| Facility failed to meet the following Requirement(s): | Corrected Date | Level of Harm | Residents Affected |
| |
| | |
| |
| | |
| Building Construction Type and Height
2012 EXISTING
Building construction type and stories meets Table 19.1.6.1, unless otherwise permitted by 19.1.6.2 through 19.1.6.7
19.1.6.4, 19.1.6.5
Construction Type
1 I (442), I (332), II (222) Any number of stories
non-sprinklered and sprinklered
2 II (111) One story non-sprinklered
Maximum 3 stories sprinklered
3 II (000) Not allowed non-sprinklered
4 III (211) Maximum 2 stories sprinklered
5 IV (2HH)
6 V (111)
7 III (200) Not allowed non-sprinklered
8 V (000) Maximum 1 story sprinklered
Sprinklered stories must be sprinklered throughout by an approved, supervised automatic system in accordance with section 9.7. (See 19.3.5)
Give a brief description, in REMARKS, of the construction, the number of stories, including basements, floors on which patients are located, location of smoke or fire barriers and dates of approval. Complete sketch or attach small floor plan of the building as appropriate. |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Some |
| Building Construction Type and Height
2012 EXISTING
Building construction type and stories meets Table 19.1.6.1, unless otherwise permitted by 19.1.6.2 through 19.1.6.7
19.1.6.4, 19.1.6.5
Construction Type
1 I (442), I (332), II (222) Any number of stories
non-sprinklered and sprinklered
2 II (111) One story non-sprinklered
Maximum 3 stories sprinklered
3 II (000) Not allowed non-sprinklered
4 III (211) Maximum 2 stories sprinklered
5 IV (2HH)
6 V (111)
7 III (200) Not allowed non-sprinklered
8 V (000) Maximum 1 story sprinklered
Sprinklered stories must be sprinklered throughout by an approved, supervised automatic system in accordance with section 9.7. (See 19.3.5)
Give a brief description, in REMARKS, of the construction, the number of stories, including basements, floors on which patients are located, location of smoke or fire barriers and dates of approval. Complete sketch or attach small floor plan of the building as appropriate. |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Some |
| Building Construction Type and Height
2012 EXISTING
Building construction type and stories meets Table 19.1.6.1, unless otherwise permitted by 19.1.6.2 through 19.1.6.7
19.1.6.4, 19.1.6.5
Construction Type
1 I (442), I (332), II (222) Any number of stories
non-sprinklered and sprinklered
2 II (111) One story non-sprinklered
Maximum 3 stories sprinklered
3 II (000) Not allowed non-sprinklered
4 III (211) Maximum 2 stories sprinklered
5 IV (2HH)
6 V (111)
7 III (200) Not allowed non-sprinklered
8 V (000) Maximum 1 story sprinklered
Sprinklered stories must be sprinklered throughout by an approved, supervised automatic system in accordance with section 9.7. (See 19.3.5)
Give a brief description, in REMARKS, of the construction, the number of stories, including basements, floors on which patients are located, location of smoke or fire barriers and dates of approval. Complete sketch or attach small floor plan of the building as appropriate. |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Some |
| Building Construction Type and Height
2012 EXISTING
Building construction type and stories meets Table 19.1.6.1, unless otherwise permitted by 19.1.6.2 through 19.1.6.7
19.1.6.4, 19.1.6.5
Construction Type
1 I (442), I (332), II (222) Any number of stories
non-sprinklered and sprinklered
2 II (111) One story non-sprinklered
Maximum 3 stories sprinklered
3 II (000) Not allowed non-sprinklered
4 III (211) Maximum 2 stories sprinklered
5 IV (2HH)
6 V (111)
7 III (200) Not allowed non-sprinklered
8 V (000) Maximum 1 story sprinklered
Sprinklered stories must be sprinklered throughout by an approved, supervised automatic system in accordance with section 9.7. (See 19.3.5)
Give a brief description, in REMARKS, of the construction, the number of stories, including basements, floors on which patients are located, location of smoke or fire barriers and dates of approval. Complete sketch or attach small floor plan of the building as appropriate. |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Some |
| Building Construction Type and Height
2012 EXISTING
Building construction type and stories meets Table 19.1.6.1, unless otherwise permitted by 19.1.6.2 through 19.1.6.7
19.1.6.4, 19.1.6.5
Construction Type
1 I (442), I (332), II (222) Any number of stories
non-sprinklered and sprinklered
2 II (111) One story non-sprinklered
Maximum 3 stories sprinklered
3 II (000) Not allowed non-sprinklered
4 III (211) Maximum 2 stories sprinklered
5 IV (2HH)
6 V (111)
7 III (200) Not allowed non-sprinklered
8 V (000) Maximum 1 story sprinklered
Sprinklered stories must be sprinklered throughout by an approved, supervised automatic system in accordance with section 9.7. (See 19.3.5)
Give a brief description, in REMARKS, of the construction, the number of stories, including basements, floors on which patients are located, location of smoke or fire barriers and dates of approval. Complete sketch or attach small floor plan of the building as appropriate. |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Some |
| Building Construction Type and Height
2012 EXISTING
Building construction type and stories meets Table 19.1.6.1, unless otherwise permitted by 19.1.6.2 through 19.1.6.7
19.1.6.4, 19.1.6.5
Construction Type
1 I (442), I (332), II (222) Any number of stories
non-sprinklered and sprinklered
2 II (111) One story non-sprinklered
Maximum 3 stories sprinklered
3 II (000) Not allowed non-sprinklered
4 III (211) Maximum 2 stories sprinklered
5 IV (2HH)
6 V (111)
7 III (200) Not allowed non-sprinklered
8 V (000) Maximum 1 story sprinklered
