PT6360 TI | Alldatasheet

Document overview

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Technical content

Features

  • 12 V Input
  • 11 A Output Current
  • DSP Compatible
  • >90 % Efficiency
  • Adjustable Output Voltage
  • On/Off Inhibit Function
  • Over-Current Protection Pin-Out Information * Denotes negative logic: Open = Output enabled Ground = Output disabled

Description

The PT6360 Excalibur™ series of integrated switching regulators (ISRs) combines outstand- ing power density with a comprehensive list of features. They are an ideal choice for applications where board space is a premium and performance cannot be compromised. These modules provide up to 11 A of output current, yet are housed in a low- profile, 12-pin, package that is almost half the size of the previous product generation. The inte- gral copper case construction requires no heatsink, and offers the advantages of solderability and a small footprint (0.64 in² for suffix ‘N’). Both through-hole and surface mount pin configura- tions are available. The PT6360 series operates from a 12-V input bus and provides a convenient point-of-load power source for the industry’s latest high-performance DSPs and microprocessors. The series includes output voltage options as low as 1.0 VDC. Other features include external output voltage adjustment, on/off inhibit, short circuit protection, and an output remote sense. PT Series Suffix (PT1234x) Case/Pin Order Package Configuration Suffix Code Vertical N (EPH) Horizontal A (EPJ) SMD C (EPK) (Reference the applicable package code draw- ing for the dimensions and PC board layout)

  • Output Remote Sense
  • Low-Profile (8 mm)
  • Small Footprint (0.64 in², Suffix ‘N’)
  • Surface Mountable
  • IPC Lead Free 2 PT6360 Vo Adjust VIN 5–8 9–102–4 L O A D C IN 560 µF (Required) + C OUT 330 µF (Optional) Inhibit GND GND VOUT (+)Sense

For technical support and more information, see inside back cover or visit www.ti.com PT6360 Series

11 A 12-V Input Adjustable

Integrated Switching Regulator Performance Specifications (Unless otherwise stated, T a =25 °C, Vin =12 V, Cin =560 µF, Cout =0 µF, and Io =Iomax) PT6360 SERIES Characteristics Symbols Conditions Min Typ Max Units Output Current I o Vin =12 V V o < 3.3 V 0 — 11 AVo ≥ 3.3 V 0 — 10 Input Voltage Range V in Over Io range 10.8 — 13.2 V Set-Point Voltage Tolerance V o tol — — ±2 %V o Temperature Variation ∆Regtemp –40 °C <Ta < +85 °C — ±0.5 — %V o Line Regulation ∆Regline Over Vin range — ±3 — mV Load Regulation ∆Regload Over Io range — ±5 — mV Total Output Variation ∆Regtot Includes set-point, line, load, ——± 3% V o–40 °C ≤ Ta ≤ +85 °C Efficiency η Io =8 A PT6361 ( 5 V) — 93 — PT6362 (3.3 V) — 91 — PT6363 (2.5 V) — 90 — PT6365 (1.5 V) — 85 — PT6366 (1.2 V) — 82 — PT6367 (1.0 V) — 80 — Vo Ripple (pk-pk) V r 20 MHz bandwidth V o = 5.0 V — 50 — Vo = 3.3 V — 25 — mV pp Vo ≤ 2.5 V — 15 — Transient Response 1 A/µs load step, 50 to 100 % I omax, Cout =330 µF ttr Recovery Time — 50 — µSec ∆Vtr Vo over/undershoot — 70 — mV Over-Current Threshold I TRIP Reset, followed by auto-recovery — 16 — A Output Voltage Adjust V o adj With V o Adjust — ±15 (1) —% Switching Frequency ƒ s Over Vin and Io ranges 300 350 400 kHz Inhibit Control (pin1) Referenced to GND (pins 5–8) Input High Voltage V IH 2 — Open (2) V Input Low Voltage VIL –0.2 — 0.3 Input Low Current IIL Pin 1 to GND — –10 — µA Standby Input Current I in standby Pin 1 to GND — 5 — mA External Input Capacitance C in 560 (3) ——µ F External Output Capacitance C out 0 330 (4) 5,000 µF Operating Temperature Range T a Over Vin range –40 — 85 (5) °C Solder Reflow Temperature T reflow Surface temperature of pins or case — — 215 (6) °C Storage Temperature T s — –40 — 125 °C Reliability MTBF Per Bellcore TR-332 8.0 — — 10 6 Hrs50% stress, Ta =40°C, ground benign Mechanical Shock Mil-STD-883D, Method 2002.3 — 500 — G’sHalf Sine, mounted to a fixture Mechanical Vibration Mil-STD-883D, Method 2007.2, — 20 (7) —G ’ s20-2000 Hz, PCB mounted Weight — — — 10 — grams Flammability — Materials meet UL 94V-0 Notes: (1) This is a typical value. For the adjustment limits of a specific model consult the related application note on output voltag e adjustment. (2) The Inhibit control (pin 1) has an internal pull-up to Vin, and if left open-circuit the module will operate when input powe r is applied. A small low- leakage (<100 nA) MOSFET is recommended to control this input. See application notes for more information. (3) A 560 µF electrolytic input capacitor is required for proper operation. The capacitor must be rated for a minimumm of 1.3 Ar ms of ripple current. (4) An external output capacitor is not required for basic operation. Adding 330µF of distributed capacitance at the load will i mprove the transient response, and reduce output ripple voltage. (5) See SOA curves or consult factory for the appropriate derating. (6) During solder reflow of SMD package version do not elevate the module case, pins, or internal component temperatures above a peak of 215 °C. For further guidance refer to the application note, “Reflow Soldering Requirements for Plug-in Power Surface Mount Products,” (SLTA 051). (7) The case pins on the through-hole package types (suffixes N & A) must be soldered. For more information see the applicable p ackage outline drawing. SLTS179A - JANUARY 2003 - REVISED APRIL 2003

