Part Number Hot Search : 
MIC2007 LBS70A10 3266X500 CX9CSM2 5MT100 SD120P TC534 MOS5W
Product Description
Full Text Search
 

To Download NSC05029 Datasheet File

  If you can't view the Datasheet, Please click here to try to view without PDF Reader .  
 
 


  Datasheet File OCR Text:
 LM74 SPI/MICROWIRE Digital Temperature Sensor
June 1999
LM74 SPI/MICROWIRETM Digital Temperature Sensor
General Description
The LM74 is a temperature sensor, Delta-Sigma analog-to-digital converter with an SPI and MICROWIRE compatible interface. The host can query the LM74 at any time to read temperature. A shutdown mode decreases power consumption to less than 10 A. This mode is useful in systems where low average power consumption is critical. The LM74 has 12-bit plus sign temperature resolution (0.0625C per LSB) while operating over a temperature range of -55C to +150C. The LM74's 3.0V to 5.5V supply voltage range, low supply current and simple SPI interface make it ideal for a wide range of applications. These include thermal management and protection applications in hard disk drives, printers, electronic test equipment, and office electronics. n Electronic Test Equipment
Features
n 0.0625C temperature resolution. n Shutdown mode conserves power between temperature reading n SPI and MICROWIRE Bus interface n SO-8 package saves space
Key Specifications
n Supply Voltage n Supply Current operating shutdown n Temperature Accuracy -10C to 65C -25C to 110C -55C to 125C 3.0V to 5.5V 310 A (typ) 520 A (max) 7 A (typ)
Applications
n n n n System Thermal Management Personal Computers Disk Drives Office Electronics
1.25C(max) 2.1C(max) 3C(max)
Simplified Block Diagram
DS100909-1
MICROWIRE (R) is a registered trademark of National Semiconductor Corporation.
(c) 1999 National Semiconductor Corporation
DS100909
www.national.com
Connection Diagram
SO-8
DS100909-2
TOP VIEW NS Package Number M08B
Ordering Information
Order Number LM74CIM-3 LM74CIMX-3 LM74CIM-5 LM74CIMX-5 NS Package Number SO-8, M08B SO-8, M08B SO-8, M08B SO-8, M08B Supply Voltage 3.0V to 3.6V 3.0V to 3.6V 4.5V to 5.5V 4.5V to 5.5V Transport Media 95 Units in Rail 2500 Units in Tape and Reel 95 Units in Rail 2500 Units in Tape and Reel
Pin Descriptions
Label SI/O SC NC GND NC NC CS V+ Pin # 1 2 3 4 5 6 7 8 Function Slave Input/Output - Serial bus bi-directional data line. Shmitt trigger input. Slave Clock - Serial bus clock Shmitt trigger input line. No Connection Power Supply Ground No Connection No Connection Chip Select input. Positive Supply Voltage Input Typical Connection From and to Controller From Controller No Connection Ground No Connection No Connection From Controller DC Voltage from 3.0V to 5.5V. Bypass with a 0.1 F ceramic capacitor.
www.national.com
2
Typical Application
DS100909-3
FIGURE 1. COP Microcontroller Interface
3
www.national.com
Absolute Maximum Ratings (Note 1)
Supply Voltage -0.3V to 6.0V Voltage at any Pin -0.3V to V+ + 0.3V Input Current at any Pin (Note 2) 5 mA Package Input Current (Note 2) 20 mA Storage Temperature -65C to +150C Soldering Information, Lead Temperature SOP Package (Note 3) Vapor Phase (60 seconds) 215C Infrared (15 seconds) 220C
ESD Susceptibility (Note 4) Human Body Model Machine Model
2000V 200V
Operating Ratings
Specified Temperature Range (Note 5) Supply Voltage Range (+VS) TMIN to TMAX -55C to +150C +3.0V to +5.5V
Temperature-to-Digital Converter Characteristics
