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SE95DP Datasheet(PDF) 11 Page - NXP Semiconductors |
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SE95DP Datasheet(HTML) 11 Page - NXP Semiconductors |
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11 / 20 page ![]() Philips Semiconductors Product data sheet SE95 Ultra high accuracy digital temperature sensor and thermal Watchdog ™ 2004 Dec 21 11 Configuration register The Configuration register is a write/read register and contains an 8-bit non-complement data byte that is used to configure the device for different operating conditions. The Configuration register table (Table 3) shows the bit assignments of this register. Table 3. Configuration register table Bit Name R/W POR Description B7 Reserved R/W 0 Reserved for manufacturer’s use. B6–B5 Rate val R/W 00 Sets the conversion rate: 00 = 10 conversions/sec (default) 01 = 0.125 conversions/sec 10 = 1 conversions/sec 11 = 30 conversions/sec B4–B3 OS Fault queue R/W 0 For OS Fault Queue programming. Programmable queue data = 0, 1 ,2, 3 for queue value = 1, 2, 4, 6 respectively. Default = 0. B2 OS Polarity R/W 0 For OS Polarity selection. 1 = OS active HIGH, 0 = OS active LOW (default). B1 OS Comp/Interrupt R/W 0 For OS operation Mode selection. 1 = OS interrupt, 0 = OS comparator (default). B0 Shut-down R/W 0 For Device Operation Mode selection. 1 = Shut-down, 0 = Normal (default). Temperature Register (Temp) The Temp register holds the digital result of temperature measurement or monitor at the end each A-to-D conversion. This register is read only and contains two 8-bit data bytes consisting of one most significant (MS) data byte and one least significant (LS) data byte. However, only 13 bits of those two bytes are used to store the Temp data in 2’s complement format with the resolution of 0.03125 °C. The Temp register table (Table 4) shows the bit arrangement of the Temp data in the data bytes. Table 4. Temp Register table Temp MS byte Temp LS byte MSB LSB MSB LSB B7 B6 B5 B4 B3 B2 B1 B0 B7 B6 B5 B4 B3 B2 B1 B0 for 11-bit Temp Data Not used MSB LSB D10 D9 D8 D7 D6 D5 D4 D3 D2 D1 D0 X X X X X for 13-bit Temp Data Not used MSB LSB D12 D11 D10 D9 D8 D7 D6 D5 D4 D3 D2 D1 D0 X X X When reading the Temp register, all 16 bits of the two data bytes (MS byte and LS byte) must be collected and then the 2’s complement data value according to the desired resolution must be selected for the temperature calculation. The Table 4 has shown the examples for two cases: 11-bit 2’s complement data value, and 13-bit 2’s complement data value. When converting into the temperature the proper resolution must be used as listed in Table 5 using either one of these two formulae: 1. If the Temp Data MSB = 0, then: Temp Value ( °C) = +(Temp Data) × Value Resolution 2. If the Temp Data MSB = 1, then: Temp Value ( °C) = –(2’s complement Temp Data) × Value Resolution Table 6 shows some examples of the results for the 11-bit calculations. Table 5. Temp Data and Temp Value resolution Data resolution Value resolution 8 bits 1.0 °C 9 bits 0.5 °C 10 bits 0.25 °C 11 bits 0.125 °C 12 bits 0.0625 °C 13 bits 0.03125 °C |
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