LOW NOISE, JFET INPUT OPERATIONAL AMPLIFIERS

Similar documents
PRECISION OPERATIONAL AMPLIFIERS

Amplifiers JFET INPUT OPERATIONAL AMPLIFIERS

MC33076P2 DUAL HIGH OUTPUT CURRENT OPERATIONAL AMPLIFIER

OPERATIONAL AMPLIFIER

MC1723C VOLTAGE REGULATOR

Representative Schematic Diagram. Standard Application ORDERING INFORMATION DEVICE TYPE/NOMINAL VOLTAGE MOTOROLA ANALOG IC DEVICE DATA

SG3527A PULSE WIDTH MODULATOR CONTROL CIRCUITS

TDA1085C UNIVERSAL MOTOR SPEED CONTROLLER

DG417/418/419. Precision CMOS Analog Switches. Features Benefits Applications. Description. Functional Block Diagram and Pin Configuration

Integrated Silicon Pressure Sensor Altimeter/Barometer Pressure Sensor On-Chip Signal Conditioned, Temperature Compensated and Calibrated

LM148 Low Power Quad 741 Operational Amplifier

SEMICONDUCTOR TECHNICAL DATA VOLTAGE CONTROLLED MULTIVIBRATOR. Not Recommended for New Designs

Quad SPST CMOS Analog Switches

N-C hannel E nhancement Mode Field E ffect Transistor. T O-251(l-P AK ) (T A=25 C unles s otherwis e noted) 25 C 70 C IDM P D.

Quad SPST CMOS Analog Switches

AOZ6115 High Performance, Low R ON, SPST Analog Switch

MC MC35172 LOW POWER DUAL BIPOLAR OPERATIONAL AMPLIFIERS.. GOOD CONSUMPTION/SPEED RATIO : ONLY 200µA/Amp FOR 2.1MHz, 2V/µs

STS3401. P -C hannel E nhancement Mode MOS FE T. ABS OLUTE MAXIMUM R ATINGS (T A=25 C unless otherwise noted) THE R MAL C HAR AC TE R IS TIC S

Low-Power, High-Speed CMOS Analog Switches

8-Input NAND Gate IN74HCT30A TECHNICAL DATA LOGIC DIAGRAM PIN ASSIGNMENT FUNCTION TABLE. Rev. 00

DG411CY. Pin Configurations/Functional Diagrams/Truth Tables IN2 DG412 IN3 DIP/SO/TSSOP DG412 LOGIC SWITCH OFF SWITCHES SHOWN FOR LOGIC 0 INPUT

General Purpose Transistors

CUSTOM MODULES (Commercial / Moisture Resistant / Hermetic)

AOZ6135 High Performance, Low R ON, 1Ω SPDT Analog Switch

S6B CH SEGMENT / COMMON DRIVER FOR DOT MATRIX LCD

AOZ Ω Low-Voltage Dual-DPDT Analog Switch

AOZ Ω Low-Voltage Dual SPDT Analog Switch. General Description. Features. Applications AOZ6236

Quad SPST CMOS Analog Switch

SA CH SEGMENT /COMMON DRIVER FOR DOT MATRIX LCD

Precision CMOS Analog Switches

Improved, Dual, High-Speed Analog Switches

8-Input NAND Gate IN74HC30A TECHNICAL DATA LOGIC DIAGRAM PIN ASSIGNMENT FUNCTION TABLE. Rev. 00

Features Lead free as standard RoHS compliant* Leadless Low stored charge

Top View Bottom View Internal Schematic (Top View)

Low Drift, Low Power Instrumentation Amplifier AD621

PS391/PS392/PS393. Precision, Quad, SPST, Analog Switches. Description

MMBT3904-G (NPN) General Purpose Transistor. RoHS Device. Features. Maximum Ratings (at TA=25 C unless otherwise noted) Thermal Characteristics SOT-23

L4970A 10A SWITCHING REGULATOR

SGM nA, Single Rail-to-Rail I/O Operational Amplifier

IN1 IN2 DG412 GND IN3 IN4 DIP/SO/TSSOP DG412 LOGIC SWITCH OFF SWITCHES SHOWN FOR LOGIC 0 INPUT

Quad SPST CMOS Analog Switches

CD54/74HC30, CD54/74HCT30

STM8309. Dual Enhancement Mode Field Effect Transistor ( N and P Channel) ABSOLUTE MAXIMUM RATINGS (TA=25 C unless otherwise noted)

EV Series 1.5 Amp Sensitive SCRs. Description. Features. Surge capability > 15Amps Blocking voltage (V DRM / V RRM.

