AXIOMATIC AX020710 Single Output Valve Controller User Manual
AXIOMATIC AX020710 Single Output Valve Controller

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PAKUPEDZAVIEW YEMUTONGI

Description of Universal Input to Proportional Valve Output NFC Controller
Iri Bhuku reMushandisi rinotsanangura mavakirwo uye kushanda kweiyo Universal Input kune Imwe Kubuda Kubuda Valve Controller ine Near Field Communication (NFC). Zvese zvekupinza uye zvine musoro basa zvivharo payuniti zvakazvimiririra zvakasununguka kubva kune mumwe asi zvinogona kugadzirwa kuti zvidyidzane.

All parameters are configurable using the mobile E-Write NFC configuration tool available on the Google Play Store and Apple App Store. E-Write NFC allows the user to configure the module as well as to assign each of the AX020710 controllers a unique alias to easily distinguish between the controllers within a large system.

Iyo controller's NFC tekinoroji inopa vashandisi kugona kugadzirisa ma controller pasina chikonzero chekubatidzwa. Ichi chimiro chinoratidza kunyanya kubatsira mune zviitiko, semuenzanisoample, umo iyo unit yakaisirwa muhurongwa inoda tuning uye haidi kuparadzaniswa neiyo system uye inopihwa simba kunze kuti iite tuning; pachinzvimbo iyo unit inogona kugadzirwa neiyo system yadzimwa.

The controller (1IN-1OUT-NFC) is designed for versatile control of a universal input and a proportional valve output. The hardware design allows for the controller to have a wide range of input and output types. The control algorithms/function blocks allow the user to configure the controller for a wide range of applications without the need for custom firmware. The various function blocks supported by the 1IN-1OUT-NFC are outlined in the following sectioris.

Iko kupinza kwepasirese kunogona kugadzirwa kuti iverenge masaini eanalogi: Voltage, Zvazvino, uye Resistance pamwe nemasaini edhijitari: Frequency/RPM, PWM, uye Digital marudzi. Izvo zvinopinda zvinotsanangurwa zvakadzama muchikamu 1.2.

Saizvozvo, iyo inobuda inogona kugadzirwa kune akasiyana marudzi: Proportional Current, Voltage, PWM, Hotshot Digital Current uye Digital (ON/OFF). Imwe neimwe inobuda ine yakakwira padivi hafu-bhiriji mutyairi anokwanisa kusimuka kusvika 3Amps nehardware shutdown pa4Amps. Zvakabuda zvinotsanangurwa zvakadzama muchikamu 1.4.

Universal Input Function Block
Chidzori chine chinoiswa chepasi rose uye chinogona kugadzirwa kuti chiyere voltage, ikozvino, frequency / RPM, pulse width modulation (PWM) uye zviratidzo zvedhijitari. Zvikamu zviri pazasi zvinodonongodza maficha/mashandiro ezvekuiswa kwepasirese.

Input Sensor Types
Table 1 lists the supported input types by the controller. The Input Type parameter provides a dropdown list with the input types described in Table 1. Changing the Input Type affects other parameters within the same parameter group such as Minimum/Maximum Error/Range by refreshing them to new input type and thus should be changed first
Mushandisi Chinyorwa UMAX020710 Shanduro 1.2

0 Kwete Used
1 Voltage -5V ku +5V
2 Voltage -10V ku +10V
3 Current 0 ku 20mA
4 Frequency 0.5 ku 50Hz
5 Frequency 10Hz ku 1kHz
6 Frequency 100Hz ku 10kHz
7 PWM Low Frequency (<1kHz)
8 PWM High Frequency (>100Hz)
9 Digital (Zvakajairika)
10 Digital (Inverse)
11 Digital (Latched)

Tafura 1 - Universal Input Sensor Type Sarudzo

Yese mapipu eanalogi anodyiswa zvakananga mu12-bit analog-to-digital converter (ADC) mune microcontroller. Zvose voltage zvinopinza zvakakwirira impedance nepo zvazvino zvinopinda zvinoshandisa 2490 resistor kuyera chiratidzo.

Frequency/RPM, and Pulse Width Modulated (PWM) Input Types are connected to the microcontroller timers. Pulses per Revolution parameter is only taken into consideration when the Input Type selected is one of the frequency types as per Table 1. When Pulses per Revolution parameter is set to 0, the measurements taken will be in units of [Hz]. If Pulses per Revolution parameter is set to higher than 0, the measurements taken will be in units of [RPM].

Digital Input Types offers three modes: Normal, Inverse, and Latched. The measurements taken with digital input types are 1 (ON) or 0 (OFF).

1.2.2. Pullup / Pulldown Resistor Options
With Mhando dzeKupinza: Frequency/RPM, PWM, Digital, mushandisi ane sarudzo yeatatu (3) akasiyana ekudhonza kumusoro/kudhonzera pasi sarudzo sezvakanyorwa muTebhu 2.

0 Kwete Used
1 10kΩ Pullup
2 10kΩ Dhonzera pasi

Tafura 2 - Dhonza / Pulldown Resistor Sarudzo

These options can be enabled or disabled by adjust the parameter Pullup/Pulldown Resistor in
E-Write NFC

Minimum and Maximum Ranges

The Minimum Range uye Maximum Range parameters are used to create the overall useful range of the inputs. For example, kana Minimum Range is set to 0.5V and Maximum Range is set to 4.5V, the overall useful range (0-100%) is between 0.5V to 4.5V. Anything below the Minimum Range will saturate at Minimum Range. Similarly, anything above the Maximum Range will saturate at Maximum Range.

