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This document is property of SENECA srl. Duplication and reprodution are forbidden, if not authorized. Contents of the present
documentation refers to products and technologies described in it. All technical data contained in the document may be modified
without prior notice Content of this documentation is subject to periodical revision.
To use the product safely and effectively, read carefully the following instructions before use. The product must be used only for the use
for which it was designed and built. Any other use must be considered with full responsibility of the user. The installation,
programmation and set-up is allowed only for authorized operators; these ones must be people physically and intellectually suitable.
Set up must be performed only after a correct installation and the user must perform every operation described in the installation
manual carefully. Seneca is not considered liable of failure, breakdown, accident caused for ignorance or failure to apply the indicated
requirements. Seneca is not considered liable of any unauthorized changes. Seneca reserves the right to modify the device, for any
commercial or construction requirements, without the obligation to promptly update the reference manuals.
No liability for the contents of this documents can be accepted. Use the concepts, examples and other content at your own risk. There
may be errors and inaccuracies in this document, that may of course be damaging to your system. Proceed with caution, and although
this is highly unlikely, the author(s) do not take any responsibility for that. Technical features subject to change without notice.
USER MANUAL
Z-10-D-IN
HW2
SENECA s.r.l.
Via Austria 26, PADOVA – ITALY
Tel. +39.049.8705355 – 8705359 Fax. +39.049.8706287
Web site:
www.seneca.it
Technical assistance:
supporto@seneca.it
Commercial reference:
(Other)
MI003419
MI00253-9-EN
Page 1
(IT),
commerciale@seneca.it
support@seneca.it
(Other)
(IT),
sales@seneca.it

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Summary of Contents for Seneca Z-10-D-IN

  • Page 1 Set up must be performed only after a correct installation and the user must perform every operation described in the installation manual carefully. Seneca is not considered liable of failure, breakdown, accident caused for ignorance or failure to apply the indicated requirements.
  • Page 2 USER MANUAL – Z-10-D-IN HW2 Date Revision Notes 22/02/2016 Rewriting Changed Upper Title 28/02/2018 23/03/2018 Added measure unit for Measure 1 and 2 registers 06/06/2018 New hardware revision 2 New firmware with all 32 bits counters and new features 12/06/2018...
  • Page 3: Table Of Contents

    USER MANUAL – Z-10-D-IN HW2 Table of contents SENECA Z-10-D-IN “HW2” ....................4 1. INTRODUCTION ......................5 1.1. FEATURES ........................ 5 2. FEATURES ........................6 3. INPUT CONNECTIONS ....................8 4. DIP-SWITCHES TABLE ....................9 5. COUNTERS FILTER ....................10 6.
  • Page 4: Seneca Z-10-D-In "Hw2

    UNDER ANY CIRCUMSTANCES, SENECA S.R.L. OR ITS SUPPLIERS SHALL NOT BE RESPONSIBLE FOR LOSS OF RECORDING DATA/INCOMES OR FOR CONSEQUENTIAL OR INCIDENTAL DAMAGE DUE TO NEGLECT OR RECKLESS MISHANDLING OF Z-10-D-IN, EVEN THOUGH SENECA IS WELL AWARE OF THESE POSSIBLE DAMAGES.
  • Page 5: Introduction

    USER MANUAL – Z-10-D-IN HW2 1. Introduction The Z-10-D-IN module acquires 10 single-ended digital signals, then converts them to a digital format (IN 1- 10 state). The supported communication protocol is Modbus RTU. The following counters are available: All 10 counters are in 32 bits format (backupped on a Not volatile RAM) For all 10 inputs TON/TOFF/Frequency measures are available.
  • Page 6: Features

    USER MANUAL – Z-10-D-IN HW2 2. Features INPUT Number Cut-off frequency configurable Input filter Configurable Filter This module provides inputs and power supply (Vaux) protection Protection against the overvoltage surge transient by transient suppressor TVS (600W/ms); max current supplied from Vaux is 100mA (limited by internal series PTC) The sensor is detected «closed»...
  • Page 7 USER MANUAL – Z-10-D-IN HW2 POWER SUPPLY 10 – 40 Vdc or 19 – 28 Vac ( 50Hz - 60Hz) Supply voltage Typ: 1.5W; Max: 2.5W Power consumption The power supply transformer necessary to supply the module must comply with EN60742 (Isolated transformers and safety transformers requirements).
  • Page 8: Input Connections

    USER MANUAL – Z-10-D-IN HW2 3. Input connections Power on the module with < 40 Vdc or < 28 Vac voltage supply. These upper limits must not be exceeded to avoid serious damage to the module.
  • Page 9: Dip-Switches Table

    USER MANUAL – Z-10-D-IN HW2 4. Dip-switches table Dip switch configuration is valid only at boot up. BAUD-RATE (Dip-Switches: DIP-SWITCH STATUS) Meaning Baud-rate=9600 Baud Baud-rate=19200 Baud Baud-rate=38400 Baud Baud-rate=57600 Baud ADDRESS (Dip-Switches: DIP-SWITCH STATUS) Meaning Address and Baud-Rate are acquired from memory...
  • Page 10: Counters Filter

    USER MANUAL – Z-10-D-IN HW2 5. Counters Filter The filter is applied to: -Counters -Frequency -TON -TOFF -PERIOD The Input values (register 40002) are not filtered. The filter will cut frequency up to: f[Hz] = 1000/T Filter[ms] A pulse is filtered if its duration is > Tfilter/2.
  • Page 11: Modbus Rtu Register Tables