1 pc Charge Injection, 100 pa Leakage, CMOS 5 V/+5 V/+3 V Quad SPST Switches ADG611/ADG612/ADG613

ML ML Digital to Analog Converters with Serial Interface

74AUP1G95 TinyLogic Low Power Universal Configurable Two-Input Logic Gate (Open Drain Output)

200 kpa On-Chip Temperature. Compensated Silicon Pressure Sensors. MPX2200 Series. Pressure. Application Examples. Features. MPX2200 Rev 13, 10/2008

Low Capacitance, Low Charge Injection, ±15 V/+12 V icmos Quad SPST Switches ADG1212-EP

CD74HC221, CD74HCT221

IGBT Designer s Manual

Characteristic Symbol Value Units V GSS

Low-Cost, Low-Voltage, Quad, SPST, CMOS Analog Switches

8-Ch/Dual 4-Ch High-Performance CMOS Analog Multiplexers

KHB9D5N20P1/F1/F2 N CHANNEL MOS FIELD EFFECT TRANSISTOR SEMICONDUCTOR TECHNICAL DATA. General Description

TL601, TL604, TL607, TL610 P-MOS ANALOG SWITCHES

MC MC MC MC145408

BOLUTE MXIMUM TING These are stress ratings only and functional operation of the device at these ratings or any other above those indicated in the ope

LC2 MOS 4-/8-Channel High Performance Analog Multiplexers ADG408/ADG409

Neotec Semiconductor Ltd. 新德科技股份有限公司

PH5504A2NA1. Ambient Light Sensor DESCRIPTION FEATURES APPLICATIONS. R08DS0067EJ0100 Rev.1.00 Nov 05, 2012 DISCONTINUED

1.5A Buck/Boost/Inverting DC-DC Switching Regulator

KHB2D0N60P/F/F2 N CHANNEL MOS FIELD EFFECT TRANSISTOR SEMICONDUCTOR TECHNICAL DATA. General Description

SGM nA, Non-Unity Gain, Dual Rail-to-Rail Input/Output Operational Amplifier

DMN2400UFB4. Features. Mechanical Data. Ordering Information (Note 4) 20V N-CHANNEL ENHANCEMENT MODE MOSFET DMN2400UFB4

DC-DC Converter Control Circuits

MM74C00 MM74C02 MM74C04 Quad 2-Input NAND Gate Quad 2-Input NOR Gate Hex Inverter

74AUP1G59 TinyLogic Low Power Universal Configurable Two-Input Logic Gate (Open Drain Output)

Quad SPST CMOS Analog Switches

SGM nA, Dual Rail-to-Rail I/O Operational Amplifier

Improved, SPST/SPDT Analog Switches

SGM7227 High Speed USB 2.0 (480Mbps) DPDT Analog Switch

Dual 4-Input AND Gate

FEATURES FUNCTIONAL BLOCK DIAGRAM

Octal D-type transparent latch; 3-state

NPN/PNP transistor pair connected as push-pull driver in a SOT457 (SC-74) Surface-Mounted Device (SMD) plastic package.

Op Amp Packaging. Op Amps. JFET Application Current Source

TC74HC4051AP,TC74HC4051AF,TC74HC4051AFT TC74HC4052AP,TC74HC4052AF,TC74HC4052AFT TC74HC4053AP,TC74HC4053AF,TC74HC4053AFN,TC74HC4053AFT

Characteristic Symbol Value Unit Output Current I out 150 ma

PI5A3158. SOTINY TM Low Voltage Dual SPDT An a log Switch 2:1 Mux/DeMux Bus Switch. Features. Description. Connection Diagram.

I D max T A = +25 C (Note 6)

Symbol Parameter Test Conditions Value Unit Sxx15L T C. = 90 C 15 RMS on-state current Sxx16R = 90 C 9.5 I T(AV) Sxx16R

High Performance Silicon Gate CMOS

Low Voltage 400 MHz Quad 2:1 Mux with 3 ns Switching Time ADG774A

SGM nA, Non-Unity Gain, Quad Rail-to-Rail Input/Output Operational Amplifier

Lecture 7: Transistors and Amplifiers

Data Sheet. HDSP-B0xE 18:88 and 88: " Four Digit GaP HER Seven Segment Display. Description. Features

UNISONIC TECHNOLOGIES CO., LTD TDA7269

NL27WZ126. Dual Buffer with 3 State Outputs. The NL27WZ126 is a high performance dual noninverting buffer operating from a 1.65 V to 5.5 V supply.

5-V Low Drop Voltage Regulator TLE 4263

I2 C Compatible Digital Potentiometers AD5241/AD5242

KH600. 1GHz, Differential Input/Output Amplifier. Features. Description. Applications. Typical Application

FEATURES 004 DC VOLTAGE RATING AT + 85 C S CASE CODE

onlinecomponents.com

ON OFF PART. Pin Configurations/Functional Diagrams/Truth Tables 5 V+ LOGIC

IRF7805. HEXFET Chip-Set for DC-DC Converters. Absolute Maximum Ratings. Thermal Resistance. 1 PD 91746E SO-8.

8-channel analog multiplexer/demultiplexer. For operation as a digital multiplexer/demultiplexer, V EE is connected to V SS (typically ground).

CMOS, +1.8 V to +5.5 V/ 2.5 V, 2.5 Low-Voltage, 8-/16-Channel Multiplexers ADG706/ADG707 REV. A

SCHEMATIC SYMBOLS AMP METER MASTER RESCUE ASSISTANCE INTERCOM SYSTEM STATION CIRCUIT BREAKER CIRCUIT BREAKER (GFI) GFI CONTACT (N.C.) CONTACT (N.O.

