PROTOKOL RS485 Modbus Lan Gateway Lan
Spesifikasi
- Protokol Komunikasi: MODBUS ASCII/RTU, MODBUS TCP
- Antarmuka sing Didhukung: RS485 MODBUS, LAN
- Maksimum Budak Didhukung: Nganti 247
- MODBUS TCP Port: 502
- Struktur rangka:
- Mode ASCII: 1 Mulai, 7 Bit, Genap, 1 Stop (7E1)
- Mode RTU: 1 Mulai, 8 Bit, Ora Ana, 1 Stop (8N1)
- Mode TCP: 1 Mulai, 7 Bit, Genap, 2 Stop (7E2)
FAQ
- Apa tujuan saka Protokol Komunikasi MODBUS?
- Protokol MODBUS nggampangake komunikasi antarane piranti master lan pirang-pirang piranti budak, sing ngidini pertukaran data ing sistem otomatisasi industri.
- Carane akeh babu bisa disambungake nggunakake protokol MODBUS?
- Protokol MODBUS ndhukung nganti 247 budak sing disambungake ing konfigurasi jaringan bis utawa bintang.
- Kepiye carane ngganti alamat budak ing mode MODBUS ASCII / RTU?
- Kanggo ngganti alamat abdi ing MODBUS ASCII / mode RTU, deleng manual pangguna kanggo instruksi ing konfigurasi nomer logis counter.
Watesan Tanggung Jawab
Produsen duwe hak kanggo ngowahi spesifikasi ing manual iki tanpa bebaya sadurunge. Salinan apa wae saka manual iki, sebagean utawa lengkap, kanthi fotokopi utawa kanthi cara liya, sanajan sing sifate elektronik, tanpa pabrikan menehi wewenang tinulis, nglanggar syarat-syarat hak cipta lan tanggung jawab kanggo dituntut.
Dilarang nggunakake piranti kanggo panggunaan sing beda-beda tinimbang sing wis dirancang, kaya sing disimpulake ing manual iki. Nalika nggunakake fitur ing piranti iki, manut kabeh hukum lan ngormati privasi lan hak sah wong liya.
Kajaba sing dilarang dening hukum sing ditrapake, pabrikan ora bakal TANGGUNG JAWAB ATAS KERUSAKAN KONSEKUENSI sing ana hubungane karo PRODUK lan pabrikan ora nganggep utawa menehi wewenang kanggo wakil liyane LAIN KOWE SING SING TELITI.
Kabeh merek dagang ing manual iki minangka properti saka sing nduweni.
Informasi sing ana ing manual iki mung kanggo tujuan informasi, tundhuk owah-owahan tanpa bebaya sadurunge lan ora bisa dianggep naleni kanggo Produsèn. Produsen ora tanggung jawab kanggo kesalahan utawa incoherence sing ana ing manual iki.
DESKRIPSI
MODBUS ASCII / RTU minangka protokol komunikasi master-slave, bisa ndhukung nganti 247 budak sing disambungake ing jaringan bis utawa bintang. Protokol nggunakake sambungan simplex ing siji baris. Kanthi cara iki, pesen komunikasi pindhah ing siji baris ing rong arah ngelawan.
MODBUS TCP minangka varian saka kulawarga MODBUS. Khusus, nyakup panggunaan olahpesen MODBUS ing lingkungan "Intranet" utawa "Internet" nggunakake protokol TCP/IP ing port tetep 502.
Pesen master-slave bisa dadi:
- Reading (Kode fungsi $ 01, $ 03, $ 04): komunikasi antarane master lan abdi siji. Iki ngidini sampeyan maca informasi babagan counter queried
- Nulis (Kode fungsi $10): komunikasi antarane master lan abdi siji. Iki ngidini sampeyan ngganti setelan counter
- Broadcast (ora kasedhiya kanggo MODBUS TCP): komunikasi antarane master lan kabeh budak sing disambungake. Iku tansah printah nulis (Kode fungsi $10) lan mbutuhake nomer logis $00
Ing sambungan jinis multi-titik (MODBUS ASCII / RTU), alamat abdi (disebut uga nomer logis) ngidini kanggo identifikasi saben counter sak komunikasi. Saben counter wis prasetel karo alamat budak standar (01) lan pangguna bisa ngganti.
Ing kasus MODBUS TCP, alamat budak diganti dening siji byte, pengenal Unit.
Struktur kerangka komunikasi - mode ASCII
Bit per byte: 1 Start, 7 Bit, Even, 1 Stop (7E1)
jeneng | dawa | Fungsi |
MULAI FRAME | 1 kab | Tandha wiwitan pesen. Diwiwiti nganggo titik titik ":" ($3A) |
LAPANGAN ALAMAT | 2 aksara | Counter logis nomer |
KODE FUNGSI | 2 aksara | Kode fungsi ($01 / $03 / $04 / $10) |
DATA BIDANG | n aksara | Data + dawa bakal diisi gumantung saka jinis pesen |
Mriksa ERROR | 2 aksara | Priksa kesalahan (LRC) |
RANGKA END | 2 aksara | Carriage return – line feed (CRLF) pasangan ($0D & $0A) |
Struktur kerangka komunikasi - mode RTU
Bit per byte: 1 Start, 8 Bit, None, 1 Stop (8N1)
jeneng | dawa | Fungsi |
MULAI FRAME | 4 aksara nganggur | Paling ora 4 karakter wektu bisu (kondisi MARK) |
LAPANGAN ALAMAT | 8 bit | Counter logis nomer |
KODE FUNGSI | 8 bit | Kode fungsi ($01 / $03 / $04 / $10) |
DATA BIDANG | nx 8 pwt | Data + dawa bakal diisi gumantung saka jinis pesen |
Mriksa ERROR | 16 bit | Priksa kesalahan (CRC) |
RANGKA END | 4 aksara nganggur | Wektu paling ora 4 karakter ing antarane pigura |
Struktur kerangka komunikasi - mode TCP
Bit per byte: 1 Start, 7 Bit, Even, 2 Stop (7E2)
jeneng | dawa | Fungsi |
ID TRANSAKSI | 2 byte | Kanggo sinkronisasi antarane pesen saka server & klien |
PROTOKOL ID | 2 byte | Zero kanggo MODBUS TCP |
BYTE COUNT | 2 byte | Jumlah bita sing isih ana ing pigura iki |
ID UNIT | 1 byte | Alamat budak (255 yen ora digunakake) |
KODE FUNGSI | 1 byte | Kode fungsi ($01 / $04 / $10) |
DATA BYTE | n bita | Data minangka respon utawa prentah |
Generasi LRC
Kolom Longitudinal Redundancy Check (LRC) yaiku siji bait, ngemot nilai binar 8-bit. Nilai LRC diwilang dening piranti ngirim, kang appends LRC kanggo pesen. Piranti panampa ngetung maneh LRC sajrone nampa pesen lan mbandhingake nilai sing diwilang karo nilai nyata sing ditampa ing lapangan LRC. Yen loro nilai ora padha, asil kesalahan. LRC diwilang kanthi nambahake bita 8-bit berturut-turut ing pesen, mbuwang sembarang mawa, banjur loro kanggo nglengkapi asil. LRC minangka kolom 8-bit, mula saben tambahan karakter anyar sing bakal ngasilake nilai sing luwih dhuwur tinimbang 255 desimal mung 'muter' nilai kolom kasebut nganti nol. Amarga ora ana bit sangang, gawan dibuwang kanthi otomatis.
Prosedur kanggo ngasilake LRC yaiku:
- Tambah kabeh bita ing pesen, ora kalebu wiwitan 'titik' lan pungkasan CR LF. Tambahake menyang kolom 8-bit, supaya gawan bakal dibuwang.
- Kurangi nilai lapangan pungkasan saka $FF, kanggo ngasilake sing-pelengkap.
- Tambah 1 kanggo ngasilake loro-pelengkap.
Nempatake LRC menyang Pesen
Nalika LRC 8-bit (2 karakter ASCII) ditularake ing pesen kasebut, karakter urutan dhuwur bakal dikirim dhisik, banjur karakter urutan rendah. Kanggo example, yen nilai LRC $52 (0101 0010):
kolon
':' |
alamat | Fungsi | data
Count |
data | data | …. | data | LRC
Halo '5' |
LRC
Lo'2' |
CR | LF |
C-fungsi kanggo ngitung LRC
Generasi CRC
Kolom Cyclical Redundancy Check (CRC) yaiku rong bita, ngemot nilai 16-bit. Nilai CRC diwilang dening piranti ngirim, kang appends CRC kanggo pesen. Piranti panampa ngetung maneh CRC sajrone nampa pesen lan mbandhingake nilai sing diwilang karo nilai nyata sing ditampa ing kolom CRC. Yen loro nilai ora padha, asil kesalahan.
CRC diwiwiti kanthi preloading register 16-bit menyang kabeh 1. Banjur proses wiwit nglamar bita 8-bit pesen menyang isi registrasi saiki. Mung wolung bit data ing saben karakter sing digunakake kanggo ngasilake CRC. Miwiti lan mungkasi bit, lan bit paritas, ora ditrapake kanggo CRC.
