| 数据搜索系统,热门电子元器件搜索 |
|
ADM1029ARQZ-R7 数据表(PDF) 12 Page - ON Semiconductor |
|
|
|||||||||||||||||||||||||||||
ADM1029ARQZ-R7 数据表(HTML) 12 Page - ON Semiconductor |
|
12 / 50 page ![]() Rev. 1 | Page 12 of 50 | www.onsemi.com Table III. Temperature-Specific Registers Address Description 0x06 Temp Devices Installed 0x30 Local Temp Offset 0x31 Remote 1 Temp Offset 0x32 Remote 2 Temp Offset 0x40 Local Temp Fault Action 0x41 Remote 1 Temp Fault Action 0x42 Remote 2 Temp Fault Action 0x48 Local Temp Cooling Action 0x49 Remote 1 Temp Cooling Action 0x4A Remote 2 Temp Cooling Action 0x80 Local Temp TMIN 0x81 Remote 1 Temp TMIN 0x82 Remote 2 Temp TMIN 0x88 Local Temp TRANGE/THYST 0x89 Remote 1 Temp TRANGE/THYST 0x8A Remote 2 Temp TRANGE/THYST 0x90 Local Temp High Limit 0x91 Remote 1 Temp High Limit 0x92 Remote 2 Temp High Limit 0x98 Local Temp Low Limit 0x99 Remote 1 Temp Low Limit 0x9A Remote 2 Temp Low Limit 0xA0 Local Temp Value 0xA1 Remote 1 Temp Value 0xA2 Remote 2 Temp Value The flowchart in Figure 7 shows how to configure the ADM1029 to measure temperature. It also shows how to configure the ADM1029’s behavior for out-of-limit temperature measurements. FAN INTERFACING The ADM1029 can be interfaced to many types of fan. It can be used to control the speed of a simple two-wire fan. It can mea- sure the speed of a fan with a tach output, and it can accept a logic input from fans with a FAULT output. By means of a shorting link in the fan connector it can also determine if a fan is present or not and if fans have been hot-swapped. The ADM1029 can control or monitor one or two fans. Bits 0 and 1 of the Fans Supported In System Register (03h) tell the ADM1029 how many fans it should be controlling/monitoring. In the following descriptions “installed” means that the corre- sponding bit of register 03h is set and the ADM1029 expects to see a fan interfaced to it. It does not necessarily mean that the fan is actually, physically, connected. If a fan is installed, events such as a fault output and hot-swapping of the fan can cause INT and CFAULT to be asserted, unless they are masked for that particular event. If a fan is not installed, but is still physically connected to the ADM1029, these events will be ignored with respect to asserting INT or CFAULT, but will still be reflected in the corresponding Fan Status Register. Setting Bit 0 indicates that Fan 1 is installed and is set to 1 at power-up by default. Setting Bit 1 indicates that Fan 2 is installed and depends on the state of Pin 18 (TMIN/INSTALL) at power-up. LAYOUT CONSIDERATIONS Digital boards can be electrically noisy environments, and care must be taken to protect the analog inputs from noise, particu- larly when measuring the very small voltages from a remote diode sensor. The following precautions should be taken: 1. Place the ADM1029 as close as possible to the remote sens- ing diode. Provided that the worst noise sources such as clock generators, data/address buses, and CRTs are avoided, this distance can be 4 to 8 inches. 2. Route the D+ and D– tracks close together, in parallel, with grounded guard tracks on each side. Provide a ground plane under the tracks if possible. 3. Use wide tracks to minimize inductance and reduce noise pickup. Ten mil track minimum width and spacing is recommended. GND D+ D – GND 10MIL 10MIL 10MIL 10MIL 10MIL 10MIL 10MIL Figure 6. Arrangement of Signal Tracks 4. Try to minimize the number of copper/solder joints, which can cause thermocouple effects. Where copper/solder joints are used, make sure that they are in both the D+ and D– path and at the same temperature. Thermocouple effects should not be a major problem as 1°C corresponds to about 240 µV, and thermocouple voltages are about 3 µV/ oC of temperature difference. Unless there are two thermocouples with a big temperature differential between them, thermocouple voltages should be much less than 200 µV. 5. Place 0.1 µF bypass and 1000 pF input filter capacitors close to the ADM1029. 6. If the distance to the remote sensor is more than 8 inches, the use of twisted pair cable is recommended. This will work up to about 6 to 12 feet. 7. For really long distances (up to 100 feet), use shielded twisted pair such as Belden #8451 microphone cable. Con- nect the twisted pair to D+ and D– and the shield to GND close to the ADM1029. Leave the remote end of the shield unconnected to avoid ground loops. Because the measurement technique uses switched current sources, excessive cable and/or filter capacitance can affect the measurement. When using long cables, the filter capacitor may be reduced or removed. Cable resistance can also introduce errors. 1 Ω series resistance introduces about 0.5°C error. TEMPERATURE-RELATED REGISTERS Table III is a list of registers on the ADM1029 that are specific to temperature measurement and control. ADM1029 |
|
链接网址 |
| ALLDATASHEET是否为您带来帮助? [ DONATE ] |
关于 Alldatasheet | 广告服务 | 联系我们 | 隐私政策 | 数据表链接 | 链接交换 | 制造商名单 All Rights Reserved©Alldatasheet.com |
| Russian : Alldatasheetru.com | Korean : Alldatasheet.co.kr | Spanish : Alldatasheet.es | French : Alldatasheet.fr | Italian : Alldatasheetit.com Portuguese : Alldatasheetpt.com | Polish : Alldatasheet.pl | Vietnamese : Alldatasheet.vn Indian : Alldatasheet.in | Mexican : Alldatasheet.com.mx | British : Alldatasheet.co.uk | New Zealand : Alldatasheet.co.nz |
|
Family Site : ic2ic.com |
icmetro.com |