diff --git a/io.admin-shell.idta.batterypass.carbon_footprint/1.0.0/gen/CarbonFootprintBattery.html b/io.admin-shell.idta.batterypass.carbon_footprint/1.0.0/gen/CarbonFootprintBattery.html index a59803f..7183c9f 100644 --- a/io.admin-shell.idta.batterypass.carbon_footprint/1.0.0/gen/CarbonFootprintBattery.html +++ b/io.admin-shell.idta.batterypass.carbon_footprint/1.0.0/gen/CarbonFootprintBattery.html @@ -181,7 +181,7 @@
Standards, methods for determining the greenhouse gas emissions of a product.
@@ -2862,7 +2862,7 @@Sum of all greenhouse gas emissions of a product according to the quantification requirements of the standard.
@@ -2871,7 +2871,7 @@Producer or producer responsibility organisations shall make information available to distributors and end-users on: the role of end-users in contributing to waste prevention, including by information on good practices and recommendations concerning the use of batteries aiming at extending their use phase and the possibilities of re-use, preparing for re-use, preparing for repurpose, repurposing and remanufacturing.
@@ -219,8 +219,8 @@Share of renewable material content. A renewable material is a material made of natural resources that can be replenished.
@@ -331,7 +331,7 @@Safety measures and instructions should also take past negative and extreme events as well as the separate data attributes ?battery status? and ?battery composition/chemistry? into account.
@@ -387,7 +387,7 @@Dismantling and Removal information, including at least:- Exploded diagrams of the battery system/pack showing the location of battery cells- Disassembly sequences- Type and number of fastening techniques to be unlocked- Tools required for disassembly- Warnings if risk of damaging parts exists- Amount of cells used and layout. BR Annex XIII (2c)
@@ -449,7 +449,7 @@Share of material recovered from waste present in active materials for each battery model per year and per manufacturing plant.
@@ -511,7 +511,7 @@Contact details of sources for replacement spares. Postal address, including name and brand names, postal code and place, street and number, country, telephone, if any. BR Annex XIII (2b)
@@ -887,19 +887,19 @@Prevention and management of waste batteries: Point (a) of Article 60(1): Information on the role of end-users in contributing to waste prevention, including by information on good practices and recommendations concerning the use of batteries aiming at extending their use phase and the possibilities of re-use, preparing for re-use, preparing for repurpose, repurposing and remanufacturing
@@ -951,7 +951,7 @@Prevention and management of waste batteries: Point (b) of Article 60(1): Information on the role of end-users in contributing to the separate collection of waste batteries in accordance with their obligations under Article 51 so as to allow their treatment
@@ -1003,7 +1003,7 @@Prevention and management of waste batteries: Point (c) of Article 60(1): information on the separate collection, the take back, the collection points and preparing for re-use, preparing for repurposing, and recycling operations available for waste batteries
@@ -1366,6 +1366,9 @@Name of recycled material
+ +Documented Entities.
+ + + +"Component materials used" (No. 17.a-c): Naming the materials (as a composition of substances) in cathode, anode, electrolyte according to public standards, including specification of the corresponding component (i.e., cathode, anode, or electrolyte). We suggest a reporting threshold of 0.1 % weight by weight.
@@ -259,7 +261,7 @@"Hazardous substances" (No 20.a-e): Name (agreed substance nomenclature, e.g. IUPAC or chemical name) all hazardous substance (as ?any substance that poses a threat to human health and the environment?). Suggested above 0.1 % weight by weight within each (sub-)component.
@@ -321,7 +323,7 @@Composition of a product in general terms by specifying the cathode and anode active material as well as electrolyte.
