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(1) The common terminal is in electrical contact with the mounting base. OUTPUT COMMON INPUT COMMON TL750M...KTT PACKAGE (TOP VIEW) (1) OUTPUT COMMON INPUT TL750M...KC PACKAGE (TOP VIEW) (1) OUTPUT COMMON INPUT TL750M...KTE PACKAGE (TOP VIEW) (1) OUTPUT COMMON INPUT COMMON TL750M...KTP PACKAGE (TOP VIEW) (1) NC OUTPUT COMMON INPUT ENABLE NC - No inter nal connection TL751M...KTG PACKAGE (TOP VIEW) (1) DESCRIPTION/ORDERING INFORMATION TL750M SERIES TL751M SERIES LOW-DROPOUT VOLTAGE REGULATORS SLVS021K JANUARY 1988 REVISED OCTOBER 2006 Very Low Dropout Voltage, Less Than 0.6 V 60-V Load-Dump Protection at 750 mA Overvoltage Protection Low Quiescent Current Internal Thermal-Overload Protection TTL- and CMOS-Compatible Enable on Internal Overcurrent-Limiting Circuitry TL751M Series The TL750M and TL751M series are low-dropout positive voltage regulators specifically designed for battery-powered systems. The TL750M and TL751M series incorporate onboard overvoltage and current-limiting protection circuitry to protect the devices and the regulated system. Both series are fully protected against 60-V load-dump and reverse-battery conditions. Extremely low quiescent current, even during full-load conditions, makes the TL750M and TL751M series ideal for standby power systems. The TL750M and TL751M series offers 5-V, 8-V, 10-V, and 12-V options. The TL751M series has the addition of an enable ENABLE input. The ENABLE input gives the designer complete control over power up, allowing sequential power up or emergency shutdown. When ENABLE is high, the regulator output is placed in the high-impedance state. The ENABLE input is TTL and CMOS compatible. The TL750MxxC and TL751MxxC are characterized for operation over the virtual junction temperature range C to 125 Please be aware that an important notice concerning availability, standard warranty, and use in critical

applications

sheet. PowerFLEX is a trademark of Texas Instruments. PRODUCTION DATA information is current as of publication date. Copyright 1988 2006, Texas Instruments Incorporated Products conform to specifications per the terms of the Texas Instruments standard warranty. Production processing does not necessarily include testing of all parameters.

www.ti.com Enable Bandgap Current Limiting Overvoltage/ Thermal Shutdown ENABLE OUTPUT COMMON INPUT 28 V TL750M SERIES TL751M SERIES LOW-DROPOUT VOLTAGE REGULATORS SLVS021K JANUARY 1988 REVISED OCTOBER 2006 ORDERING INFORMATION T J V O TYP PACKAGE (1) ORDERABLE PART NUMBER (2) TOP-SIDE MARKING PowerFLEX KTE Reel of 2000 TL750M05CKTER TL750M05C PowerFLEX KTG Reel of 2000 TL751M05CKTGR TL751M05C V PowerFLEX KTP Reel of 3000 TL750M05CKTPR 750M05C C to 125 C TO-220 KC Tube of TL750M05CKC TL750M05C TO-263 KTT Reel of 500 TL750M05CKTTR TL750M05C V TO-220 KC Tube of TL750M10CKC TL750M10C V TO-220 KC Tube of TL750M12CKC TL750M12C (1) Package drawings, standard packing quantities, thermal data, symbolization, and PCB design guidelines are available at www.ti.com/sc/package. (2) For the most current ordering information, see the Package Option Addendum at the end of this data sheet. TL751Mxx FUNCTIONAL BLOCK DIAGRAM DEVICE COMPONENT COUNT Transistors Diodes Resistors Capacitors JFETs Tunnels (emitter Submit Documentation Feedback

