I-Beijer Electronics GT-3928 Analog Input Module

Imininingwane
- Imodeli: GT-3928 Analog Input Module
- Okokufaka kwe-Analog: 8 umehluko
- Voltage Ububanzi: 0 – 5 V / -5 – 5 V / 0 – 10 V / -10 – 10 V
- Isixazululo: 12 bit
- Uhlobo Lwetheminali: Ikheji Clamp, 18 pt itheminali ekhiphekayo
Imiyalo yokusetshenziswa komkhiqizo
Ukufakwa
- Qinisekisa ukuthi amandla kusistimu avaliwe ngaphambi kokufakwa.
- Faka i-GT-3928 Analog Input Module ngokuphephile endaweni efanelekile.
- Xhuma amasiginali okufakwayo kwe-analogi kumatheminali afanele ngokulandela ivolumu eshiwotage range.
- Phinda uhlole konke ukuxhumana ukuze uthole ukunemba ngaphambi kokufaka amandla.
Setha
- Bheka imibhalo Yesistimu yochungechunge lwe-G ukuze ulungise imojuli ngaphakathi kwesistimu.
- Setha ivolumu efaneletaguhla olususelwe kuzidingo zakho zohlelo lokusebenza.
- Linganisa imojuli uma kunesidingo ukuze uqinisekise ukufundwa okunembile.
Ukusetshenziswa
- Faka amandla kusistimu futhi uqaphe amasiginali wokufakwa kwe-analog kusixhumi esibonakalayo esixhunyiwe.
- Hlola njalo noma yikuphi ukuziphatha okungavamile noma ukushintshashintsha kokufunda.
- Bheka inkomba ye-LED ukuze uthole ulwazi lwesimo.
Mayelana Nale Manuwali
Leli bhukwana liqukethe ulwazi lwesofthiwe nezici zehadiwe ze-Beijer Electronics GT-3928 Analog Input Module. Inikeza ukucaciswa okujulile, kanye nesiqondiso ekufakweni, ukusetha, nokusetshenziswa komkhiqizo.
Izimpawu Ezisetshenziswe Kule Manuwali
Lolu shicilelo luhlanganisa Isexwayiso, Isexwayiso, Isaziso, nezimpawu ezibalulekile lapho kufanele khona, ukukhombisa okuhlobene nokuphepha, noma olunye ulwazi olubalulekile. Izimpawu ezihambisanayo kufanele zihunyushwe kanje:
ISEXWAYISO
Uphawu Lwesexwayiso lubonisa isimo esingaba yingozi, uma singagwenywa, esingaholela ekufeni noma ekulimaleni okubi kakhulu kanye nomonakalo omkhulu emkhiqizweni.
ISEXWAYISO
Isithonjana se-Caution sibonisa isimo esingase sibe yingozi, okuthi uma singagwenywa, siphumele ekulimaleni okuncane noma okumaphakathi, kanye nokulimala okumaphakathi komkhiqizo.
QAPHELA
Isithonjana seNothi sazisa umfundi ngamaqiniso nezimo ezifanele.
KUBALULEKILE
Isithonjana Esibalulekile sigqamisa ulwazi olubalulekile.
Ukuphepha
- Ngaphambi kokusebenzisa lo mkhiqizo, sicela ufunde leli bhukwana kanye namanye amabhukwana ahambisanayo ngokucophelela. Naka ngokugcwele imiyalelo yokuphepha!
- Ngeke kwenzeke yini ukuthi i-Beijer Electronics ibe nesibopho noma ibophezeleke ngomonakalo obangelwe ukusetshenziswa kwalo mkhiqizo?
- Izithombe, isbamples, kanye nemidwebo kuleli bhukwana kufakwe ngezinhloso zemifanekiso. Ngenxa yezinto eziningi eziguquguqukayo nezimfuneko ezihlobene nanoma yikuphi ukufakwa okuthile, i-Beijer Electronics ayikwazi ukuzibophezela noma isibopho sokusetshenziswa kwangempela ngokusekelwe ku-ex.amples kanye nemidwebo.
Izitifiketi Zomkhiqizo
Umkhiqizo unezitifiketi zomkhiqizo ezilandelayo.

