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33975 датащи(PDF) 22 Page - Freescale Semiconductor, Inc |
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33975 датащи(HTML) 22 Page - Freescale Semiconductor, Inc |
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22 / 32 page ![]() Analog Integrated Circuit Device Data 22 Freescale Semiconductor 33975 TYPICAL APPLICATIONS OPERATIONAL MODES TYPICAL APPLICATIONS The 33975’s primary function is the detection of open or closed switch contacts. However, there are many features that allow the device to be used in a variety of applications. The following is a list of applications to consider for the IC: • Sensor Power Supply • Switch Monitor for Metallic or Elastomeric Switches • Analog Sensor Inputs (Ratiometric) • Power MOSFET/LED Driver and Monitor • Multiple 33975 Devices in a Module System The following paragraphs describe the applications in detail. SENSOR POWER SUPPLY Each input may be used to supply current to sensors external to a module. Many sensors such as Hall effect, pressure sensors, and temperature sensors require a supply voltage to power the sensor and provide an open collector or analog output. Figure 12 shows how the 33975 may be used to supply power and interface to these types of sensors. In an application where the input makes continuous transitions, consider using the wake-up/interrupt command to disable the interrupt for the particular input. Figure 12. Sensor Power Supply METALLIC/ELASTOMERIC SWITCH Metallic switch contacts often develop higher contact resistance over time owing to contact corrosion. The corrosion is induced by humidity, salt, and other elements that exist in the environment. For this reason the 33975 provides two settings for contacts. When programmed for metallic switches, the device provides higher wetting current to keep switch contacts free of oxides. The higher current occurs for the first 20 ms of switch closure. Where longer duration of wetting current is desired, the user may send the wetting current timer command and disable the timer. Wetting current will be continuous to the closed switch. After the time period set by the MCU, the wetting current timer command may be sent again to enable the timer. The user must consider power dissipation on the device when disabling the timer. (Refer to the paragraph entitled Temperature Monitor, page 21.) To increase the amount of wetting current for a switch contact, the user has two options. Higher wetting current to a switch may be achieved by paralleling SGn or SPn inputs. This will increase wetting current by 32 mA for each input added to the switch-to- ground contact and 16 mA for switch- to-battery contacts. The second option is to simply add an external resistor pull-up to the VPWR supply for switch-to- ground inputs or a resistor to ground for a switch-to-battery input. Adding an external resistor has no effect on the operation of the device. Elastomeric switch contacts are made of carbon and have a high contact resistance. Resistance of 1.0 kΩ is common. In applications with elastomeric switches, the pull-up and pull-down currents must be reduced to prevent excessive power dissipation at the contact. Programming for a lower current settings is provided in the Functional Device Operation Section beginning on page 14 under Table 8, Metallic Command. ANALOG SENSOR INPUTS (RATIOMETRIC) The 33975 features a 22-to-1 analog multiplexer. Setting the binary code for a specific input in the analog command allows the microcontroller to perform analog to digital conversion on any of the 22 inputs. On rising edge of CS the multiplexer connects a requested input to the AMUX terminal. The AMUX terminal is clamped to max of VDD volts regardless of the higher voltages present on the input terminal. After an input has been selected as the analog, the corresponding bit in the next SO data stream will be logic [0]. The input terminal, when selected as analog, may be configured as analog with high impedance, analog with 4.0 mA pull-up, or analog with 32 mA pull-up. Figure 13, page 23, shows how the 33975 may be used to provide a ratiometric reading of variable resistive input. VDD VPWR VDD SI SO SCLK INT CS MOSI MISO VBAT SP0 SP1 SP7 SG1 SG0 SG12 SG13 WAKE 33975 SCLK CS INT MCU 32 4.0 VPWR VPWR 32 mA IOC[7:0] X Reg Input Capture Timer Port Hall-Effect Sensor mA 32 4.0 VPWR VPWR mA VBAT mA mA AMUX 0V VPWR SG13 0V VDD AMUX |
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