www.ti.com Absolute Maximum Ratings (1) Recommended Operating Conditions TL751MxxC Switching Characteristics TL750M SERIES TL751M SERIES LOW-DROPOUT VOLTAGE REGULATORS SLVS021K JANUARY 1988 REVISED OCTOBER 2006 over virtual junction temperature range (unless otherwise noted) MIN MAX UNIT Continuous input voltage V Transient input voltage (see Figure V Continuous reverse input voltage V Transient reverse input voltage t 100 ms V KC package KTE package θ JA Package thermal impedance (2) (3) KTG package C/W KTP package KTT package 25.3 T J Virtual junction temperature range 150 C Lead temperature 1,6 mm (1/16 in) from case for s 260 C T stg Storage temperature range 150 C (1) Stresses beyond those listed under "absolute maximum ratings" may cause permanent damage to the device. These are stress ratings only, and functional operation of the device at these or any other conditions beyond those indicated under "recommended operating conditions" is not implied. Exposure to absolute-maximum-rated conditions for extended periods may affect device reliability. (2) Maximum power dissipation is a function of T J (max), θ JA and T A The maximum allowable power dissipation at any allowable ambient temperature is P D J (max) T A θ JA Operating at the absolute maximum T J of 150 C can affect reliability. Due to variation in individual device electrical characteristics and thermal resistance, the built-in thermal-overload protection may be activated at power levels slightly above or below the rated dissipation. (3) The package thermal impedance is calculated in accordance with JESD 51. MIN MAX UNIT TL75xM05 TL75xM08 V I Input voltage V TL75xM10 TL75xM12 V IH High-level ENABLE input voltage TL751Mxx V V IL Low-level ENABLE input voltage TL751Mxx 0.8 V I O Output current TL75xMxxC 750 mA T J Operating virtual junction temperature TL75xMxxC 125 C V I I O 300 mA, T J C (unless otherwise noted) TL751MxxC PARAMETER UNIT TYP t r Response time, ENABLE to output µ s Submit Documentation Feedback

www.ti.com TL75xM05C Electrical Characteristics (1) TL75xM08C Electrical Characteristics (1) TL750M SERIES TL751M SERIES LOW-DROPOUT VOLTAGE REGULATORS SLVS021K JANUARY 1988 REVISED OCTOBER 2006 V I I O 300 mA, ENABLE V for TL751M05, T J C (unless otherwise noted) TL750M05C TL751M05C PARAMETER TEST CONDITIONS UNIT MIN TYP MAX 4.95 5.05 Output voltage V T J C to 125 C 4.9 5.1 V I V to I O 250 mA Input voltage regulation mV V I V to I O 250 mA Ripple rejection V I V to f 120 Hz dB Output regulation voltage I O mA to 750 mA mV I O 500 mA 0.5 Dropout voltage V I O 750 mA 0.6 Output noise voltage f Hz to 100 kHz 500 µ V I O 750 mA Bias current mA I O mA Bias current (TL751Mxx only) ENABLE V 200 µ A (1) Pulse-testing techniques maintain the junction temperature as close to the ambient temperature as possible. Thermal effects must be taken into account separately. All characteristics are measured with a 0.1- µ F capacitor across the input and a 10- µ F tantalum capacitor on the output, with equivalent series resistance within the guidelines shown in Figure V I I O 300 mA, ENABLE V for TL751M08, T J C (unless otherwise noted) TL750M08C TL751M08C PARAMETER TEST CONDITIONS UNIT MIN TYP MAX 7.92 8.08 Output voltage V T J C to 125 C 7.84 8.16 V I V to I O 250 mA Input voltage regulation mV V I V to I O 250 mA Ripple rejection V I V to f 120 Hz dB Output regulation voltage I O mA to 750 mA mV I O 500 mA 0.5 Dropout voltage V I O 750 mA 0.6 Output noise voltage f Hz to 100 kHz 500 µ V I O 750 mA Bias current mA I O mA Bias current (TL751Mxx only) ENABLE V 200 µ A (1) Pulse-testing techniques maintain the junction temperature as close to the ambient temperature as possible. Thermal effects must be taken into account separately. All characteristics are measured with a 0.1- µ F capacitor across the input and a 10- µ F tantalum capacitor on the output, with equivalent series resistance within the guidelines shown in Figure Submit Documentation Feedback