Izidingo ezijwayelekile zokuphepha
ISEXWAYISO
- Ungayihlanganisi imikhiqizo nezintambo ngamandla axhunywe ohlelweni. Ukwenza i-socausese "i-arc flash", okungaholela ezenzakalweni eziyingozi ezingalindelekile (ukusha, umlilo, izinto ezindizayo, ukucindezela kokuqhuma, ukuqhuma komsindo, ukushisa).
- Ungathinti amabhulokhi wetheminali noma amamojula e-IO lapho uhlelo lusebenza. Ukwenza kanjalo kungase kubangele ukushaqeka kukagesi, i-short circuit, noma ukungasebenzi kahle kocingo.
- Ungalokothi uvumele izinto zensimbi zangaphandle zithinte umkhiqizo lapho isistimu isebenza. Ukwenza kanjalo kungase kubangele ukushaqeka kukagesi, i- short circ, it, noma ukungasebenzi kahle kocingo.
- Ungabeki umkhiqizo eduze kwezinto ezivuthayo. Ukwenza kanjalo kungase kubangele umlilo.
- Wonke umsebenzi wokufaka izintambo kufanele wenziwe ngunjiniyela kagesi.
- Lapho uphatha amamojula, qinisekisa ukuthi bonke abantu, indawo yokusebenza kanye nokupakishwa kusekelwe kahle. Gwema ukuthinta izingxenye ze-conductive, amamojula aqukethe izingxenye ze-elekthronikhi ezingase zibhujiswe ukukhishwa kwe-electrostatic.
ISEXWAYISO
- Ungalokothi usebenzise umkhiqizo ezindaweni ezinezinga lokushisa elingaphezu kuka-60℃. Gwema ukubeka umkhiqizo elangeni eliqondile.
- Ungalokothi usebenzise umkhiqizo ezindaweni ezinomswakama ongaphezu kuka-90%.
- Sebenzisa njalo umkhiqizo ezindaweni ezinedigri 1 noma 2 yokungcola.
- Sebenzisa izintambo ezijwayelekile zokufaka izintambo.
Mayelana nohlelo lwe-G-series

Kuphelileview
- Imojuli ye-adaptha yenethiwekhi – Imojula ye-adaptha yenethiwekhi yakha isixhumanisi phakathi kwebhasi yasensimini kanye nemishini yasensimini enamamojula wokunweba. Uxhumano lwezinhlelo zamabhasi ezinkambu ezahlukene lungasungulwa yimojula ngayinye ehambisanayo ye-adaptha yenethiwekhi, isb, i-MODBUS TCP, Ethernet IP, EtherCAT, PROFINET, CC-Link IE Field, PROFIBUS, CANopen, DeviceNet, CC-Link, MODBUS/Seria,l njll.
- Imojula Yokunweba - Izinhlobo zamamojula wokunweba: I-Digital IO, i-Analog IO, namamojula akhethekile.
- Umlayezo - Uhlelo lusebenzisa izinhlobo ezimbili zemiyalezo: Imiyalezo yesevisi kanye nemiyalezo ye-IO.
I-IO Process Data Mapping
- Imojula yokwandisa inezinhlobo ezintathu zedatha: idatha ye-IO, ipharamitha yokumisa, nerejista yememori. Ukushintshaniswa kwedatha phakathi kwe-adaptha yenethiwekhi namamojula wokunweba kwenziwa ngenqubo yedatha yesithombe se-IO ngephrothokholi yangaphakathi.