Minimum and Maximum Errors
The Minimum Error uye Maximum Error parameters are used when Kuonekwa kwemhosho is True. When Kuonekwa kwemhosho is enabled, any input measurement at or below/above the Minimum/Maximum Error parameters will create an input fault. When the input fault occurs, if the input is commanding the output, the output will shut off. The fault will be cleared as soon as the measured input is within Minimum Error+ or Maximum Error- the Error Hysteresis value. On the contrary, when Kuonekwa kwemhosho yakagadzirirwa ku FALSE, no fault will occur and the Minimum Error uye Maximum Error will not be taken into consideration.

Digital Debounce Nguva
Iyi parameter inoshandiswa muDigital (Yakajairika), Digital (Inverse) uye Digital (Latched) Input Types. Inguva iyo mutongi anomirira kusvika kugadzirisa uye kuparadzira mamiriro ekuisa kana mupendero watanga. Izvi zvinobatsira kusefa kunze ane ruzha push-mabhatani kana switch kuti uverenge yakachena chiratidzo/nyika.

Input Filter Types
Mhando dzese dzekupinza kunze kweDigital (Normal), Digital (Inverse), Digital (Latched) inogona kusefa uchishandisa Sefa Rudzi uye Sefa Constant paramita. Kune matatu (3) mafirita marudzi anowanikwa sezvakanyorwa muTable 3.

0 Kwete Used
1 Kufamba Avhareji
2 Kudzokorora Avhareji

Tafura 3 - Input Sefa Types

Yekutanga sefa sarudzo Hapana Kusefa, inopa hapana kusefa kune yakayerwa data. Saka iyo data yakayerwa ichashandiswa zvakananga kune chero basa block rinoshandisa iyi data.

The second option, Moving Average, applies the ‘Equation 1’ below to measured input data, where Value N represents the current input measured data, while ValueN-1 represents the previous filtered data. The Filter Constant is the Input Filter Constant parameter.

Equation 1 - Kufambisa Avhareji Yesefa Basa:
Equation

The third option, Repeating Average, applies the ‘Equation 2’ below to measured input data, where N is the value of Input Filter Constant parameter. The filtered input, Value, is the average of all input measurements taken in N (Input Filter Constant) number of reads. When the average istaken, the filtered input will remain until the next average is ready.

Equation 2 - Kudzokorora Avhareji Yekufambisa Basa:
Equation

Internal Function Block Control Sources
Iyo 1IN-1OUT-NFC controller inobvumira yemukati basa block masosi kuti asarudzwe kubva pane rondedzero yeane musoro basa mabhuroki anotsigirwa nemubati. Nekuda kweizvozvo, chero chinobuda kubva kune rimwe basa block chinogona kusarudzwa senzvimbo yekutonga kune imwe. Rondedzero yenzvimbo dzekutonga inoratidzwa muTafura 4.

Value Meaning
0 Kudzora Source Kwete Used
2 Universal Input Measured
5 Tarisa mudenga Tafura Function Block

Tafura 4 - Kudzora Kunobva Sarudzo

Kuwedzera kune kunobva, kutonga kwega kwega kune zvakare nhamba inoenderana neiyo sub-indekisi yebasa block iri mubvunzo. Tafura yechishanu inodonongodza mitsara inotsigirwa yenhamba yezvinhu, zvichienderana nekwaive kwasarudzwa.

Kudzora Source Kudzora Source Number
Control Source Not Used (Ignored) [0]
Universal Input Measured [1…1]
Lookup Table Function Block [1…1]

Tafura 5 - Kudzora Kunobva Nhamba Sarudzo

Analog source
Mufananidzo 1 - Analog source kune Digital input

Output Drive Function Blocks
Iyo controller ine imwechete proportional kubuda. Kubuda kunosanganisira yakakwira divi hafu-bhiriji mutyairi anokwanisa kusimuka kusvika 3Amps. Izvo zvinobuda zvakabatana kune yakazvimirira microcontroller timer peripherals uye nekudaro inogona kugadzirwa yakazvimirira kubva ku1Hz kusvika 25kHz.

Iyo Output Type parameter inosarudza rudzi rwechiratidzo icho chinoburitsa chinoburitsa. Kuchinja iyi parameter kunoita kuti mamwe ma parameter ari muboka agadzirise kuti aenderane nemhando yakasarudzwa. Nechikonzero ichi, yekutanga parameter inofanirwa kushandurwa isati yagadzirisa mamwe maparamita ndiyo Output Type parameter. Iwo anotsigirwa anobuda marudzi neanodzora akanyorwa muTafura 6 pazasi:

0 Yakaremara
1 Proportional Current
2 Digital Hotshot
3 Proportional Voltage (0-Vps)
4 PWM Duty Cycle
5 Digital (0-Vps)
There are two parameters that are associated to Proportional Current and Digital Hotshot Output Types that are not with others these are Dither Frequency and Dither Amplitude. Chiratidzo che dither chinoshandiswa muProportional Current mode uye chiratidziro chepasi-frequency chakaiswa pamusoro peiyo yakakwira frequency (25kHz) chiratidzo chinodzora kubuda kwazvino. Izvo zviviri zvinobuda zvine yakazvimirira dither frequencies iyo inogona kugadziriswa chero nguva. Kusanganiswa kweDither Amplitude uye Dither Frequency inofanira kusarudzwa zvakakodzera kuti ive nechokwadi chekukurumidza kupindura kune coil kune diki shanduko mumapupu ekudzora asi kwete yakakura zvekuti inokanganisa kurongeka kana kugadzikana kwekubuda.
 MuProportional Voltage type, the controller measures the Ves applied to the unit and based on this information, the controller will adjust the PWM duty cycle of the signal (0-Vps amplitude) so that the average signal is the commanded target value. Thus, the output signal is not an analog one. In order to create an analog signal, a simple low pass filter can be connected externally to the controller. Note: the output signal will saturate at Ves if the Output at Maximum Command is set higher than the supply voltage kusimbisa mutongi.
 In PWM Duty Cycle Output Type, the controller outputs a signal (0-Ves amplitude) pane yakatarwa inobuda frequency yakaiswa nePWM Output Frequency ine akasiyana PWM Duty Cycle zvichibva pane yakarairwa kuisa. Sezvo zvese zvinobuda zvakabatana kune yakazvimirira nguva, iyo PWM Output Frequency parameter inogona kuchinjwa chero nguva kune yega yega inobuda pasina kukanganisa imwe.
 The Hotshot Digital type is different from Digital On/Off’ in that it still controls the current through the load. This type of output is used to turn on a coil then reduce the current so that the valve will remain open, as shown in Figure 3. Since less energy is used to keep the output engaged, this type of response is very useful to improve overall system efficiency. With this output type there are associated three parameters: Hold Current, Hotshot Current and Hotshot Time which are used to configure form of the output signal as shown in Figure 2.
Hotshot Digital Profile
Figure 2– Hotshot Digital Profile
 ZveProportional zvinobuda siginecha hushoma uye huwandu hwakanyanya hunogadziriswa neOutput At Minimum Command uye Output At Maximum Command paramita. Huwandu hwehuwandu hwemaparamendi ese ari maviri anoganhurirwa neakasarudzwa Output Type.
Regardless of what type of control input is selected, the output will always respond in a linear fashion to changes in the input per ‘Equation 3’.
Equation
Equation 3 - Linear Slope Calculations
Panyaya yeOutput Control Logic function block, X uye Y inotsanangurwa se
Xmin = Kudzora Input Minimum; Ymin = Output at Minimum Command
Xmax = Kudzora Input Maximum; Ymax = Output at Maximum Command
 In all cases, while X-axis has the constraint that Xmin Xmax, there is no such limitation on the Y-axis. Thus configuring Output At Minimum Command to be greater than Output At Maximum Command allows output to follow control signal inversely.
 Kuti udzivise kushanduka kwechimbichimbi pane zvakabuda nekuda kwekuchinja kwakangoerekana kwaitika mukuisa kwekuraira, mushandisi anogona kusarudza kushandisa yakazvimiririra kumusoro kana pasi r.amps kugadzirisa mhinduro yecoil. Iye Ramp Up uye Ramp Pazasi ma paramita ari mumamilliseconds, uye nhanho saizi yekuchinja inobuda ichatemwa nekutora kukosha kwakazara kweiyo inobuda renji uye nekuipatsanura ne r.amp nguva.
 Iyo Kudzora Source paramende pamwe neKudzora Nhamba paramende tarisa kuti ndechipi chiratidzo chinoshandiswa kutyaira chinobuda. For example, setting Control Source to Universal Input Measured and Control Number to (1) will connect signal measured from Universal Input1 to the output in question. The input signal is scaled per input type range between 0 and 1 to form control signal. Outputs respond in a linear fashion to changes in control signal. If a non-digital signal is selected lo drive digital output the command state will be 0 (OFF) at or below the “Output At Minimum Command, 1 (ON) at or above “Output At Maximum Command and will not change in between those points.
 Kana kukanganisa kwaonekwa mune chero yeinoshanda inopinza inobuda inovharika kusvika iyo yekupinza yapora. Kunze kwekukanganisa kwekupinza kuvharisa zvinobuda, kana iri under-voltage/over-voltage measurement occurs on Virs, the output will also shut down.
 The output is inherently protected against a short to GND or Virs by hardware. In case of a dead short, the hardware will automatically disable the output drive, regardless of what the processor is commanding for the output. When this happens, the processor detects output hardware shutdown and commands off the output in question. It will continue to drive non-shorted outputs normally and periodically try to re-engage the short load, if still commanded to do so. If the fault has gone away since the last time the output was engaged while shorted, the controller will automatically resume normal operation.
 Panyaya yedunhu rakavhurika, hapazovi nekuvhiringidzwa kwekutonga kune chero mhedzisiro. Iyo processor icharamba ichiedza kutyaira iyo yakavhurika mutoro.
