netvox R315 Series User Manual

Wireless multi-sensor device
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R315 Series
Wireless Multi-Sensor Device
Wireless Multi-Sensor Device
R315 Series
User Manual
Copyright©Netvox Technology Co., Ltd.
This document contains proprietary technical information which is the property of NETVOX Technology. It shall be maintained in strict
confidence and shall not be disclosed to other parties, in whole or in part, without written permission of NETVOX Technology. The
specifications are subject to change without prior notice.

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Summary of Contents for netvox R315 Series

  • Page 1 This document contains proprietary technical information which is the property of NETVOX Technology. It shall be maintained in strict confidence and shall not be disclosed to other parties, in whole or in part, without written permission of NETVOX Technology. The...
  • Page 2: Table Of Contents

    Table of Contents 1. Introduction ..................................2 2. Features ....................................2 3. Appearance ..................................3 4. R315 8 in 1 Combination List ............................4 5. R315 Sensor Function ............................... 5 5.1 Internal Sensors ................................5 5.2 External Sensors ................................. 7 6.
  • Page 3: Introduction

    1. Introduction R315 series is a multi-sensor device of Netvox's Class A type device based on LoRaWAN open protocol. It can be connected with temperature and humidity, illuminance, door magnetism, internal vibration, external vibration, infrared detection, emergency button, tilt detection, water leakage detection, glass break, seat occupancy detection, dry contact in, DO out related functions (up to 8 types of sensors can be compatible at the same time), and compatible with LoRaWAN protocol.
  • Page 4: Appearance

    3. Appearance R31523 External Sensors Internal Sensors Tilt Light Reed switch Glass break Temperature & Humidity Vibration Water leak Light Sensor Reed Switch Water Leak Glass Break R31538 Internal Sensors External Sensors Tilt Temperature & Humidity Vibration Reed switch Emergency button Dry contact IN Digital OUT Emergency button...
  • Page 5: R315 8 In 1 Combination List

    4. R315 8 in 1 Combination List Built-in Sensors External Sensors Model Water Reed Digital Glass Emergency Light Vibration Tilt contact Vibration Seat Button Leak Switch break R31511 R31512 R31513 R31521 R31522 R31523 R31524 R31527 R31531 R31533 R31535 R31538 R31545 R31555 R31559 R31560...
  • Page 6: R315 Sensor Function

    5. R315 Sensor Function 5.1 Internal Sensors Internal Vibration Sensor Temperature & Humidity   Detect ambient temperature and humidity Detect the vibration state of the current device body. Vibration: report 1 Unit: 0.01℃ or 0.01% Still: report 0  Adjust sensitivity: Range: 0 to 10;...
  • Page 7 Default: IRDetectionTime: 5 minutes Note: IRDetectionTime: the total process of PIR detection; IRDisableTime: a short segment in IRDetectionTime IRDisableTime: 30 seconds When the PIR sensor is not triggered, … IRDetectionTime: 5minutes … IRDisableTime: 30s a. The PIR sensor stays off in 70% of the IRDisableTime and starts detecting at the last 30% of time. Note: To save energy, the IRDisableTime is divided into 2 parts: the first 70% (21 seconds) and the rest 30% (9 seconds).
  • Page 8: External Sensors

    5.2 External Sensors Light Sensor Emergency Button  Detect ambient illuminance  Press the emergency button to report the alarm status. Range: 0 – 3000Lux; unit: 1Lux No alarm: report 0 Alarm: report 1  Configurable press duration Glass Break Sensor Reed Switch ...
  • Page 9 Water Leak Sensor External Vibration Sensor  Detect vibration of external sensor Water detected: report 1 Vibration detected: report 1 No water detected: report 0 Still: report 0  Adjust sensitivity: Range: 0 to 255; Default: 20 (a) The lower the sensitivity value is, the more sensitive the sensor is. (b) Restore function could be set through configuration.
  • Page 10: Set Up Instruction

