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Saft evolion Technical Manual - page 31
32
Appendix A: Part number reference
Appendix B: Glossary
#
Saft P/N
Description
3.
771285
Fuse, replaceable, 60 A
4.
771473IO
Installation and operation instructions
5.
771492
-xx
Evolion module,
-xx
is the parameter file variant.
-09
RS_speed = 1
-10
RS_speed = 0
-11
Standard
-12
Alarm #35 and #36 output to dry contact
6.
772309
Communication kit, USB key and converter cable
7.
772509
Evolion packaging box, UN3480
8.
772517
Cable NEG, 1000 mm, black cable, black heat shrink
9.
772518
Communication cable, inter module
10.
773455
RJ45 Resistor cap
11.
773456
Converter cable
12.
774884
Busbar kit, 4x Evolion, 1 meter communication cable to application
13.
780680
Cable POS, 1000 mm, black cable, red heat shrink
Term
Definition
BMST
Battery Management System Telecom
BMU
Battery Management Unit (not used with Evolion)
DoD
% Depth of Discharge
Dry contactor
open or close signal, no voltage or current supplied, free contact
EOL
End of Life
HMI
Human Machine Interface
IMD
Maximum Discharge Current
IMR
Maximum Re-charge Current
LVD
Low Voltage Disconnect
MBMM
Master Battery Management Module (not used with Evolion)
OCV
Open Circuit Voltage
PFC
Potential Free Contact, referred to as dry contact sometimes
SEI
Solid Electrolyte Interface or the passivation layer on the negative electrode
SMPS
Switch Mode Power Supply
SMU
Safety Monitoring Unit (not used with Evolion)
SoC
% State of Charge
SOC
State of Charge
SOH
State of Health
Summary of evolion
Page 1
Evolion ® li-ion battery technical manual.
Page 2
3 1. Introduction 4 2. Electrochemical principles 4 3. Evolion construction 5 contents 3.1 module characteristics 3.2 interface features 7 3.3 main functional features 8 3.4 front cover features 8 4.1 application summary 4.2 the electronic switch (mosfets) 10 4.3 operating modes 11 4.4 internal elec...
Page 3
4 the saft evolion® is suited for many different applications and environments and its compact size and high energy density allow it to deliver the highest performance from a smallest volume and weight. The evolion offers a unique combination of high float charging life and high cycling performance ...
Page 4
5 the evolion is a single 48 v module. The main components include a 14 cell pack of vl80e and two main electronic printed circuit boards. A battery management system telecom (bmst) is built into each module. With its microprocessor combined with the bmst software (or firmware), the bmst optimizes t...
Page 5
6 3.1 module characteristics parameter value typical capacity @ c/8 a and 25ºc 77 ah rated capacity @ c/8 a and 25ºc 74 ah rated capacity @ c/5 a and 25ºc 73 ah rated capacity @ c/24 a and 25ºc 79 ah width 216 mm (8.50 inches) equivalent to 5 ru depth 404 mm (15.91 inches) height 260 mm (10.24 inche...
Page 6
7 3.2 interface features # interface feature description 1 power terminals the terminal cover caps are ip2x compliant. The connecting hardware is m6 and the maximum torque is 6 nm (53 in lbs). The maximum cable size that can be routed in the cable channels is a 16 mm 2 section or gauge 6 awg. 36 vdc...
Page 7
8 3.3 main functional features # interface feature description 1 cell pack the series connected cells are configured in a high energy dense cell pack. Each cell is equipped with an internal current interrupt device. In case the maximum internal pressure or a maximum current level is exceeded, this d...
Page 8
9 the evolion is designed for 48 vdc nominal power systems. The applications can be grid connected or off grid and the evolion can remain on float or cycled frequently over its useful life. 4.1 application summary the evolion is a standalone battery system. The evolion is designed for installation i...
Page 9
10 figure 3. Schematic view of the electronic switch (mosfets) in the evolion. # application parameter description 1 load limits each module can provide and accept up to 44 a of discharge/charge current. To avoid damaging the bmst power board, the maximum total system discharge load should be below ...
Page 10
11 4.3 operating modes in all modes except sleep mode, the terminal voltage is present, the rs485 communication is active, the led’s operate and the dry contactor operates. Each evolion controls its own switch state, independent of other parallel connected modules, without the need of an external ma...