diff --git a/io.admin-shell.idta.batterypass.material_composition/1.0.0/gen/MaterialCompositionBattery.json b/io.admin-shell.idta.batterypass.material_composition/1.0.0/gen/MaterialCompositionBattery.json index 9536fa4..6b4e6d6 100644 --- a/io.admin-shell.idta.batterypass.material_composition/1.0.0/gen/MaterialCompositionBattery.json +++ b/io.admin-shell.idta.batterypass.material_composition/1.0.0/gen/MaterialCompositionBattery.json @@ -7,7 +7,7 @@ "hazardousSubstanceClass" : "AcuteToxicity", "hazardousSubstanceConcentration" : -1.7976931348623157E308, "hazardousSubstanceImpact" : [ "JxkyvRnL" ], - "hazardousSubstanceIdentifier" : "434-02-3", + "hazardousSubstanceIdentifier" : "251-00-5", "hazardousSubstanceLocation" : { "componentName" : "Anode", "componentId" : "RYtGKbgicZaHCBRQDSx" @@ -16,7 +16,7 @@ } ], "batteryMaterials" : [ { "batteryMaterialIdentifier" : "7439-93-2", - "batteryMaterialMass" : -2.7345223E38, + "batteryMaterialMass" : -2.9150972E38, "batteryMaterialName" : "Lithium", "batteryMaterialLocation" : { "componentName" : "Anode", diff --git a/io.admin-shell.idta.batterypass.material_composition/README.md b/io.admin-shell.idta.batterypass.material_composition/README.md index 0d90070..3759021 100644 --- a/io.admin-shell.idta.batterypass.material_composition/README.md +++ b/io.admin-shell.idta.batterypass.material_composition/README.md @@ -20,6 +20,9 @@ with license CC BY-NC 4.0. Source GitHub IDTA: https://github.com/admin-shell-io/submodel-templates Source Content Hub of the IDTA: [IDTA-02035-6 V1.2]() +# General + +The folder "gen" for each version contains sammple JSON files and html generated for the aspect model(s) # Changelog All notable changes to this model will be documented in this section. @@ -33,14 +36,11 @@ Contained Files: * MaterialComposition.ttl - Dependencies: * urn:samm:io.BatteryPass.MaterialComposition:1.2.0 -Known Issues: -* semanticId of Submodel is not correctly generated by the ESMF CLI diff --git a/io.admin-shell.idta.batterypass.product_condition/1.0.0/gen/ProductConditionBattery.html b/io.admin-shell.idta.batterypass.product_condition/1.0.0/gen/ProductConditionBattery.html index 99c6987..946ea97 100644 --- a/io.admin-shell.idta.batterypass.product_condition/1.0.0/gen/ProductConditionBattery.html +++ b/io.admin-shell.idta.batterypass.product_condition/1.0.0/gen/ProductConditionBattery.html @@ -181,7 +181,7 @@�Evolution of self-discharge rates� is the change of self-discharge over time and usage, as percentage calculated from the initial and current self-discharge rate.
+Evolution of self-discharge rates is the change of self-discharge over time and usage, as percentage calculated from the initial and current self-discharge rate.
DIN DKE Spec 99100 chapter reference: 6.7.4.8
@@ -534,6 +534,10 @@The battery passport must contain information and data resulting from its use such as accidents.
+DIN DKE Spec 99100 chapter reference: 6.7.8.4
+ +Number of (full) charging and discharging cycles.
-DIN DKE Spec 99100 chapter reference: 6.7.6.3
+DIN DKE Spec 99100 chapter reference: 6.7.6.4
diff --git a/io.admin-shell.idta.batterypass.product_condition/1.0.0/gen/ProductConditionBattery.json b/io.admin-shell.idta.batterypass.product_condition/1.0.0/gen/ProductConditionBattery.json index 2e34490..f357ade 100644 --- a/io.admin-shell.idta.batterypass.product_condition/1.0.0/gen/ProductConditionBattery.json +++ b/io.admin-shell.idta.batterypass.product_condition/1.0.0/gen/ProductConditionBattery.json @@ -1,61 +1,61 @@ { "StateOfCharge" : { - "stateOfChargeValue" : -4.5244504E37, - "lastUpdate" : "2025-10-24T12:53:55.823+02:00" + "stateOfChargeValue" : -2.4808245E38, + "lastUpdate" : "2025-11-17T12:48:41.984+01:00" }, "RemainingCapacity" : { - "remainingCapacityValue" : -2.6293122E38, - "lastUpdate" : "2025-10-24T12:53:55.823+02:00" + "remainingCapacityValue" : -1.6792607E38, + "lastUpdate" : "2025-11-17T12:48:41.984+01:00" }, "NegativeEvents" : [ { "negativeEvent" : "eOMtThyhVNLWUZNRcBaQKxI", - "lastUpdate" : "2025-10-24T12:53:55.823+02:00" + "lastUpdate" : "2025-11-17T12:48:41.984+01:00" } ], "TemperatureInformation" : { "timeExtremeHighTemp" : -1.7976931348623157E308, "timeExtremeLowTempCharging" : -1.7976931348623157E308, "timeExtremeHighTempCharging" : -1.7976931348623157E308, "timeExtremeLowTemp" : -1.7976931348623157E308, - "lastUpdate" : "2025-10-24T12:53:55.823+02:00" + "lastUpdate" : "2025-11-17T12:48:41.984+01:00" }, "CurrentSelfDischargingRate" : { - "currentSelfDischargingRateValue" : 1.6927761E38, - "lastUpdate" : "2025-10-24T12:53:55.823+02:00" + "currentSelfDischargingRateValue" : 2.0836378E37, + "lastUpdate" : "2025-11-17T12:48:41.984+01:00" }, "RemainingEnergy" : { - "remainingEnergyValue" : 1.4426504E38, - "lastUpdate" : "2025-10-24T12:53:55.823+02:00" + "remainingEnergyValue" : -2.4276854E38, + "lastUpdate" : "2025-11-17T12:48:41.984+01:00" }, "EnergyThroughput" : { - "energyThroughputValue" : -2.3654153E38, - "lastUpdate" : "2025-10-24T12:53:55.823+02:00" + "energyThroughputValue" : -2.0987542E38, + "lastUpdate" : "2025-11-17T12:48:41.984+01:00" }, "StateOfCertifiedEnergy" : { - "stateOfCertifiedEnergyValue" : -2.0236418E37, - "lastUpdate" : "2025-10-24T12:53:55.823+02:00" + "stateOfCertifiedEnergyValue" : -1.1928056E37, + "lastUpdate" : "2025-11-17T12:48:41.984+01:00" }, "EvolutionOfSelfDischarge" : { - "evolutionOfSelfDischargeValue" : 1.0642763E38, - "lastUpdate" : "2025-10-24T12:53:55.823+02:00" + "evolutionOfSelfDischargeValue" : 3.3607428E37, + "lastUpdate" : "2025-11-17T12:48:41.984+01:00" }, "RemainingRoundTripEnergyEfficiency" : { - "remainingRoundTripEnergyEfficiencyValue" : 3.278879E38, - "lastUpdate" : "2025-10-24T12:53:55.823+02:00" + "remainingRoundTripEnergyEfficiencyValue" : 8.3691297E37, + "lastUpdate" : "2025-11-17T12:48:41.984+01:00" }, "CapacityThroughput" : { - "capacityThroughputValue" : 3.2927993E38, - "lastUpdate" : "2025-10-24T12:53:55.823+02:00" + "capacityThroughputValue" : 2.5012476E38, + "lastUpdate" : "2025-11-17T12:48:41.984+01:00" }, "RemainingPowerCapability" : { "remainingPowerCapabilityValue" : { - "atSoC" : 3.9312857E37, - "powerCapabilityAt" : -2.7240384E38, - "rPCLastUpdated" : "2025-10-24T12:53:55.823+02:00" + "atSoC" : -6.2131663E37, + "powerCapabilityAt" : 2.2036495E38, + "rPCLastUpdated" : "2025-11-17T12:48:41.984+01:00" }, - "lastUpdate" : "2025-10-24T12:53:55.823+02:00" + "lastUpdate" : "2025-11-17T12:48:41.984+01:00" }, "NumberOfFullCycles" : { "numberOfFullCyclesValue" : -179769313486231570000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000, - "lastUpdate" : "2025-10-24T12:53:55.823+02:00" + "lastUpdate" : "2025-11-17T12:48:41.984+01:00" } } \ No newline at end of file diff --git a/io.admin-shell.idta.batterypass.product_condition/1.0.0/gen/ProductConditionBatteryStationaryLMT.html b/io.admin-shell.idta.batterypass.product_condition/1.0.0/gen/ProductConditionBatteryStationaryLMT.html index ab73c92..e7b4f0a 100644 --- a/io.admin-shell.idta.batterypass.product_condition/1.0.0/gen/ProductConditionBatteryStationaryLMT.html +++ b/io.admin-shell.idta.batterypass.product_condition/1.0.0/gen/ProductConditionBatteryStationaryLMT.html @@ -181,7 +181,7 @@�Evolution of self-discharge rates� is the change of self-discharge over time and usage, as percentage calculated from the initial and current self-discharge rate.