    6. Set up Instruction On/Off Power on Insert batteries. Short press the function key and the green indicator flashes once. Turn on Step1. Press the function key for more than 8 seconds, and the green indicator light will flash continuously. Turn off Step 2.
  • Page 11: Data Report

    Disabletime: 0x001E (30s) DectionTime: 0x012C (300s) AlarmONTime: 0x0F (15s) // Buzzer DryContactPointOutType: Normally Open Note: 1. The interval between two reports must be the minimum time. 2. The reported data is decoded by the Netvox LoRaWAN Application Command document and http://www.netvox.com.cn:8888/cmddoc.
  • Page 12: Example Of Reportdatacmd

    Data report configuration and sending period are as follows: Current Change≥ Min Interval Max Interval Current Change< Reportable Change Reportable Change Reportable Change (Unit: second) (Unit: second) Any number between Any number between Report Report Cannot be 0 1–65535 1–65535 per Min Interval per Max Interval 7.1 Example of ReportDataCmd...
  • Page 13 Note: R315 series would report 2 packets (DeviceType 0x11 and 0x12) when the light sensor and TH sensor are on. The interval of two packets would be 10 seconds. Only one ppacket (DeviceType 0x11) would be reported as the light sensor and TH sensor are off.
  • Page 14 Example of Uplink1: 01D2111C01815700550000 byte (01): Version byte (D2): DeviceType – R315 byte (11): ReportType byte (1C): Battery–2.8V, 1C (HEX) = 28 (DEC), 28* 0.1v = 2.8v – 7 byte (018157): FunctionEnableBits, 0x018157 = 0001 1000 0001 0101 0111 (BIN) //Bit 0, 1, 2, 4, 6, 8, 15, 16 =1 (enable) Bit0: Temperature and Humidity Sensor Bit1: Light Sensor Bit2: PIR Sensor...
  • Page 15: Example Of Configurecmd

    7.2 Example of ConfigureCmd FPort: 0x07 Bytes Var (Fix = 9 Bytes) CmdID DeviceType NetvoxPayLoadData CmdID– 1 byte DeviceType– 1 byte – Device Type of Device NetvoxPayLoadData– var bytes (Max = 9 bytes) Device Description NetvoxPayLoadData Type MinTime MaxTime BatteryChange TemperatureChange HumidityChange Illuminancechange...
  • Page 16 GetShockSens orSensitivityR Reserved (9 bytes, Fixed 0x00) 0x06 GetShockSens InternalShockSensor ExternalShockSensor Reserved Sensitivity Sensitivity orSensitivityR 0x86 (7 bytes, Fixed 0x00) (1 byte, 0xFF represents (1 byte, 0xFF represents disable ShockSensor) disable ShockSensor) SensorType IRDectionTime SetIRDisableT IRDisableTime (1 byte, Reserved (2 bytes, 0x07 ImeReq (2 bytes, Unit: s)
  • Page 17 GetDryContac tPointOutType 0x0C Reserved (9 bytes, Fixed 0x00) DryContactPointOutType GetDryContac (1 byte, Reserved tPointOutType 0x8C 0x00_Normally Open (7 bytes, Fixed 0x00) 0x01_Normally Close) RestoreReportSet SetRestoreRep (1 byte) Reserved 0x0D ortReq 0x00_DO NOT report when sensor restore (8 bytes, Fixed 0x00) 0x01_DO report when sensor restore SetRestoreRep Status...
  • Page 18: Example Of Resendtimecmd

    7.3 Example of ResendtimeCmd (for resending time of reed switch and tilt sensor) FPort: 0x07 Device Description Device NetvoxPayLoadData Type Resendtime (1 byte, Unit: 1s, range: 3-254s), Reserved SetLastMessageRes 0x1F when 0 or 255 no resend, default is no resend (8 bytes, Fixed 0x00) endtimeReq SetLastMessageRes...
  • Page 19: Example Of Configbuttonpresstime (Emergencebutton)

