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TL5001, TL5001A PULSE-WIDTH-MODULATION CONTROL CIRCUITS SLVS084E – APRIL 1994 – REVISED OCTOBER 1999 1POST OFFICE BOX 655303 • DALLAS, TEXAS 75265 /C0068Complete PWM Power Control /C00683.6-V to 40-V Operation /C0068Internal Undervoltage-Lockout Circuit /C0068Internal Short-Circuit Protection /C0068Oscillator Frequency. . . 20 kHz to 500 kHz /C0068Variable Dead Time Provides Control Over Total Range /C0068±3% Tolerance on Reference Voltage (TL5001A) /C0068Available in Q-Temp Automotive HighRel Automotive Applications Configuration Control / Print Support Qualification to Automotive Standards
description
The TL5001 and TL5001A incorporate on a single monolithic chip all the functions required for a pulse-width-modulation (PWM) control circuit. Designed primarily for power-supply control, the TL5001/A contains an error amplifier, a regulator, an oscillator, a PWM comparator with a dead-time-control input, undervoltage lockout (UVLO), short-circuit protection (SCP), and an open-collector output transistor. The TL5001A has a typical reference voltage tolerance of ±3% compared to ±5% for the TL5001. The error-amplifier common-mode voltage ranges from 0 V to 1.5 V. The noninverting input of the error amplifier is connected to a 1-V reference. Dead-time control (DTC) can be set to provide 0% to 100% dead time by connecting an external resistor between DTC and GND. The oscillator frequency is set by terminating RT with an external resistor to GND. During low V CC conditions, the UVLO circuit turns the output off until VCC recovers to its normal operating range. The TL5001C and TL5001AC are characterized for operation from –20°C to 85°C. The TL5001I and TL5001AI are characterized for operation from –40°C to 85°C. The TL5001Q and TL5001AQ are characterized for operation from –40°C to 125°C. The TL5001M and TL5001AM are characterized for operation from –55°C to 125°C. AVAILABLE OPTIONS PACKAGED DEVICES TA SMALL OUTLINE (D) PLASTIC DIP (P) CERAMIC DIP (JG) CHIP CARRIER (FK) 20°Ct o8 5°C TL5001CD TL5001CP — — –20°C to 85°C TL5001ACD TL5001ACP — — 40°Ct o8 5°C TL5001ID TL5001IP — — –40°C to 85°C TL5001AID TL5001AIP — — 40°Ct o1 2 5°C TL5001QD — — — –40°C to 125°C TL5001AQD — — — 55°Ct o1 2 5°C — — TL5001MJG TL5001MFK –55°C to 125°C — — TL5001AMJG TL5001AMFK The D package is available taped and reeled. Add the suffix R to the device type (e.g., TL5001CDR). Copyright 1999, Texas Instruments IncorporatedPRODUCTION DATA information is current as of publication date. Products conform to specifications per the terms of Texas Instruments standard warranty. Production processing does not necessarily include testing of all parameters. Please be aware that an important notice concerning availability, standard warranty, and use in critical applications of Texas Instruments semiconductor products and disclaimers thereto appears at the end of this data sheet. OUT VCC COMP FB GND RT DTC SCP D, JG OR P PACKAGE (TOP VIEW) 1920132 1312119 10 NC RT NC DTC NC NC V CC NC COMP NC NC OUT NC GND NC FB NC SCP NC NC FK PACKAGE (TOP VIEW)
TL5001, TL5001A PULSE-WIDTH-MODULATION CONTROL CIRCUITS SLVS084E – APRIL 1994 – REVISED OCTOBER 1999
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schematic for typical application TL5001/A FB COMP VO DTC RT VI SCP VCC TPS1101 GND VO functional block diagram GND OUT SCP COMP FB 4 – DTCRT Comparator 2 SCP PWM/DTC Comparator OSC Comparator 1 SCP Amplifier Error UVLO VCC 2 1 1 V
1.5 V 1 V
2.5 V
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Figure 2. Soft-Start Circuit every time UVLO or SCP becomes active. eliminates false triggering on noise and chattering. active or until the SCP terminal is pulled to ground externally. and turns off the TL5001/A output transistor.
Figure 3. SCP Circuit short-circuit protection circuit is inactive.