 Lookup Tafura Basa Rokuita Block
The Lookup Table inoshandiswa kupa mhinduro inobuda inosvika 5 materu. Kune marudzi maviri eKutarisa Tafura mhinduro inobva paKutarisa Tafura Mhinduro: Data Response uye Time Response Zvikamu 1.5.2 kuburikidza ne1.5.6 ichatsanangura idzi mhando mbiri dzeMhinduro zvakadzama.
 Kana iyo Lookup Tafura Mhinduro iri Data Response, iyo X-Axis Point x maitiro anogara ari muzana.tage iyo inoratidza huwandutage yeKudzora Source inoshandiswa muTafura yeKutarisa. Kuchinja Kudzora Kwakabva hakuzochinji kukosha kweiyo X-Axis Point x kana X-Axis Point y.
 X-Axis, Input Data Response
Muchiitiko icho X-Axis Type = Data Response, mapoinzi paX-Axis anomiririra data rekutonga sosi. Aya maitiro ari muzanatage (%) uye inomiririra chikamutage yeKudzora Source yakasarudzwa.
 Pakusarudza X-Axis data values, hapana zvipingamupinyi pane kukosha kunogona kuiswa mune chero yeX-Axis mapoinzi. Mushandisi anofanirwa kuisa kukosha mukuwedzera kurongeka kuti akwanise kushandisa tafura yese. Naizvozvo, kana uchigadzirisa iyo X-Axis data, zvinokurudzirwa kuti X5 itange yashandurwa, yozodzikisa indexes mukudzika kurongeka sekuchengetedza zviri pazasi:
0% <= X_{0} <= X_{0} <= X_{1} <= X_{1} <= X_{2} <= X_{3} <= X_{4} <= X_{5} <= (100%)%
 Yese data mapoinzi anoshandiswa. Kana uchida kusashandisa mamwe mapoinzi edata, zvinokurudzirwa kuseta zvisingadiwe data mapoinzi kuti ave nepercen yakafanana.tage kukosha seyekupedzisira data poindi yakashandiswa.
 Y-Axis, Lookup Table Output
Iyo Y-Axis haina zvipingaidzo pane iyo data yainomiririra. Izvi zvinoreva kuti inverse, kana kuwedzera/kudzikira kana mamwe mapinduriro anogona kugadzirwa zviri nyore.
 Muzviitiko zvese, mutongi anotarisa huwandu hwese hwe data muY-Axis parameters, uye anosarudza iyo yakaderera kukosha seYmin uye yakanyanya kukosha seYmax. Iwo anopfuudzwa zvakananga kune mamwe mabhuroki ebasa semiganho pane Kubuda Tafura yeTafura. (kureva inoshandiswa se Xmin uye Xmax kukosha mumitsetse kuverenga.)
 Default Configuration, Data Response
Nekumisikidza, Tafura yeKutarisa yakavharwa (Kutarisa Tafura Kudzora Chitubu yakaiswa kuKudzora Haina Kushandiswa). Iyo Yekutarisa Tafura inogona kushandiswa kugadzira inodiwa mhinduro profiles. Kana iyo Universal Input ichishandiswa seChitubu cheKudzora, kuburitswa kweTafura yeKutarisa kuchava izvo zvinopinzwa nemushandisi muY-Values ​​paramita.
 Rangarira, chero inodzorwa basa block iyo inoshandisa iyo Lookup Tafura seyekupinza sosi inozoisawo mutsara kune iyo data. Naizvozvo, kune 1: 1 mhinduro yekutonga, simbisa kuti hushoma uye huwandu hwehuwandu hwezvabuda hunoenderana nehudiki uye huwandu hwehuwandu hweiyo Y-Axis yetafura.
 Nekumisikidza, iyo X uye Y axes data inogadzirirwa kukosha kwakaenzana pakati pepoindi imwe neimwe kubva padiki kusvika pakakwirira mune yega yega.
 Point To Point Response
Nekumisikidza, maekisi eX neY anogadzikwa kune mutsara wemhinduro kubva pakunongedza (0,0) kusvika (5,5), uko chinobuda chichashandisa mutsara pakati pechinhu chimwe nechimwe. Mufananidzo 3 unoratidza vhezheni yakawedzerwa (mitsetse gumi) yeTafura yeKutarisa inowanikwa mu10IN-1OUT-NFC. Kuti uwane mutsara, imwe neimwe "Point N - Response", apo N = 1 kusvika 1, inogadzirirwa 'R.amp To' kubuda mhinduro.
Grafu
Figure 3- Lookup Table with “Ramp Ku" Data Response
Alternatively, the user could select a ‘Jump To’ response for “Point N – Response”, where N = 1 to 5. In this case, the output of the Lookup Table will not change in between X-Axis Points rather it will only change when it is >X-Axis Point n and < X-Axis Point (n+1)
Musanganiswa weRamp Ku, Jump To uye Rega mhinduro dzinogona kushandiswa kugadzira application chaiyo yakabuda profile.
X-Axis, Time Response
 As mentioned in Section 1.5, a Lookup Table can also be used to get a custom output response where the X-Axis Type is a ‘Time Response. When this is selected, the X-Axis now represents time, in units of milliseconds, while the Y-Axis still represents the output of the function block. There is also another parameter associated to the Lookup Table when configured to Time Response which is the Lookup Table Auto-Cycle parameter.
 Muchiitiko ichi, iyo Control Source inobatwa sedhijitari yekupinda. Kana iyo chiratidzo chiri chaicho chekuisa analog, inodudzirwa senge yedhijitari paMufananidzo 1. Kana iyo control control iri ON, iyo inobuda ichashandurwa nekufamba kwenguva zvichienderana nepro.file muTafura yeKutsvaga. Pane maviri akasiyana mamiriro ekuti iyo Lookup Tafura ichaita sei kana profile yapera. Sarudzo yekutanga ndeye iyo Tafura Auto-Cycle yakaiswa kune FALSE mune iyo kesi, kana iyo profile yapedza (kureva indekisi 5), chinobuda chicharamba chiri pamagumo ekupedzisira kweprofile kusvikira iyo control input yadzima. Yechipiri sarudzo ndeye iyo Tafura Auto-Cycle yakaiswa kune TRUE mune iyo kesi, kana iyo profile yapedza (kureva indekisi 5), Tafura yeKutarisa ichadzoka otomatiki kumhinduro yekutanga uye icharamba ichingotenderera bhasikoro kwenguva yakareba sekunge kupinza kunoramba kuri muON state.
 Kana iyo yekudzora yekupinda INODZIMWA, iyo inobuda inogara iri zero. Kana iyo yekupinza yauya ON, iyo profile NGUVA DZOSE starts at position (Xo, Yo) which is 0 output for Oms.
Mune mhinduro yenguva, nguva yepakati pakati pechinhu chimwe nechimwe pa X-axis inogona kuiswa chero kupi kubva pa1ms kusvika ku1day [86400 s]