www.ti.com TL75xM10C Electrical Characteristics (1) TL75xM12C Electrical Characteristics (1) TL750M SERIES TL751M SERIES LOW-DROPOUT VOLTAGE REGULATORS SLVS021K JANUARY 1988 REVISED OCTOBER 2006 V I I O 300 mA, ENABLE V for TL751M10, T J C (unless otherwise noted) TL750M10C TL751M10C PARAMETER TEST CONDITIONS UNIT MIN TYP MAX 9.9 10.1 Output voltage V T J C to 125 C 9.8 10.2 V I V to I O 250 mA Input voltage regulation mV V I V to I O 250 mA Ripple rejection V I V to f 120 Hz dB Output regulation voltage I O mA to 750 mA 100 mV I O 500 mA 0.5 Dropout voltage V I O 750 mA 0.6 Output noise voltage f Hz to 100 kHz 1000 µ V I O 750 mA Bias current mA I O mA Bias current (TL751Mxx only) ENABLE V 200 µ A (1) Pulse-testing techniques maintain the junction temperature as close to the ambient temperature as possible. Thermal effects must be taken into account separately. All characteristics are measured with a 0.1- µ F capacitor across the input and a 10- µ F tantalum capacitor on the output, with equivalent series resistance within the guidelines shown in Figure V I I O 300 mA, ENABLE V for TL751M12, T J C (unless otherwise noted) TL750M12C TL751M12C PARAMETER TEST CONDITIONS UNIT MIN TYP MAX 11.88 12.12 Output voltage V T J C to 125 C 11.76 12.24 V I V to I O 250 mA Input voltage regulation mV V I V to I O 250 mA Ripple rejection V I V to f 120 Hz dB Output regulation voltage I O mA to 750 mA 120 mV I O 500 mA 0.5 Dropout voltage V I O 750 mA 0.6 Output noise voltage f Hz to 100 kHz 1000 µ V I O 750 mA Bias current mA I O mA Bias current (TL751Mxx only) ENABLE V 200 µ A (1) Pulse-testing techniques maintain the junction temperature as close to the ambient temperature as possible. Thermal effects must be taken into account separately. All characteristics are measured with a 0.1- µ F capacitor across the input and a 10- µ F tantalum capacitor on the output, with equivalent series resistance within the guidelines shown in Figure Submit Documentation Feedback

