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SDLT 220 and SDLT 320 Design & Integration Guide CHAPTER 4: Thermal Specifications
81-81148-01 March 2004 4-7
To evaluate different modes of operation, data was recorded either with data
compression enabled or disabled. Thermocouples were affixed to key board
components as shown in Figure 4-2. In addition, a thermocouple was placed within
the tape path enclosure to monitor the approximate temperature of the media, as
shown in Figure 4-4.
The results of the testing are listed in Table 4-1 and Table 4-2 below.
Table 4-1. SDLT 220/320 Steady State Temperatures: Embedded Bezel
Component
10 degrees C
Ambient
25 degrees C
Ambient
40 degrees C
Ambient
Case
Maximum *
Continuous
Operating
Temperature
(degrees C)
Compression
2:1
Compression
2:1
Compression
2:1
On Off On Off On Off
Temperature
(degrees C)
Temperature
(degrees C)
Temperature
(degrees C)
1 HiFN 42.4 39.9 57.4 55.0 72.5 69.6 96
2 Hydra 1 45.8 46.5 61.3 62.0 77.4 76.9 113
3 Hydra 2 42.3 42.9 57.6 58.5 73.6 73.2 113
4 Coldfire 23.3 23.4 38.5 38.5 53.6 53.5 83
5 3.3-5.0 V Reg 34.2 33.4 49.4 48.8 64.7 63.8 119
6 Front Sensor 17.0 17.0 32.0 32.0 47.0 47.0 52
7 Rear Sensor 35.2 34.3 50.2 49.9 65.8 64.7 125
8 Headboard 33.2 33.9 47.7 48.4 62.8 62.7 125
9 Qlogic 29.7 29.3 45.3 45.0 60.9 60.1 80
10 Media Sensor (Heads) 19.3 19.6 34.6 34.7 50.3 50.2 n/a
* The number in the Case Maximum Continuous Operating Temperature column are absolute limits
that should not be exceeded. In other words, expect physical component damage or failure if you
exceed these operating temperature limits by not providing adequate air flow through the drive.
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