For technical support and more information, see inside back cover or visit www.ti.com Note A: Characteristic data has been developed from actual products tested at 25°C. This data is considered typical data for the ISR. Efficiency vs Output Current Power Dissipation vs Output Current Performance Data; Vin =12 V (See Note A) Output Ripple vs Output Current PT6360 Series Integrated Switching Regulator Pin Descriptions Vin: The positive supply voltage input for the module with respect to the common GND. Vout: This is the regulated output voltage from the mod- ule with respect to the common GND. GND: The common node to which the input, output, and external control signals are referenced. Inhibit*: This is an open-collector (open-drain) negative logic input, that is referenced to GND. Driving this pin to GND disables the module’s output voltage. If Inhibit* is left open-circuit, the output will be active whenever a valid input source is applied. Typical Characteristics Vo Adjust: This pin is used to trim the output voltage to a value within the range of approximately ±15 % of nominal. The adjustment method uses an external resistor. The resistor is connected from Vo Adjust to either the GND or (+)Sense, in order to adjust the output either up or down, respectively. (+)Sense: An external remote sense input is provided to allow the regulation circuit to compensate for voltage drop between the module and the load. For optimal voltage accuracy (+)Sense should be connected to V out. If desired, (+)Sense may also be left open circuit. 100 02468 1 0 Iout (A ) Efficiency - % PT6361 PT6362 PT6363 PT6364 PT6365 PT6366 PT6367 100 02468 1 0 Iout (A ) Ripple - mV PT6361 PT6362 PT6363 PT6364 PT6365 PT6366 PT6367 02468 1 0 Iout (A ) Pd - Watts PT6361 PT6362 PT6363 PT6364 PT6365 PT6366 PT6367 SL TS179A - JANUARY 2003 - REVISED APRIL 2003

