TianGong PCR产品类别规则

Binoculars, monoculars and other optical telescopes; other astronomical instruments, except instruments for radio-astronomy; compound optical microscopes

Binoculars, monoculars and other optical telescopes; other astronomical instruments, except instruments for radio-astronomy; compound optical microscopes: This PCR…

Lifecycle status
Candidate
Content maturity
Authored methodology
Current version
No published version
Readiness
Review required
Last updated

Methodology and translation states come from the source record; publishing this website does not change their review status.

Content languages

zh-CN · Aligned
Status, classification and source details

Readiness

  • Warnings methodology_not_reviewed Authored methodology is candidate guidance and still requires methodology review.

Classification mapping

CPC 3.0:48314 · exact

Source

1. Scope and Applicability

This PCR covers factory-gate foreground production of optical instruments within CPC 3.0 code 48314: binoculars, monoculars, other optical telescopes, non-radio astronomical instruments, and compound optical microscopes. It applies to a declared model and configuration. It excludes radio-astronomy instruments, simple magnifiers, electron or scanning-probe microscopes, separately sold cameras and detectors, use, maintenance, distribution, and end-of-life. Optical-element fabrication, optomechanical fabrication, and electronics integration are included only when performed inside the reporting foreground; purchased assemblies instead cross the boundary as separately identified product inputs.

2. Product Category Identity

FieldValue
canonical_pcr_idpcr.metal-products-machinery-and-equipment.medical-appliances-precision-and-optical-instruments-watches-and-clocks.binoculars-monoculars-and-other-optical-telescopes-other-astronomical-instruments-excep-73ac0c3f
classification_refsCPC 3.0: 48314
covered_productsBinoculars; monoculars; optical telescopes; non-radio astronomical instruments; compound optical microscopes
excluded_productsRadio-astronomy instruments; electron and scanning-probe microscopes; simple magnifiers; separately sold cameras or detectors
representative_productOne declared, saleable optical instrument model at the factory gate
production_routeConditional in-house optical-element fabrication, optomechanical fabrication, and electronics integration, followed by required assembly, alignment, testing, and final packaging
market_stateFinished, quality-released, factory-gate instrument in its declared shipment configuration

The current official CPC structure establishes the classification boundary (un-cpc-3-0-structure-2025). Manufacturing sources establish that grinding, polishing, centering, cleaning, coating, optomechanical operations, assembly, alignment, and testing are plausible route steps, but they do not establish universal inclusion or numerical defaults (koehler-et-al-2021-optics-manufacturing; tochigi-nikon-lens-manufacturing; tamron-lens-manufacturing).

3. Reference Flow

FieldValue
WhatA quality-released instrument within the declared covered product family and model configuration
How much1 kg net mass of finished instrument
How wellMeets the manufacturer's declared optical, mechanical, electrical, and acceptance-test specifications
How long or cycleAt factory gate; no use-duration equivalence is asserted
reference_flow_linkr24_reference_product
FieldValue
Reference amount1
Reference product flowBinoculars, monoculars and other optical telescopes, other astronomical instruments, except instruments for radio-astronomy, compound optical microscopes d2f8e7e0-b94f-4ea8-a75d-19f3ef90a8c7
Reference flow propertyMass 93a60a56-a3c8-11da-a746-0800200b9a66
Reference unit groupUnits of mass 93a60a57-a4c8-11da-a746-0800200c9a66
Reference unitkg
Required qualifiersinstrument family; model and configuration; optical design; magnification and aperture or numerical aperture; optical material and coating; powered or digital features; included accessories; net instrument mass; shipment packaging status; production geography; technology; reporting period

When constructing a foreground data package, every required qualifier must be declared in dataset metadata, process notes, reference-flow comment, product description, or an equivalent field. Net instrument mass excludes removable shipment packaging; every included packaging component is recorded separately.

4. Measurement and Unit Rules

rule_idApplies toRequired propertyRequired unitRule
reference_massr24_reference_productMass 93a60a56-a3c8-11da-a746-0800200b9a66kgMeasure net mass after quality release and before removable shipment packaging; normalize all exchanges to exactly 1 kg.
material_massMaterial, component, adhesive, packaging, and waste rowsMass 93a60a56-a3c8-11da-a746-0800200b9a66kgUse calibrated mass records; convert supplier units to kg and document moisture, concentration, and gross-to-net corrections when material.
electricity_energyElectricity rowsNet calorific value 93a60a56-a3c8-11da-a746-0800200c9a66MJConvert metered electricity to MJ using 3.6 MJ per kWh; do not combine electricity with fuels, heat, or compressed air.
water_massr03_process_waterMass 93a60a56-a3c8-11da-a746-0800200b9a66kgPrefer direct mass measurement; if volume is measured, document temperature, density, reference conditions, and conversion.
internal_transfer_balanceInternal intermediate input/output pairsMasskgUse the same foreground flow identity and equal normalized quantity on both sides of each internal transfer; purchased substitutes must be separately identified inputs.

