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You are looking at the envelope spectrum of a bearing's vibration signal. The marked vertical lines are the theoretical fault frequencies for the outer race, inner race, rolling elements, and cage. What is the most likely bearing condition (normal, inner_race, outer_race, ball)?
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 96.86, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 162.2, "BPFO": 107.4, "BSF": 70.6, "FTF": 11.9}, "features": {"crest_factor": 5.47716, "impulse_factor": 7.67654,...
The image shows the envelope spectrum of a rolling-element bearing's vibration signal, with the characteristic fault frequencies (BPFO outer race, BPFI inner race, BSF ball, FTF cage) marked as reference lines. What is the most likely bearing condition (normal, inner_race, outer_race, ball)?
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 101.42, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 162.2, "BPFO": 107.4, "BSF": 70.6, "FTF": 11.9}, "features": {"crest_factor": 5.21994, "impulse_factor": 7.23639...
You are looking at the envelope spectrum of a bearing's vibration signal. The marked vertical lines are the theoretical fault frequencies for the outer race, inner race, rolling elements, and cage. Determine the bearing's health state. Answer with exactly one of: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 108.85, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 162.2, "BPFO": 107.4, "BSF": 70.6, "FTF": 11.9}, "features": {"crest_factor": 5.57517, "impulse_factor": 7.7025,...
The image shows the envelope spectrum of a rolling-element bearing's vibration signal, with the characteristic fault frequencies (BPFO outer race, BPFI inner race, BSF ball, FTF cage) marked as reference lines. Determine the bearing's health state. Answer with exactly one of: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 96.97, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 162.2, "BPFO": 107.4, "BSF": 70.6, "FTF": 11.9}, "features": {"crest_factor": 5.83726, "impulse_factor": 8.16882,...
Here is the envelope spectrum of one vibration snapshot from a rolling-element bearing, with each characteristic fault-frequency family marked on the frequency axis. Based on the visible evidence, which condition applies: normal, inner_race, outer_race, ball?
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 97.77, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 162.2, "BPFO": 107.4, "BSF": 70.6, "FTF": 11.9}, "features": {"crest_factor": 5.71877, "impulse_factor": 8.00931,...
You are looking at the envelope spectrum of a bearing's vibration signal. The marked vertical lines are the theoretical fault frequencies for the outer race, inner race, rolling elements, and cage. Based on the visible evidence, which condition applies: normal, inner_race, outer_race, ball?
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 118.12, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 162.2, "BPFO": 107.4, "BSF": 70.6, "FTF": 11.9}, "features": {"crest_factor": 5.15494, "impulse_factor": 7.19324...
This is a demodulated (Hilbert-envelope) spectrum computed from a bearing vibration snapshot; the dashed markers indicate where each bearing fault type would appear (BPFO, BPFI, BSF, FTF). Diagnose the bearing from this image, choosing from: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 128.12, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 162.2, "BPFO": 107.4, "BSF": 70.6, "FTF": 11.9}, "features": {"crest_factor": 5.15122, "impulse_factor": 7.14355...
This is a demodulated (Hilbert-envelope) spectrum computed from a bearing vibration snapshot; the dashed markers indicate where each bearing fault type would appear (BPFO, BPFI, BSF, FTF). Based on the visible evidence, which condition applies: normal, inner_race, outer_race, ball?
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 103.94, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 162.2, "BPFO": 107.4, "BSF": 70.6, "FTF": 11.9}, "features": {"crest_factor": 5.96321, "impulse_factor": 8.34155...
The image shows the envelope spectrum of a rolling-element bearing's vibration signal, with the characteristic fault frequencies (BPFO outer race, BPFI inner race, BSF ball, FTF cage) marked as reference lines. What is the most likely bearing condition (normal, inner_race, outer_race, ball)?
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 120.83, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 162.2, "BPFO": 107.4, "BSF": 70.6, "FTF": 11.9}, "features": {"crest_factor": 5.34713, "impulse_factor": 7.50109...
This is a demodulated (Hilbert-envelope) spectrum computed from a bearing vibration snapshot; the dashed markers indicate where each bearing fault type would appear (BPFO, BPFI, BSF, FTF). Diagnose the bearing from this image, choosing from: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 111.12, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 162.2, "BPFO": 107.4, "BSF": 70.6, "FTF": 11.9}, "features": {"crest_factor": 5.49473, "impulse_factor": 7.70533...
Here is the envelope spectrum of one vibration snapshot from a rolling-element bearing, with each characteristic fault-frequency family marked on the frequency axis. Determine the bearing's health state. Answer with exactly one of: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 156.93, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 159.9, "BPFO": 105.9, "BSF": 69.6, "FTF": 11.8}, "features": {"crest_factor": 5.39277, "impulse_factor": 7.57308...
An envelope spectrum derived from a bearing vibration measurement is shown; the reference markers locate BPFO, BPFI, BSF and FTF for this bearing geometry and shaft speed. Determine the bearing's health state. Answer with exactly one of: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 164.97, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 159.9, "BPFO": 105.9, "BSF": 69.6, "FTF": 11.8}, "features": {"crest_factor": 5.33848, "impulse_factor": 7.5153,...
The plot is a Hilbert-envelope spectrum of a rotating bearing's acceleration signal, annotated with the bearing's characteristic defect frequencies. Diagnose the bearing from this image, choosing from: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 174.16, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 159.9, "BPFO": 105.9, "BSF": 69.6, "FTF": 11.8}, "features": {"crest_factor": 5.36699, "impulse_factor": 7.58403...
You are looking at the envelope spectrum of a bearing's vibration signal. The marked vertical lines are the theoretical fault frequencies for the outer race, inner race, rolling elements, and cage. What is the most likely bearing condition (normal, inner_race, outer_race, ball)?
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 168.96, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 159.9, "BPFO": 105.9, "BSF": 69.6, "FTF": 11.8}, "features": {"crest_factor": 5.17971, "impulse_factor": 7.33401...
An envelope spectrum derived from a bearing vibration measurement is shown; the reference markers locate BPFO, BPFI, BSF and FTF for this bearing geometry and shaft speed. What is the most likely bearing condition (normal, inner_race, outer_race, ball)?
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 168.65, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 159.9, "BPFO": 105.9, "BSF": 69.6, "FTF": 11.8}, "features": {"crest_factor": 5.37759, "impulse_factor": 7.59446...
Here is the envelope spectrum of one vibration snapshot from a rolling-element bearing, with each characteristic fault-frequency family marked on the frequency axis. Determine the bearing's health state. Answer with exactly one of: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 155.56, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 159.9, "BPFO": 105.9, "BSF": 69.6, "FTF": 11.8}, "features": {"crest_factor": 5.12349, "impulse_factor": 7.25699...
You are looking at the envelope spectrum of a bearing's vibration signal. The marked vertical lines are the theoretical fault frequencies for the outer race, inner race, rolling elements, and cage. Determine the bearing's health state. Answer with exactly one of: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 159.46, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 159.9, "BPFO": 105.9, "BSF": 69.6, "FTF": 11.8}, "features": {"crest_factor": 5.10763, "impulse_factor": 7.2, "k...
This is a demodulated (Hilbert-envelope) spectrum computed from a bearing vibration snapshot; the dashed markers indicate where each bearing fault type would appear (BPFO, BPFI, BSF, FTF). Classify the bearing condition as one of: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 170.56, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 159.9, "BPFO": 105.9, "BSF": 69.6, "FTF": 11.8}, "features": {"crest_factor": 5.08413, "impulse_factor": 7.1252,...
This is a demodulated (Hilbert-envelope) spectrum computed from a bearing vibration snapshot; the dashed markers indicate where each bearing fault type would appear (BPFO, BPFI, BSF, FTF). Classify the bearing condition as one of: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 164.63, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 159.9, "BPFO": 105.9, "BSF": 69.6, "FTF": 11.8}, "features": {"crest_factor": 5.11677, "impulse_factor": 7.21859...
Here is the envelope spectrum of one vibration snapshot from a rolling-element bearing, with each characteristic fault-frequency family marked on the frequency axis. What is the most likely bearing condition (normal, inner_race, outer_race, ball)?
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 136.91, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 159.9, "BPFO": 105.9, "BSF": 69.6, "FTF": 11.8}, "features": {"crest_factor": 5.23041, "impulse_factor": 7.38308...
Here is the envelope spectrum of one vibration snapshot from a rolling-element bearing, with each characteristic fault-frequency family marked on the frequency axis. Diagnose the bearing from this image, choosing from: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 95.16, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 157.8, "BPFO": 104.4, "BSF": 68.7, "FTF": 11.6}, "features": {"crest_factor": 5.13143, "impulse_factor": 7.15603,...
An envelope spectrum derived from a bearing vibration measurement is shown; the reference markers locate BPFO, BPFI, BSF and FTF for this bearing geometry and shaft speed. Based on the visible evidence, which condition applies: normal, inner_race, outer_race, ball?
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 123.8, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 157.8, "BPFO": 104.4, "BSF": 68.7, "FTF": 11.6}, "features": {"crest_factor": 5.19618, "impulse_factor": 7.25238,...
You are looking at the envelope spectrum of a bearing's vibration signal. The marked vertical lines are the theoretical fault frequencies for the outer race, inner race, rolling elements, and cage. What is the most likely bearing condition (normal, inner_race, outer_race, ball)?
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 112.16, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 157.8, "BPFO": 104.4, "BSF": 68.7, "FTF": 11.6}, "features": {"crest_factor": 5.44821, "impulse_factor": 7.61027...
Here is the envelope spectrum of one vibration snapshot from a rolling-element bearing, with each characteristic fault-frequency family marked on the frequency axis. Diagnose the bearing from this image, choosing from: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 140.51, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 157.8, "BPFO": 104.4, "BSF": 68.7, "FTF": 11.6}, "features": {"crest_factor": 5.37214, "impulse_factor": 7.55299...
The image shows the envelope spectrum of a rolling-element bearing's vibration signal, with the characteristic fault frequencies (BPFO outer race, BPFI inner race, BSF ball, FTF cage) marked as reference lines. Determine the bearing's health state. Answer with exactly one of: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 111.9, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 157.8, "BPFO": 104.4, "BSF": 68.7, "FTF": 11.6}, "features": {"crest_factor": 5.14089, "impulse_factor": 7.23983,...
An envelope spectrum derived from a bearing vibration measurement is shown; the reference markers locate BPFO, BPFI, BSF and FTF for this bearing geometry and shaft speed. Classify the bearing condition as one of: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 138.66, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 157.8, "BPFO": 104.4, "BSF": 68.7, "FTF": 11.6}, "features": {"crest_factor": 4.92771, "impulse_factor": 6.87679...
You are looking at the envelope spectrum of a bearing's vibration signal. The marked vertical lines are the theoretical fault frequencies for the outer race, inner race, rolling elements, and cage. Determine the bearing's health state. Answer with exactly one of: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 128.87, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 157.8, "BPFO": 104.4, "BSF": 68.7, "FTF": 11.6}, "features": {"crest_factor": 4.91914, "impulse_factor": 6.90066...
The image shows the envelope spectrum of a rolling-element bearing's vibration signal, with the characteristic fault frequencies (BPFO outer race, BPFI inner race, BSF ball, FTF cage) marked as reference lines. Diagnose the bearing from this image, choosing from: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 128.44, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 157.8, "BPFO": 104.4, "BSF": 68.7, "FTF": 11.6}, "features": {"crest_factor": 5.0375, "impulse_factor": 7.07066,...
An envelope spectrum derived from a bearing vibration measurement is shown; the reference markers locate BPFO, BPFI, BSF and FTF for this bearing geometry and shaft speed. Determine the bearing's health state. Answer with exactly one of: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 115.27, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 157.8, "BPFO": 104.4, "BSF": 68.7, "FTF": 11.6}, "features": {"crest_factor": 4.88726, "impulse_factor": 6.88273...
The image shows the envelope spectrum of a rolling-element bearing's vibration signal, with the characteristic fault frequencies (BPFO outer race, BPFI inner race, BSF ball, FTF cage) marked as reference lines. Classify the bearing condition as one of: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 113.65, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 157.8, "BPFO": 104.4, "BSF": 68.7, "FTF": 11.6}, "features": {"crest_factor": 4.98938, "impulse_factor": 7.01155...
The plot is a Hilbert-envelope spectrum of a rotating bearing's acceleration signal, annotated with the bearing's characteristic defect frequencies. Determine the bearing's health state. Answer with exactly one of: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 124.96, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 155.3, "BPFO": 102.8, "BSF": 67.6, "FTF": 11.4}, "features": {"crest_factor": 4.91602, "impulse_factor": 6.85336...
Here is the envelope spectrum of one vibration snapshot from a rolling-element bearing, with each characteristic fault-frequency family marked on the frequency axis. Determine the bearing's health state. Answer with exactly one of: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 123.79, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 155.3, "BPFO": 102.8, "BSF": 67.6, "FTF": 11.4}, "features": {"crest_factor": 4.55451, "impulse_factor": 6.3476,...
An envelope spectrum derived from a bearing vibration measurement is shown; the reference markers locate BPFO, BPFI, BSF and FTF for this bearing geometry and shaft speed. Diagnose the bearing from this image, choosing from: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 127.28, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 155.3, "BPFO": 102.8, "BSF": 67.6, "FTF": 11.4}, "features": {"crest_factor": 4.72238, "impulse_factor": 6.59275...
The plot is a Hilbert-envelope spectrum of a rotating bearing's acceleration signal, annotated with the bearing's characteristic defect frequencies. Classify the bearing condition as one of: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 120.56, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 155.3, "BPFO": 102.8, "BSF": 67.6, "FTF": 11.4}, "features": {"crest_factor": 4.8086, "impulse_factor": 6.73666,...
You are looking at the envelope spectrum of a bearing's vibration signal. The marked vertical lines are the theoretical fault frequencies for the outer race, inner race, rolling elements, and cage. Determine the bearing's health state. Answer with exactly one of: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 115.56, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 155.3, "BPFO": 102.8, "BSF": 67.6, "FTF": 11.4}, "features": {"crest_factor": 4.83852, "impulse_factor": 6.77443...
This is a demodulated (Hilbert-envelope) spectrum computed from a bearing vibration snapshot; the dashed markers indicate where each bearing fault type would appear (BPFO, BPFI, BSF, FTF). Determine the bearing's health state. Answer with exactly one of: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 130.04, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 155.3, "BPFO": 102.8, "BSF": 67.6, "FTF": 11.4}, "features": {"crest_factor": 4.80822, "impulse_factor": 6.73879...
An envelope spectrum derived from a bearing vibration measurement is shown; the reference markers locate BPFO, BPFI, BSF and FTF for this bearing geometry and shaft speed. What is the most likely bearing condition (normal, inner_race, outer_race, ball)?
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 129.28, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 155.3, "BPFO": 102.8, "BSF": 67.6, "FTF": 11.4}, "features": {"crest_factor": 4.74541, "impulse_factor": 6.65814...
The image shows the envelope spectrum of a rolling-element bearing's vibration signal, with the characteristic fault frequencies (BPFO outer race, BPFI inner race, BSF ball, FTF cage) marked as reference lines. Classify the bearing condition as one of: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 127.98, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 155.3, "BPFO": 102.8, "BSF": 67.6, "FTF": 11.4}, "features": {"crest_factor": 4.70522, "impulse_factor": 6.62039...
You are looking at the envelope spectrum of a bearing's vibration signal. The marked vertical lines are the theoretical fault frequencies for the outer race, inner race, rolling elements, and cage. Diagnose the bearing from this image, choosing from: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 136.03, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 155.3, "BPFO": 102.8, "BSF": 67.6, "FTF": 11.4}, "features": {"crest_factor": 5.33324, "impulse_factor": 7.44575...
An envelope spectrum derived from a bearing vibration measurement is shown; the reference markers locate BPFO, BPFI, BSF and FTF for this bearing geometry and shaft speed. Based on the visible evidence, which condition applies: normal, inner_race, outer_race, ball?
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.007|-", "channel": "DE", "computed_snr": 136.34, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 155.3, "BPFO": 102.8, "BSF": 67.6, "FTF": 11.4}, "features": {"crest_factor": 4.62247, "impulse_factor": 6.46644...
An envelope spectrum derived from a bearing vibration measurement is shown; the reference markers locate BPFO, BPFI, BSF and FTF for this bearing geometry and shaft speed. Based on the visible evidence, which condition applies: normal, inner_race, outer_race, ball?
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 108.05, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 162.1, "BPFO": 107.3, "BSF": 70.5, "FTF": 11.9}, "features": {"crest_factor": 9.24642, "impulse_factor": 15.3661...
The image shows the envelope spectrum of a rolling-element bearing's vibration signal, with the characteristic fault frequencies (BPFO outer race, BPFI inner race, BSF ball, FTF cage) marked as reference lines. Classify the bearing condition as one of: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 111.18, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 162.1, "BPFO": 107.3, "BSF": 70.5, "FTF": 11.9}, "features": {"crest_factor": 10.40807, "impulse_factor": 17.439...
You are looking at the envelope spectrum of a bearing's vibration signal. The marked vertical lines are the theoretical fault frequencies for the outer race, inner race, rolling elements, and cage. Based on the visible evidence, which condition applies: normal, inner_race, outer_race, ball?
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 105.23, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 162.1, "BPFO": 107.3, "BSF": 70.5, "FTF": 11.9}, "features": {"crest_factor": 9.16945, "impulse_factor": 15.2234...
You are looking at the envelope spectrum of a bearing's vibration signal. The marked vertical lines are the theoretical fault frequencies for the outer race, inner race, rolling elements, and cage. Based on the visible evidence, which condition applies: normal, inner_race, outer_race, ball?
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 124.99, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 162.1, "BPFO": 107.3, "BSF": 70.5, "FTF": 11.9}, "features": {"crest_factor": 9.21089, "impulse_factor": 15.5455...
The plot is a Hilbert-envelope spectrum of a rotating bearing's acceleration signal, annotated with the bearing's characteristic defect frequencies. What is the most likely bearing condition (normal, inner_race, outer_race, ball)?
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 105.23, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 162.1, "BPFO": 107.3, "BSF": 70.5, "FTF": 11.9}, "features": {"crest_factor": 9.07597, "impulse_factor": 15.1367...
The plot is a Hilbert-envelope spectrum of a rotating bearing's acceleration signal, annotated with the bearing's characteristic defect frequencies. What is the most likely bearing condition (normal, inner_race, outer_race, ball)?
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 119.09, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 162.1, "BPFO": 107.3, "BSF": 70.5, "FTF": 11.9}, "features": {"crest_factor": 9.97863, "impulse_factor": 17.0108...
The image shows the envelope spectrum of a rolling-element bearing's vibration signal, with the characteristic fault frequencies (BPFO outer race, BPFI inner race, BSF ball, FTF cage) marked as reference lines. Classify the bearing condition as one of: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 129.28, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 162.1, "BPFO": 107.3, "BSF": 70.5, "FTF": 11.9}, "features": {"crest_factor": 9.28678, "impulse_factor": 15.8343...
Here is the envelope spectrum of one vibration snapshot from a rolling-element bearing, with each characteristic fault-frequency family marked on the frequency axis. Diagnose the bearing from this image, choosing from: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 128.36, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 162.1, "BPFO": 107.3, "BSF": 70.5, "FTF": 11.9}, "features": {"crest_factor": 8.91316, "impulse_factor": 15.4310...
Here is the envelope spectrum of one vibration snapshot from a rolling-element bearing, with each characteristic fault-frequency family marked on the frequency axis. What is the most likely bearing condition (normal, inner_race, outer_race, ball)?
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 117.29, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 162.1, "BPFO": 107.3, "BSF": 70.5, "FTF": 11.9}, "features": {"crest_factor": 9.38956, "impulse_factor": 16.2995...
An envelope spectrum derived from a bearing vibration measurement is shown; the reference markers locate BPFO, BPFI, BSF and FTF for this bearing geometry and shaft speed. Diagnose the bearing from this image, choosing from: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 121.63, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 162.1, "BPFO": 107.3, "BSF": 70.5, "FTF": 11.9}, "features": {"crest_factor": 9.4213, "impulse_factor": 16.04112...
This is a demodulated (Hilbert-envelope) spectrum computed from a bearing vibration snapshot; the dashed markers indicate where each bearing fault type would appear (BPFO, BPFI, BSF, FTF). What is the most likely bearing condition (normal, inner_race, outer_race, ball)?
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 76.64, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 160.1, "BPFO": 106.0, "BSF": 69.7, "FTF": 11.8}, "features": {"crest_factor": 12.49077, "impulse_factor": 20.9846...
You are looking at the envelope spectrum of a bearing's vibration signal. The marked vertical lines are the theoretical fault frequencies for the outer race, inner race, rolling elements, and cage. Classify the bearing condition as one of: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 74.09, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 160.1, "BPFO": 106.0, "BSF": 69.7, "FTF": 11.8}, "features": {"crest_factor": 10.73694, "impulse_factor": 18.0821...
You are looking at the envelope spectrum of a bearing's vibration signal. The marked vertical lines are the theoretical fault frequencies for the outer race, inner race, rolling elements, and cage. Based on the visible evidence, which condition applies: normal, inner_race, outer_race, ball?
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 82.44, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 160.1, "BPFO": 106.0, "BSF": 69.7, "FTF": 11.8}, "features": {"crest_factor": 9.54193, "impulse_factor": 15.8781,...
The image shows the envelope spectrum of a rolling-element bearing's vibration signal, with the characteristic fault frequencies (BPFO outer race, BPFI inner race, BSF ball, FTF cage) marked as reference lines. Determine the bearing's health state. Answer with exactly one of: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 70.24, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 160.1, "BPFO": 106.0, "BSF": 69.7, "FTF": 11.8}, "features": {"crest_factor": 10.24367, "impulse_factor": 16.9272...
An envelope spectrum derived from a bearing vibration measurement is shown; the reference markers locate BPFO, BPFI, BSF and FTF for this bearing geometry and shaft speed. Classify the bearing condition as one of: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 80.57, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 160.1, "BPFO": 106.0, "BSF": 69.7, "FTF": 11.8}, "features": {"crest_factor": 9.26842, "impulse_factor": 15.69276...
You are looking at the envelope spectrum of a bearing's vibration signal. The marked vertical lines are the theoretical fault frequencies for the outer race, inner race, rolling elements, and cage. Based on the visible evidence, which condition applies: normal, inner_race, outer_race, ball?
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 81.25, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 160.1, "BPFO": 106.0, "BSF": 69.7, "FTF": 11.8}, "features": {"crest_factor": 11.80659, "impulse_factor": 19.5323...
The plot is a Hilbert-envelope spectrum of a rotating bearing's acceleration signal, annotated with the bearing's characteristic defect frequencies. Diagnose the bearing from this image, choosing from: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 79.73, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 160.1, "BPFO": 106.0, "BSF": 69.7, "FTF": 11.8}, "features": {"crest_factor": 10.47255, "impulse_factor": 17.4789...
This is a demodulated (Hilbert-envelope) spectrum computed from a bearing vibration snapshot; the dashed markers indicate where each bearing fault type would appear (BPFO, BPFI, BSF, FTF). Determine the bearing's health state. Answer with exactly one of: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 60.71, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 160.1, "BPFO": 106.0, "BSF": 69.7, "FTF": 11.8}, "features": {"crest_factor": 10.47611, "impulse_factor": 17.0272...
The plot is a Hilbert-envelope spectrum of a rotating bearing's acceleration signal, annotated with the bearing's characteristic defect frequencies. Classify the bearing condition as one of: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 57.25, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 160.1, "BPFO": 106.0, "BSF": 69.7, "FTF": 11.8}, "features": {"crest_factor": 10.38088, "impulse_factor": 17.5707...
Here is the envelope spectrum of one vibration snapshot from a rolling-element bearing, with each characteristic fault-frequency family marked on the frequency axis. What is the most likely bearing condition (normal, inner_race, outer_race, ball)?
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 71.93, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 160.1, "BPFO": 106.0, "BSF": 69.7, "FTF": 11.8}, "features": {"crest_factor": 11.11689, "impulse_factor": 18.5326...
An envelope spectrum derived from a bearing vibration measurement is shown; the reference markers locate BPFO, BPFI, BSF and FTF for this bearing geometry and shaft speed. Determine the bearing's health state. Answer with exactly one of: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 80.99, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 158.1, "BPFO": 104.7, "BSF": 68.8, "FTF": 11.6}, "features": {"crest_factor": 11.08918, "impulse_factor": 18.4161...
You are looking at the envelope spectrum of a bearing's vibration signal. The marked vertical lines are the theoretical fault frequencies for the outer race, inner race, rolling elements, and cage. What is the most likely bearing condition (normal, inner_race, outer_race, ball)?
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 61.96, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 158.1, "BPFO": 104.7, "BSF": 68.8, "FTF": 11.6}, "features": {"crest_factor": 8.9233, "impulse_factor": 14.49889,...
You are looking at the envelope spectrum of a bearing's vibration signal. The marked vertical lines are the theoretical fault frequencies for the outer race, inner race, rolling elements, and cage. What is the most likely bearing condition (normal, inner_race, outer_race, ball)?
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 76.16, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 158.1, "BPFO": 104.7, "BSF": 68.8, "FTF": 11.6}, "features": {"crest_factor": 10.11545, "impulse_factor": 16.8311...
This is a demodulated (Hilbert-envelope) spectrum computed from a bearing vibration snapshot; the dashed markers indicate where each bearing fault type would appear (BPFO, BPFI, BSF, FTF). Diagnose the bearing from this image, choosing from: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 77.64, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 158.1, "BPFO": 104.7, "BSF": 68.8, "FTF": 11.6}, "features": {"crest_factor": 9.64702, "impulse_factor": 16.01062...
This is a demodulated (Hilbert-envelope) spectrum computed from a bearing vibration snapshot; the dashed markers indicate where each bearing fault type would appear (BPFO, BPFI, BSF, FTF). Based on the visible evidence, which condition applies: normal, inner_race, outer_race, ball?
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 82.98, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 158.1, "BPFO": 104.7, "BSF": 68.8, "FTF": 11.6}, "features": {"crest_factor": 10.10857, "impulse_factor": 16.8201...
This is a demodulated (Hilbert-envelope) spectrum computed from a bearing vibration snapshot; the dashed markers indicate where each bearing fault type would appear (BPFO, BPFI, BSF, FTF). Based on the visible evidence, which condition applies: normal, inner_race, outer_race, ball?
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 76.76, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 158.1, "BPFO": 104.7, "BSF": 68.8, "FTF": 11.6}, "features": {"crest_factor": 10.17124, "impulse_factor": 16.6358...
You are looking at the envelope spectrum of a bearing's vibration signal. The marked vertical lines are the theoretical fault frequencies for the outer race, inner race, rolling elements, and cage. Diagnose the bearing from this image, choosing from: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 79.32, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 158.1, "BPFO": 104.7, "BSF": 68.8, "FTF": 11.6}, "features": {"crest_factor": 11.25822, "impulse_factor": 18.7043...
The image shows the envelope spectrum of a rolling-element bearing's vibration signal, with the characteristic fault frequencies (BPFO outer race, BPFI inner race, BSF ball, FTF cage) marked as reference lines. Based on the visible evidence, which condition applies: normal, inner_race, outer_race, ball?
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 75.57, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 158.1, "BPFO": 104.7, "BSF": 68.8, "FTF": 11.6}, "features": {"crest_factor": 10.9933, "impulse_factor": 18.17084...
An envelope spectrum derived from a bearing vibration measurement is shown; the reference markers locate BPFO, BPFI, BSF and FTF for this bearing geometry and shaft speed. Diagnose the bearing from this image, choosing from: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 78.31, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 158.1, "BPFO": 104.7, "BSF": 68.8, "FTF": 11.6}, "features": {"crest_factor": 9.66523, "impulse_factor": 15.77369...
An envelope spectrum derived from a bearing vibration measurement is shown; the reference markers locate BPFO, BPFI, BSF and FTF for this bearing geometry and shaft speed. Diagnose the bearing from this image, choosing from: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 86.59, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 158.1, "BPFO": 104.7, "BSF": 68.8, "FTF": 11.6}, "features": {"crest_factor": 10.95398, "impulse_factor": 18.2461...
You are looking at the envelope spectrum of a bearing's vibration signal. The marked vertical lines are the theoretical fault frequencies for the outer race, inner race, rolling elements, and cage. Determine the bearing's health state. Answer with exactly one of: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 68.48, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 156.0, "BPFO": 103.2, "BSF": 67.9, "FTF": 11.5}, "features": {"crest_factor": 9.53749, "impulse_factor": 14.77646...
Here is the envelope spectrum of one vibration snapshot from a rolling-element bearing, with each characteristic fault-frequency family marked on the frequency axis. What is the most likely bearing condition (normal, inner_race, outer_race, ball)?
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 70.98, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 156.0, "BPFO": 103.2, "BSF": 67.9, "FTF": 11.5}, "features": {"crest_factor": 9.53506, "impulse_factor": 15.02908...
An envelope spectrum derived from a bearing vibration measurement is shown; the reference markers locate BPFO, BPFI, BSF and FTF for this bearing geometry and shaft speed. Based on the visible evidence, which condition applies: normal, inner_race, outer_race, ball?
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 75.04, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 156.0, "BPFO": 103.2, "BSF": 67.9, "FTF": 11.5}, "features": {"crest_factor": 9.87183, "impulse_factor": 15.17757...
You are looking at the envelope spectrum of a bearing's vibration signal. The marked vertical lines are the theoretical fault frequencies for the outer race, inner race, rolling elements, and cage. Determine the bearing's health state. Answer with exactly one of: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 52.96, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 156.0, "BPFO": 103.2, "BSF": 67.9, "FTF": 11.5}, "features": {"crest_factor": 11.04516, "impulse_factor": 17.5142...
The plot is a Hilbert-envelope spectrum of a rotating bearing's acceleration signal, annotated with the bearing's characteristic defect frequencies. Diagnose the bearing from this image, choosing from: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 56.94, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 156.0, "BPFO": 103.2, "BSF": 67.9, "FTF": 11.5}, "features": {"crest_factor": 9.91495, "impulse_factor": 15.55375...
An envelope spectrum derived from a bearing vibration measurement is shown; the reference markers locate BPFO, BPFI, BSF and FTF for this bearing geometry and shaft speed. What is the most likely bearing condition (normal, inner_race, outer_race, ball)?
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 46.75, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 156.0, "BPFO": 103.2, "BSF": 67.9, "FTF": 11.5}, "features": {"crest_factor": 11.59907, "impulse_factor": 18.2262...
This is a demodulated (Hilbert-envelope) spectrum computed from a bearing vibration snapshot; the dashed markers indicate where each bearing fault type would appear (BPFO, BPFI, BSF, FTF). Determine the bearing's health state. Answer with exactly one of: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 54.88, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 156.0, "BPFO": 103.2, "BSF": 67.9, "FTF": 11.5}, "features": {"crest_factor": 9.80762, "impulse_factor": 15.28441...
The plot is a Hilbert-envelope spectrum of a rotating bearing's acceleration signal, annotated with the bearing's characteristic defect frequencies. Based on the visible evidence, which condition applies: normal, inner_race, outer_race, ball?
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 71.25, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 156.0, "BPFO": 103.2, "BSF": 67.9, "FTF": 11.5}, "features": {"crest_factor": 10.30107, "impulse_factor": 16.0904...
You are looking at the envelope spectrum of a bearing's vibration signal. The marked vertical lines are the theoretical fault frequencies for the outer race, inner race, rolling elements, and cage. Based on the visible evidence, which condition applies: normal, inner_race, outer_race, ball?
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 54.27, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 156.0, "BPFO": 103.2, "BSF": 67.9, "FTF": 11.5}, "features": {"crest_factor": 10.94372, "impulse_factor": 17.0479...
An envelope spectrum derived from a bearing vibration measurement is shown; the reference markers locate BPFO, BPFI, BSF and FTF for this bearing geometry and shaft speed. Classify the bearing condition as one of: normal, inner_race, outer_race, ball.
inner_race
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "inner_race|0.014|-", "channel": "DE", "computed_snr": 53.79, "computed_verdict": "inner_race", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 156.0, "BPFO": 103.2, "BSF": 67.9, "FTF": 11.5}, "features": {"crest_factor": 8.7405, "impulse_factor": 13.7778, ...
You are looking at the envelope spectrum of a bearing's vibration signal. The marked vertical lines are the theoretical fault frequencies for the outer race, inner race, rolling elements, and cage. Diagnose the bearing from this image, choosing from: normal, inner_race, outer_race, ball.
ball
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "ball|0.007|-", "channel": "DE", "computed_snr": 24.58, "computed_verdict": "ball", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 162.1, "BPFO": 107.3, "BSF": 70.5, "FTF": 11.9}, "features": {"crest_factor": 4.39025, "impulse_factor": 5.51357, "kurtosis":...
This is a demodulated (Hilbert-envelope) spectrum computed from a bearing vibration snapshot; the dashed markers indicate where each bearing fault type would appear (BPFO, BPFI, BSF, FTF). Diagnose the bearing from this image, choosing from: normal, inner_race, outer_race, ball.
ball
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "ball|0.007|-", "channel": "DE", "computed_snr": 72.03, "computed_verdict": "ball", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 159.9, "BPFO": 105.9, "BSF": 69.6, "FTF": 11.8}, "features": {"crest_factor": 4.60975, "impulse_factor": 5.78945, "kurtosis":...
This is a demodulated (Hilbert-envelope) spectrum computed from a bearing vibration snapshot; the dashed markers indicate where each bearing fault type would appear (BPFO, BPFI, BSF, FTF). Classify the bearing condition as one of: normal, inner_race, outer_race, ball.
ball
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "ball|0.007|-", "channel": "DE", "computed_snr": 99.32, "computed_verdict": "ball", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 159.9, "BPFO": 105.9, "BSF": 69.6, "FTF": 11.8}, "features": {"crest_factor": 3.91959, "impulse_factor": 4.89979, "kurtosis":...
This is a demodulated (Hilbert-envelope) spectrum computed from a bearing vibration snapshot; the dashed markers indicate where each bearing fault type would appear (BPFO, BPFI, BSF, FTF). What is the most likely bearing condition (normal, inner_race, outer_race, ball)?
ball
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "ball|0.007|-", "channel": "DE", "computed_snr": 87.76, "computed_verdict": "ball", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 159.9, "BPFO": 105.9, "BSF": 69.6, "FTF": 11.8}, "features": {"crest_factor": 3.71641, "impulse_factor": 4.65329, "kurtosis":...
This is a demodulated (Hilbert-envelope) spectrum computed from a bearing vibration snapshot; the dashed markers indicate where each bearing fault type would appear (BPFO, BPFI, BSF, FTF). What is the most likely bearing condition (normal, inner_race, outer_race, ball)?
ball
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "ball|0.007|-", "channel": "DE", "computed_snr": 35.63, "computed_verdict": "ball", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 159.9, "BPFO": 105.9, "BSF": 69.6, "FTF": 11.8}, "features": {"crest_factor": 3.78661, "impulse_factor": 4.72246, "kurtosis":...
An envelope spectrum derived from a bearing vibration measurement is shown; the reference markers locate BPFO, BPFI, BSF and FTF for this bearing geometry and shaft speed. What is the most likely bearing condition (normal, inner_race, outer_race, ball)?
ball
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "ball|0.007|-", "channel": "DE", "computed_snr": 79.57, "computed_verdict": "ball", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 159.9, "BPFO": 105.9, "BSF": 69.6, "FTF": 11.8}, "features": {"crest_factor": 3.74227, "impulse_factor": 4.66915, "kurtosis":...
The image shows the envelope spectrum of a rolling-element bearing's vibration signal, with the characteristic fault frequencies (BPFO outer race, BPFI inner race, BSF ball, FTF cage) marked as reference lines. Classify the bearing condition as one of: normal, inner_race, outer_race, ball.
ball
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "ball|0.007|-", "channel": "DE", "computed_snr": 51.22, "computed_verdict": "ball", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 157.8, "BPFO": 104.4, "BSF": 68.7, "FTF": 11.6}, "features": {"crest_factor": 4.10859, "impulse_factor": 5.14006, "kurtosis":...
An envelope spectrum derived from a bearing vibration measurement is shown; the reference markers locate BPFO, BPFI, BSF and FTF for this bearing geometry and shaft speed. Based on the visible evidence, which condition applies: normal, inner_race, outer_race, ball?
ball
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "ball|0.007|-", "channel": "DE", "computed_snr": 86.32, "computed_verdict": "ball", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 157.8, "BPFO": 104.4, "BSF": 68.7, "FTF": 11.6}, "features": {"crest_factor": 3.8348, "impulse_factor": 4.7725, "kurtosis": 2...
This is a demodulated (Hilbert-envelope) spectrum computed from a bearing vibration snapshot; the dashed markers indicate where each bearing fault type would appear (BPFO, BPFI, BSF, FTF). Diagnose the bearing from this image, choosing from: normal, inner_race, outer_race, ball.
ball
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "ball|0.007|-", "channel": "DE", "computed_snr": 41.53, "computed_verdict": "ball", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 155.4, "BPFO": 102.9, "BSF": 67.6, "FTF": 11.4}, "features": {"crest_factor": 4.75551, "impulse_factor": 5.98153, "kurtosis":...
An envelope spectrum derived from a bearing vibration measurement is shown; the reference markers locate BPFO, BPFI, BSF and FTF for this bearing geometry and shaft speed. Classify the bearing condition as one of: normal, inner_race, outer_race, ball.
ball
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "ball|0.007|-", "channel": "DE", "computed_snr": 38.42, "computed_verdict": "ball", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 155.4, "BPFO": 102.9, "BSF": 67.6, "FTF": 11.4}, "features": {"crest_factor": 3.91957, "impulse_factor": 4.92529, "kurtosis":...
This is a demodulated (Hilbert-envelope) spectrum computed from a bearing vibration snapshot; the dashed markers indicate where each bearing fault type would appear (BPFO, BPFI, BSF, FTF). Determine the bearing's health state. Answer with exactly one of: normal, inner_race, outer_race, ball.
ball
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "ball|0.014|-", "channel": "DE", "computed_snr": 21.9, "computed_verdict": "ball", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 162.1, "BPFO": 107.3, "BSF": 70.5, "FTF": 11.9}, "features": {"crest_factor": 7.81086, "impulse_factor": 11.41106, "kurtosis":...
The image shows the envelope spectrum of a rolling-element bearing's vibration signal, with the characteristic fault frequencies (BPFO outer race, BPFI inner race, BSF ball, FTF cage) marked as reference lines. Classify the bearing condition as one of: normal, inner_race, outer_race, ball.
ball
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "ball|0.014|-", "channel": "DE", "computed_snr": 54.38, "computed_verdict": "ball", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 162.1, "BPFO": 107.3, "BSF": 70.5, "FTF": 11.9}, "features": {"crest_factor": 13.21466, "impulse_factor": 19.90325, "kurtosis...
You are looking at the envelope spectrum of a bearing's vibration signal. The marked vertical lines are the theoretical fault frequencies for the outer race, inner race, rolling elements, and cage. Based on the visible evidence, which condition applies: normal, inner_race, outer_race, ball?
ball
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "ball|0.014|-", "channel": "DE", "computed_snr": 21.89, "computed_verdict": "ball", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 159.9, "BPFO": 105.9, "BSF": 69.6, "FTF": 11.8}, "features": {"crest_factor": 7.89014, "impulse_factor": 11.2818, "kurtosis":...
The image shows the envelope spectrum of a rolling-element bearing's vibration signal, with the characteristic fault frequencies (BPFO outer race, BPFI inner race, BSF ball, FTF cage) marked as reference lines. Diagnose the bearing from this image, choosing from: normal, inner_race, outer_race, ball.
ball
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "ball|0.014|-", "channel": "DE", "computed_snr": 36.47, "computed_verdict": "ball", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 159.9, "BPFO": 105.9, "BSF": 69.6, "FTF": 11.8}, "features": {"crest_factor": 8.31534, "impulse_factor": 11.90793, "kurtosis"...
You are looking at the envelope spectrum of a bearing's vibration signal. The marked vertical lines are the theoretical fault frequencies for the outer race, inner race, rolling elements, and cage. What is the most likely bearing condition (normal, inner_race, outer_race, ball)?
ball
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "ball|0.014|-", "channel": "DE", "computed_snr": 59.13, "computed_verdict": "ball", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 159.9, "BPFO": 105.9, "BSF": 69.6, "FTF": 11.8}, "features": {"crest_factor": 9.47094, "impulse_factor": 13.86199, "kurtosis"...
You are looking at the envelope spectrum of a bearing's vibration signal. The marked vertical lines are the theoretical fault frequencies for the outer race, inner race, rolling elements, and cage. What is the most likely bearing condition (normal, inner_race, outer_race, ball)?
ball
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "ball|0.014|-", "channel": "DE", "computed_snr": 23.64, "computed_verdict": "ball", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 159.9, "BPFO": 105.9, "BSF": 69.6, "FTF": 11.8}, "features": {"crest_factor": 7.8389, "impulse_factor": 10.93768, "kurtosis":...
This is a demodulated (Hilbert-envelope) spectrum computed from a bearing vibration snapshot; the dashed markers indicate where each bearing fault type would appear (BPFO, BPFI, BSF, FTF). Diagnose the bearing from this image, choosing from: normal, inner_race, outer_race, ball.
ball
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "ball|0.014|-", "channel": "DE", "computed_snr": 35.97, "computed_verdict": "ball", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 157.9, "BPFO": 104.5, "BSF": 68.7, "FTF": 11.6}, "features": {"crest_factor": 6.92954, "impulse_factor": 9.59218, "kurtosis":...
An envelope spectrum derived from a bearing vibration measurement is shown; the reference markers locate BPFO, BPFI, BSF and FTF for this bearing geometry and shaft speed. Determine the bearing's health state. Answer with exactly one of: normal, inner_race, outer_race, ball.
ball
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "ball|0.014|-", "channel": "DE", "computed_snr": 24.56, "computed_verdict": "ball", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 157.9, "BPFO": 104.5, "BSF": 68.7, "FTF": 11.6}, "features": {"crest_factor": 7.45905, "impulse_factor": 10.15084, "kurtosis"...
The plot is a Hilbert-envelope spectrum of a rotating bearing's acceleration signal, annotated with the bearing's characteristic defect frequencies. Diagnose the bearing from this image, choosing from: normal, inner_race, outer_race, ball.
ball
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "ball|0.014|-", "channel": "DE", "computed_snr": 41.43, "computed_verdict": "ball", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 157.9, "BPFO": 104.5, "BSF": 68.7, "FTF": 11.6}, "features": {"crest_factor": 8.95827, "impulse_factor": 12.92221, "kurtosis"...
Here is the envelope spectrum of one vibration snapshot from a rolling-element bearing, with each characteristic fault-frequency family marked on the frequency axis. Diagnose the bearing from this image, choosing from: normal, inner_race, outer_race, ball.
ball
null
C
T-C1
{"anomaly": null, "bearing": "SKF6205", "bearing_group": "ball|0.014|-", "channel": "DE", "computed_snr": 37.88, "computed_verdict": "ball", "evidence_tier": "confirmed", "fault_freqs": {"BPFI": 157.9, "BPFO": 104.5, "BSF": 68.7, "FTF": 11.6}, "features": {"crest_factor": 6.36445, "impulse_factor": 8.5929, "kurtosis": ...
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CWRU — bearing fault classification from the envelope spectrum (reasoning track)

Part of the AI4Manufacturing FORGE corpus (Category C, task T-C1). Each record is the envelope spectrum of a 1 s rolling-element-bearing vibration window with the fault frequencies marked — the representation that supports faithful compute-then-check chain-of-thought. reasoning is empty here; a planned CWRU-annotated sibling will fill it (not yet published).

Records: 690 (splits {'train': 564, 'test': 126}); labels {'inner_race': 179, 'ball': 39, 'outer_race': 437, 'normal': 35}; evidence_tier {'confirmed': 690}.

Schema (7-field unified record)

field meaning
query the classification instruction (one of 30 deterministic paraphrases per representation)
image the rendered signal image (bytes embedded)
annot gold fault class: normal / inner_race / outer_race / ball
reasoning chain-of-thought (empty here; a planned -annotated sibling will fill it — not yet published)
cate / task C / T-C1 (signal fault classification)
metadata JSON string: representation, features, fault_freqs, computed_verdict, computed_snr, evidence_tier, sr_nondiagnosable, anomaly, size_in, load_hp, or_position, bearing, bearing_group, channel, rpm, fs, fr_hz, file_number, window_idx, image_sha256, split

Splits

train / test, bearing-wise (leakage-safe): all loads + both sample rates of a physical bearing stay on one side. normal is a single healthy bearing, so it is entirely in train and the test split is fault-only (inner/outer/ball from unseen bearings).

Provenance & reproducibility

Generated deterministically by forge_agent/examples/cwru/convert.py (250c7e5f89) → forge_model/CWRU/convert_cwru.py (229ee98152); see provenance.json for the full record.

Cleaning (all encoded in the pinned code): excluded the NTN 0.028″ files 3001–3008 (wrong bearing geometry) and the corrupt 191; flagged Smith & Randall (2015) non-diagnosable (sr_nondiagnosable) and acquisition-anomaly files; bearing-wise leakage-safe split (all loads + both sample rates of a physical bearing stay on one side). Evidence-gated, conflict-free release: a computed evidence_tier (from the label-independent envelope-spectrum detector, cross-checked against the Smith & Randall expert grades) curates the published set so every image supports — and never fights — its label. The spectrum/reasoning repo keeps confirmed only (faithful compute-then-check CoT); the perception repo keeps confirmed + non-conflicting weak (weak records where the detector confidently found a different pattern than the gold are dropped).

Caveats

  • Ball is the hard class — Smith & Randall (2015) grade most CWRU ball faults non-diagnosable (intermittent load-zone contact + smeared BSF), so many ball windows are weak/absent. The evidence gate keeps only the diagnosable ones, so the reasoning/spectrum track has the fewest ball records (confirmed-only) while perception also admits weak ball. A property of the data, not the converter.
  • Class balance — after gating, normal is the minority (CWRU ships few baseline files) and outer_race the majority; per-class counts are in the header above.
  • Eval: use the provided bearing-wise split; the within-condition (per-load) split inflates accuracy.

Source & license

Source: Case Western Reserve University Bearing Data Center (engineering.case.edu/bearingdatacenter), openly available for research. Diagnosability grades and anomaly flags from W. A. Smith & R. B. Randall, MSSP 64–65 (2015) 100–131; leakage-safe split per J. Hendriks et al., MSSP 169 (2022) 108732.

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