ADR01 AD | Alldatasheet
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Technical content
10 V/5 V/2.5 V/3.0 V Voltage References ADR01/ADR02/ADR03/ADR06
FEATURES
Ultracompact SC70-5/TSOT-5 Low temperature coefficient SOIC-8: 3 ppm/°C SC70-5/TSOT-5: 9 ppm/°C Initial accuracy ± 0.1% No external capacitor required Low noise 10 µV p-p (0.1 Hz to 10 Hz) Wide operating range ADR01: 12 V to 40 V ADR02: 7 V to 40 V ADR03: 4.5 V to 40 V ADR06: 5.0 V to 40 V High output current 10 mA Wide temperature range: –40°C to +125°C ADR01/ADR02/ADR03 pin compatible to industry-standard REF01/REF02/REF031
APPLICATIONS
Precision data acquisition systems High resolution converters Industrial process control systems Precision instruments PCMCIA cards SELECTION GUIDE Part Number Output Voltage ADR01 10.0 V ADR02 5.0 V ADR03 2.5 V ADR06 3.0 V
1 ADR01, ADR02, and ADR03 are component-level compatible with REF01,
REF02, and REF03, respectively. No guarantees for system-level compatibility are implied. SOIC-8 versions of ADR01/ADR02/ADR03 are pin-to-pin compatible with SOIC-8 versions of REF01/REF02/REF03, respectively, with the additional temperature monitoring function. PIN CONFIGURATIONS VOUT TRIM VIN TEMP GND TOP VIEW (Not to Scale) ADR01/ ADR02/ ADR03/ ADR06 02747-F-001 Figure 1. 5-Lead SC70/TSOT Surface-Mount Packages
54 TRIM
Figure 2. 8-Lead SOIC Surface-Mount Package general-purpose and space-constraint applications. for fine adjustment of the output voltage. (–40°C to +125°C) temperature range. Information furn ished by An alog D evices is believed to be accurate and reliable. infringements of patents or other rights of third parties that may result from its use. registered trademarks are the property of their respective owners. Fax: 781.326.8703 © 2004 Analog Devices, Inc. All rights reserved.
Rev. F | Page 2 of 20 TABLE OF CONTENTS
REVISION HISTORY
7/04—Data Sheet Changed from Rev. E to Rev. F 2/04—Data Sheet Changed from Rev. D to Rev. E 8/03—Data Sheet Changed from Rev. C to Rev D Added ADR06 Universal Change to Figure 27 13 6/03—Data Sheet Changed from Rev. B to Rev C Changes to Features Section 1 Changes to General Description Section 1 Changes to Figure 2 1 Changes to Specifications Section 2 Addition of Dice Electrical Characteristics and Layout 6 Changes to Absolute Maximum Ratings Section 7 Updated SOIC (R-8) Outline Dimensions 19 Changes to Ordering Guide 20 2/03—Data Sheet Changed from Rev. A to Rev. B 12/02—Data Sheet Changed from Rev. 0 to Rev. A
Rev. F | Page 3 of 20 SPECIFICATIONS ADR01 ELECTRICAL CHARACTERISTICS VIN = 12 V to 40 V , TA = 25°C, unless otherwise noted. Table 1. Parameter Symbol Conditions Min Typ Max Unit Output Voltage VO A and C grades 9.990 10.000 10.010 V 10 mV Initial Accuracy VOERR A and C grades 0.1 % Output Voltage VO B grade 9.995 10.000 10.005 V 5 mV Initial Accuracy VOERR B grade 0.05 % A grade, SOIC-8, –40°C < TA < +125°C 3 10 ppm/°C A grade, TSOT-5, –40°C < TA < +125°C 25 ppm/°C A grade, SC70-5, –40°C < TA < +125°C 25 ppm/°C B grade, SOIC-8, –40°C < TA < +125°C 1 3 ppm/°C B grade, TSOT-5, –40°C < TA < +125°C 9 ppm/°C Temperature Coefficient TCVO B grade, SC70-5, –40°C < TA < +125°C 9 ppm/°C C grade, SOIC-8, –40°C < TA < +125°C 10 40 ppm/°C Supply Voltage Headroom VIN – VO 2 V Line Regulation ∆VO/∆VIN VIN = 12 V to 40 V, –40°C < TA < +125°C 7 30 ppm/V Load Regulation ∆VO/∆ILOAD ILOAD = 0 to 10 mA, –40°C < TA < +125°C, VIN = 15 V 40 70 ppm/mA Quiescent Current IIN No load, –40°C < TA < +125°C 0.65 1 mA Voltage Noise eN p-p 0.1 Hz to 10 Hz 20 µV p-p Voltage Noise Density eN 1 kHz 510 nV/√Hz Turn-On Settling Time tR 4 µs Long-Term Stability1 ∆VO 1,000 hours 50 ppm Output Voltage Hysteresis ∆VO_HYS 70 ppm Ripple Rejection Ratio RRR fIN = 10 kHz −75 dB Short Circuit to GND ISC 30 mA Voltage Output at TEMP Pin VTEMP 550 mV Temperature Sensitivity TCVTEMP 1.96 mV/°C 1 The long-term stability specification is noncumulative. The drift in subsequent 1,000 hour periods is significantly lower than in the first 1,000 hour period.