    7.4 Example of ConfigButtonPressTime (EmergenceButton) FPort:0x0D Description CmdID PayLoad (Fix byte, 1 byte) PressTime (1 bytes) 0x00_QuickPush_Less then 1 Second OtherValue present the presstime such as 0x01_1 Second push SetButtonPressTimeReq 0x01 0x02_2 Seconds push 0x03_3 Seconds push 0x04_4 Seconds push 0x05_5 Seconds push 0x06_6 Seconds push, and so on SetButtonPressTimeRsp...
  • Page 20: Configdrycontactintriggertime (Bi-Direction)

    7.5 ConfigDryContactINTriggerTime (Bi-Direction) FPort:0x0F Description CmdID PayLoad (Fix byte, 2 byte) MinTriggeTime (2 bytes) SetDryContactINTriggerTimeReq 0x01 (Unit: 1ms, Default 50ms) Status SetDryContactINTriggerTimeRsp 0x81 Reserved (1 byte, Fixed 0x00) (0x00_Success; 0x01_Failure) GetDryContactINTriggerTimeReq 0x02 Reserved (2 byte, Fixed 0x00) MinTriggeTime (2 bytes) GetDryContactINTriggerTimeRsp 0x82 (Unit: 1ms, Default 50ms)
  • Page 21: Set/Getsensoralarmthresholdcmd

    7.6 Set/GetSensorAlarmThresholdCmd Fport:0x10 CmdID Payload (10 bytes) Descriptor (1 byte) SensorType (1 byte, SensorHighThreshold SensorLowThreshold Channel (1 byte, 0x00_Disable ALL (4 bytes, Unit: same as (4 bytes, Unit:same as 0x00_Channel1, SetSensorAlarmThr SensorthresholdSet 0x01 reportdata in fport6, reportdata in fport6, esholdReq 0x01_Channel2, 0x01_Temperature, 0Xffffffff_DISALBLEr...
  • Page 22 1. Configure device parameters SensorHighThreshold = 40℃ (0FA0), SensorLowThreshold = 10℃ (03E8) Downlink: 01000100000FA0000003E8 Response: 8100000000000000000000 (configuration success) 2. Read configuration Downlink: 0200010000000000000000 Response: 82000100000FA0000003E8 (device current parameter) 3. Configure detection parameters ThresholdAlarmCheckCn = 3 Downlink: 0303000000000000000000 Response: 8300000000000000000000 4. Read configuration Downlink: 0400000000000000000000 Response: 8403000000000000000000...
  • Page 23: Netvoxlorawanrejoin

    7.7 NetvoxLoRaWANRejoin (Note: check if the device is still in the network. If the device is disconnected, it will automatically rejoin back to the network.) Fport: 0x20 CmdDescriptor CmdID(1Byte) Payload(5Bytes) RejoinCheckPeriod (4 bytes, Unit: 1s SetNetvoxLoRaWANRejoinReq 0x01 RejoinThreshold (1 byte) 0XFFFFFFFF Disable NetvoxLoRaWANRejoinFunction) SetNetvoxLoRaWANRejoinRsp...
  • Page 24: Example For Mintime/Maxtime Logic

    7.8 Example for MinTime/MaxTime logic Example#1 based on MinTime = 1 Hour, MaxTime= 1 Hour, Reportable Change i.e. BatteryVoltageChange=0.1V MaxTime MaxTime sleeping (MinTime) sleeping (MinTime) Wakes up and collect data Wake up and collect data Wakes up and collect data REPORTS 2.7V REPORTS 2.5V REPORTS 2.8V...
  • Page 25 Notes: (1) The device only wakes up and performs data sampling according to MinTime Interval. When it is sleeping, it does not collect data. (2) The data collected is compared with the last data reported. If the data change value is greater than the ReportableChange value, the device reports according to MinTime interval.
  • Page 26: Important Maintenance Instruction

    8. Important Maintenance Instruction Kindly pay attention to the following in order to achieve the best maintenance of the product: • Keep the device dry. Rain, moisture, or any liquid might contain minerals and thus corrode electronic circuits. If the device gets wet, please dry it completely.

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