ResidueOnIgnitionChecker
Residue On Ignition
Residue on Ignition Checker — Inorganic residue verification (Ph. Eur. 2.4.15)
ℹ️ The utility verifies residue after ignition for inorganic substances.
ℹ️ Does not use machine learning — rule-based logic only.
⚠️ Not the same as Sulfated Ash (which uses H₂SO₄ for organic materials).
Usage:
ResidueOnIgnitionChecker.exe → demo mode (console output)
ResidueOnIgnitionChecker.exe input.csv output.json → evaluate your data
Input format:
ResiduePercent,LimitPercent,SubstanceName
Example:
0.08,0.1,Calcium Carbonate
0.15,0.2,Magnesium Oxide
0.25,0.2,Zinc Oxide
— WHY IS THIS NEEDED?
Residue on ignition is critical for inorganic substances:
• Reflects non-volatile impurities (other salts, oxides),
• Essential for carbonates, oxides, sulfates,
• Control per Ph. Eur. 2.4.15 is mandatory for all inorganic APIs.
Compliance is critical for registration and GMP release.
input.csv
ResiduePercent,LimitPercent,SubstanceName 0.08,0.1,Calcium Carbonate 0.15,0.2,Magnesium Oxide 0.25,0.2,Zinc Oxide
URS & FS — user requirements and functional specification
This document defines user requirements and functional specification for the quality-control utility. It supports deployment discussion, IQ/OQ preparation and QC workflow integration.
1. Scope
The Residue On Ignition Checker utility is used for Residue On Ignition. The actual input.csv is the source of truth for the input structure; control criteria are defined by the executable and the domain description.
The utility does not use machine learning; decisions are produced by deterministic rules.
Categories: EAEU pharmacopoeia
Tags: dissolution, EAEU, impurities, microbiology, pharmacopoeia, specification
2. Execution modes
ResidueOnIgnitionChecker.exe → demo mode (console output) ResidueOnIgnitionChecker.exe input.csv output.json → evaluate your data
3. Key controlled areas
- dissolution / disintegration
- pH and physicochemical parameters
4. Domain limits and critical parameters
- ⚠️ Not the same as Sulfated Ash (which uses H₂SO₄ for organic materials).
5. URS — user requirements
| ID | Requirement | Criticality | Acceptance criterion |
|---|---|---|---|
| URS-001 | The system shall accept an input.csv file for Residue On Ignition with the exact columns listed in the “Input data contract” section. | High | A file with the correct header is processed without manual editing; missing mandatory columns produce FAIL/import error. |
| URS-002 | The system shall support execution without arguments in demo mode and execution with input.csv output.json for user data. | Medium | Both execution scenarios produce a predictable result or clear diagnostic error. |
| URS-003 | The system shall perform rule-based controls for: dissolution / disintegration, pH and physicochemical parameters. | High | Each controlled parameter receives a status and message; the result does not depend on hidden Excel formulas or ML. |
| URS-004 | The system shall preserve traceability between batch/lot, source values, applied rules and final verdict. | High | Output includes batch identifier, source values, parameter statuses and critical findings. |
| URS-005 | The system shall generate machine-readable output.json for LIMS/ELN/MES, batch record and QA/QC review. | High | JSON contains overall status, check array, warnings, failures and source-file reference. |
| URS-006 | The system shall support use in the client validation package: URS/FS, IQ/OQ preparation, installation and operational scenario checks. | High | The document, test scenarios and reproducible CSV/JSON flow are suitable for audit and internal approval. |
| URS-007 | The system shall clearly separate technical data errors from specification nonconformities. | Medium | Schema/type errors are not mixed with pharmacopoeial deviations and are reported separately. |
6. input.csv data contract
The source of truth for the input schema is the actual input.csv header. Column names are technical identifiers and are not translated.
| # | Column | Type | Unit | Description | Sample | Control rule |
|---|---|---|---|---|---|---|
| 1 | ResiduePercent | decimal | % | Residue % | 0.08 | mandatory numeric value; rule comparison is performed by the utility |
| 2 | LimitPercent | decimal | % | Limit % | 0.1 | mandatory numeric value; rule comparison is performed by the utility |
| 3 | SubstanceName | text | as specified | Substance Name | Calcium Carbonate | mandatory value; format and acceptability are checked by the utility |
CSV example
ResiduePercent,LimitPercent,SubstanceName 0.08,0.1,Calcium Carbonate
7. FS — functional specification
| ID | Function | Implementation description |
|---|---|---|
| FS-001 | CLI entry point | The executable ResidueOnIgnitionChecker.exe supports demo mode and input.csv output.json processing mode. |
| FS-002 | CSV parser | The import module reads CSV, validates header, column presence/order, value count and encoding. Decimal values are expected with a dot separator. |
| FS-003 | Field conversion | Each column is converted to the expected type: identifier, text, decimal number, date/time or boolean flag. |
| FS-004 | Domain rule engine | For Residue On Ignition, explicit rules are applied: range, minimum, maximum, absence of prohibited flag, data completeness or calculation-based check. |
| FS-005 | Criticality handling | Critical violations produce FAIL; non-critical deviations and incomplete data produce WARNING; full conformance produces PASS. |
| FS-006 | JSON writer | output.json stores overall status, per-parameter results, source values, warnings, failures and diagnostic messages. |
| FS-007 | Integration contract | The CSV → JSON format is stable for invocation from LIMS/ELN/MES, scheduled task or wrapper service. |
| FS-008 | Error handling | Schema error, missing file, non-numeric value or JSON write failure returns diagnosable error without silent PASS. |
8. output.json contract
The output file must be suitable for automated processing, audit review and correlation with the source input.csv row.
{
"utility": "ResidueOnIgnitionChecker",
"api": "Residue On Ignition",
"batchNumber": "",
"overallStatus": "PASS|WARNING|FAIL",
"checkedAtUtc": "2026-05-18T00:00:00Z",
"checks": [
{
"parameter": "ResiduePercent",
"value": "0.08",
"unit": "%",
"status": "PASS|WARNING|FAIL",
"message": "Rule-based check result"
},
{
"parameter": "LimitPercent",
"value": "0.1",
"unit": "%",
"status": "PASS|WARNING|FAIL",
"message": "Rule-based check result"
},
{
"parameter": "SubstanceName",
"value": "Calcium Carbonate",
"unit": "as specified",
"status": "PASS|WARNING|FAIL",
"message": "Rule-based check result"
}
],
"criticalFindings": [],
"sourceFile": "input.csv"
}9. OQ/PQ test scenarios
| ID | Scenario | Expected result |
|---|---|---|
| TC-001 | Valid CSV with expected header and sample row | All rows are processed; output contains PASS/WARNING/FAIL and parameter-level detail. |
| TC-002 | A mandatory input.csv column is missing | Import is rejected or the row receives FAIL with schema reference. |
| TC-003 | A numeric field contains text or a blank value | Type conversion error is recorded; the result is not hidden as PASS. |
| TC-004 | A parameter is outside specification or critical limit | Critical parameters produce FAIL; non-critical deviations produce WARNING according to the rule. |
10. QA/QC, CSV and change control
- Before production use, the client records executable version, checksum, specification/monograph version, test CSV, expected JSON and IQ/OQ results.
- Column names must not be changed without updating the validator and test scenarios.
- The source CSV, output.json and utility version should be stored together as an evidence package.
- Any change in control rules must go through change control and repeated OQ scenario verification.
Included in packages
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Package for EAEU pharmacopoeial methods: specifications, dissolution, microbiology, impurities and general tests.
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Open