Rev. F | Page 4 of 20 ADR02 ELECTRICAL CHARACTERISTICS VIN = 7 V to 40 V , TA = 25°C, unless otherwise noted. Table 2. Parameter Symbol Conditions Min Typ Max Unit Output Voltage VO A and C grades 4.995 5.000 5.005 V 5 mV Initial Accuracy VOERR A and C grades 0.1 % Output Voltage VO B grade 4.997 5.000 5.003 V 3 mV Initial Accuracy VOERR B grade 0.06 % A grade, SOIC-8, –40°C < TA < +125°C 3 10 ppm/°C A grade, TSOT-5, –40°C < TA < +125°C 25 ppm/°C A grade, SC70-5, –40°C < TA < +125°C A grade. SC70-5, -55oC < TA < +125oC ppm/°C ppm/°C B grade, SOIC-8, –40°C < TA < +125°C 1 3 ppm/°C B grade, TSOT-5, –40°C < TA < +125°C 9 ppm/°C Temperature Coefficient TCVO B grade, SC70-5, –40°C < TA < +125°C 9 ppm/°C C grade, SOIC-8, –40°C < TA < +125°C 10 40 ppm/°C Supply Voltage Headroom VIN – VO 2 V Line Regulation ∆VO/∆VIN VIN = 7 V to 40 V, –40°C < TA < +125°C VIN = 7 V to 40 V, –55°C < TA < +125°C ppm/V ppm/V Load Regulation ∆VO/∆ILOAD ILOAD = 0 to 10 mA, –40°C < TA < +125°C, VIN = 10 V ILOAD = 0 to 10 mA, –55°C < TA < +125°C, VIN = 10 V ppm/mA ppm/mA Quiescent Current IIN No load, –40°C < TA < +125°C 0.65 1 mA Voltage Noise eN p-p 0.1 Hz to 10 Hz 10 µV p-p Voltage Noise Density eN 1 kHz 230 nV/√Hz Turn-On Settling Time tR 4 µs Long-Term Stability1 ∆VO 1,000 hours 50 ppm Output Voltage Hysteresis ∆VO_HYS ppm ppm Ripple Rejection Ratio RRR fIN = 10 kHz –75 dB Short Circuit to GND ISC 30 mA Voltage Output at TEMP Pin VTEMP 550 mV Temperature Sensitivity TCVTEMP 1.96 mV/°C 1 The long-term stability specification is noncumulative. The drift in subsequent 1,000 hour periods is significantly lower than in the first 1,000 hour period.