Sprinklered stories must be sprinklered throughout by an approved, supervised automatic system in accordance with section 9.7. (See 19.3.5)
Give a brief description, in REMARKS, of the construction, the number of stories, including basements, floors on which patients are located, location of smoke or fire barriers and dates of approval. Complete sketch or attach small floor plan of the building as appropriate. |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Some |
| Building Construction Type and Height
2012 EXISTING
Building construction type and stories meets Table 19.1.6.1, unless otherwise permitted by 19.1.6.2 through 19.1.6.7
19.1.6.4, 19.1.6.5
Construction Type
1 I (442), I (332), II (222) Any number of stories
non-sprinklered and sprinklered
2 II (111) One story non-sprinklered
Maximum 3 stories sprinklered
3 II (000) Not allowed non-sprinklered
4 III (211) Maximum 2 stories sprinklered
5 IV (2HH)
6 V (111)
7 III (200) Not allowed non-sprinklered
8 V (000) Maximum 1 story sprinklered
Sprinklered stories must be sprinklered throughout by an approved, supervised automatic system in accordance with section 9.7. (See 19.3.5)
Give a brief description, in REMARKS, of the construction, the number of stories, including basements, floors on which patients are located, location of smoke or fire barriers and dates of approval. Complete sketch or attach small floor plan of the building as appropriate. |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Some |
| Building Construction Type and Height
2012 EXISTING
Building construction type and stories meets Table 19.1.6.1, unless otherwise permitted by 19.1.6.2 through 19.1.6.7
19.1.6.4, 19.1.6.5
Construction Type
1 I (442), I (332), II (222) Any number of stories
non-sprinklered and sprinklered
2 II (111) One story non-sprinklered
Maximum 3 stories sprinklered
3 II (000) Not allowed non-sprinklered
4 III (211) Maximum 2 stories sprinklered
5 IV (2HH)
6 V (111)
7 III (200) Not allowed non-sprinklered
8 V (000) Maximum 1 story sprinklered
Sprinklered stories must be sprinklered throughout by an approved, supervised automatic system in accordance with section 9.7. (See 19.3.5)
Give a brief description, in REMARKS, of the construction, the number of stories, including basements, floors on which patients are located, location of smoke or fire barriers and dates of approval. Complete sketch or attach small floor plan of the building as appropriate. |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Some |
| Fire Alarm System - Testing and Maintenance
A fire alarm system is tested and maintained in accordance with an approved program complying with the requirements of NFPA 70, National Electric Code, and NFPA 72, National Fire Alarm and Signaling Code. Records of system acceptance, maintenance and testing are readily available.
9.6.1.3, 9.6.1.5, NFPA 70, NFPA 72 |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Many |
| Fire Alarm System - Testing and Maintenance
A fire alarm system is tested and maintained in accordance with an approved program complying with the requirements of NFPA 70, National Electric Code, and NFPA 72, National Fire Alarm and Signaling Code. Records of system acceptance, maintenance and testing are readily available.
9.6.1.3, 9.6.1.5, NFPA 70, NFPA 72 |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Many |
| Fire Alarm System - Testing and Maintenance
A fire alarm system is tested and maintained in accordance with an approved program complying with the requirements of NFPA 70, National Electric Code, and NFPA 72, National Fire Alarm and Signaling Code. Records of system acceptance, maintenance and testing are readily available.
9.6.1.3, 9.6.1.5, NFPA 70, NFPA 72 |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Many |
| Fire Alarm System - Testing and Maintenance
A fire alarm system is tested and maintained in accordance with an approved program complying with the requirements of NFPA 70, National Electric Code, and NFPA 72, National Fire Alarm and Signaling Code. Records of system acceptance, maintenance and testing are readily available.
9.6.1.3, 9.6.1.5, NFPA 70, NFPA 72 |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Many |
| Fire Alarm System - Testing and Maintenance
A fire alarm system is tested and maintained in accordance with an approved program complying with the requirements of NFPA 70, National Electric Code, and NFPA 72, National Fire Alarm and Signaling Code. Records of system acceptance, maintenance and testing are readily available.
9.6.1.3, 9.6.1.5, NFPA 70, NFPA 72 |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Many |
| Fire Alarm System - Testing and Maintenance
A fire alarm system is tested and maintained in accordance with an approved program complying with the requirements of NFPA 70, National Electric Code, and NFPA 72, National Fire Alarm and Signaling Code. Records of system acceptance, maintenance and testing are readily available.
9.6.1.3, 9.6.1.5, NFPA 70, NFPA 72 |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Many |
| Fire Alarm System - Testing and Maintenance
A fire alarm system is tested and maintained in accordance with an approved program complying with the requirements of NFPA 70, National Electric Code, and NFPA 72, National Fire Alarm and Signaling Code. Records of system acceptance, maintenance and testing are readily available.
9.6.1.3, 9.6.1.5, NFPA 70, NFPA 72 |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Many |
| Fire Alarm System - Testing and Maintenance
A fire alarm system is tested and maintained in accordance with an approved program complying with the requirements of NFPA 70, National Electric Code, and NFPA 72, National Fire Alarm and Signaling Code. Records of system acceptance, maintenance and testing are readily available.