TC ma, Tiny CMOS LDO With Shutdown. General Description. Features. Applications. Package Types SOT-23 SC-70

Transcription:

These low noise T input operational amplifiers combine two state of the art analog technologies on a single monolithic integrated circuit. ach internally compensated operational amplifier has well matched high voltage T input device for low input offset voltage. The IT technology provides wide bandwidths and fast slew rates with low input bias currents, input offset currents, and supply currents. oreover, the devices exhibit low noise and low harmonic distortion, making them ideal for use in high fidelity audio amplifier applications. These devices are available in single, dual and quad operational amplifiers which are pin compatible with the industry standard 74, 458, and the 3403/324 bipolar products. ow Input oise oltage: 8 n/ 2 z Typ ow armonic istortion: 0.0% Typ ow Input ias and Offset urrents igh Input Impedance: 02 Ω Typ igh lew ate: 3 /µs Typ Wide ain andwidth: 4.0 z Typ ow upply urrent:.4 m per mp OW OI, T IPT OPTIO PII 8 P IX PTI P 626 IOTO TI T PI OTIO 8 IX PTI P 75 (O 8) Offset ull 8 Inv + Input 2 7 oninvt Input 3 + 6 Output 4 5 Offset ull T07 (Top iew) Output Inputs 2 3 4 + + 8 7 6 5 T072 (Top iew) Output Inputs 4 PI OTIO IX PTI P 646 (T074 Only) Op mp unction ingle ual OI IOTIO evice T07, T07P, P T072, T072P, P Operating Temperature ange T =0 to +70 T =0 to +70 Package O 8 Plastic IP O 8 Plastic IP Quad T074, T = 0 to +70 Plastic IP Output Inputs Inputs 2 Output 2 2 3 4 5 6 + + 4 2 3 + + 7 8 T074 (Top iew) 4 3 2 0 9 Output 4 Inputs 4 Inputs 3 Output 3 OTOO O I I T 2 39

T07, T072, T074, XI TI upply oltage ating ymbol alue nit +8 8 ifferential Input oltage I ±30 Input oltage ange (ote ) I ±5 Output hort ircuit uration (ote 2) t ontinuous Power issipation (, P) erate above T = +47 P /θ 680 0 mw mw/ Operating mbient Temperature ange T 0 to +70 torage Temperature ange Tstg 65 to +50. The magnitude of the input voltage must not exceed the magnitude of the supply voltage or 5, whichever is less. 2. The output may be shorted to ground or either supply. Temperature and/or supply voltages must be limited to ensure that power dissipation ratings are not exceeded. TI TITI ( = +5, = 5, T = Thigh to Tlow [ote 3]) haracteristics ymbol in Typ ax nit Input Offset oltage ( 0 k, = 0) T07, T072 T074 T07_ Input Offset urrent ( = 0) (ote 4) T07_ T07_ Input ias urrent ( = 0) (ote 4) T07_ T07_ arge ignal oltage ain (O = ±0, 2.0 k) T07_ T07_ Output oltage wing (Peak to Peak) ( 0 k) ( 2.0 k) 3. T low = 0 for T07, T high = +70 for T07, 0 for T072, +70 for T072, 0 for T074, +70 for T074, 4. Input ias currents of T input op amps approximately double for every 0 rise in junction temperature as shown in igure 3. To maintain junction temperature as close to ambient temperature as possible, pulse techniques must be used during testing. IO IIO II O O 5 25 24 20 3 3 7.5 2.0 2.0 7.0 7.0 m n n /m igure. nity ain oltage ollower igure 2. Inverting ain of 0 mplifier 0 k in + O in.0 k + O = 2.0 k = 00 p = 00 p 2 320 OTOO O I I T

T07, T072, T074, TI TITI ( = +5, = 5, T = 25, unless otherwise noted.) haracteristics ymbol in Typ ax nit Input Offset oltage ( 0 k, = 0) T07, T072 T074 T07_ verage Temperature oefficient of Input Offset oltage = 50 Ω, T = Tlow to Thigh (ote 3) Input Offset urrent ( = 0) (ote 4) T07_ T07_ Input ias urrent ( = 0) (ote 4) T07_ T07_ IO 3.0 3.0 3.0 0 0 6.0 m IO/ T 0 µ/ Input esistance ri 02 Ω ommon ode Input oltage ange T07_ T07_ arge ignal oltage ain (O = ±0, 2.0 k) T07_ T07_ Output oltage wing (Peak to Peak) ( = 0 k) ommon ode ejection atio ( 0 k) T07_ T07_ upply oltage ejection atio ( 0 k) T07_ T07_ IIO II I O ±0 ± 25 50 5.0 5.0 30 30 +5, 2 +5, 2 50 50 50 50 200 200 p p /m O 24 28 upply urrent (ach mplifier) I.4 2.5 m nity ain andwidth W 4.0 z lew ate (ee igure ) in = 0, = 2.0 k, = 00 p P 70 80 70 80 00 00 00 00 d d 3 v/µs ise Time (ee igure ) tr 0. µs Overshoot (in = 20 m, = 2.0 k, = 00 p) O 0 % quivalent Input oise oltage = 00 Ω, f = 000 z quivalent Input oise urrent = 00 Ω, f = 000 z Total armonic istortion O () = 0,.0 k, 2.0 k, f = 000 z hannel eparation = 00 en 8 n/ z in 0.0 p/ z T 0.0 % 20 d 3. T low = 0 for T07, T high = +70 for T07, 0 for T072, +70 for T072, 0 for T074, +70 for T074, 4. Input ias currents of T input op amps approximately double for every 0 rise in junction temperature as shown in igure 3. To maintain junction temperature as close to ambient temperature as possible, pulse techniques must be used during testing. OTOO O I I T 2 32