TL5001, TL5001A PULSE-WIDTH-MODULATION CONTROL CIRCUITS SLVS084E – APRIL 1994 – REVISED OCTOBER 1999
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absolute maximum ratings over operating free-air temperature range (unless otherwise noted)† † 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. NOTE 1: All voltage values are with respect to network ground terminal. DISSIPATION RATING TABLE PACKAGE TA ≤ 25°C POWER RATING DERATING FACTOR ABOVE T A = 25°C TA = 70°C POWER RATING TA = 85°C POWER RATING TA = 125°C POWER RATING D 725 mW 5.8 mW/°C 464 mW 377 mW 145 mW FK 1375 mW 11.0 mW/ °C 880 mW 715 mW 275 mW JG 1050 mW 8.4 mW/ °C 672 mW 546 mW 210 mW P 1000 mW 8.0 mW/°C 640 mW 520 mW 200 mW recommended operating conditions MIN MAX UNIT Supply voltage, VCC 3.6 40 V Amplifier input voltage, VI(FB) 0 1.5 V Output voltage, VO , OUT 50 V Output current, IO , OUT 20 mA COMP source current 45 mA COMP dc load resistance 100 kW Oscillator timing resistor, Rt 15 250 kW Oscillator frequency, fosc 20 500 kHz TL5001C, TL5001AC –20 85 O perating ambient temperature TA TL5001I, TL5001AI –40 85 °COperating ambient temperature, TA TL5001Q, TL5001AQ –40 125 TL5001M, TL5001AM –55 125
TL5001, TL5001A PULSE-WIDTH-MODULATION CONTROL CIRCUITS SLVS084E – APRIL 1994 – REVISED OCTOBER 1999 7POST OFFICE BOX 655303 • DALLAS, TEXAS 75265 electrical characteristics over recommended operating free-air temperature range, VCC = 6 V, fosc = 100 kHz (unless otherwise noted) reference PARAMETER TEST CONDITIONS TL5001C, TL5001I TL5001AC, TL5001AI UNITPARAMETER TEST CONDITIONS MIN TYP † MAX MIN TYP † MAX UNIT Output voltage COMP connected to FB 0.95 1 1.05 0.97 1 1.03 V Input regulation VCC = 3.6 V to 40 V 2 12.5 2 12.5 mV TA = –20°C to 25°C (C suffix) –10 –1 10 –10 –1 10 Output voltage change with temperatureTA = –40°C to 25°C (I suffix) –10 –1 10 –10 –1 10 mV/V TA = 25°C to 85°C –10 –2 10 –10 –2 10 † All typical values are at TA = 25°C. undervoltage lockout PARAMETER TEST CONDITIONS TL5001C, TL5001I TL5001AC, TL5001AI UNITPARAMETER TEST CONDITIONS MIN TYP † MAX MIN TYP † MAX UNIT Upper threshold voltage TA = 25°C 3 3 V Lower threshold voltage TA = 25°C 2.8 2.8 V Hysteresis TA = 25°C 100 200 100 200 mV Reset threshold voltage TA = 25°C 2.1 2.55 2.1 2.55 V † All typical values are at TA = 25°C. short-circuit protection PARAMETER TEST CONDITIONS TL5001C, TL5001I TL5001AC, TL5001AI UNITPARAMETER TEST CONDITIONS MIN TYP † MAX MIN TYP † MAX UNIT SCP voltage, latched No pullup 140 185 230 140 185 230 mV SCP voltage, UVLO standby No pullup 60 120 60 120 mV Input source current TA = 25°C –10 –15 –20 –10 –15 –20 mA SCP comparator 1 threshold voltage 1.5 1.5 V † All typical values are at TA = 25°C. oscillator PARAMETER TEST CONDITIONS TL5001C, TL5001I TL5001AC, TL5001AI UNITPARAMETER TEST CONDITIONS MIN TYP † MAX MIN TYP † MAX UNIT Frequency R t = 100 kW 100 100 kHz Standard deviation of frequency 15 15 kHz Frequency change with voltage VCC = 3.6 V to 40 V 1 1 kHz TA = –40°C to 25°C –4 –0.4 4 –4 –0.4 4 kHz Frequency change with temperature TA = –20°C to 25°C –4 –0.4 4 –4 –0.4 4 kHz TA = 25°C to 85°C –4 –0.2 4 –4 –0.2 4 kHz Voltage at RT 1 1 V † All typical values are at TA = 25°C.