5. System Boundary

Boundary Abstraction

FieldValue
declared_starting_conditionPurchased materials, blanks, components, assemblies, electricity, water, adhesive, and packaging as received at the reporting site
starting_condition_roleForeground gate; upstream production and delivery are represented by linked background datasets
product_classification_scopeFinished instruments within the semantic boundary of CPC 3.0 code 48314
recursive_input_ruleA purchased instrument or assembly within the same broad category remains a named purchased product input and must not recursively invoke this PCR inside the same foreground model
upstream_dataset_requirementLink each purchased input and utility to a geographically, technologically, and temporally representative background dataset without duplicating its upstream inventory
disclosureDeclare which conditional processes are in-house, which subassemblies are purchased, facility sharing, coating route, electronics content, packaging configuration, cut-offs, and excluded operations
rule_idApplies toRulesource_ids
boundary_factory_gateall processesInclude all on-site operations from receipt of starting inputs through quality release and final packaging; exclude use, distribution, maintenance, and end-of-life.un-cpc-3-0-structure-2025; tochigi-nikon-lens-manufacturing; tamron-lens-manufacturing
boundary_conditional_routesoptical_element_fabrication; optomechanical_component_fabrication; electronics_integrationInclude a conditional process only when performed within the reporting foreground; otherwise record each purchased replacement assembly as its own input to the first consuming process.koehler-et-al-2021-optics-manufacturing; tochigi-nikon-lens-manufacturing; tamron-lens-manufacturing
boundary_background_separationpurchased inputs and utilitiesDo not repeat extraction, material production, electricity generation, or supplier operations already represented by linked background datasets.eu-pef-2021-method

6. Process Inventory Structure

Process Map

process_idprocess_nameinclusioninclusion_conditionrolequantitative_reference
optical_element_fabricationOptical-element fabricationconditionalPerformed in-house rather than represented by purchased finished optical elementsProduces finished optical elements by grinding, polishing, cleaning, and related finishing1 kg net reference product
optomechanical_component_fabricationOptomechanical-component fabricationconditionalMetal housings, barrels, stages, or mounts are machined in-houseProduces model-specific optomechanical components1 kg net reference product
electronics_integrationElectronics integrationconditionalThe declared model contains powered or digital functions assembled in-houseProduces the configured electronics subassembly1 kg net reference product
instrument_assembly_alignment_testingInstrument assembly, alignment, and testingrequiredAlwaysIntegrates applicable optical, mechanical, and electronic subassemblies and releases an unboxed instrument1 kg net reference product
final_packagingFinal packagingrequiredAlways; zero quantities are permitted only for packaging components demonstrably absentAdds the declared shipment packaging and produces the reference product1 kg net reference product

Process: Optical-element fabrication (optical_element_fabrication)

Inputs

Product flows
Optical glass pressing blank (r01_optical_glass_blank)

Record the net mass of optical glass blanks entering in-house optical-element fabrication.

  • Selected flow: Optical Glass Pressing Blank a68c2948-174f-4e17-a3ee-f2b289d50d18
  • Flow property / unit: Mass / kg
  • Amount rule: Measured received mass minus documented returns and unused carry-over attributable to the reporting period
  • Value mode: Foreground record (foreground_record)
  • Specificity: Product-specific (product_specific)
  • Normalization basis: Per 1 kg net reference product
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_optical_element_fabrication
  • Sources: koehler-et-al-2021-optics-manufacturing; tamron-lens-manufacturing
Electricity for optical-element fabrication (r02_optics_electricity)

Record only electrical energy used by in-house grinding, polishing, cleaning, coating, and supporting equipment within this process boundary.

  • Selected flow: Electricity 890a70b7-b677-4e2a-8a1b-7d017e0a10ae
  • Flow property / unit: Net calorific value / MJ
  • Amount rule: Submetered electricity or allocated equipment electricity under allocation_shared_resources
  • Value mode: Foreground record (foreground_record)
  • Specificity: Site-specific (site_specific)
  • Normalization basis: Per 1 kg net reference product
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_optical_element_fabrication
  • Sources: eu-pef-2021-method; tochigi-nikon-lens-manufacturing; tamron-lens-manufacturing
Process water for optical-element fabrication (r03_process_water)

Record process water entering in-house grinding, polishing, and cleaning; cooling water in a closed loop is recorded only as net make-up water, not recirculated throughput.

  • Selected flow: Process Water 94a04f7e-2d5c-41f0-b182-d54a3b373a02
  • Flow property / unit: Mass / kg
  • Amount rule: Metered or batch-recorded net process-water input, excluding recirculated volume
  • Value mode: Foreground record (foreground_record)
  • Specificity: Site-specific (site_specific)
  • Normalization basis: Per 1 kg net reference product
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_optical_element_fabrication
  • Sources: koehler-et-al-2021-optics-manufacturing; tamron-lens-manufacturing
Cerium oxide polishing material (r04_cerium_oxide)

Record cerium oxide consumed as polishing material when used by the declared route.