T07, T072, T074, igure 3. Input ias urrent versus Temperature igure 4. Output oltage wing versus requency 00 I I, IPT I T (n) 0.0 0. 0.0 / = ±5 75 50 25 0 25 50 75 00 25 T, IT TPT ( ) O, OTPT OT WI (pp) 30 25 20 5 0 5.0 / = ±5 ±0 ±5.0 = 2.0 k T = 25 ee igure 2 0 00.0 k 0 k 00 k.0 0 f, QY (z) igure 5. Output oltage wing versus oad esistance igure 6. Output oltage wing versus upply oltage O, OTPT OT WI (pp) O, OTPT OT WI (pp) 30 20 0 5.0 / = ±5 T = 25 ee igure 2 0 0. 0.2 0.4 0.7.0 2.0 4.0 7.0 0 35 30 25 20 5 0 5.0 0 igure 7. Output oltage wing versus Temperature / = ±5 ee igure 2, O IT (kω) = 0 k = 2.0 k 50 25 0 25 50 75 00 25 T, IT TPT ( ) O, OTPT OT WI (pp) I, PPY I T (m) 40 30 20 0 = 2.0 k T = 25 0 0 5.0 0 5 20,, PPY OT (±) 2.0.8.6.4.2.0 0.8 0.6 0.4 0.2 0 igure 8. upply urrent per mplifier versus Temperature / = ±5 50 25 0 25 50 75 00 25 T, IT TPT ( ) 2 322 OTOO O I I T

T07, T072, T074, igure 9. arge ignal oltage ain and Phase hift versus requency igure 0. arge ignal oltage ain versus Temperature O, OP OOP I 06 05 04 03 02 0 ain Phase hift / = ±5 = 2.0 k T = 25 0 45 90 35 P IT () O, OT I (/m) 000 00 0 / = ±5 O = ±0 = 2.0 k.0 0 00.0 k 0 k 00 k.0 0 f, QY (z) 80.0 50 25 0 25 50 75 00 25 T, IT TPT ( ) igure. ormalized lew ate versus Temperature igure 2. quivalent Input oise oltage versus requency OIZ W T.5.0.05.00 0.95 0.90 0.85 50 25 0 25 50 75 00 25 T, IT TPT ( ) e e n, QIT IPT OI OT ( n/ z ) 60 50 40 30 20 0 0 0.0 0.05 0. 0.5.0 5.0 0 50 00 f, QY (z) / = ±5 dc = 0 = 00 Ω T = 25 T, TOT OI ITOTIO (%).0 0.5 0. 0.05 0.0 0.005 igure 3. Total armonic istortion versus requency / = ±5 =.0 O = 6.0 () T = 25 0.00 0. 0.5.0 5.0 0 50 00 f, QY (z) OTOO O I I T 2 323

T07, T072, T074, epresentative chematic iagram (ach mplifier) Output ias ircuitry ommon to ll mplifiers Q3 Q4 Q5 Q2 Q Q6 Inputs + 2 Q7 2.0 k Q20 3 Q4 Q5 0 p Q9 Q23 24 Q2 Q22 Q24 Q2 Q3 Q6 Q0 Q Q9 Q8 Q7 Q25 Offset ull (T07 only).5 k Q8.5 k Input 0 k igure 4. udio Tone ontrol mplifier 00 k 0 k 0.033 µ 0.033 µ 0 k 3.3 k T07 + Output 0.033 µ 0.033 µ 00 k 68 k Turn Over requency =.0 kz ass oost/ut ±20 d at 20 z Treble oost/ut ±9 d at 20 kz igure 5. igh Q otch ilter Input T07 + fo = = 350 z 2π = 2 =.5 = = 300 p 2 2 324 OTOO O I I T

Tape and eel Options In rief... otorola offers the convenience of Tape and eel packaging for our growing family of standard integrated circuit products. eels are available to support the requirements of both first and second generation pick and place equipment. The packaging fully conforms to the latest I 48 specification. The antistatic embossed tape provides a secure cavity, sealed with a peel back cover tape. Page Tape and eel onfigurations..................... 2 2 Tape and eel Information Table................... 2 4 nalog PQ Table.............................. 2 5 OTOO O I I T 2