For technical support and more information, see inside back cover or visit www.ti.com Safe Operating Curves, V in =12 V (See Note B) 02468 1 0 Iout (A ) Ambient Temperature (°C) 200LFM 120LFM 60LFM Nat conv Airflow 02468 1 0 Iout (A ) Ambient Temperature (°C) 200LFM 120LFM 60LFM Nat Conv Airflow 02468 1 0 Iout (A ) Ambient Temperature (°C) 200LFM 120LFM 60LFM Nat conv Airflow 02468 1 0 Iout (A ) Ambient Temperature (°C) 200LFM 120LFM 60LFM Nat conv Airflow 02468 1 0 Iout (A ) Ambient Temperature (°C) 200LFM 120LFM 60LFM Nat conv Airflow PT6361, Vo =5 V, 0–10 A PT6362, Vo =3.3 V, 0–10 A Safe Operating Curves, Vin =12 V (See Note B) PT6363, Vo =2.5 V, 0–11 A PT6364, Vo =1.8 V, 0–11 A PT6366, Vo =1.2 V, 0–11 A PT6360 Series Integrated Switching Regulator Note B: SOA curves represent operating conditions at which internal components are at or below manufacturer’s maximum rated operating t emperatures. SLTS179A - JANUARY 2003 - REVISED APRIL 2003

For technical support and more information, see inside back cover or visit www.ti.com Application Notes Table 2-1: Input/Output Capacitors (1) N/R –Not recommended. The voltage rating does not meet the minimum operating limits. (2) Recommended Input capacitor when V o<2.6 V; lower RMS mA required . Capacitor Recommendations for the PT6360 Series of Integrated Switching Regulators Input Capacitor: The recommended input capacitance is determined by 1.3-A minimum ripple current rating and 560 µF mini- mum capacitance. Ripple current and <100 m Ω equivalent series resistance (ESR) values are the major considerations, along with temperature, when designing with different types of capacitors. Tantalum capacitors have a recommended minimum voltage rating of 2 × (max. dc voltage + ac ripple). This is necessary to insure reliability for input voltage bus applications. Output Capacitors: The recommended ESR of the output capacitor is 150mΩ . Electrolytic capacitors have marginal ripple performance at frequencies greater than 400kHz but excellent low frequency transient response. Ab ove the ripple frequency, ceramic capacitors are necessary to improve the transient response and reduce any high frequency noise components apparent during higher current excursions. Preferred low ESR type capacitor part numbers are identified in Table 2-1. PT6360 Series Tantalum Capacitors Tantalum type capacitors can be used for the output but only the AVX TPS, Sprague 593D/594/595 or Kemet T495/T510 series. These capacitors are recommended over many other tantalum types due to their higher rated surge, power dissipation, and ripple current capability. As a caution the TAJ series by AVX is not recommended. This series has considerably higher ESR, reduced power dissipation, and lower ripple current capability. The TAJ series is less reliable than the AVX TPS series when deter- mining power dissipation capability. Tantalum or Oscon® types are recommended for applications where ambient temperatures fall below 0 °C. Capacitor Table Table 2-1 identifies the characteristics of capacitors from a number of vendors with acceptable ESR and ripple current (rms) ratings. The number of capacitors required at both the input and output buses is identified for each capacitor type. This is not an extensive capacitor list. Capacitors from other vendors are available with comparable specifications. Those listed are for guidance. The RMS ripple current rating and ESR (Equivalent Series Resistance at 100 kHz) are critical param- eters necessary to insure both optimum regulator perfor mance and long capacitor life. /rodneVroticapaC seireS scitsiretcarahCroticapaCy titnauQ gnikroW egatloV )Fµ(eulaVt nelaviuqE)RSE( ecnatsiseRseireS mumixaMC°501 elppiR )smrI(tnerruC eziSlacisyhP )mm( tupnI suB tuptuO suB rebmuNtraProdneV cinosanaP )laidaR(CF )gtMecafruS(KF/CF V53 V52 V52 V05 V53 086 033 0001 0001 086 340.0 Ω 090.0 Ω 830.0 Ω 3700 Ω 060.0 Ω Am5561 Am557 Am0961 Am0161 Am0011 5.21 × 02 01 × 5.21 61 × 51 61 × 5.61 5.21 × 5.31 R/N )1( 1 2( ) 186V1CFUEE 133E1CFUEE S201E1CFUEE M201H1KFVEE Q186V1KFVEE )V6.2<oV( noc-imehCdetinU seireSVXL/ZXL )gtMecafruS(YVM V53 V53 V52 086 086 033 730.0 Ω 860.0 Ω 51.0 Ω Am0661 Am0501 Am076 5.21 × 02 01 × 61 01 × 3.01 )2( R/N )1( LL02X21M186BV53ZXL LL02X61M201BV53VXL V6.2<oV( ) PT01X01M133CV52YVM nocihciN seireSMP V53 V52 V53 065 0021 028 840.0 Ω 930.0 Ω 830.0 Ω Am0631 Am0041 Am0731 61 × 51 61 × 51 81 × 51 6HHM165V1MPU 6HHM221E1MPU 6HHM128V1MPU :noc-sO SS )tnuoMecafrus(PVS seireSVSdlO V01 V61 033 033 520.0 Ω 610.0 Ω Am0053 Am0074 01 × 5.01 11 × 21 R/N )1( M033SS01 V( o )V1.5< M033PVS61 mulatnaTXVA )tgtMecafruS(SPT V01 V01 033 033 1.0 Ω 60.0 Ω Am0052> Am0003> L3.7 × W7.5 × H1.4 R/N )1( R/N )1( 0010R010M733ESPT V( o )V1.5< 0600R010M733VSPT V( o )V1.5< mulatnaTtemeK seireS594T/025T (t nuoMecafruS) V01 V3.6 033 022 040.0 Ω 70.0 Ω Am0061 Am0002> W3.4 × L3.7 × H0.4 R/N )1( R/N )1( SA010M733X025 SA0010M722X594T mulatnaTeugarpS seireSD495 (t nuoMecafruS) V010 335 40.0 Ω Am0632L 2.7 × W6 × H1.4 R/N )1( 1T 2R0100X733D495