- Ukugeleza kwedatha phakathi kwe-adaptha yenethiwekhi (izikhala ezingama-63) namamojula wokunweba
- Idatha yesithombe sokufakwayo neyokukhiphayo incike endaweni yesikhala kanye nohlobo lwedatha yesikhala sokunwetshwa. Ukuhleleka kwedatha yesithombe senqubo yokufaka neyokukhiphayo kusekelwe endaweni yesikhala sokunwetshwa. Izibalo zalolu hlelo zifakiwe kumanuwali we-networadapterser namamojula e-IO ahlelekayo.
- Idatha yepharamitha evumelekile incike kumamojula asetshenziswayo. Okwesiboneloample, amamojula e-analog anezilungiselelo
ye-0-20 mA noma 4-20 mA, futhi amamojula okushisa anezilungiselelo ezifana ne-PT100, PT200, ne-PT500. - Amadokhumenti emodi ngayinye achaza idatha yepharamitha.
Imininingwane
Imininingwane Yemvelo
| Izinga lokushisa lokusebenza | -20°C – 60°C |
| Izinga lokushisa le-UL | -20°C – 60°C |
| Izinga lokushisa lesitoreji | -40°C – 85°C |
| Umswakama ohlobene | I-5% - 90% engavumeli |
| Ukukhweza | Isitimela se-DIN |
| Ukusebenza kokwethuka | I-IEC 60068-2-27 (15G) |
| Ukumelana nokudlidliza | I-IEC 60068-2-6 (4 g) |
| Ukukhishwa kwezimboni | I-EN 61000-6-4: 2019 |
| Ukuzivikela kwezimboni | I-EN 61000-6-2: 2019 |
| Indawo yokufaka | Iqondile futhi evundlile |
| Izitifiketi zomkhiqizo | CE, FCC, UL, cUL |
Imininingwane Ejwayelekile
| Ukuchithwa kwamandla | Ubukhulu. 200 mA @ 5 VDC |
| Ukuzihlukanisa | I/O kuya kulogic: Ukuhlukaniswa kwe-Photocoupler
Amandla enkundla: Ayixhunyiwe |
| Amandla enkambu ye-UL | Ukunikezwa kwevoltage: 24 VDC igama, isigaba2 |
| Amandla enkundla | Ayisetshenziswa (ukudlula amandla enkambu kumojula yokunweba elandelayo) |
| Izintambo ezizodwa | I/O ikhebula ubuningi. 1.0mm2 (AWG 14) |
| Isisindo | 63 g |
| Usayizi wemojuli | 12 mm x 109 mm x 70 mm |
Ubukhulu

Imininingwane Yokufaka
| Okokufaka ngemojuli ngayinye | 8 iziteshi ezihlukene, ezingahlukanisiwe phakathi kwesiteshi |
| Izinkomba | 1 isimo sebhasi ye-G eluhlaza |
| Ukulungiswa kububanzi | 12 bits: 2.44 mV/bit (0 – 10 V)
12 bits: 1.22 mV/bit (0 – 5 V) 12 bits: 4.88 mV/Bit (-10 – 10 V) 12 bits: 2.44 mV/bit (-5 – 5 V) |
| Ibanga lokokufaka | 0 – 10 VDC, 0 – 5 VDC, -10 – 10 VDC, -5 – 5 VDC |
| Ifomethi yedatha | 16 bits integer (2′ ukuncoma) |
| Iphutha lemojuli | ±0.1 % isikali esigcwele @ 25 ℃ indawo ezungezile
±0.3 % isikali esigcwele @ -40 ℃, 70 ℃ |
| I-impedance yokokufaka | 667 k XNUMX |
| Isikhathi sokuguqulwa | 2 ms / wonke amashaneli |
| Ukulinganisa | Akudingeki |
Umdwebo wezintambo

| Iphinikhodi | Incazelo yesignali |
| 0 | Okokufaka kwesiteshi 0(+) |
| 1 | Okokufaka kwesiteshi 0(-) |
| 2 | Okokufaka kwesiteshi 1(+) |
| 3 | Okokufaka kwesiteshi 1(-) |
| 4 | Okokufaka kwesiteshi 2(+) |
| 5 | Okokufaka kwesiteshi 2(-) |
| 6 | Okokufaka kwesiteshi 3(+) |
| 7 | Okokufaka kwesiteshi 3(-) |
| 8 | Okokufaka kwesiteshi 4(+) |
| 9 | Okokufaka kwesiteshi 4(-) |
| 10 | Okokufaka kwesiteshi 5(+) |
| 11 | Okokufaka kwesiteshi 5(-) |
| 12 | Okokufaka kwesiteshi 6(+) |
| 13 | Okokufaka kwesiteshi 6(-) |
| 14 | Okokufaka kwesiteshi 7(+) |
| 15 | Okokufaka kwesiteshi 7(-) |
| 16 | Okokufaka kwesiteshi esivamile (AGND) |
| 17 | Okokufaka kwesiteshi esivamile (AGND) |
Isibonisi se-LED

| Inombolo ye-LED | Umsebenzi/incazelo ye-LED | Umbala we-LED |
| 0 | Isimo se-LED | Okuhlaza |
Isimo Sesiteshi se-LED
| Isimo | I-LED | Ikhomba |
| Isimo se-G-Bus | VALIWE
Okuhlaza |
Ukunqanyulwa
Ukuxhumana |
Inani Ledatha / Voltage
Voltagububanzi: 0 - 10 V
| Voltage | 0 V | 2.5 V | 5.0 V | 10.0 V |
| Idatha(Hex) | H0000 | H03FF | H07FF | H0FFF |

