Hazard | Hazardous Situation | Potential Harms | Severity | Occurrence | Risk |
Battery Depletion | No power or data | Ineffective treatment | 2 | 2 | R1 |
Material Degradation | Medication not delivered properly | Reduced treatment effectiveness | 4 | 4 | R3 |
Biofilm Build up | Feedback malfunction | Incorrect data | 3 | 3 | R2 |
Overheating of Electronics | Discomfort due to heat | Discomfort or potential burns | 2 | 2 | R1 |
Improper Device Assembly | Device malfunction | Reduced treatment efficiency | 4 | 4 | R3 |
Sensor malfunction | Inaccurate feedback | User to be mislead | 3 | 4 | R2 |
Delayed Timing Activation | Delay of treatment | Reduced treatment effectiveness | 5 | 3 | R3 |
Microcontroller Malfunction | No data or improper feedback | User decision inaccuracy | 3 | 3 | R2 |
Note:
R1: Low level of risk
R2: Moderate level of risk
R3: High level of risk
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Rating | Probability of Occurrence | Description |
5 | Frequent | Events are likely to occur during use. |
4 | Occasional | Events may occur during typical use. |
3 | Remote | Event is unlikely but still possible to occur during typical use. |
2 | Rare | Event is very unlikely to occur however it is still possible. |
1 | Very Unlikely | Events are extremely unlikely to occur during typical use, almost impossible. |
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Ratings | Severity of Effect | Consequence | Treatment |
5 | Death | – | – |
4 | Severe Discomfort | Struggles to breathe, speaks in single words; severe wheezing | Hospital Visit |
3 | Moderate Discomfort | Noticeable shortness of breath, audible wheezing, and visible retractions | Hospital Visit for abundant treatment |
2 | Mild Discomfort | Mild Shortness of breath while walking | Self-Treatment |
1 | No Harm | – | – |
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Mitigations (for R3)
Material Degradation due to Cleaning
- Use a corrosion resistant materials
- Select materials made to withstand repeated cleaning cycle
- Degradation resistant materials
- User guidelines for cleaning
- Design a safe and sustainable cleaning solution
- List acceptable cleaning materials that can be used to avoid degradation
Resisdual Risk Evaluation
- Simulating typical cleaning cycles on device materials
- Observe degradation of material
- Ensure risk remains below acceptable level
Improper Device Assembly / Disassembly
- Clear assembly instructions
- Provide step-by-step instructions associated with illustrations to guide users through the assembly/disassembly process
- Design with intuitive assembly
- Implement design principles that ensure the device is assembled correctly
Residual Risk Evaluation
- Conduct a usability test
- Confirm risk of misassembly is at an acceptable level
- Acquire feedback to ensure assembly process is straightforward and intuitive
Delayed Timing of Activation
- Reliable timing mechanism
- Ensure microcontroller is calibrated and rigorously tested to reduce delay
- Program device to reset before the device is activated
Residual Risk Evaluation
- Test timing accuracy
- Confirm delay is minimized
- Risk remains below acceptable