  • Selected flow: Cerium oxide b23ee368-01e2-4fcd-8e8f-e8115ee04555
  • Flow property / unit: Mass / kg
  • Amount rule: Inventory withdrawal plus opening stock minus closing stock, corrected for returned unused material
  • Value mode: Foreground record (foreground_record)
  • Specificity: Technology-specific (technology_specific)
  • Normalization basis: Per 1 kg net reference product
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_optical_element_fabrication
  • Sources: tamron-lens-manufacturing
Waste flows
Elementary flows

Outputs

Product flows
Finished optical element (r05_finished_optical_element)

Create a model- and route-specific foreground intermediate flow for finished optical elements transferred to assembly; do not substitute the CPC reference product flow.

  • Selected flow: Finished optical element
  • Flow property / unit: Mass / kg
  • Amount rule: Measured accepted mass transferred to instrument assembly
  • Value mode: Foreground record (foreground_record)
  • Specificity: Product-specific (product_specific)
  • Normalization basis: Per 1 kg net reference product
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_optical_element_fabrication
  • Sources: tochigi-nikon-lens-manufacturing; tamron-lens-manufacturing
Waste flows
Waste polishing media (r06_waste_polishing_media)

Record collected spent polishing media leaving the process for treatment or recovery; exclude material carried in separately measured wastewater.

  • Selected flow: Waste polishing media cdb1838e-d3ec-41e1-87ee-627b9ce95e88
  • Flow property / unit: Mass / kg
  • Amount rule: Measured dispatched waste mass, net of container tare
  • Value mode: Foreground record (foreground_record)
  • Specificity: Site-specific (site_specific)
  • Normalization basis: Per 1 kg net reference product
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_optical_element_fabrication
  • Sources: koehler-et-al-2021-optics-manufacturing; tamron-lens-manufacturing
Optical-process wastewater (r07_optical_process_wastewater)

Record the mixed aqueous waste stream from grinding, polishing, and cleaning only when it crosses the foreground boundary for on-site or off-site treatment.

  • Selected flow: Optical-process wastewater
  • Flow property / unit: Mass / kg
  • Amount rule: Metered discharge mass or measured volume converted with documented density, net of separately recorded recovered water
  • Value mode: Foreground record (foreground_record)
  • Specificity: Site-specific (site_specific)
  • Normalization basis: Per 1 kg net reference product
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_optical_element_fabrication
  • Sources: koehler-et-al-2021-optics-manufacturing; tamron-lens-manufacturing
Elementary flows

Process: Optomechanical-component fabrication (optomechanical_component_fabrication)

Inputs

Product flows
Aluminium alloy stock (r08_aluminium_alloy)

Record aluminium alloy stock entering in-house machining of housings, barrels, stages, or mounts.

  • Selected flow: Aluminium alloy 28b47d6d-68b4-4810-b764-01a1fc1352dc
  • Flow property / unit: Mass / kg
  • Amount rule: Measured issued mass minus documented reusable remnants returned to stock
  • Value mode: Foreground record (foreground_record)
  • Specificity: Product-specific (product_specific)
  • Normalization basis: Per 1 kg net reference product
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_optomechanical_component_fabrication
  • Sources: tochigi-nikon-lens-manufacturing
Electricity for optomechanical fabrication (r09_machining_electricity)

Record electrical energy used by in-house machining and associated process equipment.

  • Selected flow: Electricity 890a70b7-b677-4e2a-8a1b-7d017e0a10ae
  • Flow property / unit: Net calorific value / MJ
  • Amount rule: Submetered electricity or allocated equipment electricity under allocation_shared_resources
  • Value mode: Foreground record (foreground_record)
  • Specificity: Site-specific (site_specific)
  • Normalization basis: Per 1 kg net reference product
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_optomechanical_component_fabrication
  • Sources: eu-pef-2021-method; tochigi-nikon-lens-manufacturing
Waste flows
Elementary flows

Outputs

Product flows
Optomechanical component (r10_optomechanical_component)

Create a model-specific foreground intermediate flow for accepted machined housings, barrels, stages, or mounts transferred to assembly.

  • Selected flow: Optomechanical component
  • Flow property / unit: Mass / kg
  • Amount rule: Measured accepted mass transferred to instrument assembly
  • Value mode: Foreground record (foreground_record)
  • Specificity: Product-specific (product_specific)
  • Normalization basis: Per 1 kg net reference product
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_optomechanical_component_fabrication
  • Sources: tochigi-nikon-lens-manufacturing
Waste flows
Aluminium scrap (r11_aluminium_scrap)

Record aluminium scrap leaving the foreground for recycling or waste treatment, net of internal recirculation.

  • Selected flow: Aluminium Scrap 96c5f842-ea53-419b-b1cd-c02c479efb45
  • Flow property / unit: Mass / kg
  • Amount rule: Measured dispatched scrap mass, net of tare and internally reused chips or remnants
  • Value mode: Foreground record (foreground_record)
  • Specificity: Site-specific (site_specific)
  • Normalization basis: Per 1 kg net reference product
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_optomechanical_component_fabrication
  • Sources: tochigi-nikon-lens-manufacturing
Elementary flows

Process: Electronics integration (electronics_integration)

Inputs

Product flows
Populated instrument-control printed circuit board assembly (r12_populated_pcb_assembly)

Record a purchased populated printed circuit board assembly only for powered or digital models integrated in-house.