Voltagububanzi: 0 - 5 V
| Okwamanje | 0 V | 1.25 V | 2.5 V | 5.0 V |
| Idatha(Hex) | H0000 | H03FF | H07FF | H0FFF |

Voltagibanga: -10 - 10 V
| Okwamanje | -10 V | -5 V | 0 V | 5.0 V | 10.0 V |
| Idatha(Hex) | HF800 | I-HFC00 | H0000 | H03FF | H07FF |

Voltagububanzi: -5 - 5 V
| Okwamanje | -5 V | -2.5 V | 0 V | 2.5 V | 5.0 V |
| Idatha(Hex) | HF800 | I-HFC00 | H0000 | H03FF | H07FF |

Ukwenza Imephu Idatha Kuthebula Lesithombe
Idatha yemojula yokufaka
| Okokufaka kwe-analog Ch 0 |
| Okokufaka kwe-analog Ch 1 |
| Okokufaka kwe-analog Ch 2 |
| Okokufaka kwe-analog Ch 3 |
| Okokufaka kwe-analog Ch 4 |
| Okokufaka kwe-analog Ch 5 |
| Okokufaka kwe-analog Ch 6 |
| Okokufaka kwe-analog Ch 7 |

Inani lesithombe lokokufaka
| Kodwa cha. | Ibhithi 7 | Ibhithi 6 | Ibhithi 5 | Ibhithi 4 | Ibhithi 3 | Ibhithi 2 | Ibhithi 1 | Ibhithi 0 |
| Ibhaythi 0 | Okokufaka kwe-analog Ch 0 ibhayithi ephansi | |||||||
| Ibhaythi 1 | Okokufaka kwe-analog Ch 0 high byte | |||||||
| Ibhaythi 2 | Okokufaka kwe-analog Ch 1 ibhayithi ephansi | |||||||
| Ibhaythi 3 | Okokufaka kwe-analog Ch 1 high byte | |||||||
| Ibhaythi 4 | Okokufaka kwe-analog Ch 2 ibhayithi ephansi | |||||||
| Ibhaythi 5 | Okokufaka kwe-analog Ch 2 high byte | |||||||
| Ibhaythi 6 | Okokufaka kwe-analog Ch 3 ibhayithi ephansi | |||||||
| Ibhaythi 7 | Okokufaka kwe-analog Ch 3 high byte | |||||||
| Ibhaythi 8 | Okokufaka kwe-analog Ch 4 ibhayithi ephansi | |||||||
| Ibhaythi 9 | Okokufaka kwe-analog Ch 4 high byte | |||||||
| Ibhaythi 10 | Okokufaka kwe-analog Ch 5 ibhayithi ephansi | |||||||
| Ibhaythi 11 | Okokufaka kwe-analog Ch 5 high byte | |||||||
| Ibhaythi 12 | Okokufaka kwe-analog Ch 6 ibhayithi ephansi | |||||||
| Ibhaythi 13 | Okokufaka kwe-analog Ch 6 high byte | |||||||
| Ibhaythi 14 | Okokufaka kwe-analog Ch 7 ibhayithi ephansi | |||||||
| Ibhaythi 15 | Okokufaka kwe-analog Ch 7 high byte | |||||||
Idatha yepharamitha
Ubude bepharamitha obuvumelekile: 6 byte
| Byte | Ibhithi 7 | Ibhithi 6 | Ibhithi 5 | Ibhithi 4 | Ibhithi 3 | Ibhithi 2 | Ibhithi 1 | Ibhithi 0 |
| 0 | I-Ch#0 Umyalo (H00: 0 – 10 V, H01: 0 – 5 V, H02: -10 – 10 V, H03: -5 – 5 V) | |||||||
| 1 | I-Ch#1 Umyalo (H00: 0 – 10 V, H01: 0 – 5 V, H02: -10 – 10 V, H03: -5 – 5 V) | |||||||
| 2 | I-Ch#2 Umyalo (H00: 0 – 10 V, H01: 0 – 5 V, H02: -10 – 10 V, H03: -5 – 5 V) | |||||||
| 3 | I-Ch#3 Umyalo (H00: 0 – 10 V, H01: 0 – 5 V, H02: -10 – 10 V, H03: -5 – 5 V) | |||||||
| 4 | I-Ch#4 Umyalo (H00: 0 – 10 V, H01: 0 – 5 V, H02: -10 – 10 V, H03: -5 – 5 V) | |||||||
| 5 | I-Ch#5 Umyalo (H00: 0 – 10 V, H01: 0 – 5 V, H02: -10 – 10 V, H03: -5 – 5 V) | |||||||
| 6 | I-Ch#6 Umyalo (H00: 0 – 10 V, H01: 0 – 5 V, H02: -10 – 10 V, H03: -5 – 5 V) | |||||||
| 7 | I-Ch#7 Umyalo (H00: 0 – 10 V, H01: 0 – 5 V, H02: -10 – 10 V, H03: -5 – 5 V) | |||||||
| 8 | Isikhathi sokuhlunga (H00: Isihlungi esizenzakalelayo (20), H01: Sishesha kakhulu – H3E: sinensa kakhulu) | |||||||
| 9 | Igodliwe | |||||||
Ukusethwa kwe-Hardware
ISEXWAYISO
- Njalo funda lesi sahluko ngaphambi kokufaka imojuli!
- Indawo eshisayo! Ingaphezulu lendlu lingashisa ngesikhathi sokusebenza. Uma idivayisi isetshenziswa emazingeni okushisa aphezulu, hlala uvumele idivayisi iphole ngaphambi kokuyithinta.
- Ukusebenza ngamadivaysi anamandla kungalimaza imishini! Vala njalo ukunikezwa kwamandla ngaphambi kokusebenza ocingweni.
Izidingo zesikhala
Imidwebo elandelayo ibonisa izidingo zesikhala lapho ufaka amamojula ochungechunge lwe-G. Isikhala sidala isikhala sokungena komoya futhi sivimbele ukuphazamiseka okwenziwe yi-electromagnetic ukuthi kube nomthelela ekusebenzeni. Indawo yokufaka ivumelekile iqondile futhi ivundlile. Imidwebo iyabonisa futhi ingase ihluke.
ISEXWAYISO
UKUNGAlandeli izimfuneko zesikhala kungase kuphumele ekulimazeni umkhiqizo.