For technical support and more information, see inside back cover or visit www.ti.com Application Notes continued Va (req.d) 2.800 3.6 k Ω 2.750 9.3 k Ω 2.700 17.9 k Ω 2.650 32.2 k Ω 2.600 60.7 k Ω 2.550 146.0 k Ω 2.500 2.450 (328.0) kΩ 2.400 (146.0) kΩ 2.350 (85.7) kΩ 2.300 (55.3) kΩ 2.250 (37.2) kΩ 2.200 (25.0) kΩ 2.150 (16.4) kΩ 2.100 (9.9) kΩ 2.3 kΩ 2.050 (4.8) kΩ 7.7 kΩ 2.000 (0.8) kΩ 15.9 kΩ 1.950 29.5 k Ω 1.900 56.7 k Ω 1.850 138.0 k Ω 1.800 1.1 k Ω 1.750 (169.0) kΩ 6.3 kΩ 1.700 (66.9) kΩ 14.1 kΩ 1.650 (32.9) kΩ 27.2 kΩ 1.600 (15.9) kΩ 53.2 kΩ 1.550 (5.7) kΩ 131.0 kΩ 1.500 1.8 k Ω 1.475 (239.0) kΩ 4.2 kΩ 1.450 (102.0) kΩ 7.1 kΩ 1.425 (56.4) kΩ 10.7 kΩ 1.400 (33.7) kΩ 15.1 kΩ 1.375 (20.0) kΩ 20.8 kΩ 1.350 (10.9) kΩ 28.4 kΩ 1.325 (4.4) kΩ 39.1 kΩ 1.300 55.1 k Ω 2.3 kΩ 1.275 81.8 k Ω 4.8 kΩ 1.250 135.0 k Ω 7.7 kΩ 1.225 295.0 k Ω 11.4 kΩ 1.200 15.9 k Ω 1.175 (125.0) kΩ 21.7 kΩ 1.150 (45.1) kΩ 29.5 kΩ 1.125 (18.4) kΩ 40.4 kΩ 1.100 (5.1) kΩ 56.7 kΩ 1.075 83.9 k Ω 1.050 138.0 k Ω 1.025 302.0 k Ω 1.000 0.975 (46.5) kΩ 0.950 (5.7) kΩ Table 3-2 ISR ADJUSTMENT RESISTOR VALUES Series Pt. No. PT6361 PT6362 PT6363 PT6364 PT6365 PT6366 PT6367 Va (req.d) 5.50 1.0 k Ω 5.40 5.0 k Ω 5.30 11.7 k Ω 5.20 25.0 k Ω 5.10 65.0 k Ω 5.00 4.90 (395.0) kΩ 4.80 (185.0) kΩ 4.70 (115.0) kΩ 4.60 (80.0) kΩ 4.50 (59.0) kΩ 4.40 (45.0) kΩ 4.30 (35.0) kΩ 4.20 (27.5) kΩ 4.10 (21.7) kΩ 4.00 (17.0) kΩ 3.90 (13.2) kΩ 3.80 (10.0) kΩ 3.70 (7.3) kΩ 3.60 (5.0) kΩ 2.3 kΩ 3.55 (4.0) kΩ 7.7 kΩ 3.50 (3.0) kΩ 15.9 kΩ 3.45 (2.1) kΩ 29.5 kΩ 3.40 (1.3) kΩ 56.7 kΩ 3.35 (0.5) kΩ 138.0 kΩ 3.30 3.25 (475.0) kΩ 3.20 (220.0) kΩ 3.15 (135.0) kΩ 3.10 (92.4) kΩ 3.05 (66.9) kΩ 3.00 (49.9) kΩ 2.95 (37.5) kΩ 2.90 (28.6) kΩ 2.85 (21.6) kΩ 2.80 (15.9) kΩ 2.75 (11.3) kΩ 2.70 (7.4) kΩ 2.65 (4.1) kΩ 2.60 (1.3) kΩ R1 = (Blue) R2 = Black PT6360 Series