www.ti.com PARAMETER MEASUREMENT INFORMATION Applied Load Current Load Voltage DVL DIL DVL = DIL × ESR ÎÎÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎÎÎÎ 0.01 0.015 0.02 0.025 0.03 0.035 0.04 ÏÏÏ ÏÏÏ ÏÏÏ 200 µF ÏÏÏ ÏÏÏ ÏÏÏ 1000 µF 1/ESR 0.005 ÏÏÏ ÏÏÏ ÏÏÏ 400 µF Not Recommended Recommended Min ESR Potential Instability Region of Best Stability ÏÏÏ ÏÏÏ ÏÏÏ ÏÏÏ 100 µF ÏÏÏ ÏÏÏ ÏÏÏ ÏÏÏ 22 µF ÏÏÏ ÏÏÏ ÏÏÏ ÏÏÏ 10 µF ÎÎ ÎÎ ÎÎ C LStability − ÎÎÎÎÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎÎÎÎÎÎ ÎÎÎÎÎÎÎÎÎÎÎÎÎÎ ÏÏÏÏÏÏÏ ÏÏÏÏÏÏÏ ÏÏÏÏÏÏÏ ÏÏÏÏÏÏÏ Max ESR Boundary ÏÏÏÏÏÏÏ ÏÏÏÏÏÏÏ ÏÏÏÏÏÏÏ ÏÏÏÏÏÏÏ Region of Best Stability ÏÏÏÏ ÏÏÏÏ ÏÏÏÏ Min ESR ÏÏÏÏ ÏÏÏÏ ÏÏÏÏ ÏÏÏÏ Boundary 2.8 2.6 2.4 2.2 1.8 1.6 1.4 1.2 0.8 0.6 0.4 0.2 IL − Load Current Range − A This Region Not Recommended for Operation C L = 10 µF C I = 0.1 µF f = 120 Hz ÏÏÏÏÏÏÏÏÏ ÏÏÏÏÏÏÏÏÏ ÏÏÏÏÏÏÏÏÏ Potential Instability Region Equivalent Series Resistance (ESR) −Ω TL750M SERIES TL751M SERIES LOW-DROPOUT VOLTAGE REGULATORS SLVS021K JANUARY 1988 REVISED OCTOBER 2006 The TL750Mxx is a low-dropout regulator. This means that the capacitance loading is important to the performance of the regulator because it is a vital part of the control loop. The capacitor value and the equivalent series resistance (ESR) both affect the control loop and must be defined for the load range and the temperature range. Figure and Figure can establish the capacitance value and ESR range for the best regulator performance. Figure shows the recommended range of ESR for a given load with a 10- µ F capacitor on the output. This figure also shows a maximum ESR limit of Ω and a load-dependent minimum ESR limit. For loads, the lightest load condition should be chosen because it is the worst case. Figure shows the relationship of the reciprocal of ESR to the square root of the capacitance with a minimum capacitance limit of µ F and a maximum ESR limit of Ω This figure establishes the amount that the minimum ESR limit shown in Figure can be adjusted for different capacitor values. For example, where the minimum load needed is 200 mA, Figure suggests an ESR range of 0.8 Ω to Ω for µ Figure shows that changing the capacitor from µ F to 400 µ F can change the ESR minimum by greater than 3/0.5 (or 6). Therefore, the new minimum ESR value is 0.8/6 (or 0.13 Ω This allows an ESR range of 0.13 Ω to Ω achieving an expanded ESR range by using a larger capacitor at the output. For better stability in low-current applications, a small resistance placed in series with the capacitor (see Table is recommended, so that ESRs better approximate those shown in Figure and Figure Table Compensation for Increased Stability at Low Currents ESR PART ADDITIONAL MANUFACTURER CAPACITANCE TYP NUMBER RESISTANCE <br/ AVX µ F 0.9 Ω TAJB156M010S Ω <br/ <br/ KEMET µ F 0.6 Ω T491D336M010AS 0.5 Ω <br/ OUTPUT CAPACITOR <br/ EQUIVALENT SERIES RESISTANCE (ESR) STABILITY vs vs LOAD CURRENT RANGE EQUIVALENT SERIES RESISTANCE (ESR) Figure Figure Submit Documentation Feedback

www.ti.com TYPICAL CHARACTERISTICS 0 100 200 300 400 500 600 IV − Transient Input Voltage − V TJ = 25°C for t ≥/charBnZrBnZrBnZrBnZrBnZrBnZrBnZrBnZr5 ms t − Time − ms tr = 1 ms 0 2 4 6 8 10 − Output Voltage − V 12 14 VO VI − Input Voltage − V IO = 10 mA TJ = 25°C TL75xM12 TL75xM10 TL75xM08 TL75xM05 TL750M SERIES TL751M SERIES LOW-DROPOUT VOLTAGE REGULATORS SLVS021K JANUARY 1988 REVISED OCTOBER 2006 Table of Graphs FIGURE Transient input voltage vs Time Output voltage vs Input voltage I O mA Input current vs Input voltage I O 100 mA Dropout voltage vs Output current Quiescent voltage vs Output current Load transient response Line transient response TRANSIENT INPUT VOLTAGE OUTPUT VOLTAGE vs vs TIME INPUT VOLTAGE Figure Figure Submit Documentation Feedback