Tape and eel onfigurations echanical Polarization OI and icro 8 I Typical P I Typical PI ser irection of eed ser irection of eed P and 2P I Typical ser irection of eed OT 23 (5 Pin) I Typical OT 89 (3 Pin) I Typical OT 89 (5 Pin) I Typical ser irection of eed ser irection of eed ser irection of eed 2 2 OTOO O I I T

Tape and eel onfigurations (continued) TY (Preferred) TO 92 eel tyles TY arrier trip dhesive Tape ounded ide arrier trip dhesive Tape lat ide ÉÉÉÉÉÉÉ ÉÉÉÉÉÉÉ eed eed ounded side of transistor and adhesive tape visible. lat side of transistor and adhesive tape visible. TY P (Preferred) dhesive Tape On Top ide TO 92 mmo Pack tyles TY dhesive Tape On Top ide ounded ide É ÉÉ É eed arrier trip lat ide É eed ÉÉ É arrier trip abel ounded side of transistor and adhesive tape visible. abel lat side of transistor and adhesive tape visible. tyle P ammo pack is equivalent to tyles and of reel pack dependent on feed orientation from box. tyle ammo pack is equivalent to tyle of reel pack dependent on feed orientation from box. TO 92 I adial Tape in an old ox or On eel 2 2 2 2 W2 4 5 W W T T 2 T2 P2 P2 P P OTOO O I I T 2 3

Tape and eel Information Table Package Tape Width evices() eel ize evice (mm) per eel (inch) uffix O 8, OP 8 2 2,500 3 2 O 4 6 2,500 3 2 O 6 6 2,500 3 2 O 6, O 8+8 WI 6,000 3 2 O 20 WI 24,000 3 2 O 24 WI 24,000 3 2 O 28 WI 24,000 3 2 O 28 WI 32,000 3 3 icro 8 2 2,500 3 2 P 20 6,000 3 2 P 28 24 500 3 2 P 44 32 500 3 2 P 52 32 500 3 2 P 68 44 250 3 2 P 84 44 250 3 2 TO 226 (TO 92)(2) 8 2,000 3,, P, or (mmo Pack) only P 6 2,500 3 2P 24 800 3 4 OT 23 (5 Pin) 8 3,000 7 T OT 89 (3/5 Pin) 2,000 7 T () inimum order quantity is reel. istributors/o customers may break lots or reels at their option, however broken reels may not be returned. (2) Integrated circuits in TO 226 packages are available in tyes and only, with optional mmo Pack (uffix P or ). The and P configurations are preferred. or ordering information please contact your local otorola emiconductor ales Office. 2 4 OTOO O I I T

nalog PQ Table Tape/eel and mmo Pack P OI icro 8 TO 92 P 2P OT 23 (5 Pin) OT 89 (3 Pin) OT 89 (5 Pin) Package Type Package ode PQ ase 775 0802 000/reel ase 776 0804 500/reel ase 777 080 500/reel ase 75 0095 2500/reel ase 75 0096 2500/reel ase 75 0097 2500/reel ase 75 2003 000/reel ase 75 2005 000/reel ase 75 2008 000/reel ase 75 2009 000/reel ase 846 2500/reel ase 29 003 2000/reel ase 29 003 2000/mmo Pack ase 369 2500/reel ase 936 800/reel ase 22 3000/reel ase 23 000/reel ase 24 000/reel OTOO O I I T 2 5

2 6 OTOO O I I T

Packaging Information In rief... The packaging availability for each device type is indicated on the individual data sheets and the elector uide. ll of the outline dimensions for the packages are given in this section. The maximum power consumption an integrated circuit can tolerate at a given operating ambient temperature can be found from the equation: T(max) T P(T) = θ(typ) where: P(T) = Power issipation allowable at a given operating ambient temperature. This must be greater than the sum of the products of the supply voltages and supply currents at the worst case operating condition. T(max) = aximum operating unction Temperature as listed in the aximum atings ection. ee individual data sheets for T(max) information. T = aximum desired operating mbient Temperature θ(typ) = Typical Thermal esistance unction-to- mbient OTOO O I I T 3

ase Outline imensions P, P, Z IX 29-04 (TO-226/TO-92) I. IIOI TOI P I Y4.5, 982. 2. OTOI IIO: I. 3. OTO O P YO IIO I OTO. 4. IIO PPI TW P. IIO PPY TW II. IIO I OTO I P YO IIO II. 2 3 TI X X P TIO X X I IIT 0.75 0.205 4.45 5.20 0.70 0.20 4.32 5.33 0.25 0.65 3.8 4.9 0.06 0.022 0.4 0.55 0.06 0.09 0.4 0.48 0.045 0.055.5.39 0.095 0.05 2.42 2.66 0.05 0.020 0.39 0.50 0.500 2.70 0.250 6.35 0.080 0.05 2.04 2.66 P 0.00 2.54 0.5 2.93 0.35 3.43, T IX 22-06 I Y TI T. IIOI TOI P I Y4.5, 982. 2. OTOI IIO: I. 2 3 4 Y Q 2 3 4 3 P 0.25 (0.00) Y I IIT 0.560 0.625 4.23 5.87 0.380 0.420 9.66 0.66 0.40 0.90 3.56 4.82 0.020 0.045 0.5.4 0.39 0.55 3.53 3.93 0.00 2.54 0.280 7. 0.02 0.045 0.3.4 0.500 0.580 2.70 4.73 0.045 0.070.5.77 0.200 5.08 Q 0.00 0.35 2.54 3.42 0.080 0.5 2.04 2.92 0.020 0.055 0.5.39 T 0.235 0.255 5.97 6.47 0.000 0.050 0.00.27 3 2 OTOO O I I T