9.6.1.3, 9.6.1.5, NFPA 70, NFPA 72 |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Many |
| Corridor - Doors
Doors protecting corridor openings in other than required enclosures of vertical openings, exits, or hazardous areas resist the passage of smoke and are made of 1 3/4 inch solid-bonded core wood or other material capable of resisting fire for at least 20 minutes. Doors in fully sprinklered smoke compartments are only required to resist the passage of smoke. Corridor doors and doors to rooms containing flammable or combustible materials have positive latching hardware. Roller latches are prohibited by CMS regulation. These requirements do not apply to auxiliary spaces that do not contain flammable or combustible material.
Clearance between bottom of door and floor covering is not exceeding 1 inch. Powered doors complying with 7.2.1.9 are permissible if provided with a device capable of keeping the door closed when a force of 5 lbf is applied. There is no impediment to the closing of the doors. Hold open devices that release when the door is pushed or pulled are permitted. Nonrated protective plates of unlimited height are permitted. Dutch doors meeting 19.3.6.3.6 are permitted. Door frames shall be labeled and made of steel or other materials in compliance with 8.3, unless the smoke compartment is sprinklered. Fixed fire window assemblies are allowed per 8.3. In sprinklered compartments there are no restrictions in area or fire resistance of glass or frames in window assemblies.
19.3.6.3, 42 CFR Parts 403, 418, 460, 482, 483, and 485
Show in REMARKS details of doors such as fire protection ratings, automatics closing devices, etc. |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Some |
| Corridor - Doors
Doors protecting corridor openings in other than required enclosures of vertical openings, exits, or hazardous areas resist the passage of smoke and are made of 1 3/4 inch solid-bonded core wood or other material capable of resisting fire for at least 20 minutes. Doors in fully sprinklered smoke compartments are only required to resist the passage of smoke. Corridor doors and doors to rooms containing flammable or combustible materials have positive latching hardware. Roller latches are prohibited by CMS regulation. These requirements do not apply to auxiliary spaces that do not contain flammable or combustible material.
Clearance between bottom of door and floor covering is not exceeding 1 inch. Powered doors complying with 7.2.1.9 are permissible if provided with a device capable of keeping the door closed when a force of 5 lbf is applied. There is no impediment to the closing of the doors. Hold open devices that release when the door is pushed or pulled are permitted. Nonrated protective plates of unlimited height are permitted. Dutch doors meeting 19.3.6.3.6 are permitted. Door frames shall be labeled and made of steel or other materials in compliance with 8.3, unless the smoke compartment is sprinklered. Fixed fire window assemblies are allowed per 8.3. In sprinklered compartments there are no restrictions in area or fire resistance of glass or frames in window assemblies.
19.3.6.3, 42 CFR Parts 403, 418, 460, 482, 483, and 485
Show in REMARKS details of doors such as fire protection ratings, automatics closing devices, etc. |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Some |
| Corridor - Doors
Doors protecting corridor openings in other than required enclosures of vertical openings, exits, or hazardous areas resist the passage of smoke and are made of 1 3/4 inch solid-bonded core wood or other material capable of resisting fire for at least 20 minutes. Doors in fully sprinklered smoke compartments are only required to resist the passage of smoke. Corridor doors and doors to rooms containing flammable or combustible materials have positive latching hardware. Roller latches are prohibited by CMS regulation. These requirements do not apply to auxiliary spaces that do not contain flammable or combustible material.
Clearance between bottom of door and floor covering is not exceeding 1 inch. Powered doors complying with 7.2.1.9 are permissible if provided with a device capable of keeping the door closed when a force of 5 lbf is applied. There is no impediment to the closing of the doors. Hold open devices that release when the door is pushed or pulled are permitted. Nonrated protective plates of unlimited height are permitted. Dutch doors meeting 19.3.6.3.6 are permitted. Door frames shall be labeled and made of steel or other materials in compliance with 8.3, unless the smoke compartment is sprinklered. Fixed fire window assemblies are allowed per 8.3. In sprinklered compartments there are no restrictions in area or fire resistance of glass or frames in window assemblies.
19.3.6.3, 42 CFR Parts 403, 418, 460, 482, 483, and 485
Show in REMARKS details of doors such as fire protection ratings, automatics closing devices, etc. |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Some |
| Corridor - Doors
Doors protecting corridor openings in other than required enclosures of vertical openings, exits, or hazardous areas resist the passage of smoke and are made of 1 3/4 inch solid-bonded core wood or other material capable of resisting fire for at least 20 minutes. Doors in fully sprinklered smoke compartments are only required to resist the passage of smoke. Corridor doors and doors to rooms containing flammable or combustible materials have positive latching hardware. Roller latches are prohibited by CMS regulation. These requirements do not apply to auxiliary spaces that do not contain flammable or combustible material.
Clearance between bottom of door and floor covering is not exceeding 1 inch. Powered doors complying with 7.2.1.9 are permissible if provided with a device capable of keeping the door closed when a force of 5 lbf is applied. There is no impediment to the closing of the doors. Hold open devices that release when the door is pushed or pulled are permitted. Nonrated protective plates of unlimited height are permitted. Dutch doors meeting 19.3.6.3.6 are permitted. Door frames shall be labeled and made of steel or other materials in compliance with 8.3, unless the smoke compartment is sprinklered. Fixed fire window assemblies are allowed per 8.3. In sprinklered compartments there are no restrictions in area or fire resistance of glass or frames in window assemblies.