Khipha Imojuli ku-DIN Rail
Izahluko ezilandelayo zichaza indlela yokukhweza imojuli kuloliwe we-DIN.
ISEXWAYISO
Imojula kufanele igxilwe kumzila we-DIN ngezinsimbi zokukhiya.
Mount GL-9XXX noma GT-XXXX Module
Imiyalo elandelayo iyasebenza kulezi zinhlobo zamamojula:
- I-GL-9XXX
- GT-1XXX
- GT-2XXX
- GT-3XXX
- GT-4XXX
- GT-5XXX
- GT-7XXX
Amamojula e-GN-9XXX anamaleveli okukhiya amathathu, eyodwa ingezansi futhi amabili eceleni. Ukuze uthole imiyalelo yokukhweza, bheka i-Mount GN-9XXX Module.

Mount GN-9XXX Module
Ukukhweza noma ukwehlisa i-adaptha yenethiwekhi noma imojuli ye-IO ehlelekayo enegama lomkhiqizo elithi GN-9XXX, ngokwesibonelo.ample, GN-9251 noma GN-9371, bona imiyalo elandelayo:

I-Mount Removable Terminal Block
Ukukhweza noma ukwehlisa ibhulokhi yetheminali ekhiphekayo (RTB), bheka imiyalelo engezansi.

Xhuma Amakhebuli Ekuvimbeni Kwetheminali Esikhiphekayo
Ukuxhuma/ukunqamula izintambo ukuya/kusuka kubhulokhi yetheminali ekhiphekayo (RTB), bheka imiyalelo engezansi.
ISEXWAYISO
Ngaso sonke isikhathi sebenzisa umthamo onconywayo wokuhlinzekatage kanye nemvamisa yokuvimbela ukulimala kwempahla nokuqinisekisa ukusebenza kahle.