+Evolution of self-discharge rates is the change of self-discharge over time and usage, as percentage calculated from the initial and current self-discharge rate.
DIN DKE Spec 99100 chapter reference: 6.7.4.8
@@ -534,6 +534,10 @@The battery passport must contain information and data resulting from its use such as accidents.
+DIN DKE Spec 99100 chapter reference: 6.7.8.4
+ +Number of (full) charging and discharging cycles.
-DIN DKE Spec 99100 chapter reference: 6.7.6.3
+DIN DKE Spec 99100 chapter reference: 6.7.6.4
@@ -879,7 +883,7 @@Energy round trip efficiency fade should be calculated using the initial round trip energy efficiency and remaining round trip energy efficiency following the formula below:
-RTEfade (x) = (1-RTE(x)) / RTEBOL �100" %" +
RTEfade (x) = (1-RTE(x)) / RTEBOL 100" %"
where
x is the aging parameter (e.g. storage time, number of cycles, etc.);
RTE(x) is the round trip energy efficiency at aging parameter x;
diff --git a/io.admin-shell.idta.batterypass.product_condition/1.0.0/gen/ProductConditionBatteryStationaryLMT.json b/io.admin-shell.idta.batterypass.product_condition/1.0.0/gen/ProductConditionBatteryStationaryLMT.json
index 1bd51e1..12929f8 100644
--- a/io.admin-shell.idta.batterypass.product_condition/1.0.0/gen/ProductConditionBatteryStationaryLMT.json
+++ b/io.admin-shell.idta.batterypass.product_condition/1.0.0/gen/ProductConditionBatteryStationaryLMT.json
@@ -1,62 +1,62 @@
{
"StateOfCharge" : {
- "stateOfChargeValue" : -1.3776493E38,
- "lastUpdate" : "2025-10-24T12:54:26.171+02:00"
+ "stateOfChargeValue" : 2.7062998E38,
+ "lastUpdate" : "2025-11-17T12:49:10.372+01:00"
},
"RemainingCapacity" : {
- "remainingCapacityValue" : 1.6583406E38,
- "lastUpdate" : "2025-10-24T12:54:26.171+02:00"
+ "remainingCapacityValue" : -3.2608352E38,
+ "lastUpdate" : "2025-11-17T12:49:10.372+01:00"
},
- "RoundTripEfficiencyFade" : -1.8475411E38,
+ "RoundTripEfficiencyFade" : -1.1845248E37,
"NegativeEvents" : [ {
"negativeEvent" : "eOMtThyhVNLWUZNRcBaQKxI",
- "lastUpdate" : "2025-10-24T12:54:26.171+02:00"
+ "lastUpdate" : "2025-11-17T12:49:10.372+01:00"
} ],
"TemperatureInformation" : {
"timeExtremeHighTemp" : -1.7976931348623157E308,
"timeExtremeLowTempCharging" : -1.7976931348623157E308,
"timeExtremeHighTempCharging" : -1.7976931348623157E308,
"timeExtremeLowTemp" : -1.7976931348623157E308,
- "lastUpdate" : "2025-10-24T12:54:26.171+02:00"
+ "lastUpdate" : "2025-11-17T12:49:10.372+01:00"
},
"CurrentSelfDischargingRate" : {
- "currentSelfDischargingRateValue" : -1.8860528E37,
- "lastUpdate" : "2025-10-24T12:54:26.171+02:00"
+ "currentSelfDischargingRateValue" : -2.457422E38,
+ "lastUpdate" : "2025-11-17T12:49:10.372+01:00"
},
"RemainingEnergy" : {
- "remainingEnergyValue" : 2.0704639E38,
- "lastUpdate" : "2025-10-24T12:54:26.171+02:00"
+ "remainingEnergyValue" : 2.7428854E38,