Sajrone generasi CRC, saben karakter 8-bit eksklusif OR karo isi register. Banjur asil dipindhah menyang arah bit paling signifikan (LSB), kanthi nol diisi menyang posisi bit paling signifikan (MSB). LSB diekstrak lan ditliti. Yen LSB ana 1, register banjur eksklusif ORed karo prasetel, nilai tetep. Yen LSB ana 0, ora eksklusif UTAWA njupuk Panggonan.
Proses iki diulang nganti wolung shift wis ditindakake. Sawise owah-owahan pungkasan (kawolu), karakter 8-bit sabanjure dadi eksklusif OR karo nilai register saiki, lan proses kasebut diulang maneh kanggo wolung owah-owahan kaya sing kasebut ing ndhuwur. Isi pungkasan ndhaptar, sawise kabeh karakter pesen wis diterapake, yaiku nilai CRC.
Prosedur sing diitung kanggo ngasilake CRC yaiku:
- Muat register 16-bit nganggo $FFFF. Telpon iki ndhaftar CRC.
- Eksklusif UTAWA bait 8-bit pisanan saka pesen kanthi bait-urutan cilik saka registrasi CRC 16-bit, nglebokake asil ing daftar CRC.
- Shift register CRC siji dicokot nengen (menyang LSB), nul-isi MSB. Extract lan mriksa LSB.
- (Yen LSB ana 0): Baleni Langkah 3 (shift liyane). (Yen LSB ana 1): Eksklusif UTAWA ndhaptar CRC kanthi nilai polinomial $A001 (1010 0000 0000 0001).
- Baleni Langkah 3 lan 4 nganti 8 shift wis ditindakake. Yen wis rampung, bait 8-bit lengkap bakal diproses.
- Baleni Langkah 2 nganti 5 kanggo bita 8-bit sabanjure pesen. Terusake iki nganti kabeh bita wis diproses.
- Isi pungkasan saka daftar CRC yaiku nilai CRC.
- Nalika CRC diselehake ing pesen, bait ndhuwur lan ngisor kudu diganti kaya sing diterangake ing ngisor iki.
Nempatake CRC menyang Pesen
Nalika CRC 16-bit (loro bita 8-bit) ditularake ing pesen, bait-urutan rendah bakal dikirim dhisik, banjur bait urutan dhuwur.
Kanggo example, yen nilai CRC $35F7 (0011 0101 1111 0111):
Addr | Fungsi | data
Count |
data | data | …. | data | CRC
wae f7 |
CRC
Hi 35 |
Fungsi generasi CRC - Kanthi Tabel
Kabeh nilai CRC sing bisa disedhiyakake dadi rong susunan, sing mung diindeks minangka fungsi nambah liwat buffer pesen. Siji array ngemot kabeh 256 nilai CRC sing bisa kanggo bait dhuwur saka kolom CRC 16-bit, lan larik liyane ngemot kabeh nilai kanggo bait sing kurang. Ngindeks CRC kanthi cara iki nyedhiyakake eksekusi sing luwih cepet tinimbang sing bakal ditindakake kanthi ngitung nilai CRC anyar karo saben karakter anyar saka buffer pesen.
Fungsi generasi CRC - Tanpa Tabel
STRUKTUR PERINTAH MACA
- Ing cilik saka modul digabungake karo counter: Piranti komunikasi master bisa ngirim printah kanggo modul kanggo maca status lan persiyapan utawa kanggo maca nilai diukur, status lan persiyapan cocog kanggo counter.
- Ing cilik saka counter karo komunikasi terpadu: Piranti komunikasi master bisa ngirim printah kanggo counter kanggo maca status sawijining, persiyapan lan nilai diukur.
- Register liyane bisa maca, ing wektu sing padha, ngirim printah siji, mung yen ndhaftar consecutive (ndeleng Bab 5). Miturut mode protokol MODBUS, printah maca wis kabentuk kaya ing ngisor iki.
Modbus ASCII/RTU
Nilai sing ana ing pesen Query utawa Response ana ing format hex.
Pitakonan example ing cilik saka MODBUS RTU: 01030002000265CB
Example | Byte | Katrangan | Jumlah bita |
01 | – | Alamat budak | 1 |
03 | – | Kode fungsi | 1 |
00 | dhuwur | Miwiti ndhaptar | 2 |
02 | kurang | ||
00 | dhuwur | Jumlah tembung sing diwaca | 2 |
02 | kurang | ||
65 | dhuwur | Priksa kesalahan (CRC) | 2 |
CB | kurang |
Tanggapan examping kasus MODBUS RTU: 01030400035571F547
Example | Byte | Katrangan | Jumlah bita |
01 | – | Alamat budak | 1 |
03 | – | Kode fungsi | 1 |
04 | – | Jumlah bait | 1 |
00 | dhuwur | Data sing dijaluk | 4 |
03 | kurang | ||
55 | dhuwur | ||
71 | kurang | ||
F5 | dhuwur | Priksa kesalahan (CRC) | 2 |
47 | kurang |
Modbus TCP
Nilai sing ana ing pesen Query utawa Response ana ing format hex.
Pitakonan examping kasus MODBUS TCP: 010000000006010400020002
Example | Byte | Katrangan | Jumlah bita |
01 | – | Pengenal transaksi | 1 |
00 | dhuwur | Pengenal protokol | 4 |
00 | kurang | ||
00 | dhuwur | ||
00 | kurang | ||
06 | – | Jumlah bait | 1 |
01 | – | Pengenal unit | 1 |
04 | – | Kode fungsi | 1 |
00 | dhuwur | Miwiti ndhaptar | 2 |
02 | kurang | ||
00 | dhuwur | Jumlah tembung sing diwaca | 2 |
02 | kurang |
Tanggapan examping kasus MODBUS TCP: 01000000000701040400035571
Example | Byte | Katrangan | Jumlah bita |
01 | – | Pengenal transaksi | 1 |
00 | dhuwur | Pengenal protokol | 4 |
00 | kurang | ||
00 | dhuwur | ||
00 | kurang | ||
07 | – | Jumlah bait | 1 |
01 | – | Pengenal unit | 1 |
04 | – | Kode fungsi | 1 |
04 | – | Jumlah byte data sing dijaluk | 2 |
00 | dhuwur | Data sing dijaluk | 4 |
03 | kurang | ||
55 | dhuwur | ||
71 | kurang |
Titik Ngambang miturut Standar IEEE
- Format dhasar ngidini nomer floating-point standar IEEE diwakili ing format 32-bit siji, kaya sing kapacak ing ngisor iki:
- ing ngendi S minangka bit tandha, e' minangka bagéan pisanan saka eksponen lan f minangka pecahan desimal sing diselehake ing jejere 1. Secara internal eksponen dawane 8 bit lan pecahan sing disimpen dawane 23 bit.
- Metode babak-kanggo-paling cedhak ditrapake kanggo nilai titik ngambang sing diwilang.
- Format floating-point ditampilake kaya ing ngisor iki:
CATETAN: Pecahan (decimals) tansah ditampilake nalika anjog 1 (dicokot didhelikake) ora disimpen.
Example konversi nilai sing dituduhake karo titik ngambang
Nilai diwaca kanthi titik ngambang:
45AACC00(16)
Nilai diowahi ing format binar:
0 | 10001011 | 01010101100110000000000(2) |
tandha | eksponen | pecahan |
STRUKTUR PERINTAH PENULISAN
- Ing cilik saka modul digabungake karo counter: Piranti komunikasi master bisa ngirim printah kanggo modul kanggo program dhewe utawa kanggo program counter.
- Ing cilik saka counter karo komunikasi terpadu: Piranti komunikasi master bisa ngirim printah kanggo counter kanggo program.
- Setelan liyane bisa digawa metu, ing wektu sing padha, ngirim printah siji, mung yen ndhaftar cocog consecutive (ndeleng bab 5). Miturut jinis protokol MODBUS digunakake, printah nulis wis kabentuk minangka nderek.
Modbus ASCII/RTU
Nilai sing ana ing pesen Request utawa Response ana ing format hex.
Pitakonan examping kasus MODBUS RTU: 011005150001020008F053
Example | Byte | Katrangan | Jumlah bita |
01 | – | Alamat budak | 1 |
10 | – | Kode fungsi | 1 |
05 | dhuwur | Miwiti ndhaptar | 2 |
15 | kurang | ||
00 | dhuwur | Jumlah tembung sing kudu ditulis | 2 |
01 | kurang | ||
02 | – | Penghitung bait data | 1 |
00 | dhuwur | Data kanggo pemrograman | 2 |
08 | kurang | ||
F0 | dhuwur | Priksa kesalahan (CRC) | 2 |
53 | kurang |
Tanggapan example ing cilik saka MODBUS RTU: 01100515000110C1
Example | Byte | Katrangan | Jumlah bita |
01 | – | Alamat budak | 1 |
10 | – | Kode fungsi | 1 |
05 | dhuwur | Miwiti ndhaptar | 2 |
15 | kurang | ||
00 | dhuwur | Jumlah tembung sing ditulis | 2 |
01 | kurang | ||
10 | dhuwur | Priksa kesalahan (CRC) | 2 |
C1 | kurang |
Modbus TCP
Nilai sing ana ing pesen Request utawa Response ana ing format hex.