19.3.6.3, 42 CFR Parts 403, 418, 460, 482, 483, and 485
Show in REMARKS details of doors such as fire protection ratings, automatics closing devices, etc. |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Some |
| Corridor - Doors
Doors protecting corridor openings in other than required enclosures of vertical openings, exits, or hazardous areas resist the passage of smoke and are made of 1 3/4 inch solid-bonded core wood or other material capable of resisting fire for at least 20 minutes. Doors in fully sprinklered smoke compartments are only required to resist the passage of smoke. Corridor doors and doors to rooms containing flammable or combustible materials have positive latching hardware. Roller latches are prohibited by CMS regulation. These requirements do not apply to auxiliary spaces that do not contain flammable or combustible material.
Clearance between bottom of door and floor covering is not exceeding 1 inch. Powered doors complying with 7.2.1.9 are permissible if provided with a device capable of keeping the door closed when a force of 5 lbf is applied. There is no impediment to the closing of the doors. Hold open devices that release when the door is pushed or pulled are permitted. Nonrated protective plates of unlimited height are permitted. Dutch doors meeting 19.3.6.3.6 are permitted. Door frames shall be labeled and made of steel or other materials in compliance with 8.3, unless the smoke compartment is sprinklered. Fixed fire window assemblies are allowed per 8.3. In sprinklered compartments there are no restrictions in area or fire resistance of glass or frames in window assemblies.
19.3.6.3, 42 CFR Parts 403, 418, 460, 482, 483, and 485
Show in REMARKS details of doors such as fire protection ratings, automatics closing devices, etc. |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Some |
| Corridor - Doors
Doors protecting corridor openings in other than required enclosures of vertical openings, exits, or hazardous areas resist the passage of smoke and are made of 1 3/4 inch solid-bonded core wood or other material capable of resisting fire for at least 20 minutes. Doors in fully sprinklered smoke compartments are only required to resist the passage of smoke. Corridor doors and doors to rooms containing flammable or combustible materials have positive latching hardware. Roller latches are prohibited by CMS regulation. These requirements do not apply to auxiliary spaces that do not contain flammable or combustible material.
Clearance between bottom of door and floor covering is not exceeding 1 inch. Powered doors complying with 7.2.1.9 are permissible if provided with a device capable of keeping the door closed when a force of 5 lbf is applied. There is no impediment to the closing of the doors. Hold open devices that release when the door is pushed or pulled are permitted. Nonrated protective plates of unlimited height are permitted. Dutch doors meeting 19.3.6.3.6 are permitted. Door frames shall be labeled and made of steel or other materials in compliance with 8.3, unless the smoke compartment is sprinklered. Fixed fire window assemblies are allowed per 8.3. In sprinklered compartments there are no restrictions in area or fire resistance of glass or frames in window assemblies.
19.3.6.3, 42 CFR Parts 403, 418, 460, 482, 483, and 485
Show in REMARKS details of doors such as fire protection ratings, automatics closing devices, etc. |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Some |
| Corridor - Doors
Doors protecting corridor openings in other than required enclosures of vertical openings, exits, or hazardous areas resist the passage of smoke and are made of 1 3/4 inch solid-bonded core wood or other material capable of resisting fire for at least 20 minutes. Doors in fully sprinklered smoke compartments are only required to resist the passage of smoke. Corridor doors and doors to rooms containing flammable or combustible materials have positive latching hardware. Roller latches are prohibited by CMS regulation. These requirements do not apply to auxiliary spaces that do not contain flammable or combustible material.
Clearance between bottom of door and floor covering is not exceeding 1 inch. Powered doors complying with 7.2.1.9 are permissible if provided with a device capable of keeping the door closed when a force of 5 lbf is applied. There is no impediment to the closing of the doors. Hold open devices that release when the door is pushed or pulled are permitted. Nonrated protective plates of unlimited height are permitted. Dutch doors meeting 19.3.6.3.6 are permitted. Door frames shall be labeled and made of steel or other materials in compliance with 8.3, unless the smoke compartment is sprinklered. Fixed fire window assemblies are allowed per 8.3. In sprinklered compartments there are no restrictions in area or fire resistance of glass or frames in window assemblies.
19.3.6.3, 42 CFR Parts 403, 418, 460, 482, 483, and 485
Show in REMARKS details of doors such as fire protection ratings, automatics closing devices, etc. |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Some |
| Corridor - Doors
Doors protecting corridor openings in other than required enclosures of vertical openings, exits, or hazardous areas resist the passage of smoke and are made of 1 3/4 inch solid-bonded core wood or other material capable of resisting fire for at least 20 minutes. Doors in fully sprinklered smoke compartments are only required to resist the passage of smoke. Corridor doors and doors to rooms containing flammable or combustible materials have positive latching hardware. Roller latches are prohibited by CMS regulation. These requirements do not apply to auxiliary spaces that do not contain flammable or combustible material.
Clearance between bottom of door and floor covering is not exceeding 1 inch. Powered doors complying with 7.2.1.9 are permissible if provided with a device capable of keeping the door closed when a force of 5 lbf is applied. There is no impediment to the closing of the doors. Hold open devices that release when the door is pushed or pulled are permitted. Nonrated protective plates of unlimited height are permitted. Dutch doors meeting 19.3.6.3.6 are permitted. Door frames shall be labeled and made of steel or other materials in compliance with 8.3, unless the smoke compartment is sprinklered. Fixed fire window assemblies are allowed per 8.3. In sprinklered compartments there are no restrictions in area or fire resistance of glass or frames in window assemblies.