TL5001, TL5001A PULSE-WIDTH-MODULATION CONTROL CIRCUITS SLVS084E – APRIL 1994 – REVISED OCTOBER 1999
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electrical characteristics over recommended operating free-air temperature range, VCC = 6 V, fosc = 100 kHz (unless otherwise noted) (continued) dead-time control PARAMETER TEST CONDITIONS TL5001C, TL5001I TL5001AC, TL5001AI UNITPARAMETER TEST CONDITIONS MIN TYP † MAX MIN TYP † MAX UNIT Output (source) current mA Input threshold voltage Duty cycle = 0% 0.5 0.7 0.5 0.7 VInput threshold voltage Duty cycle = 100% 1.3 1.5 1.3 1.5 V † All typical values are at TA = 25°C. ‡ Output source current at RT error amplifier PARAMETER TEST CONDITIONS TL5001C, TL5001I TL5001AC, TL5001AI UNITPARAMETER TEST CONDITIONS MIN TYP † MAX MIN TYP † MAX UNIT Input voltage VCC = 3.6 V to 40 V 0 1.5 0 1.5 V Input bias current –160 –500 –160 –500 nA Output voltage swing Positive 1.5 2.3 1.5 2.3 V O utput voltage sw ing Negative 0.3 0.4 0.3 0.4 V Open-loop voltage amplification 80 80 dB Unity-gain bandwidth 1.5 1.5 MHz Output (sink) current VI(FB) = 1.2 V,COMP = 1 V 100 600 100 600 mA Output (source) current VI(FB) = 0.8 V,COMP = 1 V –45 –70 –45 –70 mA † All typical values are at TA = 25°C. output PARAMETER TEST CONDITIONS TL5001C, TL5001I TL5001AC, TL5001AI UNITPARAMETER TEST CONDITIONS MIN TYP † MAX MIN TYP † MAX UNIT Output saturation voltage IO = 10 mA 1.5 2 1.5 2 V Off state current VO = 50 V, VCC = 0 10 10 mAOff-state current VO = 50 V 10 10 mA Short-circuit output current VO = 6 V 40 40 mA † All typical values are at TA = 25°C. total device PARAMETER TEST CONDITIONS TL5001C, TL5001I TL5001AC, TL5001AI UNITPARAMETER TEST CONDITIONS MIN TYP † MAX MIN TYP † MAX UNIT Standby supply current Off state 1 1.5 1 1.5 mA Average supply current R t = 100 kW 1.4 2.1 1.4 2.1 mA † All typical values are at TA = 25°C.
TL5001, TL5001A PULSE-WIDTH-MODULATION CONTROL CIRCUITS SLVS084E – APRIL 1994 – REVISED OCTOBER 1999 9POST OFFICE BOX 655303 • DALLAS, TEXAS 75265 electrical characteristics over recommended operating free-air temperature range, VCC = 6 V, fosc = 100 kHz (unless otherwise noted) reference PARAMETER TEST CONDITIONS TL5001Q, TL5001M TL5001AQ, TL5001AM UNIT MIN TYP † MAX MIN TYP † MAX Output voltage TA = MIN, 25°C COMP connected to FB VO utput voltage TA = MAX COMP connected to FB V Input regulation TA = MIN to MAX VCC = 3.6 V to 40 V 2 12.5 2 12.5 mV Output voltage change with temperature TA = MIN to MAX *–6 2 *6 *–6 2 *6 % † All typical values are at TA = 25°C. *Not production tested. undervoltage lockout PARAMETER TEST CONDITIONS TL5001Q, TL5001M TL5001AQ, TL5001AM UNITPARAMETER TEST CONDITIONS MIN TYP † MAX MIN TYP † MAX UNIT U pper threshold voltage TA = MIN, 25°C 3.00 3.00 VUpper threshold voltage TA = MAX 2.55 2.55 V Lower threshold voltage TA = MIN, 25°C 2.8 2.8 VLow er threshold voltage TA = MAX 2.0 2.0 V Hysteresis TA = MIN to MAX 100 200 100 200 mV Reset threshold voltage TA = MIN, 25°C 2.10 2.55 2.10 2.55 VReset threshold voltage TA = MAX 0.35 0.63 0.35 0.63 V † All typical values are at TA = 25°C. short-circuit protection PARAMETER TEST CONDITIONS TL5001Q, TL5001M TL5001AQ, TL5001AM UNIT MIN TYP † MAX MIN TYP † MAX SCP threshold voltage VSCP threshold voltage V SCP voltage, latched TA = MIN to MAX No pullup 140 185 230 140 185 230 mV SCP voltage, UVLO standby TA = MIN to MAX No pullup 60 120 60 120 mV Equivalent timing resistance TA = MIN to MAX 185 185 kW SCP comparator 1 threshold voltageTA = MIN to MAX 1.5 1.5 V † All typical values are at TA = 25°C.