T IX 34-03 I Q P OPTIO TI. IIOI TOI P I Y4.5, 982. 2. OTOI IIO: I. 3. IIO O OT I ITOT () POTIO. IIO II POTIO OT X 0.043 (.092) XI. 5 5X 0.04 (0.356) T P 5X I IIT 0.572 0.63 4.529 5.570 0.390 0.45 9.906 0.54 0.70 0.80 4.38 4.572 0.025 0.038 0.635 0.965 0.048 0.055.29.397 0.570 0.585 4.478 4.859 0.067.702 0.05 0.025 0.38 0.635 0.730 0.745 8.542 8.923 0.320 0.365 8.28 9.27 Q 0.40 0.53 3.556 3.886 0.20 0.260 5.334 6.604 0.468 0.505.888 2.827 T, T IX 34-05 I 5 Q 5X P 0.0 (0.254) T P OPTIO 5X 0.24 (0.60) T W TI. IIOI TOI P I Y4.5, 982. 2. OTOI IIO: I. 3. IIO O OT I ITOT () POTIO. IIO II POTIO OT X 0.043 (.092) XI. I IIT 0.572 0.63 4.529 5.570 0.390 0.45 9.906 0.54 0.70 0.80 4.38 4.572 0.025 0.038 0.635 0.965 0.048 0.055.29.397 0.850 0.935 2.590 23.749 0.067.702 0.66 4.26 0.05 0.025 0.38 0.635 0.900.00 22.860 27.940 0.320 0.365 8.28 9.27 0.320 8.28 Q 0.40 0.53 3.556 3.886 0.620 5.748 0.468 0.505.888 2.827 0.735 8.669 W 0.090 0.0 2.286 2.794 T IX 34 0 I Q 2 3 4 5 TI. IIOI TOI P I Y4.5, 982. 2. OTOI IIO: I. 3. IIO O OT I ITOT () POTIO. IIO II POTIO OT X 0.92 (0.043) XI. 5 I IIT 0.60 0.625 5.59 5.88 0.380 0.420 9.65 0.67 0.60 0.90 4.06 4.83 0.020 0.040 0.5.02 0.035 0.055 0.89.40 0.067.702 0.05 0.025 0.38 0.64 0.500 2.70 0.355 0.370 9.02 9.40 Q 0.39 0.47 3.53 3.73 5 P 0.356 (0.04) T Q OTOO O I I T 3 3

T, T IX 34-03 I 2 3 4 5 Q 5 P 2 3 4 5 TI. IIOI TOI P I Y4.5, 982. 2. OTOI IIO: I. 3. IIO O OT I ITOT () POTIO. IIO II POTIO OT X 0.92 (0.043) XI. I IIT 0.572 0.63 4.529 5.570 0.390 0.45 9.906 0.54 0.70 0.80 4.38 4.572 0.025 0.038 0.635 0.965 0.048 0.055.29.397 0.067.702 0.087 0.2 2.20 2.845 0.05 0.025 0.38 0.635.020.065 25.908 27.05 0.320 0.365 8.28 9.27 Q 0.40 0.53 3.556 3.886 0.05 0.7 2.667 2.972 0.543 0.582 3.792 4.783 0.356 (0.04) T Q T- IX 369-07 (P) I. IIOI TOI P I Y4.5, 982. 2. OTOI IIO: I. 2 3 4 TI 4 2 3 I IIT 0.235 0.250 5.97 6.35 0.250 0.265 6.35 6.73 0.086 0.094 2.9 2.38 0.027 0.035 0.69 0.88 0.033 0.040 0.84.0 0.037 0.047 0.94.9 0.090 2.29 0.034 0.040 0.87.0 0.08 0.023 0.46 0.58 0.350 0.380 8.89 9.65 0.75 0.25 4.45 5.46 0.050 0.090.27 2.28 0.030 0.050 0.77.27 3 P 0.3 (0.005) T T IX 369-3 (P) I Y 3 4 4 2 3 2 P 0.3 (0.005) T TI Z. IIOI TOI P I Y4.5, 982. 2. OTOI IIO: I. I IIT 0.235 0.250 5.97 6.35 0.250 0.265 6.35 6.73 0.086 0.094 2.9 2.38 0.027 0.035 0.69 0.88 0.033 0.040 0.84.0 0.037 0.047 0.94.9 0.80 4.58 0.034 0.040 0.87.0 0.08 0.023 0.46 0.58 0.02 0.4 2.60 2.89 0.090 2.29 0.75 0.25 4.45 5.46 0.020 0.050 0.5.27 0.020 0.5 0.030 0.050 0.77.27 Z 0.38 3.5 3 4 OTOO O I I T