Unless otherwise noted, these specifications apply for V+ = 3.0V to 3.6V for the LM74CIM-3 and V+ = 4.5V to 5.5V for the LM74CIM-5 (Note 6). Boldface limits apply for TA = TJ = TMIN to TMAX; all other limits TA = TJ = +25C, unless otherwise noted. Parameter Temperature Error (Note 6) Conditions TA = -10C to +65C TA = -25C to +110C TA = -40C to +85C TA = -40C to +110C TA = -55C to +125C TA = -55C to +150C Resolution Temperature Conversion Time Quiescent Current (Note 9) Serial Bus Inactive Serial Bus Active Shutdown Mode, V+ = 3.3V Shutdown Mode, V+ = 5V 13 280 310 310 7 8 425 520 425 520 Typical (Note 7) LM74-5 Limits (Note 8) LM74-3 Limits (Note 8) Units (Limit) C (max) C (max) C (max) C (max) C (max) C (max) Bits ms (max) A (max) A A A
1.25 2.1
+2.65/-1.65 +2.65/ -2.0
1.25
+2.65/-2.15
2.15
+2.65/-2.15
3.0 5.0
3.5 5.0
Logic Electrical Characteristics
DIGITAL DC CHARACTERISTICS Unless otherwise noted, these specifications apply for V+ = 3.0V to 3.6V for the LM74CIM-3 and V+ = 4.5V to 5.5V for the LM74CIM-5. Boldface limits apply for TA = TJ = TMIN to TMAX; all other limits TA = TJ = +25C, unless otherwise noted. Symbol VIN(1) VIN(0) Parameter Logical "1" Input Voltage Logical "0" Input Voltage Input Hysteresis Voltage IIN(1) IIN(0) CIN VOH VOL IO_TRI-STATE Logical "1" Input Current Logical "0" Input Current All Digital Inputs High Level Output Voltage Low Level Output Voltage TRI-STATE Output Leakage Current IOH = -400 A IOL = +2 mA VO = GND VO = V+ V+ = 3.0V to 3.6V V+ = 4.5V to 5.5V VIN = V+ VIN = 0V 0.8 0.8 0.005 -0.005 20 2.4 0.4 -1 +1 Conditions Typical (Note 7) Limits (Note 8) V+ x 0.7 V+ + 0.3 -0.3 V+ x 0.3 0.35 0.33 3.0 -3.0 Units (Limit) V (min) V (max) V (min) V (max) V (min) V (min) A (max) A (min) pF V (min) V (max) A (min) A(max)
www.national.com
4
Logic Electrical Characteristics
(Continued)
SERIAL BUS DIGITAL SWITCHING CHARACTERISTICS Unless otherwise noted, these specifications apply for V+ = 3.0V to 3.6V for the LM74CIM-3 and V+ = 4.5V to 5.5V for the LM74CIM-5, CL (load capacitance) on output lines = 100 pF unless otherwise specified. Boldface limits apply for TA = TJ = TMIN to TMAX; all other limits TA = TJ = +25C, unless otherwise noted. Symbol t1 t2 t3 t4 t5 t6 t7 SC (Clock) Period CS Low to SC (Clock) High Set-Up Time CS Low to Data Out (SO) Delay SC (Clock) Low to Data Out (SO) Delay CS High to Data Out (SO) TRI-STATE SC (Clock) High to Data In (SI) Hold Time Data In (SI) Set-Up Time to SC (Clock) High Parameter Conditions Typical (Note 7) Limits (Note 8) 0.33 DC 100 70 100 200 50 30 Units (Limit) s (min) (max) ns (max) ns (max) ns (max) ns (min) ns (min) ns (min)
DS100909-4
FIGURE 2. Data Output Timing Diagram
DS100909-5
FIGURE 3. TRI-STATE Data Output Timing Diagram
DS100909-6
FIGURE 4. Data Input Timing Diagram
Note 1: Absolute Maximum Ratings indicate limits beyond which damage to the device may occur. DC and AC electrical specifications do not apply when operating the device beyond its rated operating conditions. Note 2: When the input voltage (VI) at any pin exceeds the power supplies (VI < GND or VI > +VS) the current at that pin should be limited to 5 mA. The 20 mA maximum package input current rating limits the number of pins that can safely exceed the power supplies with an input current of 5 mA to four. Note 3: See AN-450 "Surface Mounting Methods and Their Effect on Product Reliability" or the section titled "Surface Mount" found in a current National Semiconductor Linear Data Book for other methods of soldering surface mount devices. Note 4: Human body model, 100 pF discharged through a 1.5 k resistor. Machine model, 200 pF discharged directly into each pin.
5
www.national.com
Logic Electrical Characteristics
(Continued)
Note 5: The life expectancy of the LM74 will be reduced when operating at elevated temperatures. LM74 JA (thermal resistance, junction-to-ambient) when attached to a printed circuit board with 2 oz. foil is summarized in the table below:
Device Number LM74CIM
NS Package Number M08B
Thermal Resistance (JA) 160C/W