+ "lastUpdate" : "2025-11-17T12:49:10.372+01:00"
},
"EnergyThroughput" : {
- "energyThroughputValue" : 2.0514739E38,
- "lastUpdate" : "2025-10-24T12:54:26.170+02:00"
+ "energyThroughputValue" : 2.4958773E38,
+ "lastUpdate" : "2025-11-17T12:49:10.372+01:00"
},
"StateOfCertifiedEnergy" : {
- "stateOfCertifiedEnergyValue" : -2.2149416E38,
- "lastUpdate" : "2025-10-24T12:54:26.171+02:00"
+ "stateOfCertifiedEnergyValue" : -5.651014E37,
+ "lastUpdate" : "2025-11-17T12:49:10.372+01:00"
},
"EvolutionOfSelfDischarge" : {
- "evolutionOfSelfDischargeValue" : -5.842055E37,
- "lastUpdate" : "2025-10-24T12:54:26.171+02:00"
+ "evolutionOfSelfDischargeValue" : -1.8180649E38,
+ "lastUpdate" : "2025-11-17T12:49:10.372+01:00"
},
"RemainingRoundTripEnergyEfficiency" : {
- "remainingRoundTripEnergyEfficiencyValue" : 1.1550909E38,
- "lastUpdate" : "2025-10-24T12:54:26.171+02:00"
+ "remainingRoundTripEnergyEfficiencyValue" : -1.0687386E38,
+ "lastUpdate" : "2025-11-17T12:49:10.372+01:00"
},
"CapacityThroughput" : {
- "capacityThroughputValue" : 6.0614387E37,
- "lastUpdate" : "2025-10-24T12:54:26.170+02:00"
+ "capacityThroughputValue" : 2.9160381E38,
+ "lastUpdate" : "2025-11-17T12:49:10.372+01:00"
},
"RemainingPowerCapability" : {
"remainingPowerCapabilityValue" : {
- "atSoC" : 2.385188E38,
- "powerCapabilityAt" : 2.2399396E38,
- "rPCLastUpdated" : "2025-10-24T12:54:26.171+02:00"
+ "atSoC" : -2.0115788E38,
+ "powerCapabilityAt" : -3.1549398E38,
+ "rPCLastUpdated" : "2025-11-17T12:49:10.372+01:00"
},
- "lastUpdate" : "2025-10-24T12:54:26.171+02:00"
+ "lastUpdate" : "2025-11-17T12:49:10.372+01:00"
},
"NumberOfFullCycles" : {
"numberOfFullCyclesValue" : -179769313486231570000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000,
- "lastUpdate" : "2025-10-24T12:54:26.171+02:00"
+ "lastUpdate" : "2025-11-17T12:49:10.372+01:00"
}
}
\ No newline at end of file
diff --git a/io.admin-shell.idta.batterypass.product_condition/README.md b/io.admin-shell.idta.batterypass.product_condition/README.md
index e034eb7..be6f340 100644
--- a/io.admin-shell.idta.batterypass.product_condition/README.md
+++ b/io.admin-shell.idta.batterypass.product_condition/README.md
@@ -23,7 +23,7 @@ Source Content Hub of the IDTA: [IDTA-02035-5 V1.2]()
# Dependencies
This model is using models or model elements of the BatteryPass Consortium: https://github.com/batterypass/BatteryPassDataModel
-with license CC BY-NC 4.0.
+with license CC BY 4.0.
@@ -45,4 +45,4 @@ Dependencies:
* urn:samm:io.BatteryPass.Performance:1.2.0
Deviations:
-* informationOnAccidents is modelled as a DocumentSet (reuse from SMT HandoverDocumentation), in DIN SPEC 99100 it is described as a Reference to a pdf File.
\ No newline at end of file
+* informationOnAccidents is modelled as a DocumentSet (reuse from SMT HandoverDocumentation), in DIN DKE SPEC 99100 it is described as a Reference to a pdf File.