Installation Instructions

Dimensions uye Pinout
Iyo 1IN-1OUT-NFC Controller ibhodhi rakaunganidzwa rePCB rine yakasimba conformal coating yekudzivirira chikamu kubva pakudengenyeka uye zvimwe zvinhu. Iyo AX020710 gungano inotakura IP00 chiyero, nepo AX020710-1.5M uye AX020710-PG9 magungano anotakura IP67 chiyero.

WIRING TABLE
PIN# Connection
1 Simba
2 Simba +
3 SOLENOID -
4 SOLENOID +
5 INPUT +
6 INPUT GND
7 AUXILIARY OUTPUT
8 +5V REFERENCE

Board Dimensions
Board Dimensions
Figure 4 – AX020710 Board Dimensions

WIRING TABLE
WIRING COLOR WIRING AWG KUSVIRANA
NHEMA 18 SIMBA
TSVUKU 18 SIMBA +
ORANGE/BLACK STRIPE 18 SOLENOID-
ORANGE/RED STRIPE 18 SOLENOID +
YERO 24 INPUT +
YELLOW/BLACK STRIPE 24 INPUT GND
PEPURU 24 AUXILIARY OUTPUT
YELLOW/RED STRIPE 24 +5V REFERENCE

VALVE CONTROLLER
P/N: AX020710-1.5M
Unit Tafura

Board Dimensions
Board Dimensions

Figure 5 – AX020710-1.5M Board Dimensions

WIRING TABLE
PIN# Connection
1 Simba
2 Simba +
3 SOLENOID -
4 SOLENOID +
5 INPUT +
6 INPUT GND
7 AUXILIARY OUTPUT
8 +5V REFERENCE

VALVE CONTROLLER
P/N: AX020710-PG9
Unit Tafura

Board Dimensions
Board Dimensions

Figure 6 – AX020710-PG9 Board Dimensions

Mounting Instructions
Notes & Yambiro

  • Usaise pedyo ne-high-voltage kana midziyo yepamusoro-ikozvino.
  • Note the operating temperature range. All field wiring must be suitable for that temperature range
  • Isai yuniti ine nzvimbo yakakodzera iripo yekusevhisi uye yekukwana waya yehashi yekuwana (15 cm) uye kusununguka kwekutambudzika (30 cm).
  • Do not connect or disconnect the unit while the circuit is live unless the area is known to be non-hazardous.

Mounting
Mounting holes are sized for #6 or M4 bolts. The bolt length will be determined by the end-user’s mounting plate thickness. The mounting flange of the controller is 0.062 inches (1.5 mm) thick

If the module is mounted without an enclosure, it should be mounted vertically with connectors faoing left or right to reduce likelihood of moisture entry.

Yese wiring yemunda inofanirwa kuve yakakodzera kune yekushanda tembiricha renji.

Install the unit with appropriate space available for servicing and for adequate wire hamess access.

Connections

It recommended to use 14-16 AWG wire for connection to power and solenoid

Tips on Configuration with NFC

Nzvimbo uye huwandu hweNFC antenna dzinosiyana kubva kune smartphone kune smartphone. Kugarisa akasiyana siyana uye nzvimbo, iyo NFC antenna yemutongi inowanikwa kubva kumusoro uye pasi mativi ebhodhi.

Zvichienderana nenzvimbo yeNFC antenna uye / kana huwandu hwayo hwemushandisi Android smartphone, zvingave zviri nyore kugadzirisa mutongi kubva kune rimwe divi kana rimwe. Zvinokurudzirwa kuona nzvimbo yeNFC antenna pane smartphone uye/kana kuona kuiswa uye huwandu hunonyatsokodzera iyo smartphone.

The metal enclosure acts as a shield for the NFC communication thus for AX020710-1.5M or AX020710-PG9, the board needs to be removed from the housing prior to configuring it.

Controller Parameters Anowanikwa neE-Nyora NFC

Mazhinji ma parameter akataridzwa mukati mebhuku rino. Ichi chikamu chinotsanangura uye chinoratidza imwe neimwe parameter, pamwe chete nekusarudzika kwavo uye mazinga. Kuti uwane rumwe ruzivo rwekuti imwe neimwe parameter inoshandiswa sei ne1IN-1OUT-NFC, tarisa chikamu chakakodzera cheBhuku reMushandisi.