Note 6: Both part numbers of the LM74 will operate properly over the V+ supply voltage range of 3V to 5.5V. The devices are tested and specified for rated temperature error at their nominal supply voltage for temperature ranges of -10C to +65C, -55C to +125C and -55C to +150C. The temperature error for temperature ranges of -40C to +85C, -25C to +110C and -40C to +110C include error induced by power supply variation of 5% from the nominal value. Temperature error will increase by 0.3C for a power supply voltage (V+) variation of 10% from the nominal value. Note 7: Typicals are at TA = 25C and represent most likely parametric norm. Note 8: Limits are guaranteed to National's AOQL (Average Outgoing Quality Level). Note 9: This specification is provided only to indicate how often temperature data is updated. The LM74 can be read at any time without regard to conversion state (and will yield last conversion result). A conversion in progress will not be interrupted. The output shift register will be updated at the completion of the read and a new conversion restarted. Note 10: For best accuracy, minimize output loading. Higher sink currents can affect sensor accuracy with internal heating. This can cause an error of 0.64C at full rated sink current and saturation voltage based on junction-to-ambient thermal resistance.
www.national.com
6
Electrical Characteristics
DS100909-8
FIGURE 5. Temperature-to-Digital Transfer Function (Non-linear scale for clarity)
TRI-STATE Test Circuit
DS100909-7
7
www.national.com
Typical Performance Characteristics
Average Power-On Reset Voltage vs Temperature Static Supply Current vs Temperature Temperature Error
DS100909-22 DS100909-23 DS100909-21
1.0 Functional Description
The LM74 temperature sensor incorporates a band-gap type temperature sensor and 12-bit plus sign ADC (Delta-Sigma Analog-to-Digital Converter). Compatibility of the LM74's two wire serial interface with SPI and MICROWIRE allows simple communications with common microcontrollers and processors. Shutdown mode can be used to optimize current drain for different applications. A manufacture's ID register identifies the LM74 as National Semiconductor product. 1.1 POWER UP AND POWER DOWN The LM74 always powers up in a known state. The power up default condition is continuous conversion mode. Immediatly after power up the LM74 will output an erroneous code until the first temperature conversion has completed. When the supply voltage is less than about 1.6V (typical), the LM74 is considered powered down. As the supply voltage rises above the nominal 1.6V power up threshold, the internal registers are reset to the power up default state described above. 1.2 SERIAL BUS INTERFACE The LM74 operates as a slave and is compatible with SPI or MICROWIRE bus specifications. Data is clocked out on the falling edge of the serial clock (SC), while data is clocked in on the rising edge of SC. A complete transmit/receive communication will consist of 32 serial clocks. The first 16 clocks comprise the transmit phase of communication, while the second 16 clocks are the receive phase. Communication should be initiated by taking chip select (CS) low. This should not be done when SC is transitioning from a low to high state. Once CS is low the serial I/O pin (SI/O) will transmit the first bit of data. The master can then read this bit with the rising edge of SC. If CS is taken ..... The remainder of the data will be clocked out by the falling edge of SC. Once the 14 bits of data (one sign bit, twelve temperature bits and a high bit) are transmitted the SI/O line will go into TRI-STATE. CS can be taken high at any time during the transmit phase. If CS is brought low in the middle of a conversion the LM74 will complete the conversion and the output shift register will be updated once CS is brought back high. The receive phase of a communication starts after 16 SC periods. CS must remain low for 32 SC cycles. The LM74 will read the data available on the SI/O line on the rising edge of the serial clock. All 16-bits of serial data must be transmitted