  • Selected flow: Populated instrument-control printed circuit board assembly
  • Flow property / unit: Mass / kg
  • Amount rule: Measured accepted mass issued to the reporting model, net of returned defective assemblies
  • Value mode: Foreground record (foreground_record)
  • Specificity: Product-specific (product_specific)
  • Normalization basis: Per 1 kg net reference product
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_electronics_integration
  • Sources:
Electricity for electronics integration (r13_electronics_electricity)

Record electrical energy used for in-house electronics integration and functional testing within this conditional process.

  • Selected flow: Electricity 890a70b7-b677-4e2a-8a1b-7d017e0a10ae
  • Flow property / unit: Net calorific value / MJ
  • Amount rule: Submetered electricity or allocated workstation electricity under allocation_shared_resources
  • Value mode: Foreground record (foreground_record)
  • Specificity: Site-specific (site_specific)
  • Normalization basis: Per 1 kg net reference product
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_electronics_integration
  • Sources: eu-pef-2021-method
Waste flows
Elementary flows

Outputs

Product flows
Electronics subassembly (r14_electronics_subassembly)

Create a configuration-specific foreground intermediate flow for the accepted electronics subassembly transferred to instrument assembly.

  • Selected flow: Electronics subassembly
  • Flow property / unit: Mass / kg
  • Amount rule: Measured accepted mass transferred to instrument assembly
  • Value mode: Foreground record (foreground_record)
  • Specificity: Product-specific (product_specific)
  • Normalization basis: Per 1 kg net reference product
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_electronics_integration
  • Sources:
Waste flows
Elementary flows

Process: Instrument assembly, alignment, and testing (instrument_assembly_alignment_testing)

Inputs

Product flows
Finished optical element input (r15_finished_optical_element_input)

Record the internal transfer from r05_finished_optical_element when optical elements are made in-house. If purchased, add the exact purchased optical-element product input instead of using this internal row.

  • Selected flow: Finished optical element
  • Flow property / unit: Mass / kg
  • Amount rule: Equal to the accepted internal transfer from r05_finished_optical_element
  • Value mode: Foreground record (foreground_record)
  • Specificity: Product-specific (product_specific)
  • Normalization basis: Per 1 kg net reference product
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_instrument_assembly_alignment_testing
  • Sources: tochigi-nikon-lens-manufacturing; tamron-lens-manufacturing
Optomechanical component input (r16_optomechanical_component_input)

Record the internal transfer from r10_optomechanical_component when optomechanical parts are made in-house. If purchased, add each exact purchased component input instead.

  • Selected flow: Optomechanical component
  • Flow property / unit: Mass / kg
  • Amount rule: Equal to the accepted internal transfer from r10_optomechanical_component
  • Value mode: Foreground record (foreground_record)
  • Specificity: Product-specific (product_specific)
  • Normalization basis: Per 1 kg net reference product
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_instrument_assembly_alignment_testing
  • Sources: tochigi-nikon-lens-manufacturing
Electronics subassembly input (r17_electronics_subassembly_input)

For powered or digital models integrated in-house, record the internal transfer from r14_electronics_subassembly; otherwise omit it and record any purchased electronics input by its exact identity.

  • Selected flow: Electronics subassembly
  • Flow property / unit: Mass / kg
  • Amount rule: Equal to the accepted internal transfer from r14_electronics_subassembly when applicable
  • Value mode: Foreground record (foreground_record)
  • Specificity: Product-specific (product_specific)
  • Normalization basis: Per 1 kg net reference product
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_instrument_assembly_alignment_testing
  • Sources:
UV adhesive (r18_uv_adhesive)

Record UV-curing adhesive consumed in optical or mechanical bonding only when used by the declared assembly route.

  • Selected flow: UV adhesive 6fe0476a-94ee-46e6-9d6d-e165a53ccd2a
  • Flow property / unit: Mass / kg
  • Amount rule: Dispensed mass from batch records or opening stock plus receipts minus closing stock and documented returns
  • Value mode: Foreground record (foreground_record)
  • Specificity: Technology-specific (technology_specific)
  • Normalization basis: Per 1 kg net reference product
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_instrument_assembly_alignment_testing
  • Sources: tamron-lens-manufacturing
Electricity for assembly, alignment, and testing (r19_assembly_electricity)

Record electrical energy used by assembly tools, alignment stations, acceptance testing, and directly attributable support equipment.

  • Selected flow: Electricity 890a70b7-b677-4e2a-8a1b-7d017e0a10ae
  • Flow property / unit: Net calorific value / MJ
  • Amount rule: Submetered electricity or equipment power multiplied by logged operating time, with shared use allocated under allocation_shared_resources
  • Value mode: Foreground record (foreground_record)
  • Specificity: Site-specific (site_specific)
  • Normalization basis: Per 1 kg net reference product
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_instrument_assembly_alignment_testing
  • Sources: eu-pef-2021-method; tochigi-nikon-lens-manufacturing
Waste flows
Elementary flows

Outputs

Product flows
Unboxed quality-released instrument (r20_unboxed_instrument)

Create a model-specific foreground intermediate for the instrument that has passed acceptance testing but has not received removable shipment packaging.