Orderable Device Status(1) Package Type Package Drawing Pins Package Qty Eco Plan(2) Lead/Ball FinishMSL Peak Temp (3) PT6361A ACTIVE SIP MOD ULE EPJ 12 21 TBD Call TI Level-1-215C-UNLIM PT6361C ACTIVE SIP MOD ULE EPK 12 21 TBD Call TI Level-3-215C-168HRS PT6361N ACTIVE SIP MOD ULE EPH 12 21 TBD Call TI Level-1-215C-UNLIM PT6362A ACTIVE SIP MOD ULE EPJ 12 21 TBD Call TI Level-1-215C-UNLIM PT6362C ACTIVE SIP MOD ULE EPK 12 21 TBD Call TI Level-3-215C-168HRS PT6362N ACTIVE SIP MOD ULE EPH 12 21 TBD Call TI Level-1-215C-UNLIM PT6364N ACTIVE SIP MOD ULE EPH 12 21 TBD Call TI Level-1-215C-UNLIM (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) 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. 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 13-May-2005 Addendum-Page 1

MMSI003A – SEPTEMBER 2001 – REVISED JUNE 2002 1POST OFFICE BOX 655303 • DALLAS, TEXAS 75265 EPK (R–MSIP–G12) METAL SINGLE-IN-LINE MODULE NOTES: A. All linear dimensions are in inches (mm). B. This drawing is subject to change without notice. E. Recommended mechanical keep-out area. F. Power pin connections should utilize two or more vias per input, ground and output pin. G. Vias are recommended to improve copper adhesion. H. Solder mask openings to copper island for solder joints to mechanical pins. Electrically connect case to ground plane. I. Case outline reference. 2 place decimals are/C00340.030 (/C00340, 76 mm). 3 place decimals are/C00340.010 (/C00340, 25 mm). 4203206/B 06/02 0.017 (0,43) TYP. PC LAYOUT 0.025 (0,63) 1.71 (43,43) MAX. 0.160 (4,06) TYP. 0.100 (2,54) TYP. 0.835 (21,21) MAX. 0.675 (17,14) MAX. 0.315 (8,00) 0.040 (1,01) TYP. 0.032 (0,81) TYP. 1.670 (42,42) Note E 0.285 (7,24) 0.100 (2,54) 11 Places 0.080 (2,03) 0.280 (7,11) 0.040 (1,01) 0.505 0.050 (1,27)