www.national.com 8
to the LM74 before CS is taken high. If CS is taken high while the LM74 is the middle of receiving data the data in the configuration register will be corrupted. After 32 serial clocks the CS can be taken high to complete the communication. 1.3 TEMPERATURE DATA FORMAT Temperature data is represented by a 13-bit, two's complement word with an LSB (Least Significant Bit) equal to 0.0625C: Temperature +150C +125C +25C +0.0625C 0C -0.0625C -25C -55C Digital Output Binary 0100 1011 0000 0111 0011 1110 1000 0111 0000 1100 1000 0111 0000 0000 0000 1111 0000 0000 0000 0111 1111 1111 1111 1111 1111 0011 1000 0111 1110 0100 1000 0111 Hex 4B 07h 3E 87h 0B 87h 00 0Fh 00 07h FF FFh F3 87h E4 87h
Note: The last two bits are TRI-STATE and depicted as one in the table. The first data byte is the most significant byte with most significant bit first, permitting only as much data as necessary to be read to determine temperature condition. For instance, if the first four bits of the temperature data indicate an overtemperature condition, the host processor could immediately take action to remedy the excessive temperatures. 1.4 SHUTDOWN MODE/MANUFACTURER'S ID Shutdown mode is enabled by writing XX FF to the LM74 as shown in Figure 7c. The serial bus is still active when the LM74 is in shutdown. Current draw drops to less than 10 A between serial communications. When in shutdown mode the LM74 always will output 1000 0000 0000 01XX. This is the manufacturer's ID/Device ID information. The first 8-bits of the field (1000 0000) are reserved for manufacturer's ID.
1.0 Functional Description
1.5 INTERNAL REGISTER STRUCTURE
(Continued)
The LM74 has three registers, the temperature register, the configuration register and the manufacturers identification 1.5.1 CONFIGURATION REGISTER (Selects shutdown or continuous conversion modes): (Write Only): D15 X D14 X D13 X D12 X D11 X D10 X D9 X D8 X
register. The temperature and manufacturers identification registers are read only. The configuration register is write only.
D7
D6
D5
D4
D3
D2
D1
D0
Shutdown
D0-D15 set to XX FF hex enables shutdown mode. D0-D15 set to XX 00 hex enables continuous conversion mode. Note: setting D0-D15 to any other values may place the LM74 into a manufacturer's test mode, upon which the LM74 will stop responding as described. These test modes are to be used for National Semiconductor production testing only. 1.5.2 TEMPERATURE REGISTER (Read Only): D15 MSB D14 Bit 11 D13 Bit 10 D12 Bit 9 D11 Bit 8 D10 Bit 7 D9 Bit 6 D8 Bit 5 D7 Bit 4 D6 Bit 3 D5 Bit 2 D4 Bit 1 D3 LSB D2 1 D1 X D0 X
D0-D1: Undefined. TRI-STATE will be output on SI/0. D2: Always set high. D3-D15: Temperature Data. One LSB = 0.0625C. Two's complement format. 1.5.3 MANUFACTURER'S ID REGISTER (Read Only): D15 1 D14 0 D13 0 D12 0 D11 0 D10 0 D9 0 D8 0 D7 0 D6 0 D5 0 D4 0 D3 0 D2 1 D1 X D0 X
D0-D1: Undefined. TRI-STATE will be output on SI/0. D2: Always set high. D3-D15: Manufacturer's ID Data. This register is accessed whenever the LM74 is in shutdown mode.
9
www.national.com
2.0 Serial Bus Timing Diagrams
DS100909-14
a) Reading Continuous Conversion - Single Eight-Bit Frame
DS100909-15
b) Reading Continuous Conversion - Two Eight-Bit Frames
DS100909-18
c) Writing Shutdown Control FIGURE 7. Timing Diagrams
3.0 Application Hints
