LT1634 Micropower Precision Shunt Voltage Reference FEATURES DESCRIPTION APPLICATIONS TYPICAL APPLICATION

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1 Micropower Precision Shunt otage Reference FEATURES n Initia otage Accuracy:. n Low Operating Current: μa n Low Drift: / C Max n Less Than Dynamic Impedance n Both Commercia and Industria Temperature Range Parts Are Avaiabe n Avaiabe in.,.,.9 and in SO- and TO-9 Packages n. and. Avaiabe in MSOP Package APPLICATIONS n Portabe Meters n Precision Reguators n A/D and D/A Converters n Caibrators DESCRIPTION The LT is a micropower, precision, shunt votage reference. The bandgap reference uses trimmed precision thin fim resistors to achieve. initia votage accuracy. Improved curvature correction technique guarantees / C maximum temperature drift. Advances in design, processing and packaging techniques guarantee μa operation and ow temperature cycing hysteresis. The does not require an output compensation capacitor, but is stabe with capacitive oads. Low dynamic impedance makes the reference easy to use from unreguated suppies. The reference can be used as a high performance upgrade to the LM/LM, LT and LT where ower power and guaranteed temperature drift is required. LT, LTC and LTM are registered trademarks of Linear Technoogy Corporation. A other trademarks are the property of their respective owners. TYPICAL APPLICATION Super Accurate ±.9 Output References k -.9 I S = μa OUTPUT ACCURACY BETTER THAN.7 AT ±μa OUTPUT LT9 LTC μf OUT I R = μa OUT =. Temperature Drift 7. TEMPERATURE ( C) TA μf LT9 OUT.9 TA fe

2 ABSOLUTE MAXIMUM RATINGS (Note ) Current Operating....mA....mA.9,...mA Forward Current...mA PIN CONFIGURATION Operating Temperature Range Commercia... C to 7 C Industria... C to C Storage Temperature Range (Note )... C to C Lead Temperature (Sodering, sec)... C DNC* DNC* DNC* GND TOP IEW DNC* 7 DNC* OUT TEST** MS PACKAGE -LEAD PLASTIC MSOP T JMAX = C, θ JA = C/W DNC* DNC* DNC* GND TOP IEW S PACKAGE -LEAD PLASTIC SO T JMAX = C, θ JA = 9 C/W DNC* 7 DNC* OUT TEST** BOTTOM IEW TEST** OUT GND Z PACKAGE -LEAD PLASTIC TO-9 T JMAX = C, θ JA = 9 C/W *Connected internay. Do Not Connect externa circuitry to these pins. **The TEST pin can be eft unconnected or connected to the GND pin (GND pin on Z package, Pin on MS and S packages) ORDER INFORMATION LEAD FREE FINISH TAPE AND REEL PART MARKING PACKAGE DESCRIPTION SPECIFIED TEMPERATURE RANGE BCMS-.#PBF BCMS-.#TRPBF LTC -Lead Pastic MSOP C to 7 C BCMS-.#PBF BCMS-.#TRPBF LTDF -Lead Pastic MSOP C to 7 C ACS-.#PBF ACS-.#TRPBF A -Lead Pastic SO C to 7 C ACS-.#PBF ACS-.#TRPBF A -Lead Pastic SO C to 7 C ACS-.9#PBF ACS-.9#TRPBF A -Lead Pastic SO C to 7 C ACS-#PBF ACS-#TRPBF A -Lead Pastic SO C to 7 C AIS-.#PBF AIS-.#TRPBF AI -Lead Pastic SO C to C AIS-.#PBF AIS-.#TRPBF AI -Lead Pastic SO C to C AIS-.9#PBF AIS-.9#TRPBF AI -Lead Pastic SO C to C AIS-#PBF AIS-#TRPBF AI -Lead Pastic SO C to C BCS-.#PBF BCS-.#TRPBF B -Lead Pastic SO C to 7 C BCS-.#PBF BCS-.#TRPBF B -Lead Pastic SO C to 7 C BCS-.9#PBF BCS-.9#TRPBF B -Lead Pastic SO C to 7 C BCS-#PBF BCS-#TRPBF B -Lead Pastic SO C to 7 C BIS-.#PBF BIS-.#TRPBF BI -Lead Pastic SO C to C BIS-.#PBF BIS-.#TRPBF BI -Lead Pastic SO C to C BIS-.9#PBF BIS-.9#TRPBF BI -Lead Pastic SO C to C BIS-#PBF BIS-#TRPBF BI -Lead Pastic SO C to C CCZ-.#PBF CCZ-.#TRPBF -Lead Pastic TO-9 C to 7 C CCZ-.#PBF CCZ-.#TRPBF -Lead Pastic TO-9 C to 7 C CCZ-.9#PBF CCZ-.9#TRPBF -Lead Pastic TO-9 C to 7 C CCZ-#PBF CCZ-#TRPBF -Lead Pastic TO-9 C to 7 C Consut LTC Marketing for parts specifi ed with wider operating temperature ranges. Consut LTC Marketing for information on ead based fi nish parts. For more information on ead free part marking, go to: For more information on tape and ree specifi cations, go to: fe