Anodzora Ruzivo
Iyo Controller Ruzivo inopa ruzivo rwakadai seyazvino vhezheni ye firmware uye zuva, serial nhamba, pamwe neinogadziriswa parameter yekuziva zvirinani akasiyana siyana 1IN-1OUT-NFC ma controller mukati me application system Controller Alias.
Anodzora Ruzivo
Screen Capture ye Controller Ruzivo Paramita

Universal Input

Iyo Universal Input basa block inotsanangurwa muChikamu 1.2. Ndokumbira utarise chikamu icho kuti uwane ruzivo rwakadzama rwemashandisirwo aya paramita.
Universal Input Parameters Universal Input Parameters
Screen Capture yeDefault Universal Input Parameters

Zita Range Default Notes
Input Type Drop List Voltage -5V to 5V Refer to Section 1.2.1
Error Detection Drop List Nhema
Pulses per Revolution 0 kusvika 60000 0 If set to 0, measurements are taken in Hz. If value is set greater than 0, zviyero zvinotorwa muRPM
Minimum Error Depends on Input Type 0.2 (V) Refer to Section 1.2.4
Minimum Range Depends on Input Type 0.5 (V) Refer to Section 1.2.3
Maximum Range Depends on Input Type 4.5 (V) Refer to Section 1.2.3
Maximum Error Depends on Input Type 4.8 (V) Refer to Section 1.2.4
Error Hysteresis Depends on 0.5 (V) Refer to Section 1.2.4
Input Type  
Digital Debounce Time 0 kusvika 60000 10 (ms) Refer to Section 1.2.2
Pullup/Pulldown Resistor Drop List 0 - Pullup/down Off Refer to Section 1.2.2
Software Filter Type Drop List 0 - Aihwa Sefa Refer to Section 1.2.5
Software Filter Constant 0 kusvika 60000 1000ms Refer to Section 1.2.5

Proportional Output Drive
The Universal Input function block is defined in Section 1.4. Please refer to that section for detailed
information on how these parameters are used.
Universal Input ParametersUniversal Input Parameters
Screen Capture yeDefault Universal Input Parameters

Zita

Range

Default

Notes

Control Source

Drop List

Universal Input

Refer to Section 1.3

Output Type

Drop List

Proportional Current

Refer to Section 1.3

Output at Minimum Command

Depends on Output Type

300 (mA)

Refer to Section 1.4

Output at Maximum

Depends on

1500 (mA)

Refer to Section 1.4

Command

Output Type

Ramp Up (Min to Max)

0-60000

1000 (ms)

Refer to Section 1.4

Ramp Down (Max to Min)

0-60000

1000 (ms)

Refer to Section 1.4

  PWM Output Frequency

  1 kusvika 25000

  25000 (Hz)

User can change the output frequency in any Output Type selected. However, output accuracy will be affected inProportional Current Mode

Dither Frequency

50-500

250 (Hz)

Only used in Proportional Current and Hotshot Current Modes

Dither Amplitude

0 kusvika 500

0 (mA)

Only used in Proportional Current and Hotshot Current Modes

Hotshot Time

0-60000

1000 (ms)

Hotshot Current

0-3000

1500 (mA)

Lookup Table Parameters

The Lookup Table function block is defined in Section 1.5. Please refer there for detailed
 information about how all these parameters are used.
Parameters Parameters
Screen Capture yeExampuye Lookup Table Parameters

Zita Range Default Notes
Control Source Drop List Haina Kushandiswa Refer to Section 1.3
Mhinduro Drop List Data Response Refer to Section 1.5.1
Auto-Cycling Drop List Nhema Refer to Section 1.5.5
Point Response Push Option Ramp Refer to Section 1.5.4
X-Axis Point 0 0- X-AxisPoint 1 0 (%) X-Axis Points always in terms of percentage zve Control Source selected. Refer to Section 1.5.1
X-Axis Point 1 X-Axis Point 0 to X-AxisPoint 2 20 (%) X-Axis Points always in terms of percentage zve Control Source selected. Refer to Section 1.5.1
X-Axis Point 2 X-Axis Point 1 to X-AxisPoint 3 40 (%) X-Axis Points always in terms of percentage zve Control Source selected. Refer to Section 1.5.1
X-Axis Point 3 X-Axis Point 2 to X-AxisPoint 4 60 (%) X-Axis Points always in terms of percentage zve Control Source selected. Refer to Section 1.5.1
X-Axis Point 4 X-Axis Point 3 to X-AxisPoint 4 80 (%) X-Axis Points always in terms of percentage zve Control Source selected. Refer to Section 1.5.1
X-Axis Point 5 X-Axis Point 4 to 100 100 (%) X-Axis Points always in terms of percentage zve Control Source selected. Refer to Section 1.5.1
Y-Axis Point 0 0-3000 0 Refer to Section 1.5.2
Y-Axis Point 1 0-3000 250 Refer to Section 1.5.2
Y-Axis Point 2 0-3000 500 Refer to Section 1.5.2
Y-Axis Point 3 0-3000 750 Refer to Section 1.5.2
Y-Axis Point 4 0-3000 1000 Refer to Section 1.5.2
Y-Axis Point 5 0-3000 1250 Refer to Section 1.5.2