19.3.6.3, 42 CFR Parts 403, 418, 460, 482, 483, and 485
Show in REMARKS details of doors such as fire protection ratings, automatics closing devices, etc. |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Some |
| Subdivision of Building Spaces - Smoke Barrier Construction
2012 EXISTING
Smoke barriers shall be constructed to a 1/2-hour fire resistance rating per 8.5. Smoke barriers shall be permitted to terminate at an atrium wall. Smoke dampers are not required in duct penetrations in fully ducted HVAC systems where an approved sprinkler system is installed for smoke compartments adjacent to the smoke barrier.
19.3.7.3, 8.6.7.1(1)
Describe any mechanical smoke control system in REMARKS. |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Few |
| Subdivision of Building Spaces - Smoke Barrier Construction
2012 EXISTING
Smoke barriers shall be constructed to a 1/2-hour fire resistance rating per 8.5. Smoke barriers shall be permitted to terminate at an atrium wall. Smoke dampers are not required in duct penetrations in fully ducted HVAC systems where an approved sprinkler system is installed for smoke compartments adjacent to the smoke barrier.
19.3.7.3, 8.6.7.1(1)
Describe any mechanical smoke control system in REMARKS. |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Few |
| Subdivision of Building Spaces - Smoke Barrier Construction
2012 EXISTING
Smoke barriers shall be constructed to a 1/2-hour fire resistance rating per 8.5. Smoke barriers shall be permitted to terminate at an atrium wall. Smoke dampers are not required in duct penetrations in fully ducted HVAC systems where an approved sprinkler system is installed for smoke compartments adjacent to the smoke barrier.
19.3.7.3, 8.6.7.1(1)
Describe any mechanical smoke control system in REMARKS. |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Few |
| Subdivision of Building Spaces - Smoke Barrier Construction
2012 EXISTING
Smoke barriers shall be constructed to a 1/2-hour fire resistance rating per 8.5. Smoke barriers shall be permitted to terminate at an atrium wall. Smoke dampers are not required in duct penetrations in fully ducted HVAC systems where an approved sprinkler system is installed for smoke compartments adjacent to the smoke barrier.
19.3.7.3, 8.6.7.1(1)
Describe any mechanical smoke control system in REMARKS. |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Few |
| Subdivision of Building Spaces - Smoke Barrier Construction
2012 EXISTING
Smoke barriers shall be constructed to a 1/2-hour fire resistance rating per 8.5. Smoke barriers shall be permitted to terminate at an atrium wall. Smoke dampers are not required in duct penetrations in fully ducted HVAC systems where an approved sprinkler system is installed for smoke compartments adjacent to the smoke barrier.
19.3.7.3, 8.6.7.1(1)
Describe any mechanical smoke control system in REMARKS. |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Few |
| Subdivision of Building Spaces - Smoke Barrier Construction
2012 EXISTING
Smoke barriers shall be constructed to a 1/2-hour fire resistance rating per 8.5. Smoke barriers shall be permitted to terminate at an atrium wall. Smoke dampers are not required in duct penetrations in fully ducted HVAC systems where an approved sprinkler system is installed for smoke compartments adjacent to the smoke barrier.
19.3.7.3, 8.6.7.1(1)
Describe any mechanical smoke control system in REMARKS. |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Few |
| Subdivision of Building Spaces - Smoke Barrier Construction
2012 EXISTING
Smoke barriers shall be constructed to a 1/2-hour fire resistance rating per 8.5. Smoke barriers shall be permitted to terminate at an atrium wall. Smoke dampers are not required in duct penetrations in fully ducted HVAC systems where an approved sprinkler system is installed for smoke compartments adjacent to the smoke barrier.
19.3.7.3, 8.6.7.1(1)
Describe any mechanical smoke control system in REMARKS. |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Few |
| Subdivision of Building Spaces - Smoke Barrier Construction
2012 EXISTING
Smoke barriers shall be constructed to a 1/2-hour fire resistance rating per 8.5. Smoke barriers shall be permitted to terminate at an atrium wall. Smoke dampers are not required in duct penetrations in fully ducted HVAC systems where an approved sprinkler system is installed for smoke compartments adjacent to the smoke barrier.
19.3.7.3, 8.6.7.1(1)
Describe any mechanical smoke control system in REMARKS. |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Few |
| Electrical Systems - Maintenance and Testing
Hospital-grade receptacles at patient bed locations and where deep sedation or general anesthesia is administered, are tested after initial installation, replacement or servicing. Additional testing is performed at intervals defined by documented performance data. Receptacles not listed as hospital-grade at these locations are tested at intervals not exceeding 12 months. Line isolation monitors (LIM), if installed, are tested at intervals of less than or equal to 1 month by actuating the LIM test switch per 6.3.2.6.3.6, which activates both visual and audible alarm. For LIM circuits with automated self-testing, this manual test is performed at intervals less than or equal to 12 months. LIM circuits are tested per 6.3.3.3.2 after any repair or renovation to the electric distribution system. Records are maintained of required tests and associated repairs or modifications, containing date, room or area tested, and results.
6.3.4 (NFPA 99) |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Many |
| Electrical Systems - Maintenance and Testing
Hospital-grade receptacles at patient bed locations and where deep sedation or general anesthesia is administered, are tested after initial installation, replacement or servicing. Additional testing is performed at intervals defined by documented performance data. Receptacles not listed as hospital-grade at these locations are tested at intervals not exceeding 12 months. Line isolation monitors (LIM), if installed, are tested at intervals of less than or equal to 1 month by actuating the LIM test switch per 6.3.2.6.3.6, which activates both visual and audible alarm. For LIM circuits with automated self-testing, this manual test is performed at intervals less than or equal to 12 months. LIM circuits are tested per 6.3.3.3.2 after any repair or renovation to the electric distribution system. Records are maintained of required tests and associated repairs or modifications, containing date, room or area tested, and results.
6.3.4 (NFPA 99) |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Many |
| Electrical Systems - Maintenance and Testing
Hospital-grade receptacles at patient bed locations and where deep sedation or general anesthesia is administered, are tested after initial installation, replacement or servicing. Additional testing is performed at intervals defined by documented performance data. Receptacles not listed as hospital-grade at these locations are tested at intervals not exceeding 12 months. Line isolation monitors (LIM), if installed, are tested at intervals of less than or equal to 1 month by actuating the LIM test switch per 6.3.2.6.3.6, which activates both visual and audible alarm. For LIM circuits with automated self-testing, this manual test is performed at intervals less than or equal to 12 months. LIM circuits are tested per 6.3.3.3.2 after any repair or renovation to the electric distribution system. Records are maintained of required tests and associated repairs or modifications, containing date, room or area tested, and results.
6.3.4 (NFPA 99) |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Many |
| Electrical Systems - Maintenance and Testing
Hospital-grade receptacles at patient bed locations and where deep sedation or general anesthesia is administered, are tested after initial installation, replacement or servicing. Additional testing is performed at intervals defined by documented performance data. Receptacles not listed as hospital-grade at these locations are tested at intervals not exceeding 12 months. Line isolation monitors (LIM), if installed, are tested at intervals of less than or equal to 1 month by actuating the LIM test switch per 6.3.2.6.3.6, which activates both visual and audible alarm. For LIM circuits with automated self-testing, this manual test is performed at intervals less than or equal to 12 months. LIM circuits are tested per 6.3.3.3.2 after any repair or renovation to the electric distribution system. Records are maintained of required tests and associated repairs or modifications, containing date, room or area tested, and results.
6.3.4 (NFPA 99) |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Many |
| Electrical Systems - Maintenance and Testing
Hospital-grade receptacles at patient bed locations and where deep sedation or general anesthesia is administered, are tested after initial installation, replacement or servicing. Additional testing is performed at intervals defined by documented performance data. Receptacles not listed as hospital-grade at these locations are tested at intervals not exceeding 12 months. Line isolation monitors (LIM), if installed, are tested at intervals of less than or equal to 1 month by actuating the LIM test switch per 6.3.2.6.3.6, which activates both visual and audible alarm. For LIM circuits with automated self-testing, this manual test is performed at intervals less than or equal to 12 months. LIM circuits are tested per 6.3.3.3.2 after any repair or renovation to the electric distribution system. Records are maintained of required tests and associated repairs or modifications, containing date, room or area tested, and results.
6.3.4 (NFPA 99) |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Many |
| Electrical Systems - Maintenance and Testing
Hospital-grade receptacles at patient bed locations and where deep sedation or general anesthesia is administered, are tested after initial installation, replacement or servicing. Additional testing is performed at intervals defined by documented performance data. Receptacles not listed as hospital-grade at these locations are tested at intervals not exceeding 12 months. Line isolation monitors (LIM), if installed, are tested at intervals of less than or equal to 1 month by actuating the LIM test switch per 6.3.2.6.3.6, which activates both visual and audible alarm. For LIM circuits with automated self-testing, this manual test is performed at intervals less than or equal to 12 months. LIM circuits are tested per 6.3.3.3.2 after any repair or renovation to the electric distribution system. Records are maintained of required tests and associated repairs or modifications, containing date, room or area tested, and results.
6.3.4 (NFPA 99) |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Many |
| Electrical Systems - Maintenance and Testing
Hospital-grade receptacles at patient bed locations and where deep sedation or general anesthesia is administered, are tested after initial installation, replacement or servicing. Additional testing is performed at intervals defined by documented performance data. Receptacles not listed as hospital-grade at these locations are tested at intervals not exceeding 12 months. Line isolation monitors (LIM), if installed, are tested at intervals of less than or equal to 1 month by actuating the LIM test switch per 6.3.2.6.3.6, which activates both visual and audible alarm. For LIM circuits with automated self-testing, this manual test is performed at intervals less than or equal to 12 months. LIM circuits are tested per 6.3.3.3.2 after any repair or renovation to the electric distribution system. Records are maintained of required tests and associated repairs or modifications, containing date, room or area tested, and results.
6.3.4 (NFPA 99) |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Many |
| Electrical Systems - Maintenance and Testing
Hospital-grade receptacles at patient bed locations and where deep sedation or general anesthesia is administered, are tested after initial installation, replacement or servicing. Additional testing is performed at intervals defined by documented performance data. Receptacles not listed as hospital-grade at these locations are tested at intervals not exceeding 12 months. Line isolation monitors (LIM), if installed, are tested at intervals of less than or equal to 1 month by actuating the LIM test switch per 6.3.2.6.3.6, which activates both visual and audible alarm. For LIM circuits with automated self-testing, this manual test is performed at intervals less than or equal to 12 months. LIM circuits are tested per 6.3.3.3.2 after any repair or renovation to the electric distribution system. Records are maintained of required tests and associated repairs or modifications, containing date, room or area tested, and results.
6.3.4 (NFPA 99) |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Many |
| Electrical Systems - Essential Electric System Maintenance and Testing
The generator or other alternate power source and associated equipment is capable of supplying service within 10 seconds. If the 10-second criterion is not met during the monthly test, a process shall be provided to annually confirm this capability for the life safety and critical branches. Maintenance and testing of the generator and transfer switches are performed in accordance with NFPA 110.
Generator sets are inspected weekly, exercised under load 30 minutes 12 times a year in 20-40 day intervals, and exercised once every 36 months for 4 continuous hours. Scheduled test under load conditions include a complete simulated cold start and automatic or manual transfer of all EES loads, and are conducted by competent personnel. Maintenance and testing of stored energy power sources (Type 3 EES) are in accordance with NFPA 111. Main and feeder circuit breakers are inspected annually, and a program for periodically exercising the components is established according to manufacturer requirements. Written records of maintenance and testing are maintained and readily available. EES electrical panels and circuits are marked, readily identifiable, and separate from normal power circuits. Minimizing the possibility of damage of the emergency power source is a design consideration for new installations.
6.4.4, 6.5.4, 6.6.4 (NFPA 99), NFPA 110, NFPA 111, 700.10 (NFPA 70) |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Many |
| Electrical Systems - Essential Electric System Maintenance and Testing
The generator or other alternate power source and associated equipment is capable of supplying service within 10 seconds. If the 10-second criterion is not met during the monthly test, a process shall be provided to annually confirm this capability for the life safety and critical branches. Maintenance and testing of the generator and transfer switches are performed in accordance with NFPA 110.
Generator sets are inspected weekly, exercised under load 30 minutes 12 times a year in 20-40 day intervals, and exercised once every 36 months for 4 continuous hours. Scheduled test under load conditions include a complete simulated cold start and automatic or manual transfer of all EES loads, and are conducted by competent personnel. Maintenance and testing of stored energy power sources (Type 3 EES) are in accordance with NFPA 111. Main and feeder circuit breakers are inspected annually, and a program for periodically exercising the components is established according to manufacturer requirements. Written records of maintenance and testing are maintained and readily available. EES electrical panels and circuits are marked, readily identifiable, and separate from normal power circuits. Minimizing the possibility of damage of the emergency power source is a design consideration for new installations.
6.4.4, 6.5.4, 6.6.4 (NFPA 99), NFPA 110, NFPA 111, 700.10 (NFPA 70) |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Many |
| Electrical Systems - Essential Electric System Maintenance and Testing
The generator or other alternate power source and associated equipment is capable of supplying service within 10 seconds. If the 10-second criterion is not met during the monthly test, a process shall be provided to annually confirm this capability for the life safety and critical branches. Maintenance and testing of the generator and transfer switches are performed in accordance with NFPA 110.
Generator sets are inspected weekly, exercised under load 30 minutes 12 times a year in 20-40 day intervals, and exercised once every 36 months for 4 continuous hours. Scheduled test under load conditions include a complete simulated cold start and automatic or manual transfer of all EES loads, and are conducted by competent personnel. Maintenance and testing of stored energy power sources (Type 3 EES) are in accordance with NFPA 111. Main and feeder circuit breakers are inspected annually, and a program for periodically exercising the components is established according to manufacturer requirements. Written records of maintenance and testing are maintained and readily available. EES electrical panels and circuits are marked, readily identifiable, and separate from normal power circuits. Minimizing the possibility of damage of the emergency power source is a design consideration for new installations.
6.4.4, 6.5.4, 6.6.4 (NFPA 99), NFPA 110, NFPA 111, 700.10 (NFPA 70) |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Many |
| Electrical Systems - Essential Electric System Maintenance and Testing
The generator or other alternate power source and associated equipment is capable of supplying service within 10 seconds. If the 10-second criterion is not met during the monthly test, a process shall be provided to annually confirm this capability for the life safety and critical branches. Maintenance and testing of the generator and transfer switches are performed in accordance with NFPA 110.
Generator sets are inspected weekly, exercised under load 30 minutes 12 times a year in 20-40 day intervals, and exercised once every 36 months for 4 continuous hours. Scheduled test under load conditions include a complete simulated cold start and automatic or manual transfer of all EES loads, and are conducted by competent personnel. Maintenance and testing of stored energy power sources (Type 3 EES) are in accordance with NFPA 111. Main and feeder circuit breakers are inspected annually, and a program for periodically exercising the components is established according to manufacturer requirements. Written records of maintenance and testing are maintained and readily available. EES electrical panels and circuits are marked, readily identifiable, and separate from normal power circuits. Minimizing the possibility of damage of the emergency power source is a design consideration for new installations.
6.4.4, 6.5.4, 6.6.4 (NFPA 99), NFPA 110, NFPA 111, 700.10 (NFPA 70) |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Many |
| Electrical Systems - Essential Electric System Maintenance and Testing
The generator or other alternate power source and associated equipment is capable of supplying service within 10 seconds. If the 10-second criterion is not met during the monthly test, a process shall be provided to annually confirm this capability for the life safety and critical branches. Maintenance and testing of the generator and transfer switches are performed in accordance with NFPA 110.
Generator sets are inspected weekly, exercised under load 30 minutes 12 times a year in 20-40 day intervals, and exercised once every 36 months for 4 continuous hours. Scheduled test under load conditions include a complete simulated cold start and automatic or manual transfer of all EES loads, and are conducted by competent personnel. Maintenance and testing of stored energy power sources (Type 3 EES) are in accordance with NFPA 111. Main and feeder circuit breakers are inspected annually, and a program for periodically exercising the components is established according to manufacturer requirements. Written records of maintenance and testing are maintained and readily available. EES electrical panels and circuits are marked, readily identifiable, and separate from normal power circuits. Minimizing the possibility of damage of the emergency power source is a design consideration for new installations.
6.4.4, 6.5.4, 6.6.4 (NFPA 99), NFPA 110, NFPA 111, 700.10 (NFPA 70) |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Many |
| Electrical Systems - Essential Electric System Maintenance and Testing
The generator or other alternate power source and associated equipment is capable of supplying service within 10 seconds. If the 10-second criterion is not met during the monthly test, a process shall be provided to annually confirm this capability for the life safety and critical branches. Maintenance and testing of the generator and transfer switches are performed in accordance with NFPA 110.
Generator sets are inspected weekly, exercised under load 30 minutes 12 times a year in 20-40 day intervals, and exercised once every 36 months for 4 continuous hours. Scheduled test under load conditions include a complete simulated cold start and automatic or manual transfer of all EES loads, and are conducted by competent personnel. Maintenance and testing of stored energy power sources (Type 3 EES) are in accordance with NFPA 111. Main and feeder circuit breakers are inspected annually, and a program for periodically exercising the components is established according to manufacturer requirements. Written records of maintenance and testing are maintained and readily available. EES electrical panels and circuits are marked, readily identifiable, and separate from normal power circuits. Minimizing the possibility of damage of the emergency power source is a design consideration for new installations.
6.4.4, 6.5.4, 6.6.4 (NFPA 99), NFPA 110, NFPA 111, 700.10 (NFPA 70) |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Many |
| Electrical Systems - Essential Electric System Maintenance and Testing
The generator or other alternate power source and associated equipment is capable of supplying service within 10 seconds. If the 10-second criterion is not met during the monthly test, a process shall be provided to annually confirm this capability for the life safety and critical branches. Maintenance and testing of the generator and transfer switches are performed in accordance with NFPA 110.
Generator sets are inspected weekly, exercised under load 30 minutes 12 times a year in 20-40 day intervals, and exercised once every 36 months for 4 continuous hours. Scheduled test under load conditions include a complete simulated cold start and automatic or manual transfer of all EES loads, and are conducted by competent personnel. Maintenance and testing of stored energy power sources (Type 3 EES) are in accordance with NFPA 111. Main and feeder circuit breakers are inspected annually, and a program for periodically exercising the components is established according to manufacturer requirements. Written records of maintenance and testing are maintained and readily available. EES electrical panels and circuits are marked, readily identifiable, and separate from normal power circuits. Minimizing the possibility of damage of the emergency power source is a design consideration for new installations.
6.4.4, 6.5.4, 6.6.4 (NFPA 99), NFPA 110, NFPA 111, 700.10 (NFPA 70) |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Many |
| Electrical Systems - Essential Electric System Maintenance and Testing
The generator or other alternate power source and associated equipment is capable of supplying service within 10 seconds. If the 10-second criterion is not met during the monthly test, a process shall be provided to annually confirm this capability for the life safety and critical branches. Maintenance and testing of the generator and transfer switches are performed in accordance with NFPA 110.
Generator sets are inspected weekly, exercised under load 30 minutes 12 times a year in 20-40 day intervals, and exercised once every 36 months for 4 continuous hours. Scheduled test under load conditions include a complete simulated cold start and automatic or manual transfer of all EES loads, and are conducted by competent personnel. Maintenance and testing of stored energy power sources (Type 3 EES) are in accordance with NFPA 111. Main and feeder circuit breakers are inspected annually, and a program for periodically exercising the components is established according to manufacturer requirements. Written records of maintenance and testing are maintained and readily available. EES electrical panels and circuits are marked, readily identifiable, and separate from normal power circuits. Minimizing the possibility of damage of the emergency power source is a design consideration for new installations.
6.4.4, 6.5.4, 6.6.4 (NFPA 99), NFPA 110, NFPA 111, 700.10 (NFPA 70) |
6/11/2019
| No actual Harm with potential for More than minimal harm that is not immediate jeopardy | Many |
| Complete Fire Alarm Systems.
(B) All facilities shall test and maintain the complete fire alarm system in accordance with NFPA 72, 1999 edition. I/II
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6/11/2019
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| Facilities shall have emergency lighting of sufficient intensity to provide for the safety of residents and other people using any exit, stairway, and corridor. The lighting shall be supplied by an emergency service, an automatic emergency generator or battery lighting system. This emergency lighting system shall be equipped with an automatic transfer switch. In an existing licensed facility, battery lights, if used, shall be wet cell units or other rechargeable-type batteries that shall be UL-approved and capable of operating the light for at least one and one-half (1½) hours. Battery-operated emergency lighting shall be tested for at least thirty (30) seconds every thirty (30) days, and an annual function test shall be conducted for the full operational duration of one and one-half (1½) hours. Records of these tests shall be documented and maintained for review. II
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6/11/2019
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| The building shall be substantially constructed and shall be maintained in good repair. New facilities shall comply with the requirements in accordance with the provisions found in 19 CSR 30-85.012. Existing licensed facilities shall meet and maintain the facility's physical plant in accordance with the construction standards in effect at the time of initial licensing, unless there is a specific rule governing the subject cited in this section or in 19 CSR 30-85.022, except that those facilities licensed between 1957 and 1965 shall not increase the capacity of any room or the total capacity of the facility without meeting new construction requirements. Existing licensed facilities with plans approved after April 8, 1972 and prior to January 1, 1999, shall comply as Existing Health Care Occupancies with NFPA 101, 2000 edition. Facilities whose physical plant requirement plans are approved on or after January 1, 1999, shall comply as New Health Care Occupancies with NFPA 101, 2000 edition. II/III
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6/11/2019
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