background image

BSC-50D User Guide 

8

4. Device Configuration 

BSC-50D utilizes two processors: An ultra Low Power MCU (

LP-MCU

), operating 

steadily and a Communication processor (

COMM_MCU

), operating on demand for 

conserving power. Configuration commands concerning the Low Power MCU must be 
followed by a special command in order to update the Low Power MCU configuration 
(see 4.15). 

4.1 Configuring a Digital Input 

 

The basic command for DI configuration is: 

1100,n,s,a,d 

1100:   Command ID 
n:  

  1-4, DI number 

s:  

  Up to 15 characters, DI name (Text, may include space characters) 

a: 

  0-3, Transition selection (0: No Alarm, 1: positive, 2: negative, 3: Both) 

d:  

  0-255, Delay time in seconds  

Scope: LP-MCU, COMM_MCU 

4.1.1 DI Alarm actions 

The command selects the actions for each DI Alarm transition. 

1106,n,ng,ps 

1106:   Command ID 
n:  

  1-4, DI number  

ng:  

Selection for the negative transition  

1

 Send logged data after the Alarm Message 

0

 Plain Alarm Message without Data Transfer 

ps:  

Selection for the positive transition  

1

 Send logged Data after the Alarm Message 

0

 Plain Alarm Message without Data Transfer 

Scope: COMM_MCU 

4.1.2 Clear DI Configuration 

1110,n 

1110:   Command ID 
n:  

  1-4, DI number 

Summary of Contents for AERINOS

Page 1: ...AERINOSTM BSC 50D Autonomous RTU User Guide...

Page 2: ...any errors or omissions Infinite Ltd reserves the right to change the specifications of the hardware and software described in this guide at any time without prior notice No part of this guide may be...

Page 3: ...ge 13 4 6 Setting Alarm Message Texts 14 4 7 User setup 16 4 8 Defining Event specific Alarm Recipients 16 4 9 Naming the Unit 17 4 10 Managing Status Messages 18 4 11 Transmission parameters 18 4 12...

Page 4: ...corporates a Lithium Thionyl Battery supplying system operation for up to 10 years BSC 50D uses SMS for data and alarm transmission The unit supports discrete recipient alarming for several users SMS...

Page 5: ...uide 5 3 Hardware setup 3 1 Packing list 1 BSC 50D Unit 2 Lithium Thionyl Battery optional 3 2 Opening the enclosure Open the unit enclosure by inserting a screwdriver in the slot on the enclosure s t...

Page 6: ...an be used to supply low power external sensors 1mA Caution The excitation current affects strongly the Battery Life J4 1 GND COM Common for digital inputs J4 2 DI4 Digital input 4 CNT1 Counter 1 inpu...

Page 7: ...The right polarity is marked up on the Battery Holder The unit is protected against reverse polarity 3 5 Wiring the Digital Inputs COM GND Digital Input states are Contact closed Input state ON logica...

Page 8: ...4 DI number s Up to 15 characters DI name Text may include space characters a 0 3 Transition selection 0 No Alarm 1 positive 2 negative 3 Both d 0 255 Delay time in seconds Scope LP MCU COMM_MCU 4 1 1...

Page 9: ...Set Counter Clear Mode 1158 n m 1158 Command ID n 1 CNT number m 0 2 0 No Clear Totalizer 1 Clear on Sampling 2 Clear on Logging Scope LP MCU 4 2 3 Set Counter High Alarm Limit 1155 n ah 1155 Command...

Page 10: ...U COMM_MCU 4 3 1 Temperature Alarm actions The parameter selects the actions for each Temperature Alarm Limit 1206 n lo hi 1206 Command ID n 1 AI number lo 0 1 Selection for Low Alarm Limit 1 Send log...

Page 11: ...er channel The Alternate Period should be less or equal to the Basic Period The value of this parameter affects strongly the Battery Life 1335 p 1335 Command ID p 1 255 Period min Scope LP MCU 4 4 3 T...

Page 12: ...MCU COMM_MCU Example 1300 4 instructs the unit to log every fourth sample If the Sampling Period is 15 minutes then one sample per hour will be logged 1310 6 instructs the unit to arrange a Data trans...

Page 13: ...on on Low Alarm 0 Ignore 1 Trigger hi 0 1 Action on High Alarm 0 Ignore 1 Trigger Scope LP MCU 4 5 2 Using a DI Alarm as Trigger 1107 n ng ps 1107 Command ID n 1 4 DI number ng 0 1 Action on a negativ...

