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10 

3.2 Display 

sequence 

table 

 

Description 

10 

Accumulated energy (Default position) 

11 

Accumulated volume according to flow sensor1 

12 

Display test 

13 

Accumulated volume for pulse input 1 (Only when F2 fitted with 
pulse inputs) 

14 

Accumulated volume for pulse input 2 (Only when F2 fitted with 
pulse inputs) 

15 

Error code, see Error code 

16 

Error time, [Minutes] 

20 

Momentary power 

21 

Momentary flow 

22 

High temperature, 0 decimals 

23 

Low temperature, 0 decimals 

24 

Temperature difference, 1 decimals 

30 

Account days

2

, when values are stored, [YYMMDD] 

31 

Account days

2

, Accumulated energy 

32 

Account days

2

, Accumulated volume according to flow sensor 

33 

Account days

2

, Accumulated volume according to energy 

calculation 

34 

Account days

2

, Accumulated volume pulse input 1, [m3] 

35  

Account days

2

, Accumulated volume pulse input 2, [m3] 

36 

Possible error code, at time of storage of account days 

37 

Possible accumulated error time, at the time of storage account 
days, [Minutes] 

3x 

Following account days registers (loop back) 

40 

Monthly registers

3

, date when values are stored, [YYMMDD] 

41 

Monthly registers

3

, Accumulated energy 

42 

Monthly registers

3

, Accumulated volume according to flow sensor 

43 

Monthly registers

3

, Accumulated volume according to energy 

calculation 

44 

Monthly registers

3

, Accumulated volume pulse input 1, [m3] 

45 

Monthly registers

3

, Accumulated volume pulse input 2, [m3] 

46 

Possible error code, at time of storage of monthly register 

47 

Possible accumulated error time, at the time of storage, 
[Minutes] 

4x 

Following monthly registers (loop back) 

50 

Operating time, [Hours] 

51 

Relevant date, [YYMMDD] 

52 

Relevant time, [HH.MM] 

53 

Recommended date for battery replacement, [YYMMDD] 

60 

Communication address, Primary address 

A0 

Communication address, Secondary address (normally same as 
meter S/N) 

bx 

Calculator serial number (S/N)

4

 

63 

Pulse value [l/p] 

64 

Placing of flow sensor, [H/L], L = Low 

70 

Accumulated volume corresponding to accumulated energy 

73 

Last remote read accumulated energy 

74 

Time since latest remote read accumulated energy, [Hours] 

75 

Accumulated total error time, [Minutes] 

 

1

 

The calculator has two registers for accumulated volume. Value 11, is 
incremented at the rate of arrived flow pulses. The other register, value 70 is 
incremented in conjunction with energy calculation. 

2

 

In order to change to the next account day, keep pushing the button until the 
date starts to increment, then release the button. After the display 37, see 
table above, the next account day will display. Note: If the “Push button” is 
held again, the display reverts to default position (seq. 10).  

3

 

To change to another month, keep pushing the button until the date starts to 
increment. Release at the requisite month. After display 47, see above, the next 
stored date will be displayed. Note: If the “Display button” is held again, the 
display reverts to default position (seq. 10).  

Содержание SVM F2

Страница 1: ...SVM F2 Calculator A small competent calculator for compact or wall montage Users manual...

Страница 2: ......

Страница 3: ...CALCULATOR 15 6 SEALS 16 7 TECHNICAL DATA 17 7 1 POWER SUPPLY 17 7 2 TEMPERATURE SENSORS 17 7 3 FLOW SENSORS 17 7 4 TEMPERATURE RANGE 17 7 5 AMBIENT TEMPERATURE TEMPERATURE CLASS 17 7 6 FLOW SENSOR PL...

Страница 4: ......

Страница 5: ...icate that the meter has left transport mode no on the display extinguishes and is replaced by 00 service mode 2 Operating mode If so ordered the F2 calculator is set to enter the operating mode direc...