\ No newline at end of file
diff --git a/io.admin-shell.idta.batterypass.technical_data/1.0.0/TechnicalData.ttl b/io.admin-shell.idta.batterypass.technical_data/1.0.0/TechnicalData.ttl
index 901d62e..3d9138c 100644
--- a/io.admin-shell.idta.batterypass.technical_data/1.0.0/TechnicalData.ttl
+++ b/io.admin-shell.idta.batterypass.technical_data/1.0.0/TechnicalData.ttl
@@ -18,7 +18,7 @@
# SPDX-License-Identifier: CC-BY-4.0
#######################################################################
-#@prefix samm: Overview
+
ratedCapacity
�Rated capacity� is the total number of ampere-hours (Ah) that can be withdrawn from a fully charged battery under reference conditions (see BattReg Annex IV (1)).
+Rated capacity is the total number of ampere-hours (Ah) that can be withdrawn from a fully charged battery under reference conditions (see BattReg Annex IV (1)).
DIN DKE Spec 99100 chapter reference: 6.7.2.2
@@ -700,7 +700,7 @@The capacity fade is the �Decrease over time and upon usage in the amount of charge that a battery can deliver at the rated voltage, with respect to the original rated capacity� (see BattReg Annex IV (2)) as declared by the manufacturer.
+The capacity fade is the Decrease over time and upon usage in the amount of charge that a battery can deliver at the rated voltage, with respect to the original rated capacity (see BattReg Annex IV (2)) as declared by the manufacturer.
DIN DKE Spec 99100 chapter reference: 6.7.2.4
@@ -2243,9 +2243,9 @@�Power fade (in %) means the decrease over time and upon usage in the amount of power that a battery can deliver at the rated voltage.� (see BattReg Annex IV (4)).
+Power fade (in %) means the decrease over time and upon usage in the amount of power that a battery can deliver at the rated voltage. (see BattReg Annex IV (4)).
Power fade should be calculated using original and remaining power capability following the formula below: -Pfade(x) = (1-P(x)) / PBOL" �100" %" +Pfade(x) = (1-P(x)) / PBOL" 100" %" where x is the aging parameter (e.g. storage time, number of cycles, etc.); P(x) is the power capability at aging parameter x; @@ -3331,7 +3331,7 @@
Initial round trip energy efficiency shall be measured at reference conditions that include the specification of �50 % of cycle-life�.
+Initial round trip energy efficiency shall be measured at reference conditions that include the specification of 50 % of cycle-life.
Test methods and reference conditions should separately consider non-cycle applications and batteries with very long cycle-life.
DIN DKE Spec 99100 chapter reference: 6.7.4.3
@@ -3412,7 +3412,7 @@The capacity fade is the �Decrease over time and upon usage in the amount of charge that a battery can deliver at the rated voltage, with respect to the original rated capacity� (see BattReg Annex IV (2)) as declared by the manufacturer.
+The capacity fade is the Decrease over time and upon usage in the amount of charge that a battery can deliver at the rated voltage, with respect to the original rated capacity (see BattReg Annex IV (2)) as declared by the manufacturer.
DIN DKE Spec 99100 chapter reference: 6.7.2.4