Pitakonan examping kasus MODBUS TCP: 010000000009011005150001020008
Example | Byte | Katrangan | Jumlah bita |
01 | – | Pengenal transaksi | 1 |
00 | dhuwur | Pengenal protokol | 4 |
00 | kurang | ||
00 | dhuwur | ||
00 | kurang | ||
09 | – | Jumlah bait | 1 |
01 | – | Pengenal unit | 1 |
10 | – | Kode fungsi | 1 |
05 | dhuwur | Miwiti ndhaptar | 2 |
15 | kurang | ||
00 | dhuwur | Jumlah tembung sing kudu ditulis | 2 |
01 | kurang | ||
02 | – | Penghitung bait data | 1 |
00 | dhuwur | Data kanggo pemrograman | 2 |
08 | kurang |
Tanggapan examping kasus MODBUS TCP: 010000000006011005150001
Example | Byte | Katrangan | Jumlah bita |
01 | – | Pengenal transaksi | 1 |
00 | dhuwur | Pengenal protokol | 4 |
00 | kurang | ||
00 | dhuwur | ||
00 | kurang | ||
06 | – | Jumlah bait | 1 |
01 | – | Pengenal unit | 1 |
10 | – | Kode fungsi | 1 |
05 | dhuwur | Miwiti ndhaptar | 2 |
15 | kurang | ||
00 | dhuwur | Printah kasil dikirim | 2 |
01 | kurang |
KODE PENGECUALIAN
- Ing cilik saka modul digabungake karo counter: Nalika modul nampa pitakonan ora bener, pesen kesalahan (kode pangecualian) dikirim.
- Ing kasus counter karo komunikasi terpadu: Nalika counter nampa pitakonan ora bener, pesen kesalahan (kode istiméwa) dikirim.
- Miturut mode protokol MODBUS, kode pangecualian bisa kaya ing ngisor iki.
Modbus ASCII/RTU
Nilai sing ana ing pesen Response ana ing format hex.
Tanggapan examping kasus MODBUS RTU: 01830131F0
Example | Byte | Katrangan | Jumlah bita |
01 | – | Alamat budak | 1 |
83 | – | Kode fungsi (80+03) | 1 |
01 | – | Kode pangecualian | 1 |
31 | dhuwur | Priksa kesalahan (CRC) | 2 |
F0 | kurang |
Kode pangecualian kanggo MODBUS ASCII/RTU diterangake ing ngisor iki:
- $01 FUNGSI ILLEGAL: kode fungsi sing ditampa ing query ora tumindak diijini.
- $02 ALAMAT DATA ILEGAL: alamat data sing ditampa ing pitakonan ora diijini (yaiku kombinasi register lan dawa transfer ora bener).
- $03 NILAI DATA ILEGAL: nilai sing ana ing kolom data pitakon dudu nilai sing diijini.
- $04 LENGTH RESPONS ILLEGAL: panyuwunan bakal ngasilake respon kanthi ukuran sing luwih gedhe tinimbang sing kasedhiya kanggo protokol MODBUS.
Modbus TCP
Nilai sing ana ing pesen Response ana ing format hex.
Tanggapan examping kasus MODBUS TCP: 010000000003018302
Example | Byte | Katrangan | Jumlah bita |
01 | – | Pengenal transaksi | 1 |
00 | dhuwur | Pengenal protokol | 4 |
00 | kurang | ||
00 | dhuwur | ||
00 | kurang | ||
03 | – | Jumlah byte data sabanjure ing senar iki | 1 |
01 | – | Pengenal unit | 1 |
83 | – | Kode fungsi (80+03) | 1 |
02 | – | Kode pangecualian | 1 |
Kode pangecualian kanggo MODBUS TCP diterangake ing ngisor iki:
- $01 FUNGSI ILEGAL: kode fungsi ora dingerteni dening server.
- $02 ALAMAT DATA ILLEGAL: alamat data sing ditampa ing pitakonan ora alamat sing diijini kanggo counter (yaiku kombinasi register lan dawa transfer ora bener).
- $03 NILAI DATA ILLEGAL: nilai sing ana ing kolom data query dudu nilai sing diidinake kanggo counter.
- $04 SERVER FAILURE: server gagal sajrone eksekusi.
- $05 ngakoni: server nampa panjalukan server nanging layanan kasebut mbutuhake wektu sing relatif suwe kanggo nglakokake. Mulane server mung ngasilake panrimo panyuwunan layanan.
- $06 SERVER SIBUK: server ora bisa nampa panjalukan MB PDU. Aplikasi klien nduweni tanggung jawab kanggo mutusake yen lan kapan ngirim maneh panjaluk kasebut.
- $0A GATEWAY PATH ora kasedhiya: modul komunikasi (utawa counter, ing cilik saka counter karo komunikasi terpadu) ora diatur utawa ora bisa komunikasi.
- $0B GATEWAY TARGET PERANGKAT GAGAL RESPONS: counter ora kasedhiya ing jaringan.
INFORMASI UMUM ing REGISTER TABLES
CATETAN: Jumlah register paling dhuwur (utawa bita) sing bisa diwaca nganggo printah siji:
- 63 ndhaptar ing mode ASCII
- 127 ndhaptar ing mode RTU
- 256 bita ing mode TCP
CATETAN: Jumlah ndhaptar paling dhuwur sing bisa diprogram nganggo printah siji:
- 13 ndhaptar ing mode ASCII
- 29 ndhaptar ing mode RTU
- 1 ndhaftar ing mode TCP
CATETAN: Nilai register ana ing format hex ($).
TABEL HEADER | Tegese |
PARAMETER | Simbol lan katrangan saka parameter sing bakal diwaca / ditulis. |
+/- |
Tandha positif utawa negatif ing nilai diwaca.
Perwakilan tandha diganti miturut modul komunikasi utawa model counter: Mlebu Mode Bit: Yen kolom iki dicenthang, Nilai ndhaftar diwaca bisa duwe tandha positif utawa negatif. Ngonversi nilai register sing ditandatangani kaya sing dituduhake ing pandhuan ing ngisor iki: The Most Significant Bit (MSB) nuduhake tandha kaya ing ngisor iki: 0=positif (+), 1=negatif (-). Nilai negatif example: MSB $8020 = 1000000000100000 = -32 | heks | bin | dese | |
2 Mode Komplemen: Yen kolom iki wis dicenthang, Nilai ndhaftar diwaca bisa duwe positif utawa negatif
tandha. Nilai negatif dituduhake karo komplemen 2. |
|
INTEGER |
data registrasi INTEGER.
Iki nuduhake Unit ukuran, jinis RegSet nomer Word sing cocog lan Alamat ing format hex. Rong jinis RegSet kasedhiya: RegSet 0: ndhaftar tembung genap / ganjil. RegSet 1: malah ndhaftar tembung. Ora kasedhiya kanggo modul LAN GATEWAY. Kasedhiya mung kanggo: ▪ Counter karo MODBUS terpadu ▪ Counter karo ETHERNET terpadu ▪ modul RS485 karo release perangkat kukuh 2.00 utawa luwih. Kanggo ngenali RegSet digunakake, waca $0523/$0538 register. |
IEEE | Data Register Standar IEEE.