www.ti.com 0 2 4 6 8 10 120 140 12 14 100 180 200 160 − Input Current − mAII VI − Input Voltage − V IO = 10 mA TJ = 25°C TL75_M05 TL75_M08 TL75_M10 TL75_M12 200 100 0 0 2 4 6 8 10 300 350 12 14 250 150 VI − Input Voltage − V IO = 100 mA TJ = 25°C − Input Current − mAII TL75_M05 TL75_M08 TL75_M10 TL75_M12 200 150 125 100 0 50 100 150 200 250 250 300 225 175 IO − Output Current − mA TJ = 25°C Dropout Voltage − mV 0 20 40 60 80 100 150 IO − Output Current − mA TJ = 25°C VI = 14 V − Quiescent Current − mA 250 350 IQ TL750M SERIES TL751M SERIES LOW-DROPOUT VOLTAGE REGULATORS SLVS021K JANUARY 1988 REVISED OCTOBER 2006 INPUT CURRENT INPUT CURRENT vs vs INPUT VOLTAGE INPUT VOLTAGE Figure Figure DROPOUT VOLTAGE QUIESCENT CURRENT vs vs OUTPUT CURRENT OUTPUT CURRENT Figure Figure Submit Documentation Feedback

www.ti.com 200 − 100 − 200 0 50 100 150 200 250 100 150 100 t − Time − ms − Output Current − mA 300 350 IO VI(NOM) = VO + 1 V ESR = 2 C L = 10 mF TJ = 25°C − Output Voltage − mVVO 0 20 40 60 80 100 150 250 350 − Output Voltage − mVVO 20 mV/DIV1 V/DIV − Input Voltage − VVIN t − Time − ms VI(NOM) = VO + 1 V ESR = 2 IL = 20 mA C L = 10 mF TJ = 25°C TL750M SERIES TL751M SERIES LOW-DROPOUT VOLTAGE REGULATORS SLVS021K JANUARY 1988 REVISED OCTOBER 2006 LOAD TRANSIENT RESPONSE LINE TRANSIENT RESPONSE Figure Figure 10. Submit Documentation Feedback

Orderable Device Status(1) Package Type Package Drawing Pins Package Qty Eco Plan(2) Lead/Ball FinishMSL Peak Temp (3) TL750M05CKC NRND TO-220 KC 3 50 Pb-Free (RoHS) CU SN N / A for Pkg Type TL750M05CKCE3 NRND TO-220 KC 3 50 Pb-Free (RoHS) CU SN N / A for Pkg Type TL750M05CKCSE3 ACTIVE TO-220 KCS 3 50 Pb-Free (RoHS) CU SN N / A for Pkg Type TL750M05CKTER NRND PFM KTE 3 2000 TBD CU SNPB Level-1-220C-UNLIM TL750M05CKTPR NRND PFM KTP 2 3000 Green (RoHS & no Sb/Br) CU SN Level-1-260C-UNLIM TL750M05CKTPRG3 NRND PFM KTP 2 3000 Green (RoHS & no Sb/Br) CU SN Level-1-260C-UNLIM TL750M05CKTTR ACTIVE DDPAK/ TO-263 KTT 3 500 Green (RoHS & no Sb/Br) CU SN Level-3-245C-168 HR TL750M05CKTTRG3 ACTIVE DDPAK/ TO-263 KTT 3 500 Green (RoHS & no Sb/Br) CU SN Level-3-245C-168 HR TL750M05CKVURG3 ACTIVE PFM KVU 3 2500 Green (RoHS & no Sb/Br) CU SN Level-3-260C-168 HR TL750M08CKCE3 NRND TO-220 KC 3 50 Pb-Free (RoHS) CU SN N / A for Pkg Type TL750M08CKCSE3 ACTIVE TO-220 KCS 3 50 Pb-Free (RoHS) CU SN N / A for Pkg Type TL750M08CKTPRG3 NRND PFM KTP 2 3000 Green (RoHS & no Sb/Br) CU SN Level-1-260C-UNLIM TL750M08CKVURG3 ACTIVE PFM KVU 3 2500 Green (RoHS & no Sb/Br) CU SN Level-3-260C-168 HR TL750M10CKC NRND TO-220 KC 3 50 Pb-Free (RoHS) CU SN N / A for Pkg Type TL750M10CKCE3 NRND TO-220 KC 3 50 Pb-Free (RoHS) CU SN N / A for Pkg Type TL750M10CKCSE3 ACTIVE TO-220 KCS 3 50 Pb-Free (RoHS) CU SN N / A for Pkg Type TL750M10CKTER NRND PFM KTE 3 2000 TBD CU SNPB Level-1-220C-UNLIM TL750M10CKTPR NRND PFM KTP 2 3000 Green (RoHS & no Sb/Br) CU SN Level-1-260C-UNLIM TL750M10CKTPRG3 NRND PFM KTP 2 3000 Green (RoHS & no Sb/Br) CU SN Level-1-260C-UNLIM TL750M10CKVURG3 ACTIVE PFM KVU 3 2500 Green (RoHS & no Sb/Br) CU SN Level-3-260C-168 HR TL750M12CKC NRND TO-220 KC 3 50 Pb-Free (RoHS) CU SN N / A for Pkg Type TL750M12CKCE3 NRND TO-220 KC 3 50 Pb-Free (RoHS) CU SN N / A for Pkg Type TL750M12CKCSE3 ACTIVE TO-220 KCS 3 50 Pb-Free (RoHS) CU SN N / A for Pkg Type TL750M12CKTPRG3 NRND PFM KTP 2 3000 Green (RoHS & no Sb/Br) CU SN Level-1-260C-UNLIM TL750M12CKVURG3 ACTIVE PFM KVU 3 2500 Green (RoHS & no Sb/Br) CU SN Level-3-260C-168 HR TL751M05CKTGR OBSOLETE PFM KTG 5 TBD Call TI Call TI PACKAGE OPTION ADDENDUM www.ti.com 15-Jan-2007 Addendum-Page 1