    USER MANUAL – Z-10-D-IN HW2 6. Modbus RTU Register Tables In the following table this abbreviations are used: MS = Most significant LS = Less significant MSW = Most significant Word (16 bits) LSW = Less significant Word (16 bits)
  • Page 12: Bit Position Convention In The Holding Registers

    USER MANUAL – Z-10-D-IN HW2 6.1. Bit Position Convention in the Holding Registers: One Holding Register is composed by 16 bits with the following convention: For example, if the register decimal value is 12300 the binary value is: 0011 0000 0000 1100...
  • Page 13: Modbus Holding Registers Addresses (Function Code 3)

    USER MANUAL – Z-10-D-IN HW2 6.2. Modbus Holding Registers Addresses (function code 3): All registers are “Holding register” (Read Modbus function 3) with the convention that the first register (offset 0) is the 40001 address. The following Modbus functions are supported:...
  • Page 14 USER MANUAL – Z-10-D-IN HW2 Register Comment Register Default value Modbus Modbus Name Type or Start Value Address Offset Address Module ID code Unsigned 40001 MachineID 16 bits Digital inputs 1..10 status Unsigned 40002 Inputs value (not filtered) 16 bits...
  • Page 15 USER MANUAL – Z-10-D-IN HW2 16 bit counter (from 0 to Unsigned 40005 R/W** First 65535) 16 bits Counter 3 The value is stored into a non volatile RAM (FeRAM). The Counter 3 value can be written (for example writing 0...
  • Page 16 USER MANUAL – Z-10-D-IN HW2 The flag is “1” if the first 16 Unsigned 40015 16 bits only bits of the counter has 16 bits Counters performed an overflow Overflow Flags (LSB)= Overflow Counter 1 Bit 1 = Overflow Counter 2...
  • Page 17 USER MANUAL – Z-10-D-IN HW2 Measure A from input 9 (only frequency) Bit[11..8] 0b1010 Measure A from input 10 (only frequency) Bit [7..4] = 0b0000 Measure B frequency Bit[7..4] = 0b0001 Measure B period Bit[7..4] = 0b0010 Measure B Ton Bit[7..4] = 0b0011 Measure...
  • Page 18 USER MANUAL – Z-10-D-IN HW2 Bit [12:8] = 0b00010 IN9 Upcounter IN10 Downcounter Bit [12:8] = 0b00100 IN9 Downcounter IN10 Downcounter [12:8] 0b01000 Count+1 from Count-1 from IN10. Only Count 9 Is active Bit [12:8] = 0b10000 if IN10=1 Count9 Upcounter,...
  • Page 19 USER MANUAL – Z-10-D-IN HW2 RS485 use 2400baud Bit[7:0] Station Node Address (if all dip switched are set to OFF) If set to Unsigned 40022 COMMAND 1: Copy the actual contents 16 bits registers R/W* into EEPROM. 2: Perform a Reset...
  • Page 20 USER MANUAL – Z-10-D-IN HW2 Period = Ton + Toff 16 bits Input 3 Period [ms] Unsigned 40123 Period Input 3 Period = Ton + Toff 16 bits Input 4 Period [ms] Unsigned 40124 Period Input 4 Period = Ton + Toff...
  • Page 21 USER MANUAL – Z-10-D-IN HW2 16 bits Input 3 Low Time [ms] Unsigned 40153 T OFF Input 3 16 bits Input 4 Low Time [ms] Unsigned 40154 T OFF Input 4 16 bits Input 5 Low Time [ms] Unsigned 40155...
  • Page 22: Modbus Coil Registers Addresses (Function Code 1)

    USER MANUAL – Z-10-D-IN HW2 6.3. Modbus Coil Registers Addresses (function code 1): Register Comment Register Default value or Modbus Register Name Type Start Value Address Offset Input 1 Input 1 Value Input 2 Input 2 Value Input 3 Input 3...
  • Page 23: Modbus Input Registers (Read Only) Addresses (Function Code 2)

    USER MANUAL – Z-10-D-IN HW2 6.4. Modbus Input Registers (read only) Addresses (function code 2): Register Comment Register Default value or Modbus Register Name Type Start Value Address Offset Input 1 Input 1 10001 Value Input 2 Input 2 10002...
  • Page 24: Full Configuration With Easy Setup

    USER MANUAL – Z-10-D-IN HW2 7. FULL configuration with EASY SETUP For configure all the device parameters you can use the RS485 Port (with a Seneca RS485 to USB converter) and the “Easy Z-10-D-IN HW2” software included in the Easy Setup Suite.
  • Page 25: Creating A Project Configuration

    USER MANUAL – Z-10-D-IN HW2 7.1. Creating a Project Configuration WARNING! You must set all dip switches to OFF after sending the configuration to the device or the actual configuration will be overwritten from the dip switches configuration! The parameters that can be configured are:...
  • Page 26 USER MANUAL – Z-10-D-IN HW2 Enable Parity: Select between Enable or Disable if Enable you must select ODD or Even Parity for the RS485 Port. Response Delay: Select to add about 10 ms to a Modbus RTU query response. INPUTS/COUNTERS CONFIGURATIONS...
  • Page 27: Testing The Device

    USER MANUAL – Z-10-D-IN HW2 7.2. Testing the Device When the configuration is sent to the device you can test the actual configuration by using the icon: The test configuration will acquire the measure from the Modbus registers, you can also load/reset the...
  • Page 28: The Datalogger

    USER MANUAL – Z-10-D-IN HW2 7.2.1. The datalogger The datalogger can be used for acquire data that can be used with an external software (for example Microsoft Excel ™). It is possible to set how much time to acquire the samples (minimum 1 second).

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