P,, P, P IX 626-05 I 8 5 4. IIO TO T O W O P. 2. P OTO OPTIO (O O Q O). 3. IIOI TOI P I Y4.5, 982. 8 OT 2 TI 0.3 (0.005) T IIT I 9.40 0.6 0.370 0.400 6.0 6.60 0.240 0.260 3.94 4.45 0.55 0.75 0.38 0.5 0.05 0.020.02.78 0.040 0.070 2.54 0.00 0.76.27 0.030 0.050 0.20 0.30 0.008 0.02 2.92 3.43 0.5 0.35 7.62 0.300 0 0 0.76.0 0.030 0.040, P, -4, P2 IX 646-06 I 4 8 7. WITI 0.3 (0.005) I O T POITIO T TI T XI TI OITIO. 2. IIO TO T O W O P. 3. IIO O OT I O. 4. O O OPTIO. 4 TI I IIT 0.75 0.770 8.6 9.56 0.240 0.260 6.0 6.60 0.45 0.85 3.69 4.69 0.05 0.02 0.38 0.53 0.040 0.070.02.78 0.00 2.54 0.052 0.095.32 2.4 0.008 0.05 0.20 0.38 0.5 0.35 2.92 3.43 0.300 7.62 0 0 0 0 0.05 0.039 0.39.0 P2,, P, P IX 648-08 I 6 6 8 9 6 P 0.25 (0.00) T TI. IIOI TOI P I Y4.5, 982. 2. OTOI IIO: I. 3. IIO TO T O W O P. 4. IIO O OT I O. 5. O O OPTIO. I IIT 0.740 0.770 8.80 9.55 0.250 0.270 6.35 6.85 0.45 0.75 3.69 4.44 0.05 0.02 0.39 0.53 0.040 0.70.02.77 0.00 2.54 0.050.27 0.008 0.05 0.2 0.38 0.0 0.30 2.80 3.30 0.295 0.305 7.50 7.74 0 0 0 0 0.020 0.040 0.5.0 OTOO O I I T 3 5

, P, P2, IX 648-03 (IP 6) I 6 9. IIOI TOI P I Y4.5, 982. 2. OTOI IIO: I. 3. IIO TO T O W O P. 4. IIO O OT I O. 5. IT OTIO TW 4 5, 2 3. 6 TI 8 OT 5 6 P 6 P 0.3 (0.005) T I IIT 0.740 0.840 8.80 2.34 0.240 0.260 6.0 6.60 0.45 0.85 3.69 4.69 0.05 0.02 0.38 0.53 0.050.27 0.040 0.70.02.78 0.00 2.54 0.008 0.05 0.20 0.38 0.5 0.35 2.92 3.43 0.300 7.62 0 0 0 0 0.05 0.040 0.39.0 0.3 (0.005) T P IX 648 0 (IP 6) I O 6 6 9 8 P 3 P 0.25 (0.00) T TI. IIOI TOI P I Y4.5, 982. 2. OTOI IIO: I. 3. IIO TO T O W O P. 4. IIO O OT I O POTIO. 5. O O POTIO OT X 0.25 (0.00). 6. O O OPTIO. I IIT 0.740 0.760 8.80 9.30 0.245 0.260 6.23 6.60 0.45 0.75 3.69 4.44 0.05 0.02 0.39 0.53 0.050 0.070.27.77 0.00 2.54 0.050.27 0.008 0.05 0.2 0.38 0.20 0.40 3.05 3.55 0.295 0.305 7.50 7.74 0 0 0 0 P 0.200 5.08 0.300 7.62 0.05 0.035 0.39 0.88 P IX 649-03 I 24 Q P 24 3 2 TI. WITI 0.3 (0.005) I O T POITIO T TI T XI TI OITIO. 2. IIO TO T O W O P. IIT I 3.50 32.3.240.265 3.2 3.72 0.520 0.540 4.70 5.2 0.85 0.205 0.38 0.5 0.05 0.020.02.52 0.040 0.060 2.54 0.00.65 2.6 0.065 0.085 0.20 0.30 0.008 0.02 2.92 3.43 0.5 0.35 4.99 5.49 0.590 0.60 0 0 0.5.02 0.020 0.040 P 0.3 0.38 0.005 0.05 Q 0.5 0.76 0.020 0.030 3 6 OTOO O I I T

