| id | field name | definition |
| 0 | RECORD_HEADER |
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| 1 | DEGRADED_INSTR_MDR |
| binary uint8 | size: 1 |
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Quality of MDR has been degraded from nominal due to an instrument degradation. Occurs if any of F_NN_DT, F_NN_PDP, F_NN_RAD, F_NN_WLS_U, F_NN_WLS_I, F_NN_SLS_U, F_NN_SLS_I, F_SAT, F_MIN in PCD_BASIC has been raised. Up to processor version 3.2.11, F_HOT also counted as instrument degradation
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| 2 | DEGRADED_PROC_MDR |
| binary uint8 | size: 1 |
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Quality of MDR has been degraded from nominal due to a processing degradation. Occurs if F_MISS or F_OLD_CAL_DATA in PCD_BASIC have been raised
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| 3 | PCD_BASIC |
| binary record "" | size: 190 |
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| 4 | OBSERVATION_MODE |
| binary uint8 | size: 1 |
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Observation mode (0 = nadir, 1 = north pole scanning, 2 = south pole scanning, 3 = other scanning, 4 = nadir static, 5 = other static, 6 = dark, 7 = LED, 8 = WLS, 9 = SLS, 10 = SLS over diffuser, 11 = sun, 12 = moon, 13 = idle, 14 = test, 15 = dump, 16 = invalid)
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| 5 | PMD_TRANSFER |
| binary uint8 | size: 1 |
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PMD transfer mode (1 = band + raw, 2 = band + mixed, 3 = raw transfer, 4 = various (PMD transfer mode changes within a scan))
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| 6 | PMD_READOUT |
| binary uint8 | size: 1 |
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PMD readout mode (0 = nominal, 1 = solar, 2 = calibration, 3 = various (PMD readout mode changes within a scan))
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| 7 | SCANNER_ANGLE |
| binary array[65] | size: 260 |
Scanner viewing angle with additional element at end of scan
| binary int32 (double) | size: 4 |
unit: "1e-6 degrees"
converted unit: "degrees" (multiply by 1/1000000)
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| 8 | GEO_BASIC |
| binary record "" | size: 832 |
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| 9 | PDP_TEMP |
| binary int32 (double) | size: 4 |
Temperature of the pre-disperser prism for reference to the corresponding spectral calibration parameters
unit: "1e-3 K"
converted unit: "K" (multiply by 1/1000)
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| 10 | FPA_TEMP |
| binary array[6] | size: 24 |
FPA temperature, per channel
| binary int32 (double) | size: 4 |
unit: "1e-3 K"
converted unit: "K" (multiply by 1/1000)
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| 11 | RAD_TEMP |
| binary int32 (double) | size: 4 |
Radiator temperature
unit: "1e-3 K"
converted unit: "K" (multiply by 1/1000)
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| 12 | INTEGRATION_TIMES |
| binary array[10] | size: 40 |
Integration times per band
| binary int32 (double) | size: 4 |
unit: "1e-6 s"
converted unit: "s" (multiply by 1/1000000)
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| 13 | REC_LENGTH |
| binary array[10] | size: 20 |
Number of elements per band data record for the 10 bands that follow (n1, n2, ..., n10)
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| 14 | NUM_RECS |
| binary array[10] | size: 20 |
Number of band data records for the 10 bands that follow (m1, m2, ..., m10)
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| 15 | WAVELENGTH_1A |
| binary array[dim_0] |
Wavelength for Band 1a
dim_0: int(../REC_LENGTH[0])
| binary int32 (double) | size: 4 |
unit: "1e-6 nm"
converted unit: "nm" (multiply by 1/1000000)
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| 16 | WAVELENGTH_1B |
| binary array[dim_0] |
Wavelength for Band 1b
dim_0: int(../REC_LENGTH[1])
| binary int32 (double) | size: 4 |
unit: "1e-6 nm"
converted unit: "nm" (multiply by 1/1000000)