3 AAILABLE OPTIONS TEMPERATURE ACCURACY () TEMPERATURE COEFFICIENT (/ C) PACKAGE TYPE MS S Z C to 7 C. ACS-. ACS-. ACS-.9 ACS- C to C. AIS-. AIS-. AIS-.9 AIS- C to 7 C. BCMS-. BCMS-. BCS-. BCS-. BCS-.9 BCS- C to C. BIS-. BIS-. BIS-.9 BIS- C to 7 C. CCZ-. CCZ-. CCZ-.9 CCZ-. ELECTRICAL CHARACTERISTICS The denotes the specifi cations which appy over the fu operating temperature range, otherwise specifi cations are at T A = C. (Note ) PARAMETER CONDITIONS MIN TYP MAX UNITS Reverse Breakdown otage ACS/BCMS/BCS/.97.. AIS/BIS (I R = μa).. Reverse Breakdown Change with Current (Note ) CCZ (I R = μa).7. ACS (I R = μa).9. AIS (I R = μa).7.7 BCS/BCMS (I R = μa).7. BIS (I R = μa).7. CCZ (I R = μa)..7 μa I R ma ma I R ma Minimum Operating Current 7 μa Temperature Coefficient (Note ) A, I R = μa / C B/C, I R = μa / C.. Reverse Dynamic Impedance (Note ) μa I R ma.. Low Frequency Noise (Note ) I R = μa,.hz f Hz μ P-P Hysteresis (Note 7) ΔT = C to C ΔT = C to 7 C.. m m m m fe

4 . ELECTRICAL CHARACTERISTICS The denotes the specifi cations which appy over the fu operating temperature range, otherwise specifi cations are at T A = C. (Note ) PARAMETER CONDITIONS MIN TYP MAX UNITS Reverse Breakdown otage ACS/BCMS/BCS/.97.. AIS/BIS (I R = μa).. Reverse Breakdown Change with Current (Note ) CCZ (I R = μa).9. ACS (I R = μa).97. AIS (I R = μa).9.7 BCMS/BCS (I R = μa).97. BIS (I R = μa).99. CCZ (I R = μa).9.7 μa I R ma ma I R ma Minimum Operating Current μa Temperature Coefficient (Note ) A, I R = μa B/C, I R = μa / C / C Reverse Dynamic Impedance (Note ) μa I R ma..7.. Low Frequency Noise (Note ) I R = μa,.hz f Hz μ P-P Hysteresis (Note 7) ΔT = C to C ΔT = C to 7 C.... m m m m.9 ELECTRICAL CHARACTERISTICS The denotes the specifi cations which appy over the fu operating temperature range, otherwise specifi cations are at T A = C. (Note ) PARAMETER CONDITIONS MIN TYP MAX UNITS Reverse Breakdown otage ACS/BCS/ AIS/BIS (I R = μa).. Reverse Breakdown Change with Current (Note ) CCZ (I R = μa).7. ACS (I R = μa).9. AIS (I R = μa)..7 BCS (I R = μa).7. BIS (I R = μa).. CCZ (I R = μa)..7 μa I R ma ma I R ma Minimum Operating Current μa.... m m m m fe