Iki nuduhake Unit ukuran, nomer Word lan Alamat ing format hex. |
REGISTER kasedhiyan dening model |
Kasedhiyan register miturut model. Yen dicenthang (●), ndhaftar kasedhiya kanggo
model sing cocog: 3ph 6A/63A/80A SERIAL: 6A, 63A lan 80A 3phase counters karo komunikasi serial. SERIAL 1ph 80A: 80A 1phase counters karo komunikasi serial. SERIAL 1ph 40A: 40A 1phase counters karo komunikasi serial. 3ph terintegrasi ETHERNET TCP: counters 3phase karo komunikasi ETHERNET TCP terpadu. 1ph terintegrasi ETHERNET TCP: counters 1phase karo komunikasi ETHERNET TCP terpadu. LANG TCP (miturut model): counters digabungake karo modul LAN GATEWAY. |
DATA MAKSUD | Katrangan data sing ditampa kanthi tanggapan saka prentah maca. |
DATA PROGRAMMABLE | Katrangan data sing bisa dikirim kanggo printah nulis. |
DAFTAR READING (KODE FUNGSI $03, $04)
U1N | Ph 1-N Voltage | 2 | 0000 | 2 | 0000 | mV | 2 | 1000 | V | ● | ● | ● | ||||
U2N | Ph 2-N Voltage | 2 | 0002 | 2 | 0002 | mV | 2 | 1002 | V | ● | ● | ● | ||||
U3N | Ph 3-N Voltage | 2 | 0004 | 2 | 0004 | mV | 2 | 1004 | V | ● | ● | ● | ||||
U12 | L 1-2 Voltage | 2 | 0006 | 2 | 0006 | mV | 2 | 1006 | V | ● | ● | ● | ||||
U23 | L 2-3 Voltage | 2 | 0008 | 2 | 0008 | mV | 2 | 1008 | V | ● | ● | ● | ||||
U31 | L 3-1 Voltage | 2 | 000A | 2 | 000A | mV | 2 | 100A | V | ● | ● | ● | ||||
U∑ | Sistem Voltage | 2 | 000C | 2 | 000C | mV | 2 | 100C | V | ● | ● | ● | ● | ● | ● | |
A1 | Ph1 Saiki | ● | 2 | 000E | 2 | 000E | mA | 2 | 100E | A | ● | ● | ● | |||
A2 | Ph2 Saiki | ● | 2 | 0010 | 2 | 0010 | mA | 2 | 1010 | A | ● | ● | ● | |||
A3 | Ph3 Saiki | ● | 2 | 0012 | 2 | 0012 | mA | 2 | 1012 | A | ● | ● | ● | |||
AN | Arus Netral | ● | 2 | 0014 | 2 | 0014 | mA | 2 | 1014 | A | ● | ● | ● | |||
A∑ | Sistem Arus | ● | 2 | 0016 | 2 | 0016 | mA | 2 | 1016 | A | ● | ● | ● | ● | ● | ● |
PF1 | Ph1 Faktor Daya | ● | 1 | 0018 | 2 | 0018 | 0.001 | 2 | 1018 | – | ● | ● | ● | |||
PF2 | Ph2 Faktor Daya | ● | 1 | 0019 | 2 | 001A | 0.001 | 2 | 101A | – | ● | ● | ● | |||
PF3 | Ph3 Faktor Daya | ● | 1 | 001A | 2 | 001C | 0.001 | 2 | 101C | – | ● | ● | ● | |||
PF∑ | Faktor Daya Sys | ● | 1 | 001B | 2 | 001E | 0.001 | 2 | 101E | – | ● | ● | ● | ● | ● | ● |
P1 | Daya Aktif Ph1 | ● | 3 | 001C | 4 | 0020 | mW | 2 | 1020 | W | ● | ● | ● | |||
P2 | Daya Aktif Ph2 | ● | 3 | 001F | 4 | 0024 | mW | 2 | 1022 | W | ● | ● | ● | |||
P3 | Daya Aktif Ph3 | ● | 3 | 0022 | 4 | 0028 | mW | 2 | 1024 | W | ● | ● | ● | |||
P∑ | Daya Aktif Sys | ● | 3 | 0025 | 4 | 002C | mW | 2 | 1026 | W | ● | ● | ● | ● | ● | ● |
S1 | Ph1 Daya Nyoto | ● | 3 | 0028 | 4 | 0030 | mVA | 2 | 1028 | VA | ● | ● | ● | |||
S2 | Ph2 Daya Nyoto | ● | 3 | 002B | 4 | 0034 | mVA | 2 | 102A | VA | ● | ● | ● | |||
S3 | Ph3 Daya Nyoto | ● | 3 | 002E | 4 | 0038 | mVA | 2 | 102C | VA | ● | ● | ● | |||
S∑ | Daya Nyoto Sys | ● | 3 | 0031 | 4 | 003C | mVA | 2 | 102E | VA | ● | ● | ● | ● | ● | ● |
Q1 | Daya Reaktif Ph1 | ● | 3 | 0034 | 4 | 0040 | mvar | 2 | 1030 | var | ● | ● | ● | |||
Q2 | Daya Reaktif Ph2 | ● | 3 | 0037 | 4 | 0044 | mvar | 2 | 1032 | var | ● | ● | ● | |||
Q3 | Daya Reaktif Ph3 | ● | 3 | 003A | 4 | 0048 | mvar | 2 | 1034 | var | ● | ● | ● | |||
Q∑ | Daya Reaktif Sys | ● | 3 | 003D | 4 | 004C | mvar | 2 | 1036 | var | ● | ● | ● | ● | ● | ● |
F | Frekuensi | 1 | 0040 | 2 | 0050 | MHz | 2 | 1038 | Hz | ● | ● | ● | ● | ● | ● | |
PH SEQ | Urutan Fase | 1 | 0041 | 2 | 0052 | – | 2 | 103A | – | ● | ● | ● |
Makna saka maca data:
- INTEGER: $00=123-CCW, $01=321-CW, $02=ora ditetepake
- IEEE kanggo Counter karo Komunikasi Terpadu lan Modul RS485: $3DFBE76D=123-CCW, $3E072B02=321-CW, $0=ora ditetepake
- IEEE kanggo Modul LAN GATEWAY: $0=123-CCW, $3F800000=321-CW, $40000000=ora ditetepake
+kWh1 | Ph1 Imp. Aktif En. | 3 | 0100 | 4 | 0100 | 0.1Wh | 2 | 1100 | Wh | ● | ● | ● | ||||
+kWh2 | Ph2 Imp. Aktif En. | 3 | 0103 | 4 | 0104 | 0.1Wh | 2 | 1102 | Wh | ● | ● | ● | ||||
+kWh3 | Ph3 Imp. Aktif En. | 3 | 0106 | 4 | 0108 | 0.1Wh | 2 | 1104 | Wh | ● | ● | ● | ||||
+kWh∑ | Sys Imp. Aktif En. | 3 | 0109 | 4 | 010C | 0.1Wh | 2 | 1106 | Wh | ● | ● | ● | ● | ● | ● | |
–kWh1 | Ph1 Exp. Aktif En. | 3 | 010C | 4 | 0110 | 0.1Wh | 2 | 1108 | Wh | ● | ● | ● | ||||
–kWh2 | Ph2 Exp. Aktif En. | 3 | 010F | 4 | 0114 | 0.1Wh | 2 | 110A | Wh | ● | ● | ● | ||||
–kWh3 | Ph3 Exp. Aktif En. | 3 | 0112 | 4 | 0118 | 0.1Wh | 2 | 110C | Wh | ● | ● | ● | ||||
-kWh ∑ | Sys Exp. Aktif En. | 3 | 0115 | 4 | 011C | 0.1Wh | 2 | 110E | Wh | ● | ● | ● | ● | ● | ● | |
+kVAh1-L | Ph1 Imp. Lag. Katon En. | 3 | 0118 | 4 | 0120 | 0.1VA | 2 | 1110 | WAh | ● | ● | ● | ||||
+kVAh2-L | Ph2 Imp. Lag. Katon En. | 3 | 011B | 4 | 0124 | 0.1VA | 2 | 1112 | WAh | ● | ● | ● | ||||
+kVAh3-L | Ph3 Imp. Lag. Katon En. | 3 | 011E | 4 | 0128 | 0.1VA | 2 | 1114 | WAh | ● | ● | ● | ||||
+kVAh∑-L | Sys Imp. Lag. Katon En. | 3 | 0121 | 4 | 012C | 0.1VA | 2 | 1116 | WAh | ● | ● | ● | ● | ● | ● | |
-kVAh1-L | Ph1 Exp. Lag. Katon En. | 3 | 0124 | 4 | 0130 | 0.1VA | 2 | 1118 | WAh | ● | ● | ● | ||||
-kVAh2-L | Ph2 Exp. Lag. Katon En. | 3 | 0127 | 4 | 0134 | 0.1VA | 2 | 111A | WAh | ● | ● | ● | ||||
-kVAh3-L | Ph3 Exp. Lag. Katon En. | 3 | 012A | 4 | 0138 | 0.1VA | 2 | 111C | WAh | ● | ● | ● | ||||
-kVAh∑-L | Sys Exp. Lag. Katon En. | 3 | 012D | 4 | 013C | 0.1VA | 2 | 111E | WAh | ● | ● | ● | ● | ● | ● | |
+kVAh1-C | Ph1 Imp. timbal. Katon En. | 3 | 0130 | 4 | 0140 | 0.1VA | 2 | 1120 | WAh | ● | ● | ● | ||||
+kVAh2-C | Ph2 Imp. timbal. Katon En. | 3 | 0133 | 4 | 0144 | 0.1VA | 2 | 1122 | WAh | ● | ● | ● | ||||