Rev. F | Page 5 of 20 ADR03 ELECTRICAL CHARACTERISTICS VIN = 4.5 V to 40 V , TA = 25°C, unless otherwise noted. Table 3. Parameter Symbol Conditions Min Typ Max Unit Output Voltage VO A and C grades 2.495 2.500 2.505 V 5 mV Initial Accuracy VOERR A and C grades 0.2 % Output Voltage VO B grades 2.4975 2.5000 2.5025 V 2.5 mV Initial Accuracy VOERR B grades 0.1 % A grade, SOIC-8, –40°C < TA < +125°C 3 10 ppm/°C A grade, TSOT-5, –40°C < TA < +125°C 25 ppm/°C A grade, SC70-5, –40°C < TA < +125°C A grade, SC70-5, –55°C < TA < +125°C ppm/°C ppm/°C B grade, SOIC-8, –40°C < TA < +125°C 1 3 ppm/°C B grade, TSOT-5, –40°C < TA < +125°C 9 ppm/°C Temperature Coefficient TCVO B grade, SC70-5, –40°C < TA < +125°C 9 ppm/°C C grade, SOIC-8, –40°C < TA < +125°C 10 40 ppm/°C Supply Voltage Headroom VIN – VO 2 V Line Regulation ∆VO/∆VIN VIN = 7.5 V to 40 V, –40°C < TA < +125°C VIN = 7.5 V to 40 V, –55°C < TA < +125°C ppm/V ppm/V Load Regulation ∆VO/∆ILOAD ILOAD = 0 mA to 10 mA, –40°C < TA < +125°C, VIN = 7.0 V ILOAD = 0 mA to 10 mA, –55°C < TA < +125°C, VIN = 7.0 V ppm/mA ppm/mA Quiescent Current IIN No load, –40°C < TA < +125°C 0.65 1 mA Voltage Noise eN p-p 0.1 Hz to 10 Hz 6 µV p-p Voltage Noise Density eN 1 kHz 230 nV/√Hz Turn-On Settling Time tR 4 µs Long-Term Stability1 ∆VO 1,000 hours 50 ppm Output Voltage Hysteresis ∆VO_HYS ppm ppm Ripple Rejection Ratio RRR fIN = 10 kHz –75 dB Short Circuit to GND ISC 30 mA Voltage Output at TEMP Pin VTEMP 550 mV Temperature Sensitivity TCVTEMP 1.96 mV/°C 1 The long-term stability specification is noncumulative. The drift in subsequent 1,000 hour periods is significantly lower than in the first 1,000 hour period.
Rev. F | Page 6 of 20 ADR06 ELECTRICAL CHARACTERISTICS VIN = 5.0 V to 40 V , TA = 25°C, unless otherwise noted. Table 4. Parameter Symbol Conditions Min Typ Max Unit Output Voltage VO A and C grades 2.994 3.000 3.006 V 6 mV Initial Accuracy VOERR A and C grades 0.2 % Output Voltage VO B grade 2.997 3.000 3.003 V 3 mV Initial Accuracy VOERR B grade 0.1 % A grade, SOIC-8, –40°C < TA < +125°C 3 10 ppm/°C A grade, TSOT-5, –40°C < TA < +125°C 25 ppm/°C A grade, SC70-5, –40°C < TA < +125°C 25 ppm/°C B grade, SOIC-8, –40°C < TA < +125°C 1 3 ppm/°C B grade, TSOT-5, –40°C < TA < +125°C 9 ppm/°C Temperature Coefficient TCVO B grade, SC70-5, –40°C < TA < +125°C 9 ppm/°C C grade, SOIC-8, –40°C < TA < +125°C 10 40 ppm/°C Supply Voltage Headroom VIN – VO 2 V Line Regulation ∆VO/∆VIN VIN = 15 V to 40 V, –40°C < TA < +125°C 7 30 ppm/V Load Regulation ∆VO/∆ILOAD ILOAD = 0 to 10 mA, –40°C < TA < +125°C, VIN = 7.0 V 40 70 ppm/mA Quiescent Current IIN No load, –40°C < TA < +125°C 0.65 1 mA Voltage Noise eN p-p 0.1 Hz to 10 Hz 10 µV p-p Voltage Noise Density eN 1 kHz 510 nV/√Hz Turn-On Settling Time tR 4 µs Long-Term Stability1 ∆VO 1,000 hours 50 ppm Output Voltage Hysteresis ∆VO_HYS 70 ppm Ripple Rejection Ratio RRR fIN = 10 kHz –75 dB Short Circuit to GND ISC 30 mA Voltage Output AT TEMP Pin VTEMP 550 mV Temperature Sensitivity TCVTEMP 1.96 mV/°C 1 The long-term stability specification is noncumulative. The drift in subsequent 1,000 hour periods is significantly lower than in the first 1,000 hour period.
VIN = up to 40 V, TA = 25°C, unless otherwise noted. Figure 3. Die Layout
Ratings at 25°C, unless otherwise noted. Table 7. Thermal Resistance devices soldered in circuit boards for surface-mount packages. degradation or loss of functionality.
Rev. F | Page 9 of 20 PARAMETER DEFINITIONS Temperature Coefficient The change of output voltage with respect to operating tem- perature changes normalized by the output voltage at 25°C. This parameter is expressed in ppm/°C and can be determined by the following equation: 610)25( )()(]/[ ×−×° −=° 12O 1O2O O TTCV TVTVCppmTCV where: VO(25°C) = VO at 25°C VO(T1) = VO at Temperature 1 VO(T2) = VO at Temperature 2 Line Regulation The change in output voltage due to a specified change in input voltage. This parameter accounts for the effects of self-heating. Line regulation is expressed in either percent per volt, parts- per-million per volt, or microvolts per volt change in input voltage. Load Regulation The change in output voltage due to a specified change in load current. This parameter accounts for the effects of self-heating. Load regulation is expressed in either microvolts per milliampere, parts-per-million per milliampere, or ohms of dc output resistance. Long-Term Stability Typical shift of output voltage at 25°C on a sample of parts subjected to a test of 1,000 hours at 25°C: )()( 1O0OO tVtVV −=∆ 610)( )()(][ ×−=∆ 1O0O O tV tVtVppmV where: VO(t0) = VO at 25°C at Time 0 VO(t1) = VO at 25°C after 100 hours of operation at 25°C The majority of the shift is seen in the first 200 hours, and, as time goes by, the drift decreases significantly. So for the subsequent 1,000 hours’ time points, this drift is much smaller than the first. Thermal Hysteresis Defined as the change of output voltage after the device is cycled through temperature from +25°C to –40°C to +125°C and back to +25°C. This is a typical value from a sample of parts put through such a cycle. TCOOHYSO VCVV __ )25( −°= _ 10)25( )25( ][ ×° = CV VCV ppmV O TCOO HYSO where: VO(25°C) = VO at 25°C VO_TC = VO at 25°C after temperature cycle at +25°C to –40°C to +125°C and back to +25°C NOTES Input Capacitor Input capacitors are not required on the ADR01/ADR02/ ADR03/ADR06. There is no limit for the value of the capacitor used on the input, but a 1 µF to 10 µF capacitor on the input improves transient response in applications where the supply suddenly changes. An additional 0.1 µF in parallel also helps to reduce noise from the supply. Output Capacitor The ADR01/ADR02/ADR03/ADR06 do not require output capacitors for stability under any load condition. An output capacitor, typically 0.1 µF, filters out any low level noise voltage and does not affect the operation of the part. On the other hand, the load transient response can be improved with an additional 1 µF to 10 µF output capacitor in parallel. A capacitor here acts as a source of stored energy for a sudden increase in load current. The only parameter that degrades by adding an output capacitor is the turn-on time, and it depends on the size of the capacitor chosen.
2.00 BSC
0.150.10 MAX
1.10 MAX
2.10 BSC
0.65 BSC
1.25 BSC
0.10 COPLANARITY
Figure 45. 5-Lead Thin Shrink Small Outline Transistor Package [SC70]
0.95 BSC
0.10 MAX SEATING
1.00 MAX
2.90 BSC
Figure 46. 5-Lead Thin Small Outline Transistor Package [TSOT] Figure 47. 8-Lead Standard Small Outline Package [SOIC]
Rev. F | Page 19 of 20 ORDERING GUIDES ADR01 ORDERING GUIDE Output Voltage Initial Accuracy Temperature Coefficient Model VO (V) (mV) (%) (ppm/°C) Package
Description
Range (°C) ADR01AR 10 10 0.1 10 SOIC-8 R-8 ADR01 98 –40 to +125 ADR01AR-REEL7 10 10 0.1 10 SOIC-8 R-8 ADR01 1,000 –40 to +125 ADR01BR 10 5 0.05 3 SOIC-8 R-8 ADR01 98 –40 to +125 ADR01BR-REEL7 10 5 0.05 3 SOIC-8 R-8 ADR01 1,000 –40 to +125 ADR01AUJ-REEL7 10 10 0.1 25 TSOT-23-5 UJ-5 R8A 3,000 –40 to +125 ADR01AUJ-R2 10 10 0.1 25 TSOT-23-5 UJ-5 R8A 250 –40 to +125 ADR01BUJ-REEL7 10 5 0.05 9 TSOT-23-5 UJ-5 R8B 3,000 –40 to +125 ADR01BUJ-R2 10 5 0.05 9 TSOT-23-5 UJ-5 R8B 250 –40 to +125 ADR01AKS-REEL7 10 10 0.1 25 SC70 KS-5 R8A 3,000 –40 to +125 ADR01AKS-R2 10 10 0.1 25 SC70 KS-5 R8A 250 –40 to +125 ADR01BKS-REEL7 10 5 0.05 9 SC70 KS-5 R8B 3,000 –40 to +125 ADR01BKS-R2 10 5 0.05 9 SC70 KS-5 R8B 250 –40 to +125 ADR01CRZ2 10 10 0.1 40 SOIC-8 R-8 ADR01 98 –40 to +125 ADR01CRZ-REEL2 10 10 0.1 40 SOIC-8 R-8 ADR01 2,500 –40 to +125 ARR01NBC 10 5 0.05 10 (Typ) Dice 360 1 First line shows part number ADR01; second line shows A or B for the grade, with the YYMM date code; third line shows the lot number. 2 Z = Pb-free part. ADR02 ORDERING GUIDE Output Voltage Initial Accuracy Temperature Coefficient Model VO (V) (mV) (%) (ppm/°C) Package Range (°C) ADR02AR 5 5 0.1 10 SOIC-8 R-8 ADR02 98 –40 to +125 ADR02AR-REEL 5 5 0.1 10 SOIC-8 R-8 ADR02 1,000 –40 to +125 ADR02AR-REEL7 5 5 0.1 10 SOIC-8 R-8 ADR02 1,000 –40 to +125 ADR02ARZ2 5 5 0.1 10 SOIC-8 R-8 ADR02 98 –40 to +125 ADR02ARZ-REEL2 5 5 0.1 10 SOIC-8 R-8 ADR02 2,500 –40 to +125 ADR02BR 5 3 0.06 3 SOIC-8 R-8 ADR02 98 –40 to +125 ADR02BR-REEL7 5 3 0.06 3 SOIC-8 R-8 ADR02 1,000 –40 to +125 ADR02AUJ-REEL7 5 5 0.1 25 TSOT-23-5 UJ-5 R9A 3,000 –40 to +125 ADR02AUJ-R2 5 5 0.1 25 TSOT-23-5 UJ-5 R9A 250 –40 to +125 ADR02BUJ-REEL7 5 3 0.06 9 TSOT-23-5 UJ-5 R9B 3,000 –40 to +125 ADR02BUJ-R2 5 3 0.06 9 TSOT-23-5 UJ-5 R9B 250 –40 to +125 ADR02AKS-REEL7 5 5 0.1 25 SC70 KS-5 R9A 3,000 –40 to +125 ADR02AKS-R2 5 5 0.1 25 SC70 KS-5 R9A 250 –40 to +125 ADR02BKS-REEL7 5 3 0.06 9 SC70 KS-5 R9B 3,000 –40 to +125 ADR02BKS-R2 5 3 0.06 9 SC70 KS-5 R9B 250 –40 to +125 ADR02CRZ2 5.0 5 0.1 40 SOIC-8 R-8 ADR02 98 –40 to +125 ADR02CRZ-REEL2 5.0 5 0.1 40 SOIC-8 R-8 ADR02 2500 –40 to +125 ARR02NBC 5 3 0.06 10 (Typ) Dice 360 1 First line shows part number ADR02; second line shows A or B for the grade, with the YYMM date code; third line shows the lot number. 2 Z = Pb-free part.
Rev. F | Page 20 of 20 ADR03 ORDERING GUIDE Output Voltage Initial Accuracy Temperature Coefficient Model VO (V) (mV) (%) (ppm/°C) Package Range (°C) ADR03AR 2.5 5 0.2 10 SOIC-8 R-8 ADR03 98 –40 to +125 ADR03AR-REEL7 2.5 5 0.2 10 SOIC-8 R-8 ADR03 1,000 –40 to +125 ADR03BR 2.5 2.5 0.1 3 SOIC-8 R-8 ADR03 98 –40 to +125 ADR03BR-REEL7 2.5 2.5 0.1 3 SOIC-8 R-8 ADR03 1,000 –40 to +125 ADR03AUJ-REEL7 2.5 5 0.2 25 TSOT-23-5 UJ-5 RFA 3,000 –40 to +125 ADR03AUJ-R2 2.5 5 0.2 25 TSOT-23-5 UJ-5 RFA 250 –40 to +125 ADR03BUJ-REEL7 2.5 2.5 0.1 9 TSOT-23-5 UJ-5 RFB 3,000 –40 to +125 ADR03BUJ-R2 2.5 2.5 0.1 9 TSOT-23-5 UJ-5 RFB 250 –40 to +125 ADR03AKS-REEL7 2.5 5 0.2 25 SC70 KS-5 RFA 3,000 –40 to +125 ADR03AKS-R2 2.5 5 0.2 25 SC70 KS–5 RFA 250 –40 to +125 ADR03BKS–REEL7 2.5 2.5 0.1 9 SC70 KS–5 RFB 3,000 –40 to +125 ADR03BKS–R2 2.5 2.5 0.1 9 SC70 KS–5 RFB 250 –40 to +125 ADR03BKSZ–REEL72 2.5 2.5 0.1 9 SC70 KS–5 RFB 3,000 –40 to +125 ADR03CRZ2 2.5 5 0.1 40 SOIC-8 R-8 ADR02 98 –40 to +125 ADR03CRZ-REEL2 2.5 5 0.1 40 SOIC-8 R-8 ADR02 2500 –40 to +125 1 First line shows part number ADR03; second line shows A or B for the grade, with the YYMM date code; third line shows the lot number. 2 Z = Pb-free part. ADR06 ORDERING GUIDE Output Voltage Initial Accuracy Temperature Coefficient Model VO (V) (mV) (%) (ppm/°C) Package Range (°C) ADR06AR 3.0 6 0.2 10 SOIC-8 R-8 ADR06 98 –40 to +125 ADR06AR-REEL7 3.0 3 0.2 10 SOIC-8 R-8 ADR06 1,000 –40 to +125 ADR06BR 3.0 6 01 3 SOIC-8 R-8 ADR06 98 –40 to +125 ADR06BR-REEL7 3.0 3 0.1 3 SOIC-8 R-8 ADR06 1,000 –40 to +125 ADR06AUJ-R2 3.0 6 0.2 25 TSOT-23-5 UJ-5 RWA 250 –40 to +125 ADR06AUJ-REEL7 3.0 6 0.2 25 TSOT-23-5 UJ-5 RWA 3,000 –40 to +125 ADR06BUJ–R2 3.0 3 0.1 9 TSOT-23-5 UJ-5 RWB 250 –40 to +125 ADR06BUJ-REEL7 3.0 3 0.1 9 TSOT-23-5 UJ-5 RWB 3,000 –40 to +125 ADR06AKS-R2 3.0 6 0.2 25 SC70 KS-5 RWA 250 –40 to +125 ADR06AKS-REEL7 3.0 6 0.2 25 SC70 KS–5 RWA 3,000 –40 to +125 ADR06BKS-R2 3.0 3 0.1 9 SC70 KS-5 RWB 250 –40 to +125 ADR06BKS–REEL7 3.0 3 0.1 9 SC70 KS–5 RWB 3,000 –40 to +125 ADR06CRZ2 3.0 6 0.2 40 SOIC-8 R-8 ADR06 98 –40 to +125 ADR06CRZ-REEL2 3.0 6 0.2 40 SOIC-8 R-8 ADR06 2500 –40 to +125 1 First line shows part number ADR06; second line shows A or B for the grade, with the YYMM date code; third line shows the lot number. 2 Z = Pb-free part. © 2004 Analo g De vices, Inc. All rights reserve d. Tra demarks and registered tra demarks are the prop erty of their respective owners . C02747–0–7/04(F)