5 .9 ELECTRICAL CHARACTERISTICS The denotes the specifi cations which appy over the fu operating temperature range, otherwise specifi cations are at T A = C. (Note ) PARAMETER CONDITIONS MIN TYP MAX UNITS Temperature Coefficient (Note ) A, I R = μa B/C, I R = μa / C / C Reverse Dynamic Impedance (Note ) μa I R ma..7.. Low Frequency Noise (Note ) I R = μa,.hz f Hz μ P-P Hysteresis (Note 7) ΔT = C to C ΔT = C to 7 C ELECTRICAL CHARACTERISTICS The denotes the specifi cations which appy over the fu operating temperature range, otherwise specifi cations are at T A = C. (Note ) PARAMETER CONDITIONS MIN TYP MAX UNITS Reverse Breakdown otage ACS/BCS/ AIS/BIS (I R = μa).. Reverse Breakdown Change with Current (Note ) CCZ (I R = μa).99. ACS (I R = μa).99. AIS (I R = μa).99.7 BCS (I R = μa).97. BIS (I R = μa) 9. CCZ (I R = μa).9.7 μa I R ma ma I R ma Minimum Operating Current μa Temperature Coefficient (Note ) A, I R = μa B/C, I R = μa / C / C Reverse Dynamic Impedance (Note ) μa I R ma..7.. Low Frequency Noise (Note ) I R = μa,.hz f Hz μ P-P Hysteresis (Note 7) ΔT = C to C ΔT = C to 7 C Note : Stresses beyond those isted under Absoute Maximum Ratings may cause permanent damage to the device. Exposure to any Absoute Maximum Rating condition for extended periods may affect device reiabiity and ifetime. Note : If the part is stored outside of the specifi c operating temperature range, the output may shift due to hysteresis. Note : ESD (Eectrostatic Discharge) sensitive device. Use proper ESD handing precautions. Note : Output requires.μf for operating current greater than ma. Note : This parameter is guaranteed by reverse breakdown change with current test. Note : Peak-to-peak noise is measured with a singe highpass fi ter at.hz and -poe owpass fi ter at Hz..... m m m m Note 7: Hysteresis in output votage is created by package stress that differs depending on whether the IC was previousy at a higher or ower temperature. Output votage is aways measured at C but the IC is cyced to C or C before successive measurements. Hysteresis is roughy proportiona to the square of the temperature change. Hysteresis is not normay a probem for operationa temperature excursions where the instrument might be stored at high or ow temperature. Note : Temperature coeffi cient is cacuated from the minimum and maximum output votage measured at T MIN, Room and T MAX as foows: TC = ( OMAX OMIN )/(T MAX T MIN ) Incrementa sope is aso measured at C. fe

6 . TYPICAL PERFORMANCE CHARACTERISTICS REERSE CURRENT (μa) Reverse Characteristics T A = C TO C Temperature Drift μa μa μa μa ma Reverse otage Change vs Current T A = C TO C... REERSE OLTAGE ().. TEMPERATURE ( C).. REERSE CURRENT (ma) -. G -. G -. G DYNAMIC IMPEDANCE () Reverse Dynamic Impedance Dynamic Impedance vs Frequency Forward Characteristics T A = C f = Hz DYNAMIC IMPEDANCE () T A = C I R = μa C OUT = μf I R = μa C OUT = μf I R = μa C OUT =.μf I R = μa C OUT =.7μF FORWARD OLTAGE ()... T A = C.... REERSE CURRENT (ma) -. G... FREQUENCY (khz) -. G.. FORWARD CURRENT (ma) -. G NOISE OLTAGE (μ/di).hz to Hz Noise T A = C TO C I R = μa.. Response Time I R = μa C OUT = μs/di -. G OUT IN.. Response Time I R = μa C OUT =.μf ms/di -. G9 OUT IN 7 TIME (SEC) -. G7 fe