  • Selected flow: Unboxed quality-released optical instrument
  • Flow property / unit: Mass / kg
  • Amount rule: Measured net mass transferred to final packaging
  • Value mode: Foreground record (foreground_record)
  • Specificity: Product-specific (product_specific)
  • Normalization basis: Per 1 kg net reference product
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_instrument_assembly_alignment_testing
  • Sources: tochigi-nikon-lens-manufacturing
Waste flows
Elementary flows

Process: Final packaging (final_packaging)

Inputs

Product flows
Unboxed quality-released instrument input (r21_unboxed_instrument_input)

Record the internal transfer from r20_unboxed_instrument; its quantity must equal the net reference-product mass.

  • Selected flow: Unboxed quality-released optical instrument
  • Flow property / unit: Mass / kg
  • Amount rule: Equal to the transfer from r20_unboxed_instrument
  • Value mode: Foreground record (foreground_record)
  • Specificity: Product-specific (product_specific)
  • Normalization basis: Per 1 kg net reference product
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_final_packaging
  • Sources:
Corrugated board box (r22_corrugated_board_box)

Record the net mass of corrugated board boxes included in the declared shipment configuration.

  • Selected flow: corrugated board boxes 4f197bec-7b3b-11dd-ad8b-0800200c9a66
  • Flow property / unit: Mass / kg
  • Amount rule: Packaging bill-of-material mass or measured box mass multiplied by units used, net of reused boxes
  • Value mode: Foreground record (foreground_record)
  • Specificity: Product-specific (product_specific)
  • Normalization basis: Per 1 kg net reference product
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_final_packaging
  • Sources:
Polyethylene foam cushioning insert (r23_polyethylene_foam_insert)

Record polyethylene foam cushioning inserts only when included in the declared shipment configuration.

  • Selected flow: Polyethylene foam cushioning insert
  • Flow property / unit: Mass / kg
  • Amount rule: Packaging bill-of-material mass or measured insert mass multiplied by units used
  • Value mode: Foreground record (foreground_record)
  • Specificity: Product-specific (product_specific)
  • Normalization basis: Per 1 kg net reference product
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Collected record (collected_record)
  • Collection protocol: cp_final_packaging
  • Sources:
Waste flows
Elementary flows

Outputs

Product flows
Reference product (r24_reference_product)

Record exactly 1 kg net mass of the declared quality-released instrument; removable shipment packaging is not included in this amount.

  • Selected flow: Binoculars, monoculars and other optical telescopes, other astronomical instruments, except instruments for radio-astronomy, compound optical microscopes d2f8e7e0-b94f-4ea8-a75d-19f3ef90a8c7
  • Flow property / unit: Mass / kg
  • Amount rule: Fixed at 1 kg after normalization from measured net finished-instrument mass
  • Value mode: Fixed value (fixed_value)
  • Specificity: Product-specific (product_specific)
  • Normalization basis: 1 kg net reference product
  • Basis kind: Reference flow (reference_flow)
  • Evidence kind: Method formula (method_formula)
  • Collection protocol: cp_final_packaging
  • Sources: un-cpc-3-0-structure-2025
Waste flows
Elementary flows

7. Allocation and Co-product Handling

rule_idApplies toRulesource_ids
allocation_avoidanceall processesCollect model-, batch-, line-, or equipment-specific data and subdivide processes whenever feasible, avoiding allocation.eu-pef-2021-method
allocation_shared_resourcesshared electricity, water, consumables, and facility servicesAllocate by a documented physical causal driver: metered consumption first, then equipment operating time multiplied by rated or measured demand, then batch processing time or mass only when demonstrably causal. Never allocate by revenue without showing that no physical relationship is practicable.eu-pef-2021-method
allocation_recycling_outputsr06_waste_polishing_media; r11_aluminium_scrapRecord the measured waste output at the foreground boundary without avoided-burden credit. Link downstream treatment or recycling consistently; disclose any alternative recycling convention outside this PCR result.eu-pef-2021-method
allocation_internal_transfersr05_finished_optical_element; r10_optomechanical_component; r14_electronics_subassembly; r20_unboxed_instrument and paired inputsInternal transfers receive no independent environmental burden or co-product allocation; burdens remain in their producing foreground processes and transfer quantities must balance.