(1)The marketing status values are defined as follows: ACTIVE: Product device recommended for new designs. LIFEBUY: TI has announced that the device will be discontinued, and a lifetime-buy period is in effect. NRND: Not recommended for new designs. Device is in production to support existing customers, but TI does not recommend using this part in a new design. PREVIEW: Device has been announced but is not in production. Samples may or may not be available. OBSOLETE: TI has discontinued the production of the device. (2)Eco Plan - The planned eco-friendly classification: Pb-Free (RoHS), Pb-Free (RoHS Exempt), or Green (RoHS & no Sb/Br) - please check http://www.ti.com/productcontentfor the latest availability information and additional product content details. TBD: The Pb-Free/Green conversion plan has not been defined. Pb-Free (RoHS):TI's terms "Lead-Free" or "Pb-Free" mean semiconductor products that are compatible with the current RoHS requirements for all 6 substances, including the requirement that lead not exceed 0.1% by weight in homogeneous materials. Where designed to be soldered at high temperatures, TI Pb-Free products are suitable for use in specified lead-free processes. Pb-Free (RoHS Exempt):This component has a RoHS exemption for either 1) lead-based flip-chip solder bumps used between the die and package, or 2) lead-based die adhesive used between the die and leadframe. The component is otherwise considered Pb-Free (RoHS compatible) as defined above. Green (RoHS & no Sb/Br):TI defines "Green" to mean Pb-Free (RoHS compatible), and free of Bromine (Br) and Antimony (Sb) based flame retardants (Br or Sb do not exceed 0.1% by weight in homogeneous material) (3) MSL, Peak Temp. -- The Moisture Sensitivity Level rating according to the JEDEC industry standard classifications, and peak solder temperature. Important Information and Disclaimer:The information provided on this page represents TI's knowledge and belief as of the date that it is provided. TI bases its knowledge and belief on information provided by third parties, and makes no representation or warranty as to the accuracy of such information. Efforts are underway to better integrate information from third parties. TI has taken and continues to take reasonable steps to provide representative and accurate information but may not have conducted destructive testing or chemical analysis on incoming materials and chemicals. TI and TI suppliers consider certain information to be proprietary, and thus CAS numbers and other limited information may not be available for release. In no event shall TI's liability arising out of such information exceed the total purchase price of the TI part(s) at issue in this document sold by TI to Customer on an annual basis. PACKAGE OPTION ADDENDUM www.ti.com 15-Jan-2007 Addendum-Page 2