7 . TYPICAL PERFORMANCE CHARACTERISTICS REERSE CURRENT (μa) Reverse Characteristics T A = C TO C Temperature Drift μa μa μa μa ma Reverse otage Change vs Current T A = C TO C.... REERSE OLTAGE ().. TEMPERATURE ( C).. REERSE CURRENT (ma) -. G -. G -. G DYNAMIC IMPEDANCE () Reverse Dynamic Impedance Dynamic Impedance vs Frequency Forward Characteristics T A = C f = Hz DYNAMIC IMPEDANCE () T A = C I R = μa C OUT = μf I R = μa C OUT = μf I R = μa C OUT =.μf I R = μa C OUT =.7μF FORWARD OLTAGE ()... T A = C.... REERSE CURRENT (ma) -. G... FREQUENCY (khz) -. G.. FORWARD CURRENT (ma) -. G NOISE OLTAGE (μ/di).hz to Hz Noise Response Time Response Time T A = C TO C I R = μa I R = μa C OUT = μs/di -. G I R = μa C OUT =.μf ms/di -. G9 TIME (SEC) 7 -. G7 fe 7

8 .9 TYPICAL PERFORMANCE CHARACTERISTICS REERSE CURRENT (μa) Reverse Characteristics T A = C to C Temperature Drift μa μa μa μa ma Reverse otage Change vs Current T A = C TO C REERSE OLTAGE () TEMPERATURE ( C).. REERSE CURRENT (ma) - G - G - G DYNAMIC IMPEDANCE () Reverse Dynamic Impedance Dynamic Impedance vs Frequency Forward Characteristics T A = C f = Hz DYNAMIC IMPEDANCE () T A = C I R = μa C OUT = μf I R = μa C OUT = μf I R = μa C OUT =.μf I R = μa C OUT =.μf FORWARD OLTAGE ()... T A = C.... REERSE CURRENT (ma) - G... FREQUENCY (khz) - G.. FORWARD CURRENT (ma) -. G NOISE OLTAGE (μ/di).hz to Hz Noise Response Time Response Time T A = C TO C I R = μa I R = μa C OUT = μs/di - G7 I R = μa C OUT =.μf ms/di - G 7 TIME (SEC) - G fe

9 TYPICAL PERFORMANCE CHARACTERISTICS REERSE CURRENT (μa) Reverse Characteristics T A = C TO C Temperature Drift μa μa μa μa ma Reverse otage Change vs Current T A = C TO C REERSE OLTAGE () TEMPERATURE ( C).. REERSE CURRENT (ma) - G - G - G DYNAMIC IMPEDANCE () Reverse Dynamic Impedance Dynamic Impedance vs Frequency Forward Characteristics T A = C f = Hz DYNAMIC IMPEDANCE () T A = C I R = μa C OUT = μf I R = μa C OUT = μf I R = μa C OUT =.μf I R = μa C OUT =.μf FORWARD OLTAGE ()... T A = C.... REERSE CURRENT (ma) - G... FREQUENCY (khz) - G.. FORWARD CURRENT (ma) -. G NOISE OLTAGE (μ/di).hz to Hz Noise Response Time Response Time T A = C TO C I R = μa I R = μa C OUT = μs/di - G7 I R = μa C OUT =.μf ms/di - G 7 TIME (SEC) - G fe 9

10 APPLICATIONS INFORMATION The reverse characteristics of the behave ike a resistor in parae with a Zener diode. This simpe, we behaved characteristic is important to the proper operation of circuits ike Figure. The adjustabe output votage reference depends upon positive feedback from the LT9 s output to start-up and reguate the bias current for the. IN. R B = OUT. μa -. LT9 OUT. TO R k TO.7M R k F Figure. Adjustabe Output otage Reference TYPICAL APPLICATIONS Reference for Micropower A/D Converter The - Generates the LTC Dua -Bit DAC s Reference and Suppy otage k -.9.μF IN LTC REF CC IN CLK IN D OUT GND CS/SHDN 7 μc/μp SERIAL INTERFACE.μF TA 7. TO.k - μc/μp SERIAL INTERFACE.μF CLK D IN CS/LD REF LTC OUTB CC GND OUTA 7 OUTB.μF OUTA TA PACKAGE DESCRIPTION. BSC. ±. S Package -Lead Pastic Sma Outine (Narrow. Inch) (Reference LTC DWG # --). ±... (..).. (..) TYP..9 (..7).. (..).9.97 (..) NOTE 7. ±. TYP OMMENDED SOLDER PAD LAYOUT....9 (..7) (..) NOTE: INCHES TYP. DIMENSIONS IN (MILLIMETERS). DRAWING NOT TO SCALE. THESE DIMENSIONS DO NOT INCLUDE MOLD FLASH OR PROTRUSIONS. MOLD FLASH OR PROTRUSIONS SHALL NOT EXCEED." (.mm). (.7) BSC.. (.79.97)..7 (..9 NOTE SO fe