12 Places

0.200 (5,08) (5,33) 0.210 (12,83)Note F TYP. 0.100 Note H Note G (2,54) 0.100 0.070 (1,77) ø0.065 (1,65) MIN. 4 Places (2,28) 0.090 to ground plane Plated through connected 0.140 (3,55) (1,27) (2,54) 0.050 0°–6° 0.080 (2,03) Seating Plane 0.006 (0,15) 0.017 (0,43) TYP. 0.050 (1,27) (4,19) 0.165 1.770 (44,95) 0.050 (1,27) 0.040 (1,01) (17,10) 0.670 Note I SUFFIX C Gage Plane

MMSI004 – SEPTEMBER 2001 1POST OFFICE BOX 655303 • DALLAS, TEXAS 75265 EPJ (R–MSIP–G12) METAL SINGLE-IN-LINE MODULE NOTES: A. All linear dimensions are in inches (mm). B. This drawing is subject to change without notice. E. Recommended mechanical keep-out area. F. Electrical pin length mounted on circuit board seating plane to pin end. G. Electrically connect case to ground plane. H. Case outline reference. 2 place decimals are/C00340.030 (/C00340, 76 mm). 3 place decimals are/C00340.010 (/C00340, 25 mm). 4203205/A 08/01 0.017 (0,43) TYP. PC LAYOUT 0.025 (0,63) TYP. 1.71 (43,43) MAX. 0.160 (4,06) TYP. 0.100 (2,54) TYP. 0.140 (3,55) MIN. 0.835 (21,21) MAX. 0.675 (17,14) MAX. 0.315 (8,00) 0.040 (1,01) TYP. 0.032 (0,81) TYP. 1.670 (42,42) 0.140 (3,55) 0.100 (2,54) 0.090 (2,28) 0.050 (1,27) Note E 0.285 (7,24) 0.100 (2,54)

11 Places

ø0.045 (1,14) MIN. Plated through 0.080 (2,03) 0.280 (7,11) 0.040 (1,01) 0.505 (12,83) ø0.065 (1,65) MIN. 4 Places Plated through connected to ground plane

4 Places

1.770 (44,95) Note H 0.580 (14,73) Suffix A

MMSI069 – SEPTEMBER 2001 1POST OFFICE BOX 655303 • DALLAS, TEXAS 75265 EPH (R–MSIP–T12) METAL SINGLE-IN-LINE MODULE 4203204/A 09/01 1.71 (43,43) MAX. 0.160 (4,06) TYP. 0.140 (3,55) MIN. 0.675 (17,14) MAX. 0.48 (12,19) MAX. See Note F 0.315 (8,00) Plated through. See Note G. ø0.065 (1,65) MIN. 4 Places 0.040 (1,01) 0.285 (7,24) 0.100 (2,54) ø0.045 (1,14) MIN. (12,95) 0.51 1 0.040 (1,01) 1.75 (44,45) 1.670 (42,42) 0.080 (2,03) 0.080 (2,03) 0.200 (5,08)

2 Places

(8,89) 0.35 Note E (0,81) 0.040 (1,01) TYP. 0.025 (0,63) TYP. 0.032 0.017 (0,43) TYP. 0.100 (2,54) TYP. TYP. Note G Suffix N NOTES: A. All linear dimensions are in inches (mm). B. This drawing is subject to change without notice. C. 2 place decimals are /C00060.030 (/C00060,76mm). D. 3 place decimals are /C00060.010 (/C00060,25mm). E. Recommended mechanical keep out area. F. Electrical pin length mounted on circuit board seating plane to pin end. G. Electrically connect case to ground plane.

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