Page 11
12 4.5 internal heater the evolion uses an internal heater to optimize its performance. The internal heater operates as a function of the measured module temperature. It works in all modes of operation except sleep and safe modes. The load to the heater is supplied from the 48 vdc circuit. Approxima...
Page 12
13 if the electronic switch opens due to a major alarm, in most cases the major alarm will reset automatically, after the fault condition is corrected, and the electronic switch will in turn close to continue normal operation. If the 60 amp replaceable fuse ever opens, it must be replaced in order t...
Page 13
14 figure 5. Main operation safety limits of the evolion. 4.9 module self test during startup on startup, a self-test is performed anytime the evolion is awakened from the sleep mode by either, • pressing the on/off • applying the rectifier output to the power terminals (minimum 36 vdc) • applying a...
Page 14
15 the evolion is designed to provide low power to the application for autonomies ranging from 2 hours and 5 days. When providing this duty, the voltage of the evolion operates with the typical voltage range of a 48 v nominal telecom bus. 5.1 normal operating voltage limits the evolion operates in a...
Page 15
16 the module ocv can be measured at the terminals, by turning the unit on. While under load, an approximation of the ocv can be measured if the current, either charge or discharge, is less than 4.9 amps (at 25 ºc and higher). The internal resistance of the evolion module varies with temperature and...
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17 % of nominal capacity unit voltage 0% 10% 20% 30% 40% 50% 60% 70% 80% 90% 100% 110% 56 55 54 53 52 51 50 49 48 47 46 45 44 43 42 41 40 39 38 37 36 35 nominal capacity = c 8 = 77ah 0ºc + 5ºc + 25ºc + 40ºc figure 7. Discharge characteristics of the evolion at 1750 w and at different temperatures. 7...
Page 17
18 7.2 maximum discharge current a maximum discharge current is defined for the evolion module. This maximum level optimizes the useful life of the evolion and particularly for frequent cycling applications. If the maximum re-charge current (with some included tolerance) is ever encountered by a mod...
Page 18
19 when the network voltage is higher than the evolion terminal voltage, the module begins charging. The evolion re-charges with a typical constant current/constant voltage (cc/cv) profile. The maximum and recommended re-charge set point is 56.0 vdc +/- 0.5%. The temperature compensated voltage cont...
Page 19
20 imd. In general operating at or close to imr risks activating the charge regulated mode. For all practical purposes, operating with imr is not recommended. However, for applications using only one installed evolion and where cycling is infrequent (once per week or longer interval), if operating w...
Page 20
21 8.2 power system set points in order to optimize the power system operation and set points with the evolion, use table 2 as a guideline. Table 2. Power system set point guide # type setting a. Single level voltage 56.0 vdc ± 0.5% b. Temperature compensated voltage control disabled or turned off. ...
Page 21
22 when integrating the evolion in the application make sure to avoid obstructing all of the vent ports. It is recommended to discuss venting strategy with your saft representative in order to conclude on the need to implement venting channels and suppression systems. See more details in the chapter...
Page 22
23 9.1 cell venting in operation the probability for a cell venting during operation in the evolion is very low. When considering the redundant and independent safety mechanisms included on the cell level and the system level, there is a zero probability that an external influence of voltage or curr...
Page 23
24 factor impacts how it impacts life %soc calendar life the higher the %soc the lower the expected life and vice versa. Note that the expected life at 100 % soc and 20 ºc is more than 20 years. Module temperature calendar life the higher the temperature the lower the expected life and vice versa. L...
Page 24
25 factors included impacts level of re-charge current cycling life %dod cycling life %soc calendar life module temperature calendar life factors included impacts level of re-charge current cycling life %dod cycling life %soc calendar life module temperature calendar life reported %soh corresponding...
Page 25
26 the evolion communicates both a dry contact signal (alarming) and on an rs485/modbus network as a slave. For alarming, each evolion module measures and controls its own alarm output signal. The alarm output signal is given both by the led’s and the rj45 connectors on the front face. A complete li...
Page 26
27 13.1 massive paralleling since the evolion operates stand alone and is not limited by an external bms, massive paralleling for power or for capacity is possible. If the total discharge does not exceed 130 a or 5 kw, connecting any number of evolion on the same bus, in theory, is acceptable. In pr...
Page 27
28 (a) auto acting – breaker this external interrupt method will allow the manual resetting of the external breaker if an overload condition exists. A single breaker is used for each evolion or on pair of parallel connected evolions. The breaker acts with specific time/current characteristics. Consu...