MPFM001E – OCTOBER 1994 – REVISED JANUARY 2001 1POST OFFICE BOX 655303 • DALLAS, TEXAS 75265 KTE (R-PSFM-G3) PowerFLEX  PLASTIC FLANGE-MOUNT 0.360 (9,14) 0.350 (8,89) 0.080 (2,03) 0.070 (1,78) 0.010 (0,25) NOM 0.040 (1,02) Seating Plane 0.050 (1,27) 0.001 (0,03) 0.005 (0,13) 0.010 (0,25) NOM Gage Plane 0.010 (0,25) 0.031 (0,79) 0.041 (1,04) 4073375/F 12/00 NOM 0.350 (8,89) 0.220 (5,59) 0.360 (9,14) 0.295 (7,49) NOM 0.320 (8,13) 0.310 (7,87) 0.025 (0,63) 0.031 (0,79) Thermal Tab (See Note C) 0.004 (0,10) 3°–6° 0.410 (10,41) 0.420 (10,67) 0.200 (5,08) 0.365 (9,27) 0.375 (9,52) NOTES: A. All linear dimensions are in inches (millimeters). B. This drawing is subject to change without notice. C. The center lead is in electrical contact with the thermal tab. D. Dimensions do not include mold protrusions, not to exceed 0.006 (0,15). E. Falls within JEDEC MO-169 PowerFLEX is a trademark of Texas Instruments.

MPFM003F – OCTOBER 1994 – REVISED MARCH 2002 1POST OFFICE BOX 655303 • DALLAS, TEXAS 75265 KTG (R-PSFM-G5) PowerFLEX  PLASTIC FLANGE-MOUNT PACKAGE 0.350 (8,89) 0.360 (9,14) 0.070 (1,78) 0.080 (2,03) 0.050 (1,27) 0.040 (1,02) 0.010 (0,25) NOM Seating Plane 0.005 (0,13) 0.001 (0,03) 0.010 (0,25) NOM Gage Plane 0.010 (0,25) 0.031 (0,79) 0.041 (1,04) 4073377/G 12/00 0.350 (8,89) 0.220 (5,59) NOM 0.360 (9,14) 0.420 (10,67) 0.410 (10,41) 0.295 (7,49) NOM 0.025 (0,63) 0.031 (0,79) 0.310 (7,87) 0.320 (8,13) 0.067 (1,70) 0.004 (0,10) 3°–/C02576° Thermal Tab (See Note C) 0.365 (9,27) 0.375 (9,52) NOTES: A. All linear dimensions are in inches (millimeters). B. This drawing is subject to change without notice. C. The center lead is in electrical contact with the thermal tab. D. Dimensions do not include mold protrusions, not to exceed 0.006 (0,15). E. FAlls within JEDEC MO–169 PowerFLEX is a trademark of Texas Instruments.

MPSF001F – JANUARY 1996 – REVISED JANUARY 2002 1POST OFFICE BOX 655303 • DALLAS, TEXAS 75265 KTP (R-PSFM-G2) PowerFLEX  PLASTIC FLANGE-MOUNT PACKAGE 0.228 (5,79) 0.218 (5,54) 0.233 (5,91) 0.243 (6,17) 0.001 (0,02) 0.005 (0,13) 0.070 (1,78) Seating Plane 0.080 (2,03) 0.010 (0,25) NOM Gage Plane 0.010 (0,25) 4073388/M 01/02 0.037 (0,94) 0.047 (1,19) 0.247 (6,27) 0.237 (6,02) NOM 0.215 (5,46) 0.371 (9,42) 0.381 (9,68) 0.090 (2,29) 0.100 (2,54) 0.287 (7,29) 0.031 (0,79) 0.032 (0,81) MAX 0.277 (7,03) 0.025 (0,63) 0.130 (3,30) NOM 0.090 (2,29) 0.004 (0,10) 2°–/C02576° 0.040 (1,02) 0.050 (1,27) Thermal Tab (See Note C) 0.010 (0,25) NOM NOTES: A. All linear dimensions are in inches (millimeters). B. This drawing is subject to change without notice. C. The center lead is in electrical contact with the thermal tab. D. Dimensions do not include mold protrusions, not to exceed 0.006 (0,15). E. Falls within JEDEC TO-252 variation AC. PowerFLEX is a trademark of Texas Instruments.

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