8. Foreground Data Collection, Calculation, and Quality Rules

Data Collection Protocols

protocol_idprocess_idflow_rolerecord_typeraw_fieldscollection_methodunitfrequencytemporal_coveragesite_scopeaggregation_rulequality_evidence
cp_optical_element_fabricationoptical_element_fabricationall inputs and outputsmeter, stock, transfer, and waste recordstimestamps; batch/model; opening/receipts/issues/returns/closing; meter readings; output and waste massReconcile batch and period records for the exact in-house routekg; MJPer batch with monthly reconciliationRepresentative continuous 12-month period or justified production campaignReporting site and declared equipmentSum valid records, subtract returns and carry-over, allocate shared resources, then divide by net reference-product kgCalibration, invoices, stock ledgers, meter logs, transfer tickets, waste manifests
cp_optomechanical_component_fabricationoptomechanical_component_fabricationall inputs and outputsstock issue, meter, transfer, and scrap recordstimestamps; alloy grade; issued/returned mass; meter readings; accepted output; scrap massReconcile issued stock, accepted transfers, and dispatched scrapkg; MJPer batch with monthly reconciliationRepresentative continuous 12-month period or justified production campaignReporting site and declared machinesSum attributable records and normalize by net reference-product kgScale calibration, stock ledger, machine logs, scrap tickets
cp_electronics_integrationelectronics_integrationall inputs and outputspurchase issue, meter, and transfer recordstimestamps; assembly part number; issued/returned mass; meter readings; accepted outputReconcile accepted purchased boards, workstation energy, and internal transferskg; MJPer batchRepresentative continuous 12-month period or justified production campaignReporting site and declared workstationsSum attributable records and normalize by net reference-product kgBOM, receiving records, meter or equipment logs, test and transfer records
cp_instrument_assembly_alignment_testinginstrument_assembly_alignment_testingall inputs and outputstransfer, dispensing, meter, and acceptance recordstimestamps; model/configuration; transferred masses; adhesive stock or dispensing; energy; accepted and rejected unitsReconcile internal or purchased components, adhesive, energy, and accepted outputkg; MJPer production batchRepresentative continuous 12-month period or justified production campaignReporting assembly and test siteSum attributable records, apply documented physical allocation, divide by accepted net instrument massBOM, batch traveler, dispensing records, meter logs, alignment and acceptance-test records
cp_final_packagingfinal_packagingproduct and packaging inputs; reference outputtransfer, BOM, scale, and packaging issue recordsmodel/configuration; unboxed mass; packaging component/count/mass; finished net massReconcile unboxed transfer, exact shipment configuration, and net reference outputkgPer packaging configuration and batchSame period as assembly recordsReporting packaging siteSum each atomic packaging component separately; set normalized net reference output to 1 kgApproved packaging BOM, scale calibration, issue records, finished-goods release

Calculation Rules

rule_idApplies toFormula or ruleInputsOutputsource_ids
normalize_to_reference_massall inventory rowsnormalized amount = attributable period amount / accepted net instrument mass in the same periodattributable exchange amount; accepted net instrument massexchange per 1 kg net reference product
convert_electricity_to_mjr02_optics_electricity; r09_machining_electricity; r13_electronics_electricity; r19_assembly_electricityMJ = metered kWh × 3.6metered or calculated kWhMJ electricity
calculate_stock_consumptionstock-accounted materialsconsumption = opening stock + receipts − closing stock − documented returns or transfers outside the studied productionreconciled stock recordskg consumed
balance_internal_transferspaired internal intermediate rowsproducing-process output quantity = consuming-process input quantity after common normalizationpaired output and input recordsbalanced kg transfer

Data Quality Requirements

requirement_idApplies toRequirementEvidence
dq_identityreference product and all purchased inputsPreserve exact flow identity, property, unit, geography, technology, supplier state, and product-state qualifiers; unresolved UUIDs remain explicit.Direct-read UUID audit, BOM, supplier specification, and dataset metadata
dq_temporalall foreground dataPrefer one representative continuous 12-month period; justify campaigns, extrapolation, shutdowns, rework, and abnormal production.Dated source records and production log
dq_meteringelectricity and waterUse calibrated submeters where feasible; disclose estimation, allocation driver, meter boundary, and conversion assumptions.Calibration certificate, meter map, readings, and calculation sheet
dq_mass_balancematerial-processing and internal-transfer processesReconcile material inputs with accepted output, waste, stock change, and documented losses; investigate material discrepancies.Signed mass-balance worksheet and source records
dq_route_disclosureall conditional processesState included and excluded routes, purchased substitutes, coating route, powered/digital content, and packaging configuration.Process map, BOM, supplier list, and dataset comment

9. Validation Rules

rule_idApplies toRulesource_ids
validate_reference_flowreference productExactly one quantitative reference must resolve to UUID d2f8e7e0-b94f-4ea8-a75d-19f3ef90a8c7, Mass, kg, and an amount of 1 after normalization; all required qualifiers must be declared.un-cpc-3-0-structure-2025
validate_atomic_inventoryall inventory rowsEvery row must be one atomic exchange; UUID-empty rows must remain explicitly unresolved and no category label may replace a concrete flow.
validate_conditional_routesconditional processesEach conditional process must be marked included or not applicable with evidence; when excluded, its internally produced intermediates must not be counted and exact purchased substitutes must be added.tochigi-nikon-lens-manufacturing; tamron-lens-manufacturing
validate_internal_transfer_balancepaired internal intermediatesIncluded internal output/input pairs must use the same foreground identity and equal normalized mass; no background burden may be attached twice.
validate_electricity_separationelectricity rowsElectricity must be reported in MJ and separately for each applicable process; fuels, heat, and compressed air must not be combined with it.eu-pef-2021-method
validate_packaging_and_net_massfinal packagingReference amount must exclude removable shipment packaging, while each included packaging component is separately reported; absent components require configuration evidence.
validate_allocationshared resources and waste outputsEvery non-direct assignment must identify the quantity, physical driver, records, formula, and affected products; waste outputs receive no avoided-burden credit in the foreground result.eu-pef-2021-method
validate_rangesall inventory rowsNo numerical default or QA range may be inferred from this PCR; any added range requires verified boundary-compatible evidence and source identifiers.