Page 28
Unit 1 bus bus unit 2 unit 3 unit n + + + + + - - - - - 29 figure 19. Corelation of dtmax as a function of i rms . The estimation of dtmax can assist in determining if the imd or imr may be a constraint in operation. For example, in a hybrid power application, the higher the charger current lower th...
Page 29
30 the evolion automatically protects against abusive operation. There are two basic approaches to size the evolion. For autonomy sizing or frequent cycling sizing contact your local saft representative for further assistance. 14. Abusive operations 15. Battery sizing abusive operation protection de...
Page 30
31 an example is given: the customer needs to backup a remote roadside cabinet (remote terminal) for 4 hours. The average yearly outside temperature is 29 ºc. The coldest temperature is 0 ºc. The load is 120 amps. The performance should be guaranteed for 10 years..
Page 31
32 appendix a: part number reference appendix b: glossary # saft p/n description 3. 771285 fuse, replaceable, 60 a 4. 771473io installation and operation instructions 5. 771492 -xx evolion module, -xx is the parameter file variant. -09 rs_speed = 1 -10 rs_speed = 0 -11 standard -12 alarm #35 and #36...
Page 32
33 appendix c: performance rate tables appendix d: derating factors for sizing f t – derating factor for temperature between 10ºc (50ºf) and 25ºc (77ºf). No derating factor is applied over 25ºc. Use either f t or f th , both should not be applied. Lowest temperature (ºc) derating factor (f t ) 10 11...
Page 33
34 f th – derating factor for less than 10ºc taking into account the heater load. Use either f t or f th , both should not be applied. F vch – derating factor charge voltage lower than 56 v. Charge voltage setpoint (v) autonomy (hours) derating factor (f vch ) derating factor (f th ) 49 50 51 52 53 ...
Page 34
35 f eodv – derating factor for cut-off voltage higher than 42 v. F aging – derating factor for aging. Average environment temperature (ºc) autonomy (hours) derating factor (f aging ) derating factor (f eodv ) 0 5 10 15 20 25 30 35 40 45 0 2 4 6 8 10 12 14 16 18 20 22 24 26 28 30 32 100% 95% 90% 85%...
Page 35
36 appendix e: alarms and troubleshooting use the evolion toolbox software to diagnose active alarms. See evolion toolbox software technical manual for more details. N° fault code is active (major alarm) with open electronic switch (mosfet); evolion operates in safe mode. N° warning alarm is active ...
Page 36
37 n° fault code is active (major alarm) with open electronic switch (mosfet); evolion operates in safe mode. N° warning alarm is active with closed electronic switch; evolion operates in normal mode. Generic n° buffer n° description fault condition possible cause and notes recommended action guide ...
Page 37
38 n° fault code is active (major alarm) with open electronic switch (mosfet); evolion operates in safe mode. N° warning alarm is active with closed electronic switch; evolion operates in normal mode. Generic n° buffer n° description fault condition possible cause and notes recommended action guide ...
Page 38
39 n° fault code is active (major alarm) with open electronic switch (mosfet); evolion operates in safe mode. N° warning alarm is active with closed electronic switch; evolion operates in normal mode. Generic n° buffer n° description fault condition possible cause and notes recommended action guide ...
Page 39
40 n° fault code is active (major alarm) with open electronic switch (mosfet); evolion operates in safe mode. N° warning alarm is active with closed electronic switch; evolion operates in normal mode. Generic n° buffer n° description fault condition possible cause and notes recommended action guide ...
Page 40
41 n° fault code is active (major alarm) with open electronic switch (mosfet); evolion operates in safe mode. N° warning alarm is active with closed electronic switch; evolion operates in normal mode. Generic n° buffer n° description fault condition possible cause and notes recommended action guide ...
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42 n° fault code is active (major alarm) with open electronic switch (mosfet); evolion operates in safe mode. N° warning alarm is active with closed electronic switch; evolion operates in normal mode. Generic n° buffer n° description fault condition possible cause and notes recommended action guide ...
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Saft 12, rue sadi carnot 93170 bagnolet - france tel. : +33 1 49 93 19 18 fax : +33 1 49 93 19 64 www.Saftbatteries.Com doc no.: 21880-2-0115 edition: january 2015 data in this document is subject to change without notice and becomes contractual only after written confirmation. Photo credits: saft, ...