 to 600
-100 to 850
-200 to 400
-199.9 to 400.0
-200 to 1300
0 to 1700
0 to 1700
100 to 1800
0 to 2300
0 to 1300
0 to 90
0 to 120
0 to 165
0 to 260
-300 to 1500
-199.9 to 900.0
0.0 to 210.0
-199.9 to 900.0
0.0 to 210.0
-300 to 2300
0.0 to 900.0
-100 to 1500
0.0 to 750.0
-300 to 700
-199.9 to 700.0
-300 to 1100
-100 to 1500
-300 to 700
-199.9 to 700.0
-300 to 2300
0 to 3000
0 to 3000
300 to 3200
0 to 3200
0 to 2300
0 to 190
0 to 240
0 to 320
0 to 500
Platinum
resistance
thermometer
stupnierutarepmeT
*The default is“5”.
*s.err will be displayed when a platinum resistance thermometer is mistakenly connected
while input type is not set for it. To clear the s.err display, correct the wiring and cycle the
power supply.
°C= c
°F= f
*3
*4
Initial setting level enables users to specify their preferred
operating conditions (input type, alarm type, control method, etc.)
*3: Refer to the adjoining tables for details of input types and alarm types.
*4: Applicable only to models with alarm functions.
*5: Operation is stopped when moved to the initial setting level.
(control/alarm are both stopped.)
*6: The grayed-out setting items are not displayed for some models and
some settings of other setting items.
*7: Applicable only to models with heater burnout functions.
Hold down
for at least
1 second
(No.1 display flashes,
then the control stops.)
Hold down
for at least
3 seconds
Operation Level
Set Point During
SP Ramp
*6 sp-m
0
Heater Current 1
Value Monitor
(unit: A) *7
*6 ct1
0.0
Multi-SP Set Point
Selection
*6 m-sp
0
Auto/Manual Switch
PID 1 control only.
Auto/Manual Select
Addition.
*6 a-m
Leakage Current 1
Value Monitor
(unit: A) *7
*6 lcr1
0.0
RUN/STOP
*6 r-s
run
Alarm Value 1 *4
*6 al-1
0
Alarm Value
Upper Limit 1 *4
*6
al1h
0
When control start =
run
When control stop =
stop
Operation level should normally be used during operations.
Hold and Mkeys
down for at least
1 second
Hold and Mkeys
down for at least
3 seconds
Press
(less than
1 second)
Adjustment Level
Only the value set to the ins: Temperature Input Shift parameter is applied to the entire temperature input range.
When the process value is 200°C, the process value is treated as 201.2°C after input shift if the input shift value
is set to 1.2°C. The process value is treated as 198.8°C after input shift if the input shift value is set to -1.2°C.
Adjustment level is for entering set values and shift values for control.
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
M
* When complying with EMC standards, the line connecting the sensor must be 30 m or less.
If the cable length exceeds 30 m, compliance with EMC standards will not be possible.
Individual mounting (mm) Side-by-side mounting (mm)
!!$&anel (1 to 5 mm thickness). Insert the
mounting brackets (supplied) into the fixing slots located on the top and bottom of the rear
case.
 Tighten the two mounting screws on the top and bottom of the adapter to keep them
balanced, and finally tighten them to a torque of between 0.29 and 0.39 N·m.
';$$<that the ambient temperature does
not exceed the specified limit.
Waterproofing is impossible
with side-by-side
installation. When
waterproofing is required, fit
watertight packing on the
backside of front panel.
°C °F
CQR
48u48
c d
Solderless terminal size
M3
OUT1 OUT1 OUT1
A
B
B
Conformance to EN/IEC Standards
This is a class A product.
In residential areas it may cause radio interference, in which case the user
may be required to take adequate measures to reduce interference.
Ͳ匏匶匶櫋怺殯愯暧皻柦匶沖沲
決匶匶垚櫋怺殯Ͳ匏洊沖砒洇穯匶匶嵢昢砖廪沖嬖垚斲殯沖垚決洖汊
渂汞穞柢匶愚岂彶儆洛歾汞滆櫳櫖昢斲殯穞垚冉汊徯洇求嵢穯城埪
LH
ON
OFF
SP
(13) Wipe off any dirt from the Digital Controller with a soft dry cloth. Never use thinners, benzine, alcohol, or any
cleaners that contain these or other organic solvents. Deformation or discoloration may occur.
Operation / Adjustment Protect
Restricts displaying and
modifying menu items in
Operation, Adjustment,
and Manual Control Levels.
oapt
0
Changed
Parameters Only
Initial Setting / Communication Protect
Restricts movement to the
Initial Setting, Communications
Setting, and Advanced Function
Setting Levels.
icpt
1
Setting Change Protect
Restricts changes to
settings by operating
the front panel keys.
wtpt
off
pfpt
off
PF Key Protect
Restricts PF key
operation.
Protect Level
Restricts which settings can be displayed or changed, and
restricts change by key operation.
M
M
M
M
M
M
chgp
off
8
*6
Suitability for Use
Omron Companies shall not be responsible for conformity with any standards, codes or regulations which
apply to the combination of the Product in the Buyer’s application or use of the Product.
At Buyer’s request, Omron will provide applicable third party certification documents identifying ratings and
limitations of use which apply to the Product. This information by itself is not sufficient for a complete
determination of the suitability of the Product in combination with the end product, machine, system, or
other application or use. Buyer shall be solely responsible for determining appropriateness of the particular
product with respect to Buyer’s application, product or system. Buyer shall take application responsibility in
all cases.
NEVER USE THE PRODUCT FOR AN APPLICATION INVOLVING SERIOUS RISK TO LIFE OR
PROPERTY WITHOUT ENSURING THAT THE SYSTEM AS A WHOLE HAS BEEN DESIGNED TO
ADDRESS THE RISKS, AND THAT THE OMRON PRODUCT(S) IS PROPERLY RATED AND INSTALLED
FOR THE INTENDED USE WITHIN THE OVERALL EQUIPMENT OR SYSTEM.
(20)
The maximum terminal temperature is 75°C.
Temporary overvoltage Short term: 1200 V+ (power supply voltage)
Long term: 250 V+ (power supply voltage)
Conformance to Safety Standard
Reinforced insulation is provided between input power
supply, relay outputs, and between other terminals.
Do not allow temporary overvoltages on the primary circuit to exceed
the following values.
Check the power supply voltage to the Digital Controller.
Short-term overvoltage: 1,200 V + (Power supply voltage)
Long-term overvoltage: 250 V + (Power supply voltage)
Always externally connect the recommended fuse that is specified
in the Instruction Manual before you use the Digital Controller.
Analog Input

If you input an analog voltage or current, set the Input Type
parameter to the correct input type.
 Do not use the Digital Controller to measure a circuit with
Measurement Category II, III, or IV.

Do not use the Digital Controller to measure an energized circuit to
which a voltage that exceeds 30 Vms or 60 VDC is applied.
The protection provided by the Digital Controller may be impaired if the
Digital Controller is used in a manner that is not specified by the
manufacturer.

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