10. Published Dataset Profile

FieldValue
dataset_roleFactory-gate foreground production dataset for one declared optical-instrument model and configuration
downstream_useConstruction of TianGong foreground data packages and downstream process or lifecycle-model projections
allowed_useModel-specific comparison or contribution analysis when functional performance, configuration, boundary, geography, technology, period, and data quality are compatible
excluded_useUniversal product-family average; use-phase or lifetime comparison; radio-astronomy, electron-microscope, or separately sold component claims; unsupported numerical defaults
required_metadataRequired reference qualifiers; site and period; included conditional routes; purchased assemblies; coating route; electronics content; packaging configuration; background links; allocation; cut-offs
required_quality_disclosurePrimary-data coverage, metering and estimation shares, mass-balance closure, unresolved flow identities, allocation drivers, data gaps, and deviations from this PCR
update_triggerMaterial change in model configuration, optical design, mass, manufacturing route, supplier, site, energy mix, electronics, packaging, allocation, or reporting period

11. Data Sources

Source idTypeReferenceUsed for
un-cpc-3-0-structure-2025official_guidanceUnited Nations Statistics Division, CPC Version 3.0 Structure, 30 June 2025, https://unstats.un.org/unsd/classifications/Econ/Download/In%20Text/CPC_Ver_3.0_Structure_30Jun2025.csvOfficial CPC 48314 English identity and classification boundary
un-cpc-1-1-chineseofficial_guidanceUnited Nations Statistics Division, Central Product Classification Version 1.1, Chinese, https://unstats.un.org/unsd/publication/SeriesM/M_77ver1_1c.pdfVerified professional Chinese rendering of the product-category wording
koehler-et-al-2021-optics-manufacturingliteratureKöhler et al., “Quantification of Carbonic Contamination of Fused Silica Surfaces at Different Stages of Classical Optics Manufacturing,” Materials 14(7), 1620, 2021, https://doi.org/10.3390/ma14071620Classical optical grinding, lapping, polishing, water, coolant, and polishing-media process relevance
tochigi-nikon-lens-manufacturingextension_guidanceTochigi Nikon, “NIKKOR Lens Work Process (ニッコールレンズ作業工程),” https://www.jp.nikon.com/company/corporate/group/ktn/businesses/imaging/process/Grinding, fine grinding, polishing, coating, barrel-component machining, electronics/FPC integration, assembly, operational checks, and final optical inspection route decomposition
tamron-lens-manufacturingextension_guidanceTamron, “Lens Manufacturing Process,” https://www.tamron.com/global/monozukuri/tour/content.htmlFine grinding, coolant circulation, polishing, cleaning, purified water, vacuum deposition, centering, and bonding route decomposition
eu-pef-2021-methodofficial_guidanceEuropean Commission Recommendation (EU) 2021/2279, Annex I, Product Environmental Footprint Method, https://environment.ec.europa.eu/system/files/2021-12/Annexes%201%20to%202.pdfSpecific energy metering, subdivision, physical-causality allocation, and foreground/background consistency

Raw downloads

These files are byte-identical to the canonical files for this revision in the repository.

Structured rule index

This index comes from verified structured.yaml and retains the canonical English rule text.