TL5001, TL5001A PULSE-WIDTH-MODULATION CONTROL CIRCUITS SLVS084E – APRIL 1994 – REVISED OCTOBER 1999
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electrical characteristics over recommended operating free-air temperature range, VCC = 6 V, fosc = 100 kHz (unless otherwise noted) (continued) oscillator PARAMETER TEST CONDITIONS TL5001Q, TL5001M TL5001AQ, TL5001AM UNIT MIN TYP † MAX MIN TYP † MAX Frequency TA = MIN to MAX R t = 100 kW 100 100 kHz Standard deviation of frequencyTA = MIN to MAX 2 2 kHz Frequency change with voltage TA = MIN to MAX VCC = 3.6 V to 40 V 1 1 kHz Frequency change with TA = MIN to MAX kHzFrequency change with temperature TA = MIN to MAX kHz Voltage at RT TA = MIN to MAX 1 1 V † All typical values are at TA = 25°C. *Not production tested. dead-time control PARAMETER TEST CONDITIONS TL5001Q, TL5001M TL5001AQ, TL5001AM UNITPARAMETER TEST CONDITIONS MIN TYP † MAX MIN TYP † MAX UNIT Output (source) TA =2 5°C Duty cycle = 0% 0.5 0.7 0.5 0.7 Input threshold TA = 25°C Duty cycle = 100% 1.3 1.5 1.3 1.5 Vvoltage TA = MIN to MAX Duty cycle = 0% 0.4 0.7 0.4 0.7 V TA = MIN to MAX Duty cycle = 100% 1.3 1.7 1.3 1.7 † All typical values are at TA = 25°C. ‡ Output source current at RT error amplifier PARAMETER TEST CONDITIONS TL5001Q, TL5001M TL5001AQ, TL5001AM UNITPARAMETER TEST CONDITIONS MIN TYP † MAX MIN TYP † MAX UNIT Input bias current TA = MIN to MAX –160 –500 –160 –500 nA Output voltage Positive TA = MIN to MAX 1.5 2.3 1.5 2.3 VOut ut voltage swing Negative TA = MIN to MAX 0.3 0.4 0.3 0.4 V Open-loop voltage amplification TA = MIN to MAX 80 80 dB Unity-gain bandwidth TA = MIN to MAX 1.5 1.5 MHz Output (sink) current TA = MIN to MAX VI(FB) = 1.2 V,COMP = 1 V 100 600 100 600 mA Output (source) current TA = MIN, 25°C VI(FB)=08V COMP = 1 V –45 –70 –45 –70 mAO utput (source) current TA = MAX VI(FB) = 0.8 V, COMP = 1 V –30 –45 –30 –45 mA † All typical values are at TA = 25°C.
TL5001, TL5001A PULSE-WIDTH-MODULATION CONTROL CIRCUITS SLVS084E – APRIL 1994 – REVISED OCTOBER 1999 11POST OFFICE BOX 655303 • DALLAS, TEXAS 75265 electrical characteristics over recommended operating free-air temperature range, VCC = 6 V, fosc = 100 kHz (unless otherwise noted) (continued) output PARAMETER TEST CONDITIONS TL5001Q, TL5001M TL5001AQ, TL5001AM UNIT MIN TYP † MAX MIN TYP † MAX Output saturation voltage TA = MIN to MAX IO = 10 mA 1.5 2 1.5 2 V Off state current TA = MIN to MAX VO = 50 V,VCC = 0 10 10 mAOff-state current TA = MIN to MAX VO = 50 V 10 10 mA Short-circuit output currentTA = MIN to MAX VO = 6 V 40 40 mA † All typical values are at TA = 25°C. total device PARAMETER TEST CONDITIONS TL5001Q, TL5001M TL5001AQ, TL5001AM UNITPARAMETER TEST CONDITIONS MIN TYP † MAX MIN TYP † MAX UNIT Standby supply current Off state TA = MIN to MAX 1 1.5 1 1.5 mA Average supply current TA = MIN to MAX R t = 100 kW 1.4 2.1 1.4 2.1 mA † All typical values are at TA = 25°C.