To get the expected results when measuring temperature with an integrated circuit temperature sensor like the LM74, it is important to understand that the sensor measures its own die temperature. For the LM74, the best thermal path between the die and the outside world is through the LM74's pins. In the SO-8 package all the pins on the LM74 will have an equal effect on the die temperature. Because the pins represent a good thermal path to the LM74 die, the LM74 will provide an accurate measurement of the temperature of the printed circuit board on which it is mounted. There is a less efficient thermal path between the plastic package and the LM74 die. If the ambient air temperature is significantly different from the printed circuit board temperature, it will have a small effect on the measured temperature.
In probe-type applications, the LM74 can be mounted inside a sealed-end metal tube, and can then be dipped into a bath or screwed into a threaded hole in a tank. As with any IC, the LM74 and accompanying wiring and circuits must be kept insulated and dry, to avoid leakage and corrosion. This is especially true if the circuit may operate at cold temperatures where condensation can occur. Printed-circuit coatings and varnishes such as Humiseal and epoxy paints or dips are often used to insure that moisture cannot corrode the LM74 or its connections.
www.national.com
10
4.0 Typical Applications
DS100909-20
FIGURE 8. Temperature monitor using Intel 196 processor
DS100909-19
FIGURE 9. LM74 digital input control using micro-controller's general purpose I/O.
11
www.national.com
LM74 SPI/MICROWIRE Digital Temperature Sensor
Physical Dimensions
inches (millimeters) unless otherwise noted
8-Lead Molded Small Outline Package Order Number LM74CIM-3, LM74CIMX-3, LM74CIM-5 or LM74CIMX-5 NS Package Number M08B
LIFE SUPPORT POLICY NATIONAL'S PRODUCTS ARE NOT AUTHORIZED FOR USE AS CRITICAL COMPONENTS IN LIFE SUPPORT DEVICES OR SYSTEMS WITHOUT THE EXPRESS WRITTEN APPROVAL OF THE PRESIDENT AND GENERAL COUNSEL OF NATIONAL SEMICONDUCTOR CORPORATION. As used herein: 1. Life support devices or systems are devices or systems which, (a) are intended for surgical implant into the body, or (b) support or sustain life, and whose failure to perform when properly used in accordance with instructions for use provided in the labeling, can be reasonably expected to result in a significant injury to the user.
National Semiconductor Corporation Americas Tel: 1-800-272-9959 Fax: 1-800-737-7018 Email: support@nsc.com www.national.com National Semiconductor Europe Fax: +49 (0) 1 80-530 85 86 Email: europe.support@nsc.com Deutsch Tel: +49 (0) 1 80-530 85 85 English Tel: +49 (0) 1 80-532 78 32 Francais Tel: +49 (0) 1 80-532 93 58 Italiano Tel: +49 (0) 1 80-534 16 80
2. A critical component is any component of a life support device or system whose failure to perform can be reasonably expected to cause the failure of the life support device or system, or to affect its safety or effectiveness.
National Semiconductor Asia Pacific Customer Response Group Tel: 65-2544466 Fax: 65-2504466 Email: sea.support@nsc.com
National Semiconductor Japan Ltd. Tel: 81-3-5639-7560 Fax: 81-3-5639-7507
National does not assume any responsibility for use of any circuitry described, no circuit patent licenses are implied and National reserves the right at any time without notice to change said circuitry and specifications.


▲Up To Search▲   

 
Price & Availability of NSC05029

All Rights Reserved © IC-ON-LINE 2003 - 2022  

[Add Bookmark] [Contact Us] [Link exchange] [Privacy policy]
Mirror Sites :  [www.datasheet.hk]   [www.maxim4u.com]  [www.ic-on-line.cn] [www.ic-on-line.com] [www.ic-on-line.net] [www.alldatasheet.com.cn] [www.gdcy.com]  [www.gdcy.net]


 . . . . .
  We use cookies to deliver the best possible web experience and assist with our advertising efforts. By continuing to use this site, you consent to the use of cookies. For more information on cookies, please take a look at our Privacy Policy. X