System boundary rules · 3
Rule IDApplies toRuleSource IDs
boundary_factory_gateall processesInclude all on-site operations from receipt of starting inputs through quality release and final packaging; exclude use, distribution, maintenance, and end-of-life.un-cpc-3-0-structure-2025, tochigi-nikon-lens-manufacturing, tamron-lens-manufacturing
boundary_conditional_routesoptical_element_fabrication; optomechanical_component_fabrication; electronics_integrationInclude a conditional process only when performed within the reporting foreground; otherwise record each purchased replacement assembly as its own input to the first consuming process.koehler-et-al-2021-optics-manufacturing, tochigi-nikon-lens-manufacturing, tamron-lens-manufacturing
boundary_background_separationpurchased inputs and utilitiesDo not repeat extraction, material production, electricity generation, or supplier operations already represented by linked background datasets.eu-pef-2021-method
Allocation rules · 4
Rule IDApplies toRuleSource IDs
allocation_avoidanceall processesCollect model-, batch-, line-, or equipment-specific data and subdivide processes whenever feasible, avoiding allocation.eu-pef-2021-method
allocation_shared_resourcesshared electricity, water, consumables, and facility servicesAllocate by a documented physical causal driver: metered consumption first, then equipment operating time multiplied by rated or measured demand, then batch processing time or mass only when demonstrably causal. Never allocate by revenue without showing that no physical relationship is practicable.eu-pef-2021-method
allocation_recycling_outputsr06_waste_polishing_media; r11_aluminium_scrapRecord the measured waste output at the foreground boundary without avoided-burden credit. Link downstream treatment or recycling consistently; disclose any alternative recycling convention outside this PCR result.eu-pef-2021-method
allocation_internal_transfersr05_finished_optical_element; r10_optomechanical_component; r14_electronics_subassembly; r20_unboxed_instrument and paired inputsInternal transfers receive no independent environmental burden or co-product allocation; burdens remain in their producing foreground processes and transfer quantities must balance.
Validation rules · 8
Rule IDApplies toRuleSource IDs
validate_reference_flowreference productExactly one quantitative reference must resolve to UUID d2f8e7e0-b94f-4ea8-a75d-19f3ef90a8c7, Mass, kg, and an amount of 1 after normalization; all required qualifiers must be declared.un-cpc-3-0-structure-2025
validate_atomic_inventoryall inventory rowsEvery row must be one atomic exchange; UUID-empty rows must remain explicitly unresolved and no category label may replace a concrete flow.
validate_conditional_routesconditional processesEach conditional process must be marked included or not applicable with evidence; when excluded, its internally produced intermediates must not be counted and exact purchased substitutes must be added.tochigi-nikon-lens-manufacturing, tamron-lens-manufacturing
validate_internal_transfer_balancepaired internal intermediatesIncluded internal output/input pairs must use the same foreground identity and equal normalized mass; no background burden may be attached twice.
validate_electricity_separationelectricity rowsElectricity must be reported in MJ and separately for each applicable process; fuels, heat, and compressed air must not be combined with it.eu-pef-2021-method
validate_packaging_and_net_massfinal packagingReference amount must exclude removable shipment packaging, while each included packaging component is separately reported; absent components require configuration evidence.
validate_allocationshared resources and waste outputsEvery non-direct assignment must identify the quantity, physical driver, records, formula, and affected products; waste outputs receive no avoided-burden credit in the foreground result.eu-pef-2021-method
validate_rangesall inventory rowsNo numerical default or QA range may be inferred from this PCR; any added range requires verified boundary-compatible evidence and source identifiers.
Processes and inputs/outputs · 5
Process IDProcess nameInput flowsOutput flows
optical_element_fabricationOptical-element fabrication43
optomechanical_component_fabricationOptomechanical-component fabrication22
electronics_integrationElectronics integration21
instrument_assembly_alignment_testingInstrument assembly, alignment, and testing51
final_packagingFinal packaging31

Complete field inspector

Loads this record’s complete manifest and structured projection on demand; values are never truncated. Requires JavaScript.

On this page

1. Scope and Applicability2. Product Category Identity3. Reference Flow4. Measurement and Unit Rules5. System BoundaryBoundary Abstraction6. Process Inventory StructureProcess MapProcess: Optical-element fabrication (optical_element_fabrication)InputsProduct flowsOptical glass pressing blank (r01_optical_glass_blank)Electricity for optical-element fabrication (r02_optics_electricity)Process water for optical-element fabrication (r03_process_water)Cerium oxide polishing material (r04_cerium_oxide)Waste flowsElementary flowsOutputsProduct flowsFinished optical element (r05_finished_optical_element)Waste flowsWaste polishing media (r06_waste_polishing_media)Optical-process wastewater (r07_optical_process_wastewater)Elementary flowsProcess: Optomechanical-component fabrication (optomechanical_component_fabrication)InputsProduct flowsAluminium alloy stock (r08_aluminium_alloy)Electricity for optomechanical fabrication (r09_machining_electricity)Waste flowsElementary flowsOutputsProduct flowsOptomechanical component (r10_optomechanical_component)Waste flowsAluminium scrap (r11_aluminium_scrap)Elementary flowsProcess: Electronics integration (electronics_integration)InputsProduct flowsPopulated instrument-control printed circuit board assembly (r12_populated_pcb_assembly)Electricity for electronics integration (r13_electronics_electricity)Waste flowsElementary flowsOutputsProduct flowsElectronics subassembly (r14_electronics_subassembly)Waste flowsElementary flowsProcess: Instrument assembly, alignment, and testing (instrument_assembly_alignment_testing)InputsProduct flowsFinished optical element input (r15_finished_optical_element_input)Optomechanical component input (r16_optomechanical_component_input)Electronics subassembly input (r17_electronics_subassembly_input)UV adhesive (r18_uv_adhesive)Electricity for assembly, alignment, and testing (r19_assembly_electricity)Waste flowsElementary flowsOutputsProduct flowsUnboxed quality-released instrument (r20_unboxed_instrument)Waste flowsElementary flowsProcess: Final packaging (final_packaging)InputsProduct flowsUnboxed quality-released instrument input (r21_unboxed_instrument_input)Corrugated board box (r22_corrugated_board_box)Polyethylene foam cushioning insert (r23_polyethylene_foam_insert)Waste flowsElementary flowsOutputsProduct flowsReference product (r24_reference_product)Waste flowsElementary flows7. Allocation and Co-product Handling8. Foreground Data Collection, Calculation, and Quality RulesData Collection ProtocolsCalculation RulesData Quality Requirements9. Validation Rules10. Published Dataset Profile11. Data Sources