+kVAh3-C | Ph3 Imp. timbal. Katon En. | 3 | 0136 | 4 | 0148 | 0.1VA | 2 | 1124 | WAh | ● | ● | ● | ||||
+kVAh∑-C | Sys Imp. timbal. Katon En. | 3 | 0139 | 4 | 014C | 0.1VA | 2 | 1126 | WAh | ● | ● | ● | ● | ● | ● | |
-kVAh1-C | Ph1 Exp. timbal. Katon En. | 3 | 013C | 4 | 0150 | 0.1VA | 2 | 1128 | WAh | ● | ● | ● | ||||
-kVAh2-C | Ph2 Exp. timbal. Katon En. | 3 | 013F | 4 | 0154 | 0.1VA | 2 | 112A | WAh | ● | ● | ● | ||||
-kVAh3-C | Ph3 Exp. timbal. Katon En. | 3 | 0142 | 4 | 0158 | 0.1VA | 2 | 112C | WAh | ● | ● | ● | ||||
-VA∑-C | Sys Exp. timbal. Katon En. | 3 | 0145 | 4 | 015C | 0.1VA | 2 | 112E | WAh | ● | ● | ● | ● | ● | ● | |
+kvarh1-L | Ph1 Imp. Lag. Reaktif En. | 3 | 0148 | 4 | 0160 | 0.1 waras | 2 | 1130 | var | ● | ● | ● | ||||
+kvarh2-L | Ph2 Imp. Lag. Reaktif En. | 3 | 014B | 4 | 0164 | 0.1 waras | 2 | 1132 | var | ● | ● | ● |
+kvarh3-L | Ph3 Imp. Lag. Reaktif En. | 3 | 014E | 4 | 0168 | 0.1 waras | 2 | 1134 | var | ● | ● | ● | ||||
+kvarh∑-L | Sys Imp. Lag. Reaktif En. | 3 | 0151 | 4 | 016C | 0.1 waras | 2 | 1136 | var | ● | ● | ● | ● | ● | ● | |
-kvarh1-L | Ph1 Exp. Lag. Reaktif En. | 3 | 0154 | 4 | 0170 | 0.1 waras | 2 | 1138 | var | ● | ● | ● | ||||
-kvarh2-L | Ph2 Exp. Lag. Reaktif En. | 3 | 0157 | 4 | 0174 | 0.1 waras | 2 | 113A | var | ● | ● | ● | ||||
-kvarh3-L | Ph3 Exp. Lag. Reaktif En. | 3 | 015A | 4 | 0178 | 0.1 waras | 2 | 113C | var | ● | ● | ● | ||||
-beda-beda∑-L | Sys Exp. Lag. Reaktif En. | 3 | 015D | 4 | 017C | 0.1 waras | 2 | 113E | var | ● | ● | ● | ● | ● | ● | |
+kvarh1-C | Ph1 Imp. timbal. Reaktif En. | 3 | 0160 | 4 | 0180 | 0.1 waras | 2 | 1140 | var | ● | ● | ● | ||||
+kvarh2-C | Ph2 Imp. timbal. Reaktif En. | 3 | 0163 | 4 | 0184 | 0.1 waras | 2 | 1142 | var | ● | ● | ● | ||||
+kvarh3-C | Ph3 Imp. timbal. Reaktif En. | 3 | 0166 | 4 | 0188 | 0.1 waras | 2 | 1144 | var | ● | ● | ● | ||||
+kvarh∑-C | Sys Imp. timbal. Reaktif En. | 3 | 0169 | 4 | 018C | 0.1 waras | 2 | 1146 | var | ● | ● | ● | ● | ● | ● | |
-kvarh1-C | Ph1 Exp. timbal. Reaktif En. | 3 | 016C | 4 | 0190 | 0.1 waras | 2 | 1148 | var | ● | ● | ● | ||||
-kvarh2-C | Ph2 Exp. timbal. Reaktif En. | 3 | 016F | 4 | 0194 | 0.1 waras | 2 | 114A | var | ● | ● | ● | ||||
-kvarh3-C | Ph3 Exp. timbal. Reaktif En. | 3 | 0172 | 4 | 0198 | 0.1 waras | 2 | 114C | var | ● | ● | ● | ||||
-kvarh∑-C | Sys Exp. timbal. Reaktif En. | 3 | 0175 | 4 | 019C | 0.1 waras | 2 | 114E | var | ● | ● | ● | ● | ● | ● | |
– dilindhungi | 3 | 0178 | 2 | 01A0 | – | 2 | 1150 | – | R | R | R | R | R | R |
TARIFF 1 KONTAK
+kWh1-T1 | Ph1 Imp. Aktif En. | 3 | 0200 | 4 | 0200 | 0.1Wh | 2 | 1200 | Wh | ● | ● | |||||
+kWh2-T1 | Ph2 Imp. Aktif En. | 3 | 0203 | 4 | 0204 | 0.1Wh | 2 | 1202 | Wh | ● | ● | |||||
+kWh3-T1 | Ph3 Imp. Aktif En. | 3 | 0206 | 4 | 0208 | 0.1Wh | 2 | 1204 | Wh | ● | ● | |||||
+kWh∑-T1 | Sys Imp. Aktif En. | 3 | 0209 | 4 | 020C | 0.1Wh | 2 | 1206 | Wh | ● | ● | ● | ||||
-kWh1-T1 | Ph1 Exp. Aktif En. | 3 | 020C | 4 | 0210 | 0.1Wh | 2 | 1208 | Wh | ● | ● | |||||
-kWh2-T1 | Ph2 Exp. Aktif En. | 3 | 020F | 4 | 0214 | 0.1Wh | 2 | 120A | Wh | ● | ● | |||||
-kWh3-T1 | Ph3 Exp. Aktif En. | 3 | 0212 | 4 | 0218 | 0.1Wh | 2 | 120C | Wh | ● | ● | |||||
-kWh∑-T1 | Sys Exp. Aktif En. | 3 | 0215 | 4 | 021C | 0.1Wh | 2 | 120E | Wh | ● | ● | ● | ||||
+kVAh1-L-T1 | Ph1 Imp. Lag. Katon En. | 3 | 0218 | 4 | 0220 | 0.1VA | 2 | 1210 | WAh | ● | ● | |||||
+kVAh2-L-T1 | Ph2 Imp. Lag. Katon En. | 3 | 021B | 4 | 0224 | 0.1VA | 2 | 1212 | WAh | ● | ● | |||||
+kVAh3-L-T1 | Ph3 Imp. Lag. Katon En. | 3 | 021E | 4 | 0228 | 0.1VA | 2 | 1214 | WAh | ● | ● | |||||
+kVAh∑-L-T1 | Sys Imp. Lag. Katon En. | 3 | 0221 | 4 | 022C | 0.1VA | 2 | 1216 | WAh | ● | ● | ● | ||||
-kVAh1-L-T1 | Ph1 Exp. Lag. Katon En. | 3 | 0224 | 4 | 0230 | 0.1VA | 2 | 1218 | WAh | ● | ● | |||||
-kVAh2-L-T1 | Ph2 Exp. Lag. Katon En. | 3 | 0227 | 4 | 0234 | 0.1VA | 2 | 121A | WAh | ● | ● | |||||
-kVAh3-L-T1 | Ph3 Exp. Lag. Katon En. | 3 | 022A | 4 | 0238 | 0.1VA | 2 | 121C | WAh | ● | ● | |||||
-kVAh∑-L-T1 | Sys Exp. Lag. Katon En. | 3 | 022D | 4 | 023C | 0.1VA | 2 | 121E | WAh | ● | ● | ● | ||||
+kVAh1-C-T1 | Ph1 Imp. timbal. Katon En. | 3 | 0230 | 4 | 0240 | 0.1VA | 2 | 1220 | WAh | ● | ● | |||||
+kVAh2-C-T1 | Ph2 Imp. timbal. Katon En. | 3 | 0233 | 4 | 0244 | 0.1VA | 2 | 1222 | WAh | ● | ● | |||||
+kVAh3-C-T1 | Ph3 Imp. timbal. Katon En. | 3 | 0236 | 4 | 0248 | 0.1VA | 2 | 1224 | WAh | ● | ● | |||||
+kVAh∑-C-T1 | Sys Imp. timbal. Katon En. | 3 | 0239 | 4 | 024C | 0.1VA | 2 | 1226 | WAh | ● | ● | ● | ||||
-kVAh1-C-T1 | Ph1 Exp. timbal. Katon En. | 3 | 023C | 4 | 0250 | 0.1VA | 2 | 1228 | WAh | ● | ● | |||||
-kVAh2-C-T1 | Ph2 Exp. timbal. Katon En. | 3 | 023F | 4 | 0254 | 0.1VA | 2 | 122A | WAh | ● | ● | |||||
-kVAh3-C-T1 | Ph3 Exp. timbal. Katon En. | 3 | 0242 | 4 | 0258 | 0.1VA | 2 | 122C | WAh | ● | ● | |||||
-kVAh∑-C-T1 | Sys Exp. timbal. Katon En. | 3 | 0245 | 4 | 025C | 0.1VA | 2 | 122E | WAh | ● | ● | ● | ||||
+kvarh1-L-T1 | Ph1 Imp. Lag. Reaktif En. | 3 | 0248 | 4 | 0260 | 0.1 waras | 2 | 1230 | var | ● | ● | |||||
+kvarh2-L-T1 | Ph2 Imp. Lag. Reaktif En. | 3 | 024B | 4 | 0264 | 0.1 waras | 2 | 1232 | var | ● | ● | |||||
+kvarh3-L-T1 | Ph3 Imp. Lag. Reaktif En. | 3 | 024E | 4 | 0268 | 0.1 waras | 2 | 1234 | var | ● | ● | |||||
+kvarh∑-L-T1 | Sys Imp. Lag. Reaktif En. | 3 | 0251 | 4 | 026C | 0.1 waras | 2 | 1236 | var | ● | ● | ● | ||||
-kvarh1-L-T1 | Ph1 Exp. Lag. Reaktif En. | 3 | 0254 | 4 | 0270 | 0.1 waras | 2 | 1238 | var | ● | ● | |||||