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NOTE A: The waveforms show timing characteristics for an intermittent short circuit and a longer short circuit that is sufficient to activate SCP. Figure 4. PWM Timing Diagram
TL5001, TL5001A PULSE-WIDTH-MODULATION CONTROL CIRCUITS SLVS084E – APRIL 1994 – REVISED OCTOBER 1999
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0.5 1.5 0 1 02 03 04 0 – Average Supply Current – mA VCC – Power-Supply Voltage – V R t = 100 kW TA = 25 °C AVERAGE SUPPLY CURRENT vs POWER-SUPPLY VOLTAGE ICC Figure 10 0.9 0.8 – 50 – 25 0 – Average Supply Current – mA 1.1 1.2 1.3 25 50 75 100 TA – Ambient Temperature – °C VCC = 6 V R t = 100 kW DT Resistance = 100 kW ICC AVERAGE SUPPLY CURRENT vs AMBIENT TEMPERATURE Figure 11 1.5 1.2 0.6 0.3 1.8 0.9 10 k 100 k 1 M 10 M PWM Triangle Wave Amplitude Voltage – V fosc – Oscillator Frequency – Hz Voscmin (zero duty cycle) VCC = 6 V TA = 25 °C PWM TRIANGLE WAVE AMPLITUDE VOLTAGE vs OSCILLATOR FREQUENCY Voscmax (100% duty cycle) Figure 12 ERROR AMPLIFIER OUTPUT VOLTAGE vs OUTPUT (SINK) CURRENT – Error Amplifier Output Voltage – VVO IO – Output (Sink) Current – mA 1.5 0.5 0 0.2 0.4 2.5 0.6 VCC = 6 V VI(FB) = 1.2 V TA = 25 °C
TL5001, TL5001A PULSE-WIDTH-MODULATION CONTROL CIRCUITS SLVS084E – APRIL 1994 – REVISED OCTOBER 1999
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0 0.5 1 100 120 1.5 2 DTC Voltage – V OUTPUT DUTY CYCLE vs DTC VOLTAGE Output Duty Cycle – % VCC = 6 V R t = 100 kW TA = 25 °C Figure 18 02 04 0 – SCP Time-Out Period – ms 60 80 100 120 VCC = 6 V R t = 100 kW DT Resistance = 200 kW TA = 25 °C C SCP – SCP Capacitance – nF tSCP SCP TIME-OUT PERIOD vs SCP CAPACITANCE Figure 19 – 30 – 20 – 10 0 – 10 – 20 – DTC Output Current – – 40 – 50 – 60 – 30 – 40 – 50 – 60 DT Voltage = 1.3 V TA = 25 °C IO – RT Output Current – mA AmIO(DT) DTC OUTPUT CURRENT vs RT OUTPUT CURRENT Figure 20 0.5 1.5 0 5 10 15 20 – Output Saturation Voltage – V IO – Output (Sink) Current – mA VCE VCC = 6 V TA = 25 °C OUTPUT SATURATION VOLTAGE vs OUTPUT (SINK) CURRENT
TL5001, TL5001A PULSE-WIDTH-MODULATION CONTROL CIRCUITS SLVS084E – APRIL 1994 – REVISED OCTOBER 1999 17POST OFFICE BOX 655303 • DALLAS, TEXAS 75265
APPLICATION INFORMATION
+ R1 470 W SCP VCC 20 mH 100 mF 10 V 3.3 V GND CR1 MBRS140T3 TPS1101 0.012 mF 5.1 kW 7.50 kW 56 kW 43 kW 3.24 kW 0.1 mF 1 mF 0.1 mF GND Partial Bill of Materials: U1 TL5001/A Texas Instruments Q1 TPS1101 Texas Instruments LI CTX20-1 or Coiltronics 23 turns of #28 wire on Micrometals No. T50-26B core C1 TPSD107M010R0100 AVX C2 TPSD107M010R0100 AVX CR1 MBRS140T3 Motorola 2.0 kW 0.0047 mF NOTES: A. Frequency = 200 kHz B. Duty cycle = 90% max C. Soft-start time constant (TC) = 5.6 ms D. SCP TC = 70 msA Figure 21. Step-Down Converter
TL5001, TL5001A PULSE-WIDTH-MODULATION CONTROL CIRCUITS SLVS084E – APRIL 1994 – REVISED OCTOBER 1999
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D (R-PDSO-G**) PLASTIC SMALL-OUTLINE PACKAGE
14 PIN SHOWN