Страница 6: ...or 11 0 Flow sensor 5 F High temperature sensor H 6 F High temperature sensor H 7 R Low temperature sensor L 8 R Low temperature sensor L 16 P1 Pulse input output 1 17 19 0 Pulse input output 1 and 2...

Страница 7: ...fixating the adapter 2 Guide rails 3 Adapter 2 2 Lead through F2 has six holes for connecting cables To obtain the environmental class it is vital that the diameter of cables is of the following sizes...

Страница 8: ...5 Momentary values Momentary power display sequence 20 and momentary flow display sequence 21 are calculated as follows As long as the time between the flow sensor pulses is longer than four seconds...

Страница 9: ...t starts to increment Release the button at the required sequence Change of values in the selected sequence takes place as described above If no button depression occurs during a predetermined period...

Страница 10: ...ly registers3 Accumulated volume pulse input 2 m3 46 Possible error code at time of storage of monthly register 47 Possible accumulated error time at the time of storage Minutes 4x Following monthly r...

Страница 11: ...2 Short circuit in low temperature sensor L 0004 Break in high temperature sensor H 0008 Short circuit in high temperature sensor H 0005 Error code combination 0001 0004 000A Error code combination 00...

Страница 12: ......

Страница 13: ...s necessary to proceed to date before leaving the service mode Manoeuvre in service sequence and changing values By pushing the display button the value for the blinking digit can be altered To chang...

Страница 14: ...e sequence table Table 4 1 Service sequence hh hour mm minute YY Year MM month DD Day Note The display sequence in the Service mode may vary depending on calculator configuration Service sequence Desc...

Страница 15: ...ses via the HF output k is the energy factor kWh C m3 and dt is the difference between simulated flow and return temperatures Example Rf 138 50 100 00 C Rr 127 07 70 00 C dt 30 00 C k 1 141 gives 100...

Страница 16: ...16 6 Seals 1 Service seals 2 Test seal 3 Electronic seal 4 Installation seals SVM SVM SVM SVM SVM 1 2 3 4 Fig 6 Sticker seals...

Страница 17: ...e 7 2 Cable areas for Pt100 7 3 Flow sensors Flow sensor with pulse output Max frequency Hz 12 Pulse value range l p 0 0001 9999 Min pulse length ms 40 Max voltage V 3 Max cable length m 15 Table 7 3...

Страница 18: ...3 25 0 33 0 250 0 330 0 Table 7 7 maximum power at pulse values 7 8 Dynamic behaviour Measurements are undertaken for each flow sensor pulse provided the time between the pulses is five 5 seconds or l...

Страница 19: ...lse outputs or pulse inputs on F2 F2 is equipped with two pulse inputs as standard The pulse inputs can be used for measuring of other meter with pulse outputs such as cold and hot water meters gas el...

Страница 20: ...J m KWh MBTU kW m h m 1 0 0 001 0 001 0 001 0 1 0 001 0 01 0 001 0 001 10 0 01 0 01 0 01 1 0 01 0 1 0 01 0 01 100 0 1 0 1 0 1 0 1 1 0 1 0 1 1000 1 1 1 1 1 1 1 2 5 0 001 0 01 0 01 0 1 0 01 0 01 0 001 0...

Страница 21: ...p dec 1 E Pulse Inputs 250 l p dec 0 E S Pulse Inputs 1 l p dec 3 F 1 Pulse Inputs 10 l p dec 2 F 2 Pulse Inputs 100 l p dec 1 F 3 Pulse Inputs 1000 l p dec 0 F 5 Pulse Outputs F 6 Backlight on displa...

Страница 22: ...11 X Monthly values3 accumulated volume 22 X Account days same as monthly values see above X High resolution energy High resolution volume 11 X High resolution volume 22 X X Relevant error code X X A...

Страница 23: ...AB www metrima se info metrima se Norra Stationsgatan 93 SE 113 64 Stockholm Phone 46 8 23 60 30 Fax 46 8 23 60 31 Metrima AB Stockholm Sweden Created 2003 11 07 Av Johan Tsung Rev Date 2007 09 03 Rev...

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