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| 17 | WAVELENGTH_2A |
| binary array[dim_0] |
Wavelength for Band 2a
dim_0: int(../REC_LENGTH[2])
| binary int32 (double) | size: 4 |
unit: "1e-6 nm"
converted unit: "nm" (multiply by 1/1000000)
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| 18 | WAVELENGTH_2B |
| binary array[dim_0] |
Wavelength for Band 2b
dim_0: int(../REC_LENGTH[3])
| binary int32 (double) | size: 4 |
unit: "1e-6 nm"
converted unit: "nm" (multiply by 1/1000000)
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| 19 | WAVELENGTH_3 |
| binary array[dim_0] |
Wavelength for Band 3
dim_0: int(../REC_LENGTH[4])
| binary int32 (double) | size: 4 |
unit: "1e-6 nm"
converted unit: "nm" (multiply by 1/1000000)
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| 20 | WAVELENGTH_4 |
| binary array[dim_0] |
Wavelength for Band 4
dim_0: int(../REC_LENGTH[5])
| binary int32 (double) | size: 4 |
unit: "1e-6 nm"
converted unit: "nm" (multiply by 1/1000000)
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| 21 | WAVELENGTH_PP |
| binary array[dim_0] |
Wavelength for PMD p
dim_0: int(../REC_LENGTH[6])
| binary int32 (double) | size: 4 |
unit: "1e-6 nm"
converted unit: "nm" (multiply by 1/1000000)
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| 22 | WAVELENGTH_PS |
| binary array[dim_0] |
Wavelength for PMD s
dim_0: int(../REC_LENGTH[7])
| binary int32 (double) | size: 4 |
unit: "1e-6 nm"
converted unit: "nm" (multiply by 1/1000000)
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| 23 | WAVELENGTH_SWPP |
| binary array[dim_0] |
Wavelength for short wavelength range (block B) PMD p
dim_0: int(../REC_LENGTH[8])
| binary int32 (double) | size: 4 |
unit: "1e-6 nm"
converted unit: "nm" (multiply by 1/1000000)
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| 24 | WAVELENGTH_SWPS |
| binary array[dim_0] |
Wavelength for short wavelength range (block B) PMD s
dim_0: int(../REC_LENGTH[9])
| binary int32 (double) | size: 4 |
unit: "1e-6 nm"
converted unit: "nm" (multiply by 1/1000000)
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| 25 | BAND_1A |
| binary array[dim_0, dim_1] |
Band data record for Band 1a
dim_0: int(../NUM_RECS[0])
dim_1: int(../REC_LENGTH[0])
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| 26 | BAND_1B |
| binary array[dim_0, dim_1] |
Band data record for Band 1b
dim_0: int(../NUM_RECS[1])
dim_1: int(../REC_LENGTH[1])
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| 27 | BAND_2A |
| binary array[dim_0, dim_1] |
Band data record for Band 2a
dim_0: int(../NUM_RECS[2])
dim_1: int(../REC_LENGTH[2])
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| 28 | BAND_2B |
| binary array[dim_0, dim_1] |
Band data record for Band 2b
dim_0: int(../NUM_RECS[3])
dim_1: int(../REC_LENGTH[3])
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| 29 | BAND_3 |
| binary array[dim_0, dim_1] |
Band data record for Band 3
dim_0: int(../NUM_RECS[4])
dim_1: int(../REC_LENGTH[4])
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| 30 | BAND_4 |
| binary array[dim_0, dim_1] |
Band data record for Band 4
dim_0: int(../NUM_RECS[5])
dim_1: int(../REC_LENGTH[5])
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| 31 | BAND_PP |
| binary array[dim_0, dim_1] |
Band data record for PMD p
dim_0: int(../NUM_RECS[6])
dim_1: int(../REC_LENGTH[6])
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| 32 | BAND_PS |
| binary array[dim_0, dim_1] |
Band data record for PMD s
dim_0: int(../NUM_RECS[7])
dim_1: int(../REC_LENGTH[7])
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| 33 | BAND_SWPP |
| binary array[dim_0, dim_1] |
Band data record for short wavelength range (block B) PMD p
dim_0: int(../NUM_RECS[8])
dim_1: int(../REC_LENGTH[8])
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| 34 | BAND_SWPS |
| binary array[dim_0, dim_1] |
Band data record for short wavelength range (block B) PMD s
dim_0: int(../NUM_RECS[9])
dim_1: int(../REC_LENGTH[9])
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