diff --git a/io.admin-shell.idta.batterypass.technical_data/1.0.0/gen/TechnicalDataBattery.json b/io.admin-shell.idta.batterypass.technical_data/1.0.0/gen/TechnicalDataBattery.json index 6a2faa4..7303c0b 100644 --- a/io.admin-shell.idta.batterypass.technical_data/1.0.0/gen/TechnicalDataBattery.json +++ b/io.admin-shell.idta.batterypass.technical_data/1.0.0/gen/TechnicalDataBattery.json @@ -9,22 +9,22 @@ "InitialInternalResistanceOnBatteryModule" : 10.0 }, "PowerCapability" : { - "RatioNominalBatteryPowerAndBatteryEnergy" : 1.5213282E38, - "PowerFade" : -7.015649E37, + "RatioNominalBatteryPowerAndBatteryEnergy" : -1.3459633E38, + "PowerFade" : 1.8062715E38, "MaximumPermittedBatteryPower" : "Infinity", "OriginalPowerCapability" : [ { - "atSoC" : 1.7341337E37, - "powerCapabilityAt" : -2.2925729E38 + "atSoC" : -1.95873E38, + "powerCapabilityAt" : -1.4488341E38 } ] }, "CapacityEnergyVoltage" : { - "CertifiedUsableBatteryEnergy" : 3.1516585E37, + "CertifiedUsableBatteryEnergy" : 1.4277476E38, "CapacityFade" : { - "capacityFadeValue" : -8.3394616E37, - "lastUpdate" : "2025-10-24T12:55:06.211+02:00" + "capacityFadeValue" : 2.8539727E38, + "lastUpdate" : "2025-11-17T12:49:36.148+01:00" }, "NominalVoltage" : 4.3, - "RatedCapacity" : 2.2624908E38, + "RatedCapacity" : -2.1056177E38, "MaxVoltage" : 6.0, "MinVoltage" : 2.04 }, @@ -34,16 +34,16 @@ }, "Lifetime" : { "CapacityThresholdExhaustion" : -1.7976931348623157E308, - "CrateOfRelevantCycleLifeTest" : -8.651704E37, - "NumberOfChargeDischargeCycles" : -8614686800807876267, - "ExpectedLifetimeInCalendarYears " : -3481 + "CrateOfRelevantCycleLifeTest" : 6.9033114E35, + "NumberOfChargeDischargeCycles" : -906119171975329752, + "ExpectedLifetimeInCalendarYears " : 2854 }, "RoundTripEnergyEfficiency" : { "InitialRoundTripEnergyEfficiency" : 100, - "RoundTripEnergyEfficiencyAtFiftyofCycleLife" : 2.0009588E37, + "RoundTripEnergyEfficiencyAtFiftyofCycleLife" : -2.6983016E38, "EnergyRoundTripEfficiencyFade" : { - "capacityFadeValue" : -2.3760305E38, - "lastUpdate" : "2025-10-24T12:55:06.211+02:00" + "capacityFadeValue" : 9.551916E37, + "lastUpdate" : "2025-11-17T12:49:36.148+01:00" }, "InitialSelfDischargingRate" : 2 } @@ -62,7 +62,7 @@ } ], "ManufacturerOrderCode" : "JxkyvRnL", "ManufacturerArticleNumber" : "yedUsFwdkelQbxeTeQOvaScfqIOOmaa", - "WarrantyPeriod" : "--10", + "WarrantyPeriod" : "--11", "ManufacturerIdentifier" : "RYtGKbgicZaHCBRQDSx" } } \ No newline at end of file diff --git a/io.admin-shell.idta.batterypass.technical_data/README.md b/io.admin-shell.idta.batterypass.technical_data/README.md index f654174..a6996dd 100644 --- a/io.admin-shell.idta.batterypass.technical_data/README.md +++ b/io.admin-shell.idta.batterypass.technical_data/README.md @@ -107,10 +107,7 @@ to GenerationInformation: * in BatteryPass CurrentSelfDischargingRateValue is float, here InitialSelfDischargingRate is integer. Same for InitialRoundTripEnergyEfficiency, here integer, in BatteryPass for example RemainingRoundTripEnergyEfficiencyValue is float -## Open Questions +### Open issues -### still open properties of Efficiency -### still open properties of Resistance -### for consistency SMC for TemperatureRangeIdleStateBoundaries should be introduced ? -### should be remove optional [ samm:property tech:productClassifications; samm:optional true ] from generic Technical Data? We should if we do not have a recommendation what to add there +* https://github.com/batterypass/BatteryPassDataModel/issues/33 Warrenty VS Warranty (Payload name already Warranty) diff --git a/io.admin-shell.idta.carbon_footprint/1.0.0/CarbonFootprints_shared.ttl b/io.admin-shell.idta.carbon_footprint/1.0.0/CarbonFootprints_shared.ttl index 1170a1e..70f20aa 100644 --- a/io.admin-shell.idta.carbon_footprint/1.0.0/CarbonFootprints_shared.ttl +++ b/io.admin-shell.idta.carbon_footprint/1.0.0/CarbonFootprints_shared.ttl @@ -57,7 +57,7 @@ samm:seeStandards, methods for determining the greenhouse gas emissions of a product.
@@ -2955,7 +2955,7 @@Sum of all greenhouse gas emissions of a product according to the quantification requirements of the standard.
@@ -2964,7 +2964,7 @@Documented Entities.
+ + + +