0.228 (5,80) 0.244 (6,20) 0.069 (1,75) MAX 0.010 (0,25) 0.004 (0,10) 0.014 (0,35) 0.020 (0,51) A 0.157 (4,00) 0.150 (3,81) 0.044 (1,12) 0.016 (0,40) Seating Plane 0.010 (0,25) PINS ** 0.008 (0,20) NOM A MIN A MAX DIM Gage Plane 0.189 (4,80) (5,00) 0.197 (8,55) (8,75) 0.337 0.344 (9,80) 0.394 (10,00) 0.386 0.004 (0,10) M0.010 (0,25) 0.050 (1,27) 0°–8° NOTES: B. All linear dimensions are in inches (millimeters). C. This drawing is subject to change without notice. D. Body dimensions do not include mold flash or protrusion, not to exceed 0.006 (0,15). E. Falls within JEDEC MS-012
TL5001, TL5001A PULSE-WIDTH-MODULATION CONTROL CIRCUITS SLVS084E – APRIL 1994 – REVISED OCTOBER 1999 19POST OFFICE BOX 655303 • DALLAS, TEXAS 75265 MECHANICAL DATA FK (S-CQCC-N**) LEADLESS CERAMIC CHIP CARRIER 4040140/C 11/95
28 TERMINALS SHOWN
B 0.358 (9,09) MAX (11,63) 0.560 (14,22) 0.560 0.458 0.858 (21,8) 1.063 (27,0) (14,22) ANO. OF MINMAX 0.358 0.660 0.761 0.458 0.342 (8,69) MIN (11,23) (16,26) 0.640 0.740 0.442 (9,09) (11,63) (16,76) 0.962 1.165 (23,83) 0.938 (28,99) 1.141 (24,43) (29,59) (19,32)(18,78) 0.020 (0,51) TERMINALS 0.080 (2,03) 0.064 (1,63) (7,80) 0.307 (10,31) 0.406 (12,58) 0.495 (12,58) 0.495 (21,6) 0.850 (26,6) 1.047 0.045 (1,14) 0.045 (1,14) 0.035 (0,89) 0.035 (0,89) 0.010 (0,25) 121314151618 17 432 0.020 (0,51) 0.010 (0,25) 12826 27 B SQ A SQ 0.055 (1,40) 0.045 (1,14) 0.028 (0,71) 0.022 (0,54) 0.050 (1,27) NOTES: A. All linear dimensions are in inches (millimeters). B. This drawing is subject to change without notice. C. This package can be hermetically sealed with a metal lid. D. The terminals are gold-plated. E. Falls within JEDEC MS-004
MCER001A – JANUARY 1995 – REVISED JANUARY 1997
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JG (R-GDIP-T8) CERAMIC DUAL-IN-LINE 0.310 (7,87) 0.290 (7,37) 0.014 (0,36) 0.008 (0,20) Seating Plane 4040107/C 08/96 0.065 (1,65) 0.045 (1,14) 0.020 (0,51) MIN 0.400 (10,16) 0.355 (9,00) 0.015 (0,38) 0.023 (0,58) 0.063 (1,60) 0.015 (0,38) 0.200 (5,08) MAX 0.130 (3,30) MIN 0.245 (6,22) 0.280 (7,11) 0.100 (2,54) 0°–15° NOTES: A. All linear dimensions are in inches (millimeters). B. This drawing is subject to change without notice. C. This package can be hermetically sealed with a ceramic lid using glass frit. D. Index point is provided on cap for terminal identification. E. Falls within MIL STD 1835 GDIP1-T8
MCER001A – JANUARY 1995 – REVISED JANUARY 1997 21POST OFFICE BOX 655303 • DALLAS, TEXAS 75265 MECHANICAL INFORMATION P (R-PDIP-T8) PLASTIC DUAL-IN-LINE PACKAGE 4040082/B 03/95 0.310 (7,87) 0.290 (7,37) 0.010 (0,25) NOM 0.400 (10,60) 0.355 (9,02) 0.020 (0,51) MIN 0.070 (1,78) MAX 0.240 (6,10) 0.260 (6,60) 0.200 (5,08) MAX 0.125 (3,18) MIN 0.015 (0,38) 0.021 (0,53) Seating Plane M0.010 (0,25) NOTES: A. All linear dimensions are in inches (millimeters). B. This drawing is subject to change without notice. C. Falls within JEDEC MS-001
MCER001A – JANUARY 1995 – REVISED JANUARY 1997
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