-kvarh2-L-T1 | Ph2 Exp. Lag. Reaktif En. | 3 | 0257 | 4 | 0274 | 0.1 waras | 2 | 123A | var | ● | ● | |||||
-kvarh3-L-T1 | Ph3 Exp. Lag. Reaktif En. | 3 | 025A | 4 | 0278 | 0.1 waras | 2 | 123C | var | ● | ● | |||||
-variasi∑-L-T1 | Sys Exp. Lag. Reaktif En. | 3 | 025D | 4 | 027C | 0.1 waras | 2 | 123E | var | ● | ● | ● | ||||
+kvarh1-C-T1 | Ph1 Imp. timbal. Reaktif En. | 3 | 0260 | 4 | 0280 | 0.1 waras | 2 | 1240 | var | ● | ● | |||||
+kvarh2-C-T1 | Ph2 Imp. timbal. Reaktif En. | 3 | 0263 | 4 | 0284 | 0.1 waras | 2 | 1242 | var | ● | ● | |||||
+kvarh3-C-T1 | Ph3 Imp. timbal. Reaktif En. | 3 | 0266 | 4 | 0288 | 0.1 waras | 2 | 1244 | var | ● | ● | |||||
+kvarh∑-C-T1 | Sys Imp. timbal. Reaktif En. | 3 | 0269 | 4 | 028C | 0.1 waras | 2 | 1246 | var | ● | ● | ● | ||||
-kvarh1-C-T1 | Ph1 Exp. timbal. Reaktif En. | 3 | 026C | 4 | 0290 | 0.1 waras | 2 | 1248 | var | ● | ● | |||||
-kvarh2-C-T1 | Ph2 Exp. timbal. Reaktif En. | 3 | 026F | 4 | 0294 | 0.1 waras | 2 | 124A | var | ● | ● | |||||
-kvarh3-C-T1 | Ph3 Exp. timbal. Reaktif En. | 3 | 0272 | 4 | 0298 | 0.1 waras | 2 | 124C | var | ● | ● | |||||
-kvarh∑-C-T1 | Sys Exp. timbal. Reaktif En. | 3 | 0275 | 4 | 029C | 0.1 waras | 2 | 124E | var | ● | ● | ● | ||||
– dilindhungi | 3 | 0278 | – | – | – | – | – | – | R | R | R | R | R | R |
+kWh1-T2 | Ph1 Imp. Aktif En. | 3 | 0300 | 4 | 0300 | 0.1Wh | 2 | 1300 | Wh | ● | ● | |||||
+kWh2-T2 | Ph2 Imp. Aktif En. | 3 | 0303 | 4 | 0304 | 0.1Wh | 2 | 1302 | Wh | ● | ● | |||||
+kWh3-T2 | Ph3 Imp. Aktif En. | 3 | 0306 | 4 | 0308 | 0.1Wh | 2 | 1304 | Wh | ● | ● | |||||
+kWh∑-T2 | Sys Imp. Aktif En. | 3 | 0309 | 4 | 030C | 0.1Wh | 2 | 1306 | Wh | ● | ● | ● | ||||
-kWh1-T2 | Ph1 Exp. Aktif En. | 3 | 030C | 4 | 0310 | 0.1Wh | 2 | 1308 | Wh | ● | ● | |||||
-kWh2-T2 | Ph2 Exp. Aktif En. | 3 | 030F | 4 | 0314 | 0.1Wh | 2 | 130A | Wh | ● | ● | |||||
-kWh3-T2 | Ph3 Exp. Aktif En. | 3 | 0312 | 4 | 0318 | 0.1Wh | 2 | 130C | Wh | ● | ● | |||||
-kWh∑-T2 | Sys Exp. Aktif En. | 3 | 0315 | 4 | 031C | 0.1Wh | 2 | 130E | Wh | ● | ● | ● | ||||
+kVAh1-L-T2 | Ph1 Imp. Lag. Katon En. | 3 | 0318 | 4 | 0320 | 0.1VA | 2 | 1310 | WAh | ● | ● | |||||
+kVAh2-L-T2 | Ph2 Imp. Lag. Katon En. | 3 | 031B | 4 | 0324 | 0.1VA | 2 | 1312 | WAh | ● | ● | |||||
+kVAh3-L-T2 | Ph3 Imp. Lag. Katon En. | 3 | 031E | 4 | 0328 | 0.1VA | 2 | 1314 | WAh | ● | ● | |||||
+kVAh∑-L-T2 | Sys Imp. Lag. Katon En. | 3 | 0321 | 4 | 032C | 0.1VA | 2 | 1316 | WAh | ● | ● | ● | ||||
-kVAh1-L-T2 | Ph1 Exp. Lag. Katon En. | 3 | 0324 | 4 | 0330 | 0.1VA | 2 | 1318 | WAh | ● | ● | |||||
-kVAh2-L-T2 | Ph2 Exp. Lag. Katon En. | 3 | 0327 | 4 | 0334 | 0.1VA | 2 | 131A | WAh | ● | ● | |||||
-kVAh3-L-T2 | Ph3 Exp. Lag. Katon En. | 3 | 032A | 4 | 0338 | 0.1VA | 2 | 131C | WAh | ● | ● | |||||
-kVAh∑-L-T2 | Sys Exp. Lag. Katon En. | 3 | 032D | 4 | 033C | 0.1VA | 2 | 131E | WAh | ● | ● | ● | ||||
+kVAh1-C-T2 | Ph1 Imp. timbal. Katon En. | 3 | 0330 | 4 | 0340 | 0.1VA | 2 | 1320 | WAh | ● | ● | |||||
+kVAh2-C-T2 | Ph2 Imp. timbal. Katon En. | 3 | 0333 | 4 | 0344 | 0.1VA | 2 | 1322 | WAh | ● | ● | |||||
+kVAh3-C-T2 | Ph3 Imp. timbal. Katon En. | 3 | 0336 | 4 | 0348 | 0.1VA | 2 | 1324 | WAh | ● | ● | |||||
+kVAh∑-C-T2 | Sys Imp. timbal. Katon En. | 3 | 0339 | 4 | 034C | 0.1VA | 2 | 1326 | WAh | ● | ● | ● | ||||
-kVAh1-C-T2 | Ph1 Exp. timbal. Katon En. | 3 | 033C | 4 | 0350 | 0.1VA | 2 | 1328 | WAh | ● | ● | |||||
-kVAh2-C-T2 | Ph2 Exp. timbal. Katon En. | 3 | 033F | 4 | 0354 | 0.1VA | 2 | 132A | WAh | ● | ● | |||||
-kVAh3-C-T2 | Ph3 Exp. timbal. Katon En. | 3 | 0342 | 4 | 0358 | 0.1VA | 2 | 132C | WAh | ● | ● | |||||
-kVAh∑-C-T2 | Sys Exp. timbal. Katon En. | 3 | 0345 | 4 | 035C | 0.1VA | 2 | 132E | WAh | ● | ● | ● | ||||
+kvarh1-L-T2 | Ph1 Imp. Lag. Reaktif En. | 3 | 0348 | 4 | 0360 | 0.1 waras | 2 | 1330 | var | ● | ● | |||||
+kvarh2-L-T2 | Ph2 Imp. Lag. Reaktif En. | 3 | 034B | 4 | 0364 | 0.1 waras | 2 | 1332 | var | ● | ● | |||||
+kvarh3-L-T2 | Ph3 Imp. Lag. Reaktif En. | 3 | 034E | 4 | 0368 | 0.1 waras | 2 | 1334 | var | ● | ● | |||||
+kvarh∑-L-T2 | Sys Imp. Lag. Reaktif En. | 3 | 0351 | 4 | 036C | 0.1 waras | 2 | 1336 | var | ● | ● | ● | ||||
-kvarh1-L-T2 | Ph1 Exp. Lag. Reaktif En. | 3 | 0354 | 4 | 0370 | 0.1 waras | 2 | 1338 | var | ● | ● | |||||
-kvarh2-L-T2 | Ph2 Exp. Lag. Reaktif En. | 3 | 0357 | 4 | 0374 | 0.1 waras | 2 | 133A | var | ● | ● | |||||
-kvarh3-L-T2 | Ph3 Exp. Lag. Reaktif En. | 3 | 035A | 4 | 0378 | 0.1 waras | 2 | 133C | var | ● | ● | |||||
-variasi∑-L-T2 | Sys Exp. Lag. Reaktif En. | 3 | 035D | 4 | 037C | 0.1 waras | 2 | 133E | var | ● | ● | ● | ||||
+kvarh1-C-T2 | Ph1 Imp. timbal. Reaktif En. | 3 | 0360 | 4 | 0380 | 0.1 waras | 2 | 1340 | var | ● | ● | |||||
+kvarh2-C-T2 | Ph2 Imp. timbal. Reaktif En. | 3 | 0363 | 4 | 0384 | 0.1 waras | 2 | 1342 | var | ● | ● | |||||
+kvarh3-C-T2 | Ph3 Imp. timbal. Reaktif En. | 3 | 0366 | 4 | 0388 | 0.1 waras | 2 | 1344 | var | ● | ● | |||||
+kvarh∑-C-T2 | Sys Imp. timbal. Reaktif En. | 3 | 0369 | 4 | 038C | 0.1 waras | 2 | 1346 | var | ● | ● | ● | ||||
-kvarh1-C-T2 | Ph1 Exp. timbal. Reaktif En. | 3 | 036C | 4 | 0390 | 0.1 waras | 2 | 1348 | var | ● | ● | |||||
-kvarh2-C-T2 | Ph2 Exp. timbal. Reaktif En. | 3 | 036F | 4 | 0394 | 0.1 waras | 2 | 134A | var | ● | ● | |||||
-kvarh3-C-T2 | Ph3 Exp. timbal. Reaktif En. | 3 | 0372 | 4 | 0398 | 0.1 waras | 2 | 134C | var | ● | ● | |||||
-variasi∑-C-T2 | Sys Exp. timbal. Reaktif En. | 3 | 0375 | 4 | 039C | 0.1 waras | 2 | 134E | var | ● | ● | ● | ||||