11 PACKAGE DESCRIPTION MS Package -Lead Pastic MSOP (Reference LTC DWG # --).9.7 (..). (.) MIN.. (..).. (..) TYP GAUGE PLANE. (.7). (.) DETAIL A. (.) BSC RECOMMENDED SOLDER PAD LAYOUT DETAIL A NOTE:. DIMENSIONS IN MILLIMETER/(INCH). DRAWING NOT TO SCALE TYP.. (..) SEATING PLANE.. (..) (NOTE ).9. (.9.). (.) MAX.. (.9.) TYP. (.) BSC 7. DIMENSION DOES NOT INCLUDE MOLD FLASH, PROTRUSIONS OR GATE BURRS. MOLD FLASH, PROTRUSIONS OR GATE BURRS SHALL NOT EXCEED.mm (.") PER SIDE. DIMENSION DOES NOT INCLUDE INTERLEAD FLASH OR PROTRUSIONS. INTERLEAD FLASH OR PROTRUSIONS SHALL NOT EXCEED.mm (.") PER SIDE. LEAD COPLANARITY (BOTTOM OF LEADS AFTER FORMING) SHALL BE.mm (.") MAX. (.) REF.. (..) (NOTE ). (.) REF.. (..) MSOP (MS) 7 RE F Z Package -Lead Pastic TO-9 (Simiar to TO-) (Reference LTC DWG # --). ±. (. ±.). ±. (. ±.7). ±. (.±.7) DIA. ±. (.7 ±.7). ±. (.7 ±.7).9 (.) NOM NOM. (.7) MIN. UNCONTROLLED (.7) LEAD DIMENSION MAX NOM. (.7) BSC. ±. (. ±.7). ±. (. ±.).9./. Z (TO-9) (../.) PLCS TO-9 TAPE AND REEL REFER TO TAPE AND REEL SECTION OF LTC DATA BOOK FOR ADDITIONAL INFORMATIO fe

12 TYPICAL APPLICATIONS Singe Ce Li-Ion Battery Supervisory Circuit (I Q = μa) OFF CHARGER BAT SW T LOAD R S k A / LT9 -. R k..7. R.M. A / LT9 BAT A / LT9 R H M D R H M D R.7M. A R.M. BATTERY A / LT9 TA R SW M D, D: N R TO R: CAR SERIES IRC () Micropower otage and Current Reference AAA ALKALINE CELLS ZTXC R 9k. / LT9. R k / LT9 R TO R: MAR SERIES, IRC () R k. R M. I OUT μa COM OUT. TA RELATED PARTS PART NUMBER DESCRIPTION COMMENTS LTC Micropower Comparator with Reference.7μA Max Suppy Current,. Reference, MSOP, PDIP and SO- Packages LT Micropower Series Reference.7 Max, / C Max Drift,., and ersions, MSOP, PDIP, SO-, SOT- and TO-9 Packages LT9.μA Precision Rai-to-Rai Dua Op Amp.μA Max Suppy Current, pa Max IOS LTC Nanopower Comparator with Reference na Max Suppy Current,. Reference, MSOP and SO- Packages LT 9 RE E PRINTED IN USA Linear Technoogy Corporation McCarthy Bvd., Mipitas, CA 9-77 () -9 FAX: () -7 LINEAR TECHNOLOGY CORPORATION 99 fe

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