Amandla Enkundla namaphini wedatha
Ukuxhumana phakathi kwe-adaptha yenethiwekhi ye-G-series kanye nemojula yokwandisa, kanye nesistimu / insimu yamandla kagesi wamamojula webhasi, yenziwa ngebhasi langaphakathi. Yakhiwe ngezikhonkwane ezi-2 ze-Field Power namaphini angu-6 wedatha.
ISEXWAYISO
Ungathinti idatha nezikhonkwane zamandla enkundla! Ukuthinta kungaholela ekungcolisweni nasekulimaleni komsindo we-ESD.

| Iphinikhodi | Igama | Incazelo |
| P1 | Isistimu ye-VCC | Ukunikezwa kwesistimu voltage (5 VDC) |
| P2 | Isistimu ye-GND | Isizinda sesistimu |
| P3 | Okukhipha ithokheni | Imbobo yokukhipha amathokheni yemojuli yephrosesa |
| P4 | Okukhiphayo komkhiqizo | Imbobo yokukhipha i-Transmitter yemojuli yeprosesa |
| P5 | Okokufaka komkhiqizo | Imbobo yokufaka yomamukeli wemojuli yephrosesa |
| P6 | Igodliwe | Igcinelwe ithokheni yokudlula |
| P7 | Indawo ye-GND | Inkundla yensimu |
| P8 | Indawo ye-VCC | Ukunikezwa kwenkundla voltage (24 VDC) |
Copyright © 2025 Beijer Electronics AB. Wonke Amalungelo Agodliwe.
- Imininingwane ekulo mbhalo ingashintsha ngaphandle kwesaziso futhi inikezwa njengoba itholakala ngesikhathi sokuphrinta. I-Beijer Electronics AB inelungelo lokushintsha noma yiluphi ulwazi ngaphandle kokubuyekeza lokhu kushicilelwa. I-Beijer
- I-Electronics AB ayithwesi icala nganoma imaphi amaphutha angase avele kulo mbhalo. Konke exampLes kule dokhumenti ihloselwe kuphela ukuthuthukisa ukuqonda kokusebenza nokuphathwa kwezisetshenziswa. I-Beijer
- I-Electronics AB ayikwazi ukuthatha noma yisiphi isikweletu uma lezi zingaphambiliampama-les asetshenziswa ezinhlelweni zangempela.
- Uma kubhekwa inhlobonhlobo yezinhlelo zokusebenza zale softhiwe, abasebenzisi kumele bathole ulwazi olwanele ukuze baqinisekise ukuthi isetshenziswa ngendlela efanele ohlelweni lwabo lokusebenza oluthile. Abantu abanomthwalo wemfanelo wokufaka isicelo kanye nezinto zokusebenza kumele bona ngokwabo baqinisekise ukuthi isicelo ngasinye sihambisana nazo zonke izidingo ezifanele, amazinga, kanye nomthetho wokucushwa nokuphepha. I-Beijer Electronics AB ngeke yamukele icala nganoma yimuphi umonakalo owenziwe ngesikhathi kufakwa noma kusetshenziswa okokusebenza okukhulunywe ngakho kulo mbhalo.
- I-Beijer Electronics AB ivimbela konke ukuguqulwa, izinguquko, noma ukuguqulwa kwezisetshenziswa.
Igatsha eliphethe
- Inkampani Beijer Electronics AB
- Ibhokisi 426
- 201 24 Malmö, Sweden
- www.beijerelectronics.com
- +46 40 358600
imibuzo ejwayelekile ukubuzwa
- Q: Yini okufanele ngiyenze uma ngihlangabezana nekhodi yephutha kusibonisi se-LED?
A: Uma ubona ikhodi yephutha, bheka imanuwali yomsebenzisi ngezinyathelo zokuxazulula inkinga. Hlola ukuxhumeka nokunikezwa kwamandla ukuze uqinisekise ukusebenza okufanele. - Q: Ngingakwazi ukusebenzisa le moduli nge-voltage ububanzi ngaphandle kobubanzi obushiwo?
A: Kunconywa ukuthi uhlale ngaphakathi kwevolumu eshiwotage amabanga ukugwema ukulimala module futhi uqinisekise ukufundwa okunembile.
Amadokhumenti / Izinsiza
![]() |
I-Beijer Electronics GT-3928 Analog Input Module [pdf] Imaniwali yosebenzisayo I-GT-3928 Analog Input Module, GT-3928, Imojuli yokufaka ye-Analog, Imojula yokufaka |