– dilindhungi | 3 | 0378 | – | – | – | – | – | – | R | R | R | R | R | R |
COUNTERS parsial
+kWh∑-P | Sys Imp. Aktif En. | 3 | 0400 | 4 | 0400 | 0.1Wh | 2 | 1400 | Wh | ● | ● | ● | ● | ● | ● | |
-kWh∑-P | Sys Exp. Aktif En. | 3 | 0403 | 4 | 0404 | 0.1Wh | 2 | 1402 | Wh | ● | ● | ● | ● | ● | ● | |
+kVAh∑-LP | Sys Imp. Lag. Katon En. | 3 | 0406 | 4 | 0408 | 0.1VA | 2 | 1404 | WAh | ● | ● | ● | ● | ● | ● | |
-kVAh∑-LP | Sys Exp. Lag. Katon En. | 3 | 0409 | 4 | 040C | 0.1VA | 2 | 1406 | WAh | ● | ● | ● | ● | ● | ● | |
+kVAh∑-CP | Sys Imp. timbal. Katon En. | 3 | 040C | 4 | 0410 | 0.1VA | 2 | 1408 | WAh | ● | ● | ● | ● | ● | ● | |
-kVAh∑-CP | Sys Exp. timbal. Katon En. | 3 | 040F | 4 | 0414 | 0.1VA | 2 | 140A | WAh | ● | ● | ● | ● | ● | ● | |
+kvarh∑-LP | Sys Imp. Lag. Reaktif En. | 3 | 0412 | 4 | 0418 | 0.1 waras | 2 | 140C | var | ● | ● | ● | ● | ● | ● | |
-variasi∑-LP | Sys Exp. Lag. Reaktif En. | 3 | 0415 | 4 | 041C | 0.1 waras | 2 | 140E | var | ● | ● | ● | ● | ● | ● | |
+kvarh∑-CP | Sys Imp. timbal. Reaktif En. | 3 | 0418 | 4 | 0420 | 0.1 waras | 2 | 1410 | var | ● | ● | ● | ● | ● | ● | |
-variasi∑-CP | Sys Exp. timbal. Reaktif En. | 3 | 041B | 4 | 0424 | 0.1 waras | 2 | 1412 | var | ● | ● | ● | ● | ● | ● |
COUNTERS imbangan
kWh∑-B | Sys Active En. | ● | 3 | 041E | 4 | 0428 | 0.1Wh | 2 | 1414 | Wh | ● | ● | ● | ● | ● | |
kVAh∑-LB | Sys Lag. Katon En. | ● | 3 | 0421 | 4 | 042C | 0.1VA | 2 | 1416 | WAh | ● | ● | ● | ● | ● | |
kVAh∑-CB | Sys Lead. Katon En. | ● | 3 | 0424 | 4 | 0430 | 0.1VA | 2 | 1418 | WAh | ● | ● | ● | ● | ● | |
kvarh∑-LB | Sys Lag. Reaktif En. | ● | 3 | 0427 | 4 | 0434 | 0.1 waras | 2 | 141A | var | ● | ● | ● | ● | ● | |
kvarh∑-CB | Sys Lead. Reaktif En. | ● | 3 | 042A | 4 | 0438 | 0.1 waras | 2 | 141C | var | ● | ● | ● | ● | ● | |
– dilindhungi | 3 | 042D | – | – | – | – | – | – | R | R | R | R | R | R |
EC SN | Nomer Seri Counter | 5 | 0500 | 6 | 0500 | 10 aksara ASCII. ($00…$FF) | ● | ● | ● | ● | ● | ● |
MODEL EC | Model Kontra | 1 | 0505 | 2 | 0506 | $03 = 6A 3 fase, 4 kabel
$08 = 80A 3 fase, 4 kabel $0C = 80A 1 fase, 2 kabel $10 = 40A 1 phase, 2 kabel $12 = 63A 3 fase, 4 kabel |
● | ● | ● | ● | ● | ● |
JENIS EC | Tipe Counter | 1 | 0506 | 2 | 0508 | $00=NO MID, RESET
$01=NO MID $02=MID $03=NO MID, Wiring pilihan $05=MID ora beda-beda $09=MID, Wiring pilihan $0A=MID ora beda-beda, Wiring pilihan $0B=NO MID, RESET, Wiring pilihan |
● | ● | ● | ● | ● | ● |
EC FW REL1 | Counter Firmware Rilis 1 | 1 | 0507 | 2 | 050A | Ngonversi nilai Hex sing diwaca dadi nilai Dec.
contone $66=102 => rel. 1.02 |
● | ● | ● | ● | ● | ● |
EC HW VER | Versi Counter Hardware | 1 | 0508 | 2 | 050C | Ngonversi nilai Hex sing diwaca dadi nilai Dec.
contone $64=100 => ver. 1.00 |
● | ● | ● | ● | ● | ● |
– | dilindhungi | 2 | 0509 | 2 | 050E | – | R | R | R | R | R | R |
T | Tarif dienggo | 1 | 050B | 2 | 0510 | $01=tarif 1
$02=tarif 2 |
● | ● | ● | |||
PRI / SEK | Primary/Secondary Value Mung model 6A. Reserved lan
tetep kanggo 0 kanggo model liyane. |
1 | 050C | 2 | 0512 | $00 = utami
$01=sekunder |
● | ● | ● | |||
ERR | Kode kesalahan | 1 | 050D | 2 | 0514 | Kode bidang bit:
– bit0 (LSb)=Urutan fase – bit1=Memori – bit2=Jam (RTC)-Mung model ETH – bit liyane ora digunakake
Bit=1 tegese kondisi kesalahan, Bit=0 tegese ora ana kesalahan |
● | ● | ● | ● | ● | ● |
CT | Nilai rasio CT
Mung model 6A. Reserved lan tetep kanggo 1 kanggo model liyane. |
1 | 050E | 2 | 0516 | $0001…$2710 | ● | ● | ● | |||
– | dilindhungi | 2 | 050F | 2 | 0518 | – | R | R | R | R | R | R |
FSA | Nilai FSA | 1 | 0511 | 2 | 051A | $00=1A
$01=5A $02=80A $03=40A $06=63A |
● | ● | ● | ● | ● | ● |
WIR | Mode Wiring | 1 | 0512 | 2 | 051C | $01 = 3 fase, 4 kabel, 3 arus
$02 = 3 fase, 3 kabel, 2 arus $03 = 1 fase $04 = 3 fase, 3 kabel, 3 arus |
● | ● | ● | ● | ● | ● |
ADDR | Alamat MODBUS | 1 | 0513 | 2 | 051E | $01…$F7 | ● | ● | ● | ● | ● | ● |
MODE MDB | Mode MODBUS | 1 | 0514 | 2 | 0520 | $00=7E2 (ASCII)
$01=8N1 (RTU) |
● | ● | ● | |||
BAUD | Kacepetan Komunikasi | 1 | 0515 | 2 | 0522 | $01=300 bps
$02=600 bps $03=1200 bps $04=2400 bps $05=4800 bps $06=9600 bps $07=19200 bps $08=38400 bps $09=57600 bps |
● | ● | ● | |||
– | dilindhungi | 1 | 0516 | 2 | 0524 | – | R | R | R | R | R | R |
INFORMASI ING MODUL KONTRA ENERGI lan KOMUNIKASI
EC-P STAT | Status Kontra Parsial | 1 | 0517 | 2 | 0526 | Kode bidang bit:
– bit0 (LSb)= +kWhΣ PAR – bit1=-kWhΣ PAR – bit2=+kVAhΣ-L PAR – bit3=-kVAhΣ-L PAR – bit4=+kVAhΣ-C PAR – bit5=-kVAhΣ-C PAR – bit6=+kvarhΣ-L PAR – bit7=-kvarhΣ-L PAR – bit8=+kvarhΣ-C PAR – bit9=-kvarhΣ-C PAR – bit liyane ora digunakake
Bit=1 tegese counter aktif, Bit=0 tegese counter mandheg |
● | ● | ● | ● | ● | ● |
PARAMETER | INTEGER | DATA MAKSUD | REGISTER kasedhiyan dening model | |||||||||
Simbol |
Katrangan |
RegSet 0 | RegSet 1 |
Nilai |
3ph 6A / 63A / 80A SERIAL | SERIAL 1ph 80A | SERIAL 1ph 40A | 3ph Integrated ETHERNET TCP | 1ph Integrated ETHERNET TCP | LANG TCP
(miturut model) |
||
MOD SN | Nomer Seri Modul | 5 | 0518 | 6 | 0528 | 10 aksara ASCII. ($00…$FF) | ● | ● | ● | |||
TANDA | Representasi Nilai sing ditandatangani | 1 | 051D | 2 | 052E | $00 = tandha bit
$01=2 kang nglengkapi |
● | ● | ● | ● | ● | |
– dilindhungi | 1 | 051E | 2 | 0530 | – | R | R | R | R | R | R | |
MOD FW REL | Modul Firmware Rilis | 1 | 051F | 2 | 0532 | Ngonversi nilai Hex sing diwaca dadi nilai Dec.
contone $66=102 => rel. 1.02 |
● | ● | ● | |||
MOD HW VER | Versi Hardware Modul | 1 | 0520 | 2 | 0534 | Ngonversi nilai Hex sing diwaca dadi nilai Dec.
contone $64=100 => ver. 1.00 |
● | ● | ● | |||
– dilindhungi | 2 | 0521 | 2 | 0536 | – | R | R | R | R | R | R | |
REGSET | RegSet digunakake | 1 | 0523 | 2 | 0538 | $00 = daftar set 0
$01 = daftar set 1 |
● | ● | ● | ● | ||
2 | 0538 | 2 | 0538 | $00 = daftar set 0
$01 = daftar set 1 |
● | |||||||
FW REL2 | Counter Firmware Rilis 2 | 1 | 0600 | 2 | 0600 | Ngonversi nilai Hex sing diwaca dadi nilai Dec.
contone $C8=200 => rel. 2.00 |
● | ● | ● | ● | ● | ● |
RTC-DINA | Antarmuka Ethernet RTC dina | 1 | 2000 | 1 | 2000 | Ngonversi nilai Hex sing diwaca dadi nilai Dec.
contone $1F=31 => dina 31 |
● | ● | ||||
RTC-Wulan | Antarmuka Ethernet RTC sasi | 1 | 2001 | 1 | 2001 | Ngonversi nilai Hex sing diwaca dadi nilai Dec.
contone $0C=12 => Desember |
● | ● | ||||
RTC-TAHUN | Antarmuka Ethernet RTC taun | 1 | 2002 | 1 | 2002 | Ngonversi nilai Hex sing diwaca dadi nilai Dec.
contone $15=21 => taun 2021 |
● | ● | ||||
RTC-JAM | Antarmuka Ethernet jam RTC | 1 | 2003 | 1 | 2003 | Ngonversi nilai Hex sing diwaca dadi nilai Dec.
contone $0F=15 => 15 jam |
● | ● | ||||
RTC-MIN | antarmuka Ethernet RTC menit | 1 | 2004 | 1 | 2004 | Ngonversi nilai Hex sing diwaca dadi nilai Dec.
contone $1E=30 => 30 menit |
● | ● | ||||
RTC-SEC | Antarmuka Ethernet RTC detik | 1 | 2005 | 1 | 2005 | Ngonversi nilai Hex sing diwaca dadi nilai Dec.
contone $0A=10 => 10 detik |
● | ● |
CATETAN: ndhaftar RTC ($ 2000 ... $ 2005) kasedhiya mung kanggo meter energi karo Ethernet Firmware rel. 1.15 utawa luwih dhuwur.
COIL READING (KODE FUNGSI $01)
PARAMETER | INTEGER | DATA MAKSUD | REGISTER kasedhiyan dening model | |||||
Katrangan Simbol |
bit
alamat |
Nilai |
3ph 6A / 63A / 80A SERIAL | SERIAL 1ph 80A | SERIAL 1ph 40A | 3ph Integrated ETHERNET TCP | 1ph Integrated ETHERNET TCP | LANG TCP
(miturut model) |
AL Weker | 40 0000 | bit urut-urutan dicokot 39 (MSB) … bit 0 (LSb):
|U3N-L|U2N-L|U1N-L|UΣ-L|U3N-H|U2N-H|U1N-H|UΣ-H| |COM|RES|U31-L|U23-L|U12-L|U31-H|U23-H|U12-H| |RES|RES|RES|RES|RES|RES|AN-L|A3-L| |A2-L|A1-L|AΣ-L|AN-H|A3-H|A2-H|A1-H|AΣ-H| |RES|RES|RES|RES|RES|RES|RES|fO|
LEGENDA L=Ing ngisor Ambang (Red) H=Ing Ambang (Dhuwur) O=Saka Jangkoan COM = Komunikasi ing port IR OK. Aja nimbang ing kasus model karo komunikasi SERIAL terpadu RES=Bit Reserved kanggo 0
CATETAN: Voltage, Nilai Ambang Saiki lan Frekuensi bisa diganti miturut model counter. Mangga deleng ing tabel kapacak ing ngisor iki. |
● | ● | ● | ● | ● |
VOLTAGE LAN FREKUENSI RANGES miturut model | PARAMETER THRESHOLD | |||
FASE-NEUTRAL VOLTAGE | FASA-FASA VOLTAGE | SAIKI | FREKUENSI | |
3×230/400V 50Hz | ULN-L=230V-20%=184V
ULN-H=230V+20%=276V |
ULL-L=230V x √3 -20%=318V
ULL-H=230V x √3 +20%=478V |
IL = Arus Wiwitan (Ist) IH = Skala Penuh Saiki (IFS) |
fL=45Hz fH=65Hz |
3×230/400…3×240/415V 50/60Hz | ULN-L=230V-20%=184V
ULN-H=240V+20%=288V |
ULL-L=398V-20%=318V
ULL-H=415V+20%=498V |
DAFTAR PENULISAN (KODE FUNGSI $10)
DATA PROGRAMMABLE FOR ENERGY COUNTER lan KOMUNIKASI MODUL
ALAMAT | Alamat MODBUS | 1 | 0513 | 2 | 051E | $01…$F7 | ● | ● | ● | ● | ● | ● |
MODE MDB | Mode MODBUS | 1 | 0514 | 2 | 0520 | $00=7E2 (ASCII)
$01=8N1 (RTU) |
● | ● | ||||
BAUD | Kacepetan Komunikasi
*300, 600, 1200, 57600 nilai ora kasedhiya kanggo model 40A. |
1 | 0515 | 2 | 0522 | $01=300 bps*
$02=600 bps* $03=1200 bps* $04=2400 bps $05=4800 bps $06=9600 bps $07=19200 bps $08=38400 bps $09=57600 bps* |
● | ● | ● | |||
EC RES | Reset Energy Counter
Mung ngetik nganggo fungsi RESET |
1 | 0516 | 2 | 0524 | $00 = TOTAL Counter
$03 = ALL Counter |
● | ● | ● | ● | ● | ● |
$01 = TARIFF 1 Counter
$02 = TARIFF 2 Counter |
● | ● | ● | |||||||||
EC-P OPER | Operasi Counter parsial | 1 | 0517 | 2 | 0526 | Kanggo RegSet1, setel tembung MS tansah dadi 0000. Tembung LS kudu disusun kaya ing ngisor iki:
Byte 1 - Pilihan Counter parsial $00=+kWhΣ PAR $01=-kWhΣ PAR $02=+kVAhΣ-L PAR $03=-kVAhΣ-L PAR $04=+kVAhΣ-C PAR $05=-kVAhΣ-C PAR $06=+kvarhΣ-L PAR $07=-kvarhΣ-L PAR $08=+kvarhΣ-C PAR $09=-kvarhΣ-C PAR $0A = ALL Penghitung Parsial Byte 2 - Operasi Counter parsial $01=wiwit $02=mandheg $03=reset contone Start + kWhΣ PAR Counter 00=+kWhΣ PAR 01 = wiwit Nilai pungkasan sing kudu disetel: –RegSet0=0001 –RegSet1=00000001 |
● | ● | ● | ● | ● | ● |
REGSET | RegSet ngalih | 1 | 100B | 2 | 1010 | $00=ngalih menyang RegSet 0
$01=ngalih menyang RegSet 1 |
● | ● | ● | ● | ||
2 | 0538 | 2 | 0538 | $00=ngalih menyang RegSet 0
$01=ngalih menyang RegSet 1 |
● | |||||||
RTC-DINA | Antarmuka Ethernet RTC dina | 1 | 2000 | 1 | 2000 | $01…$1F (1…31) | ● | ● | ||||
RTC-Wulan | Antarmuka Ethernet RTC sasi | 1 | 2001 | 1 | 2001 | $01…$0C (1…12) | ● | ● | ||||
RTC-TAHUN | Antarmuka Ethernet RTC taun | 1 | 2002 | 1 | 2002 | $01…$25 (1…37=2001…2037)
contone kanggo nyetel 2021, nulis $15 |
● | ● | ||||
RTC-JAM | Antarmuka Ethernet jam RTC | 1 | 2003 | 1 | 2003 | $00…$17 (0…23) | ● | ● | ||||
RTC-MIN | antarmuka Ethernet RTC menit | 1 | 2004 | 1 | 2004 | $00…$3B (0…59) | ● | ● | ||||
RTC-SEC | Antarmuka Ethernet RTC detik | 1 | 2005 | 1 | 2005 | $00…$3B (0…59) | ● | ● |
CATETAN: ndhaftar RTC ($ 2000 ... $ 2005) kasedhiya mung kanggo meter energi karo Ethernet Firmware rel. 1.15 utawa luwih dhuwur.
CATETAN: yen printah nulis RTC ngandhut nilai cecek (eg 30. Februari), Nilai ora bakal ditampa lan piranti balesan karo kode pangecualian (Nilai ilegal).
CATETAN: ing cilik saka mundhut RTC amarga daya dangu mati, nyetel maneh Nilai RTC (dina, sasi, taun, jam, min, sec) kanggo miwiti maneh rekaman.
Dokumen / Sumber Daya
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PROTOKOL RS485 Modbus Lan Gateway Lan [pdf] Pandhuan pangguna RS485 Modbus Lan Gateway Lan, RS485, Modbus Lan Lan Gateway, Lan Gateway, Gateway |