Zvinotaurwa Nezvehunyanzvi

Tsanangudzo dzinoratidza uye dzinogona kuchinja. Kuita chaiko kunosiyana zvichienderana nekushandiswa uye mamiriro ekushanda. Vashandisi vanofanirwa kuzvigutsa ivo pachavo kuti chigadzirwa chakakodzera kushandiswa mune yakarongwa application. Zvese zvigadzirwa zvedu zvinotakura waranti yakaganhurirwa kubva kune hurema mune zvinhu uye kugadzira. Ndokumbira utarise kune yedu Warranty, Kubvumidzwa Kwekushandisa / Kuganhurirwa uye Return Materials Maitiro sekutsanangurwa kwazvino
https://www.axiomatic.com/service/.

Magetsi

Power Supply Input – Nominal 12 or 24Vdc nominal operating voltage9…36 Vdc power supply range for voltage transients Overvoltage dziviriro kusvika ku45V inopihwa. Overvoltage (undervoltage) shutdown of the output load is provided.
Surge Protection Provided
Reverse Polarity Protection Provided

Input

Analog Input Functions Voltage Input or Current Input
Voltage Input -5V…+5V (Impedance 110 kOhm)-10V…+10V (Impedance 130 kOhm)
Current Input 0-20 mA (Impedance 249 Ohm)
Digital Input Functions Discrete Input, PWM Input or Frequency Input
Digital Input Level Up to VPS
PWM Input 0…100%10 Hz…1kHz 100Hz…10 kHz
Frequency Input 0.5Hz…50Hz10 Hz…1kHz 100Hz…10 kHz
Digital Input Active High (to + VPS), Active Low Amplitude: 0 to + VPSThreshold: Low < 1V; High < 2.2V
Inzwa Zvinotaurwa Impedance 10KOhm pull down, 10KOhm pull up to +6V
Input Accuracy <1%
Analog Input Resolution 12-bit ADC
Frequency / PWM Input Resolution 16-bit Timer

Output

Output Up to 3AHalf-bridge, High Side Sourcing, Current Sensing, Grounded Load High Frequency (25 kHz)The user can select the following options for output using E-Write NFC.· Output Disable· Output Current (PID loop, with current sensing) (0-3A)· Hotshot Digital· Proportional Output Voltage (up to VPS)· Output PWM Duty Cycle (0-100% Duty)· Digital On/Off (GND-VPS)
Output Accuracy Output Current mode <1% Output Voltage mode <5%Output PWM Duty Cycle mode <0.1%
Output Resolution Output Current mode 1 mA Output Voltage mode 0.1V Output PWM mode 0.1%
Dziviriro Over-Current and short circuit protection

Kukurukurirana

NFC Forum Type 4 Near Field Communication Full-duplexData rate: 106 kbit/sComplies with ISO1443 (RF protocol), ISO13239, and ISO7816 Protected and secure configuration
User Interface E-WRITE NFC Application is available for a fee from Google Play for Android devices (https://play.google.com/store/apps/details?id=com.axiomatic.ewritenfc).E-WRITE NFC Application can be downloaded for a fee from Apple’s App Store for iOS devices (https://apps.apple.com/us/app/e-write-nfc/id6473560354).

General Specifications

Microprocessor STM32F205RET632-bit, 512 Kbit program flash
Quiescent Current Contact Axiomatic.
Akatungamirira chakarurama Power, heartbeat and output fault indication
Nguva Yekupindura Contact Axiomatic.
Control Logic User programmable functionality using E-Write NFC
Operating Conditions -40 to 85 °C (-40 to 185 °F)
Dziviriro IP00 for AX020710IP67 for AX020710-1.5M and AX020710-PG9
Dimensions PCB:63.5 mm x 63.5 mm x 20 mm (2.5 in x 2.5 in x 0.78 in) (L x W x H)Metal Box with gasket and PG9 strain relief:114 mm x 32 mm x 89 mm (4.5 in x 1.25 in x 3.5 in) (W x D x H excluding PG9 strain relief) Refer to the dimensional drawing.
Vibration MIL-STD-202G, Method 204D test condition C (Sine) and Method 214A, test condition B (Random)10 g peak (Sine)7.68 Grms peak (Random) Pending
Shock MIL- STD-202G, Method 213B, test condition A 50g (half sine pulse, 9ms long, 8 per axis)Pending
Zvibvumirano CE Marking Pending
Kurema AX020710 – 0.05 lb. (0.023 kg)AX020710-PG9 – 0.72 lb. (0.327 kg)AX020710-1.5M – 1.0 lb. (0.453 kg)
Electrical Connections Refer to Section 2 of User Manual
Mounting Mounting holes are sized for #6 or M4 bolts. The bolt length will be determined by the end-user’s mounting plate thickness. The mounting flange of the controller is 0.062 inches (1.5 mm) thick. If the module is mounted without an enclosure, it should be mounted vertically with connectors facing left or right to reduce likelihood of moisture entry. All field wiring should be suitable for the operating temperature range. Install the unit with appropriate space available for servicing and for adequate wire harness access.