Page 14: ...or the negative transition id2 1 128 Message ID for the positive transition Scope COMM_MCU The following commands associate Text Messages for SMS on DI Alarm Cancellation 111x n id 111x Command ID 111...

Page 15: ...COM device and a second for Phone Recipients 115x n id 115x Command ID 1152 for M2M Recipients 1151 for Phone Recipients n 1 CNT number id 1 128 Message ID Scope COMM_MCU The following commands associ...

Page 16: ...arm SMS Recipient 0 for No 1 for Yes c4 0 1 M2M User is a M2M device 0 for No 1 for Yes Scope COMM_MCU 4 7 1 Change User Configuration 0502 id c1 c2 c3 c4 0502 Command ID id 1 20 User ID c1 0 1 User A...

Page 17: ...e Alarm Recipient 1209 n 1209 Command ID n 1 2 AI number Scope COMM_MCU 4 8 3 CNT Alarm Events 1153 n id 1153 Command ID n 1 CNT number id 1 20 User ID Scope COMM_MCU The following command deletes the...

Page 18: ...network for this Period waiting for receipt of SMS containing Configuration or Verification commands 4 11 Transmission parameters 4 11 1 Transmission Retries This setting represents the number of retr...

Page 19: ...aracters DWTS r Fixed string ddmmyyyyhhmn r Timestamp of first record numCh Number of recorded Channels r Carriage Return ASCII 13 Compressed Header Format has the following structure If the Alternate...

Page 20: ...If logged V1 First record of CNT1 If logged Vn Last record of Temperature If logged Vn 1 Last record of CNT1 If logged If the Alternate Rate set is active Alternate Sampling Period 0 0 Offset to Time...

Page 21: ...when DI is ON Scope COMM_MCU 4 15 RTC Correction The device offers the possibility of correcting time Modem RTC by the dispatch of an SMS from the unit to itself After receiving the SMS the Modem RTC...

Page 22: ...s command delimiter 2 By connecting the unit to a PC and using a terminal program to pass the ASCII Commands to the unit according to the scheme atsms Command Param 1 Param N The terminal settings sho...

Page 23: ...Carriage return character ASCII 13 5 2 Status Messaging The following is a typical Status message Message contents Item description BSC 50 CR Unit Name STATUS MESSAGE CR Fixed Header ON CR Operation S...

Page 24: ...56 2 125 Data Values in User Scale 26 8 61 83 Data Values in User Scale 5 3 2 Alternate Rate active The following is a typical Data Transfer Message with active Alternate Rate Header Data Normal Forma...

Page 25: ...ax excitation current 1 2mA Average 50 mA Peak 2A FIFO Parameter memory 32 KB Ferroelectric RAM Digital Inputs 4 Dry contact 0 30VDC Pulse Counter 1 40Hz common with DI 4 Analog Inputs 1 Temperature R...

Page 26: ...2 1 3 125 15 1 1 24 5 5 125 5 1 1 12 2 7 125 5 1 1 6 2 5 125 5 1 1 2 2 1 125 5 5 1 2 0 6 In order to extend Battery Life 1 Set the Sampling Period according to the application requirements to the high...

Page 27: ...cmd 0636 Disable Messages on Alarm Cancellation cmd 0640 Set Send Retries cmd n 0641 Set Send Delay cmd d 0650 Set Status Message Period cmd p 0651 Set Idle Time After Status SMS cmd t 0655 Set Idle...

Page 28: ...sh sl sh al ah u d 1201 Set AI Alarm M2P Messages cmd n id1 id2 1202 Set AI Alarm M2M Messages cmd n id1 id2 1203 Set AI Alarm Recipient cmd n id 1204 Set AI Low Alarm Limit cmd n al 1205 Set AI High...

Page 29: ...660 Get Alarm Merge Status cmd 2670 Get Language cmd 2680 Get Include Signal Quality Status cmd 2685 Get Average Signal Quality cmd 2690 Get Character Translation cmd 2691 Get ASCII codes cmd s 2700 G...

Page 30: ...BSC 50D User Guide 30 3605 Get RTC Correction Period cmd 3606 Get RTC Correction Counter cmd 3700 Get Logs Serial Port cmd 5100 Get Current AI DI Values cmd...

Reviews: