TS3V914 STMICROELECTRONICS | Alldatasheet

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CMOS QUAD OPERATIONAL AMPLIFIER October 1997 .DEDICATED TO 3.3V APPLICATIONS AND BATTERY-SUPPLIED (fully specified at VCC = 3V and 5V) .RAIL TO RAILINPUT AND OUTPUT VOLTAGE RANGES .SINGLE (OR DUAL) SUPPLY OPERATION FROM 2.7V TO 16V .EXTREMELY LOW INPUT BIAS CURRENT : 1pA TYP .LOW INPUT OFFSET VOLTAGE : 5mV max. .SPECIFIED FOR 600Ω AND 100Ω LOADS .LOW SUPPLY CURRENT : 200 µA/Ampli .SPICE MACROMODEL INCLUDED IN THIS SPECIFICATION Inverting Input 2 Non-inverting Input 2 Non-inverting Input 1 CCV -CCV Output 3 Output 4 Non-inverting Input 4 Inverting Input 4 Non-inverting Input 3 Inverting Input 3 Output 1 Inverting Input 1 Output 2 PIN CONNECTIONS (top view)

DESCRIPTION

The TS3V914 is a RAIL TO RAIL quad CMOS operational amplifier designed to operate with a single 3V supply voltage. The input voltage range Vicm includes the two supply rails VCC + and VCC -. The output reaches :

  • VCC - +50mV V CC + -50mV with R L = 10kΩ
  • VCC - +350mV V CC + -350mV with RL = 600Ω This product offers a broad supply voltage operat- ing range from 2.7V to 16V and a supply current of only 200µA/amp. (V CC = 3V). Source and sink output current capability is typi- cally 40mA (at V CC = 3V), fixed by an internal limitation circuit. SGS-THOMSON is offeringa dual op-ampwith the same features : TS3V912. ORDER CODES Part Number Temperature Range Package ND TS3V914I/AI -40, +125 oC •• N DIP14 (Plastic Package) D SO14 (Plastic Micropackage)

Symbol Parameter Value Unit VCC Supply Voltage - (note 1) 18 V Vid Differential Input Voltage - (note 2) ±18 V Vi Input Voltage - (note 3) -0.3 to 18 V Iin Current on Inputs ±50 mA Io Current on Outputs ±130 mA Toper Operating Free Air Temperature RangeI -40 to +125 oC Tstg Storage Temperature -65 to +150 oC Notes : 1. All voltage values, except differential voltage are with respect to network ground terminal. 2. Differential voltages are the non-inverting input terminal with respect to the inverting input terminal. 3. The magnitude of input and output voltages must never exceed VCC + +0.3V. OPERATING CONDITIONS Symbol Parameter Value Unit VCC Supply Voltage 2.7 to 16 V Vicm Common Mode Input Voltage Range V CC --0.2 to VCC ++0.2 V Non-inverting Input Inverting Input Internal Vre f Output VCC VCC SCHEMATIC DIAGRAM (1/4 TS3V914) TS3V914

ELECTRICAL CHARACTERISTICS

VCC + =3 V ,VCC - =0 V ,RL,CL connectedto VCC /2, Tamb =2 5oC (unless otherwise specified) Symbol Parameter TS3V914I/AI UnitMin. Typ. Max. Vio Input Offset Voltage (Vic=V o =V CC /2) TS3V914 TS3V914A Tmin.≤ Tamb ≤ Tmax. TS3V914 TS3V914A mV DV io Input Offset Voltage Drift 5 µV/oC Iio Input Offset Current - (note 1) Tmin.≤ Tamb ≤ Tmax. 1 100 200 pA Iib Input Bias Current - (note 1) Tmin.≤ Tamb ≤ Tmax. 1 150 300 pA ICC Supply Current (per amplifier, AVCL = 1, no load) Tmin.≤ Tamb ≤ Tmax. 200 300 400 µA CMR Common Mode Rejection Ratio Vic= 0 to 3V, Vo = 1.5V 70 dB SVR Supply Voltage Rejection Ratio (VCC + = 2.7 to 3.3V, VO =V CC /2) 40 70 dB Avd Large Signal Voltage Gain (RL = 10kΩ ,V O = 1.2V to 1.8V) Tmin.≤ Tamb ≤ Tmax.

10 V/mV

VOH High Level Output Voltage (Vid= 1V) R L = 10kΩ R L = 600Ω R L = 100Ω Tmin.≤ Tamb ≤ Tmax. R L = 10kΩ R L = 600Ω 2.9 2.3 2.8 2.1 2.96 2.6 V VOL Low Level Output Voltage (Vid= -1V) R L = 10kΩ R L = 600Ω R L = 100Ω Tmin.≤ Tamb ≤ Tmax. R L = 10kΩ R L = 600Ω 300 900 100 400 150 600 mV I o Output Short Circuit Current (Vid= ±1V) Source (V o =V CC Sink (V o =V CC mA GBP Gain Bandwidth Product (AVCL = 100, RL = 10kΩ ,C L = 100pF, f = 100kHz) 0.8 MHz SR + Positive Slew Rate AVCL =1 ,RL = 10kΩ ,V i=1.3V to 1.7V, CL = 100pF 0.5 V/µs SR - Negative Slew Rate 0.4 V/ µs ∅ m Phase Margin 30 Degrees en Equivalent Input Noise Voltage (Rs = 100Ω , f = 1kHz) 30 nV √Hz VO1 /VO2 Channel Separation (f = 1kHz) 120 dB Note 1 :Maximum values including unavoidable inaccuracies of the industrial test. TS3V914

VCC + =5 V ,VCC - =0 V ,RL,CL connectedto VCC /2, Tamb =2 5oC (unless otherwise specified) Symbol Parameter TS3V914I/AI UnitMin. Typ. Max. Vio Input Offset Voltage (Vic=V o =V CC /2) TS3V914 TS3V914A Tmin.≤ Tamb ≤ Tmax. TS3V914 TS3V914A mV DV io Input Offset Voltage Drift 5 µV/oC Iio Input Offset Current - (note 1) Tmin.≤ Tamb ≤ Tmax. 1 100 200 pA Iib Input Bias Current - (note 1) Tmin.≤ Tamb ≤ Tmax. 1 150 300 pA ICC Supply Current (per amplifier, AVCL = 1, no load) Tmin.≤ Tamb ≤ Tmax. 230 350 450 µA CMR Common Mode Rejection Ratio Vic= 1.5 to 3.5V, Vo = 2.5V 50 75 dB SVR Supply Voltage Rejection Ratio (VCC + = 3 to 5V, VO =V CC /2) 50 80 dB Avd Large Signal Voltage Gain (RL = 10kΩ ,V O = 1.5V to 3.5V) Tmin.≤ Tamb ≤ Tmax.

30 V/mV

VOH High Level Output Voltage (Vid= 1V) R L = 10kΩ R L = 600Ω R L = 100Ω Tmin.≤ Tamb ≤ Tmax. R L = 10kΩ R L = 600Ω 4.90 4.25 4.8 4.1 4.95 4.65 3.7 V VOL Low Level Output Voltage (Vid= -1V) R L = 10kΩ R L = 600Ω R L = 100Ω Tmin.≤ Tamb ≤ Tmax. R L = 10kΩ R L = 600Ω 350 1400 100 500 150 750 mV Io Output Short Circuit Current (Vid= ±1V) Source (V o =V CC Sink (V o =V CC mA GBP Gain Bandwidth Product (AVCL = 100, RL = 10kΩ ,C L = 100pF, f = 100kHz) 0.9 MHz SR + Positive Slew Rate AVCL =1 ,RL = 10kΩ ,V i=1V to 4V, CL = 100pF 0.8 V/µs SR - Negative Slew Rate 0.5 V/ µs ∅ m Phase Margin 30 Degrees Note 1 :Maximum values including unavoidable inaccuracies of the industrial test. TS3V914

-10 GAIN (dB) PHASE (Degrees) 135 180 FREQUENCY, f (Hz) PHASE GAI N Phase Margin Gain Ba ndwidth Product 61010 23 10 410 510 710 T= 2 5 C V = 10V R = 10k Ω C = 100pF A = 100 amb CC L L VCL Figure 5a :Open Loop Frequency Response and Phase Shift

10 GAIN (dB)

PHASE (Degrees) 135 180 FREQUENCY, f (Hz) P HASE GAIN Ph ase Margin Gain Ba ndwidth Product 61010 23 10 410 510 710 T= 2 5 C V= 1 0 V R = 600 Ω C = 100pF A = 100 amb CC L L VCL Figure 5b :Open Loop Frequency Response and Phase Shift SUP P LY VOLTAGE, V (V)CC 04 8 1 2 1 6 1800 GAIN BANDW. PROD., GBP (kHz) T= 2 5 C R = 10k Ω C = 100pF amb L L1400 1000 600 200 Figure 6a :Gain Bandwidth Product versus Supply Voltage S UP P LY VOLTAGE, V (V)CC 04 8 1 2 1 6 GAIN BANDW. PROD., GBP (kHz) T= 2 5 C R = 600 Ω C = 100pF amb L L 1800 1400 1000 600 200 Figure 6b :Gain bandwidth Product versus Supply Voltage SUPPLY VOLTAGE, V (V)CC 04 8 1 2 1 6 PHASE MARGIN, m (Degrees) T= 2 5 C R = 10k Ω C = 100pF amb L L φ Figure 7a :Phase Margin versus Supply Voltage SUPPLY VOLTAGE, V (V)CC 04 8 1 2 1 6 PHASE MARGIN, m (Degrees)φ T= 2 5 C R= 6 0 0 Ω C = 100pF amb L L Figure 7b :Phase Margin versus Supply Voltage TS3V914

3 V 19 A I N

-40 Ct o+ 1 2 5 C OFFS ET VOLTAGE S ELECTION ”Nothing” A 10mV max. 5mV max. I ST FAM ILY P ACKAGES DIP S0 Ta pe &Re el N D DT 14 QUAD - 200 µA/amp - 0.8MHz QUAD - 200 µA/amp - 0.8MHz + S TANDBYpos ition with High Impe da nce Outputs

ORDERING INFORMATION

FREQUENCY (Hz) =1 0 V =2 5 CTamb VCC =1 0 0ΩR S EQUIVALENT INPUT VOLTAGE NOISE (nV/VHz) Figure 8 :Input Voltage Noise versus Frequency TS3V914

Standard Linear Ics Macromodels, 1993. CONNECTIONS : * 1 INVERTING INPUT * 2 NON-INVERTING INPUT * 3 OUTPUT * 4 POSITIVE POWER SUPPLY * 5 NEGATIVE POWER SUPPLY .SUBCKT TS3V914_3 1 3 2 4 5 (analog) .MODEL MDTH D IS=1E-8 KF=6.564344E-14 CJO=10F * INPUT STAGE CIP 2 5 1.000000E-12 CIN 1 5 1.000000E-12 EIP 10 5 2 5 1 EIN 16 5 1 5 1 RIP 10 11 6.500000E+00 RIN 15 16 6.500000E+00 RIS 11 15 1.271505E+01 DIP 11 12 MDTH 400E-12 DIN 15 14 MDTH 400E-12 VOFP 12 13 DC 0.000000E+00 VOFN 13 14 DC 0 IPOL 13 5 4.000000E-05 CPS 11 15 2.125860E-08 DINN 17 13 MDTH 400E-12 VIN 17 5 0.000000e+00 DINR 15 18 MDTH 400E-12 VIP 4 18 0.000000E+00 FCP 4 5 VOFP 5.000000E+00 FCN 5 4 VOFN 5.000000E+00 * AMPLIFYING STAGE FIP 5 19 VOFP 2.750000E+02 FIN 5 19 VOFN 2.750000E+02 RG1 19 5 1.916825E+05 RG2 19 4 1.916825E+05 CC 19 29 2.200000E-08 HZTP 30 29 VOFP 1.3E+03 HZTN 5 30 VOFN 1.3E+03 DOPM 19 22 MDTH 400E-12 DONM 21 19 MDTH 400E-12 HOPM 22 28 VOUT 3800 VIPM 28 4 150 HONM 21 27 VOUT 3800 VINM 5 27 150 EOUT 26 23 19 5 1 VOUT 23 5 0 ROUT 26 3 75 COUT 3 5 1.000000E-12 DOP 19 68 MDTH 400E-12 VOP 4 25 1.724 HSCP 68 25 VSCP1 0.8E8 DON 69 19 MDTH 400E-12 VON 24 5 1.7419107 HSCN 24 69 VSCN1 0.8E+08 VSCTHP 60 61 0.0875 ** VSCTHP = le seuil au dessus de vio * 500 c.a.d 275U-000U dus a l’offset DSCP1 61 63 MDTH 400E-12 VSCP1 63 64 0 ISCP 64 0 1.000000E-8 DSCP2 0 64 MDTH 400E-12 DSCN2 0 74 MDTH 400E-12 ISCN 74 0 1.000000E-8 VSCN1 73 74 0 DSCN1 71 73 MDTH 400E-12 VSCTHN 71 70 -0.55 VSCTHN = le seuil au dessous de vio * 2000 ** c.a.d -375U-000U dus a l’offset ESCP 60 0 2 1 500 ESCN 70 0 2 1 -2000 .ENDS Applies to : TS3V914I,AI,BI .RAIL TO RAILINPUT AND OUTPUT VOLTAGE RANGES .STANDBY POSITION : REDUCED CON- SUMPTION (1 µA) AND HIGH IMPEDANCE OUTPUTS .SINGLE (OR DUAL) SUPPLY OPERATION FROM 2.7V TO 16V(±1.35V to±8V) .EXTREMELY LOW INPUT BIAS CURRENT : 1pA TYP .LOW INPUT OFFSET VOLTAGE : 1.5mV max. .SPECIFIED FOR 600Ω AND 100Ω LOADS .LOW SUPPLY CURRENT : 400 µA/Ampli .SPEED : 1.3MHz - 1.3V/µs MACROMODEL TS3V914

Standard Linear Ics Macromodels, 1993. CONNECTIONS : * 1 INVERTING INPUT * 2 NON-INVERTING INPUT * 3 OUTPUT * 4 POSITIVE POWER SUPPLY * 5 NEGATIVE POWER SUPPLY * 6 STANDBY .SUBCKT TS3V914_5 1 3 2 4 5 (analog) .MODEL MDTH D IS=1E-8 KF=6.564344E-14 CJO=10F * INPUT STAGE CIP 2 5 1.000000E-12 CIN 1 5 1.000000E-12 EIP 10 5 2 5 1 EIN 16 5 1 5 1 RIP 10 11 6.500000E+00 RIN 15 16 6.500000E+00 RIS 11 15 7.322092E+00 DIP 11 12 MDTH 400E-12 DIN 15 14 MDTH 400E-12 VOFP 12 13 DC 0.000000E+00 VOFN 13 14 DC 0 IPOL 13 5 4.000000E-05 CPS 11 15 2.498970E-08 DINN 17 13 MDTH 400E-12 VIN 17 5 0.000000e+00 DINR 15 18 MDTH 400E-12 VIP 4 18 0.000000E+00 FCP 4 5 VOFP 5.750000E+00 FCN 5 4 VOFN 5.750000E+00 ISTB0 5 4 500N * AMPLIFYING STAGE FIP 5 19 VOFP 4.400000E+02 FIN 5 19 VOFN 4.400000E+02 RG1 19 5 4.904961E+05 RG2 19 4 4.904961E+05 CC 19 29 2.200000E-08 HZTP 30 29 VOFP 1.8E+03 HZTN 5 30 VOFN 1.8E+03 DOPM 19 22 MDTH 400E-12 DONM 21 19 MDTH 400E-12 HOPM 22 28 VOUT 3800 VIPM 28 4 230 HONM 21 27 VOUT 3800 VINM 5 27 230 EOUT 26 23 19 5 1 VOUT 23 5 0 ROUT 26 3 82 COUT 3 5 1.000000E-12 DOP 19 68 MDTH 400E-12 VOP 4 25 1.724 HSCP 68 25 VSCP1 0.8E+08 DON 69 19 MDTH 400E-12 VON 24 5 1.7419107 HSCN 24 69 VSCN1 0.8E+08 VSCTHP 60 61 0.0875 ** VSCTHP = le seuil au dessus de vio * 500 c.a.d 275U-000U dus a l’offset DSCP1 61 63 MDTH 400E-12 VSCP1 63 64 0 ISCP 64 0 1.000000E-8 DSCP2 0 64 MDTH 400E-12 DSCN2 0 74 MDTH 400E-12 ISCN 74 0 1.000000E-8 VSCN1 73 74 0 DSCN1 71 73 MDTH 400E-12 VSCTHN 71 70 -0.55 VSCTHN = le seuil au dessous de vio * 2000 ** c.a.d -375U-000U dus a l’offset ESCP 60 0 2 1 500 ESCN 70 0 2 1 -2000 .ENDS Applies to : TS3V914I,AI,BI TS3V914

VCC + = 3V,VCC - = 0V, RL,CL connected to VCC /2, Tamb =2 5oC (unless otherwise specified) Symbol Conditions Value Unit Vio 0m V Avd R L = 10kΩ 10 V/mV ICC No load, per operator 100 µA Vicm -0.2 to 3.2 V VOH R L = 600Ω 2.6 V VOL R L = 600Ω 300 mV Isink VO =3 V 4 0 m A Isource VO =0 V 4 0 m A GBP R L = 10kΩ, C L = 100pF, F = 100kHz 0.8 MHz SR R L = 10kΩ, C L = 100pF 0.5 V/ µs ∅ m 30 Degrees TS3V914

PM-DIP14.EPS PACKAGE MECHANICAL DATA

14 PINS - PLASTIC DIP

Dimensions Millimeters Inches a1 0.51 0.020 B 1.39 1.65 0.055 0.065 b 0.5 0.020 b1 0.25 0.010 D 20 0.787 E 8.5 0.335 e 2.54 0.100 e3 15.24 0.600 F 7.1 0.280 i 5.1 0.201 L 3.3 0.130 Z 1.27 2.54 0.050 0.100 DIP14.TBL TS3V914

PM-SO14.EPS PACKAGE MECHANICAL DATA

14 PINS - PLASTIC MICROPACKAGE (so)

Information furnished is believed to be accurate and reliable. However, SGS-THOMSON Microelectronics assumes no responsibility for the consequences of use of such information nor for any infringement of patents or other rights of third parties which may result from its use. No license is granted by implication or otherwise under anypatent or patent rights of SGS-THOMSON Microelectronics. Specifications mentioned in this publication are subject to change without notice. This publication supersedes and replaces all information previously supplied. SGS-THOMSON Microelectronics products are not authorized for use as critical components in life support devices or systems without express written approval of SGS-THOMSON Microelectronics.  1997 SGS-THOMSON Microelectronics – Printed in Italy – All Rights Reserved SGS-THOMSON Microelectronics GROUP OF COMPANIES Australia - Brazil - Canada - China - France - Germany - Hong Kong - Italy - Japan - Korea - Malaysia - Malta - Morocco The Netherlands - Singapore - Spain - Sweden - Switzerland - Taiwan - Thailand - United Kingdom - U.S.A. ORDER CODE : Dimensions Millimeters Inches A 1.75 0.069 a1 0.1 0.2 0.004 0.008 a2 1.6 0.063 b 0.35 0.46 0.014 0.018 b1 0.19 0.25 0.007 0.010 C 0.5 0.020 c1 45 o (typ.) D 8.55 8.75 0.336 0.334 E 5.8 6.2 0.228 0.244 e 1.27 0.050 e3 7.62 0.300 F 3.8 4.0 0.150 0.157 G 4.6 5.3 0.181 0.208 L 0.5 1.27 0.020 0.050 M 0.68 0.027 S8 o (max.) SO14.TBL TS3V914