VERSION HISTORY

Version Date Munyori Kugadziridza
1 May 8th, 2020 Gustavo Del Valle Initial Release
1.1 Nyamavhuvhu 8, 2023 Kiril Mojsov Performed Legacy Updates
1.2 Chikunguru 24, 2024 M Ejaz Added Android and iOS app links
 ZVINHU ZEDU
  • AC/DC Power Supplies
  • Actuator Controls/Interfaces
  • Automotive Ethernet Interfaces
  • Machaja eBattery
  • CAN Kudzora, Routers, Repeaters
  • CAN/WIFI, CAN/Bluetooth, Routers
  • Parizvino / Voltage/PWM Vashanduri
  • DC/DC Power Converters
  • Injini Tembiricha Scanners
  • Ethernet/CAN Shanduri, Magedhi, Shanduko
  • Fan Drive Controllers
  • Magedhi, CAN/Modbus, RS-232
  • Gyroscopes, Inclinometers
  • Hydraulic Valve Controllers
  • Inclinometers, Triaxial
  • I/O Zvidzore
  • LVDT Signal Converters
  • Machine Controls
  • Modbus, RS-422, RS-485 Controls
  • Motor Controls, Inverters
  • Magetsi, DC/DC, AC/DC
  • PWM Signal Converters/Isolators
  • Resolver Signal Conditioners
  • Zvishandiso Zvebasa
  • Signal Conditioners, Shanduri
  • Strain Gauge CAN Controls
  • Surge Suppressors

KAMPANI YEDU

Axiomatic inopa zvemagetsi muchina kudzora zvikamu kune iyo off-nzira, mota yekutengesa, mota yemagetsi, magetsi jenareta seti, kubata zvinhu, simba rinodzokororwa uye misika yeOEM yemaindasitiri. Isu tinogadziridza neinjiniya uye off-the-pasherufu muchina madhiraivha ayo anowedzera kukosha kune vatengi vedu.

QUALITY DESIGN UYE KUGADZIRA

Tine ISO9001: 2015 yakanyoreswa dhizaini / kugadzira nzvimbo muCanada.

WARRANTY, APPLICATION APPROVALTY/MIDZIDZO

Axiomatic Technologies Corporation inochengetera kodzero yekugadzirisa, kugadzirisa, kusimudzira, kuvandudza, uye dzimwe shanduko kune zvigadzirwa nemasevhisi ayo chero nguva uye kumisa chero chigadzirwa kana sevhisi pasina chiziviso. Vatengi vanofanirwa kuwana ruzivo rwazvino rwakakodzera vasati vaisa maodha uye vanofanirwa kuona kuti ruzivo rwakadaro nderwazvino uye rwakakwana. Vashandisi vanofanirwa kuzvigutsa ivo pachavo kuti chigadzirwa chakakodzera kushandiswa mune yakarongwa application. Zvese zvigadzirwa zvedu zvinotakura waranti yakaganhurirwa kubva kune hurema mune zvinhu uye magadzirirwo. Ndokumbira utarise kune yedu Warranty, Kubvumidzwa Kwekushandisa / Kuganhurirwa uye Kudzosa Zvishandiso Maitiro pa  https://www.axiomatic.com/service/.

KUTEVERA

Ruzivo rwekutevedzera chigadzirwa runogona kuwanikwa muzvinyorwa zvechigadzirwa uye/kana paaxiomatic.com. Chero mibvunzo inofanira kutumirwa sales@axiomatic.com.

KUSHANDISWA KWAKAKODZERA
Zvese zvigadzirwa zvinofanirwa kushumirwa neAxiomatic. Usavhura chigadzirwa uye uite sevhisi iwe pachako.

Yambiro Icon Ichi chigadzirwa chinogona kukufumura kumakemikari anozivikanwa muCalifornia, USA kuti akonzere gomarara uye kukanganisa kubereka. Kuti uwane rumwe ruzivo enda ku www.P65Yambiro.ca.gov.

SERVICE

Zvese zvigadzirwa kuti zvidzoserwe kuAxiomatic zvinoda Return Materials Authorization Number (RMA#) kubva rma@axiomatic.com. Ndokumbira upe ruzivo rwunotevera paunenge uchikumbira nhamba yeRMA:

  • Nhamba yeserial, chikamu nhamba
  • Runtime hours, tsananguro yedambudziko
  • Wiring kuseta dhayagiramu, application uye mamwe makomendi sezvinodiwa

KURASA
Zvigadzirwa zveAxiomatic imarara emagetsi. Ndokumbira uteedzere marara enharaunda yako uye mitemo yekudzokorodza, mirau nemitemo yekurasa zvisina njodzi kana kudzokorodza tsvina yemagetsi.

CONTACTS

Iyo kambani Axiomatic Technologies Corporation
1445 Courtneypark Drive E. Mississauga, ON
CANADA L5T 2E3
TEL: +1 905 602 9270
FAX: +1 905 602 9279
www.axiomatic.com
sales@axiomatic.com

Nhoroondo ye Axiomatic Technologies Oy
Höytämöntie 6 33880 Lempäälä
FINIRENDI
TEL: +358 103 375 750
www.axiomatic.com
salesfinland@axiomatic.com

AXIOMATIC Logo

Zvinyorwa / Zvishandiso

AXIOMATIC AX020710 Single Output Valve Controller [pdf] User Manual
AX020710, AX020710 Single Output Valve Controller, Single Output Valve Controller, Output Valve Controller, Valve Controller, Controller

References

Siya mhinduro

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