,,, P IX 707-02 I 8 0 9. POITIO TO O (), WITI 0.25 (0.00) T XI TI OITIO, I TIO TO TI OT. 2. IIO TO T O W O P. 3. IIO O OT I O. 8 TI IIT I 22.22 23.24 0.875 0.95 6.0 6.60 0.240 0.260 3.56 4.57 0.40 0.80 0.36 0.56 0.04 0.022.27.78 0.050 0.070 2.54 0.00.02.52 0.040 0.060 0.20 0.30 0.008 0.02 2.92 3.43 0.5 0.35 7.62 0.300 0 5 0 5 0.5.02 0.020 0.040 P IX 70-02 I 28. POITIO TO O (), WITI 0.25 (0.00) T XI TI OITIO, I TIO TO TI OT. 2. IIO TO T O W O P. 3. IIO O OT I O. 28 5 4 IIT I 36.45 37.2.435.465 3.72 4.22 0.540 0.560 3.94 5.08 0.55 0.200 0.36 0.56 0.04 0.022.02.52 0.040 0.060 2.54 0.00.65 2.6 0.065 0.085 0.20 0.38 0.008 0.05 2.92 3.43 0.5 0.35 5.24 0.600 0 5 0 5 0.5.02 0.020 0.040 TI P IX 7-03 I 40 40 2. POITIO TO O (), WITI 0.25 (0.00) T XI TI OITIO, I TIO TO TI OT. 2. IIO TO T O W O P. 3. IIO O OT I O. 20 TI IIT I 5.69 52.45 2.035 2.065 3.72 4.22 0.540 0.560 3.94 5.08 0.55 0.200 0.36 0.56 0.04 0.022.02.52 0.040 0.060 2.54 0.00.65 2.6 0.065 0.085 0.20 0.38 0.008 0.05 2.92 3.43 0.5 0.35 5.24 0.600 0 5 0 5 0.5.02 0.020 0.040 OTOO O I I T 3 7

, P, P-3 IX 724-03 (IP 24) I TI 24 24 3 2 24 P 0.25 (0.00) T 24 P OT 0.25 (0.00) T. OTO OPTIO. 2. IIO TO T O W O P. 3. IIOI TOI P I Y4.5, 982. 4. OTOI IIO: I. I IIT.230.265 3.25 32.3 0.250 0.270 6.35 6.85 0.45 0.75 3.69 4.44 0.05 0.020 0.38 0.5 0.050.27 0.040 0.060.02.52 0.00 2.54 0.007 0.02 0.8 0.30 0.0 0.40 2.80 3.55 0.300 7.62 0 5 0 5 0.020 0.040 0.5.0, P, P IX 738-03 I 20 TI 20 0 20 P 0.25 (0.00) T 20 P 0.25 (0.00) T. IIOI TOI P I Y4.5, 982. 2. OTOI IIO: I. 3. IIO TO T O W O P. 4. IIO O OT I O. I IIT.00.070 25.66 27.7 0.240 0.260 6.0 6.60 0.50 0.80 3.8 4.57 0.05 0.022 0.39 0.55 0.050.27 0.050 0.070.27.77 0.00 2.54 0.008 0.05 0.2 0.38 0.0 0.40 2.80 3.55 0.300 7.62 0 5 0 5 0.020 0.040 0.5.0,, 2 IX 75-05 (O-8, OP-8) I 8 5 4 0.25. IIOI TOI P Y4.5, 994. 2. IIO I IIT. 3. IIO O OT I O POTIO. 4. XI O POTIO 0.5 P I. 5. IIO O OT I O POTIO. OW POTIO 0.27 TOT I X O T IIO T XI TI OITIO. 8 e 0.25 TI 0.0 h X 45 IIT I I X.35.75 0.0 0.25 0.35 0.49 0.8 0.25 4.80 5.00 3.80 4.00 e.27 5.80 6.20 h 0.25 0.50 0.40.25 0 7 3 8 OTOO O I I T

IX 75-03 (O-4) I 4 TI 4 8 4 P 7 P 7 P 0.25 (0.00) T 0.25 (0.00) X 45. IIOI TOI P I Y4.5, 982. 2. OTOI IIO: IIT. 3. IIO O OT I O POTIO. 4. XI O POTIO 0.5 (0.006) P I. 5. IIO O OT I POTIO. OW POTIO 0.27 (0.005) TOT I X O T IIO T XI TI OITIO. IIT I 8.55 8.75 0.337 0.344 3.80 4.00 0.50 0.57.35.75 0.054 0.068 0.35 0.49 0.04 0.09 0.40.25 0.06 0.049.27 0.050 0.9 0.25 0.008 0.009 0.0 0.25 0.004 0.009 0 7 0 7 P 5.80 6.20 0.228 0.244 0.25 0.50 0.00 0.09 IX 75-05 (O-6) I 6 TI 6 9 8 6 P 0.25 (0.00) T P 8 P 0.25 (0.00) X 45. IIOI TOI P I Y4.5, 982. 2. OTOI IIO: IIT. 3. IIO O OT I O POTIO. 4. XI O POTIO 0.5 (0.006) P I. 5. IIO O OT I POTIO. OW POTIO 0.27 (0.005) TOT I X O T IIO T XI TI OITIO. IIT I 9.80 0.00 0.386 0.393 3.80 4.00 0.50 0.57.35.75 0.054 0.068 0.35 0.49 0.04 0.09 0.40.25 0.06 0.049.27 0.050 0.9 0.25 0.008 0.009 0.0 0.25 0.004 0.009 0 7 0 7 P 5.80 6.20 0.229 0.244 0.25 0.50 0.00 0.09 W, P IX 75-04 (O-20, O 20) I 20 20 20X 0 0.00 (0.25) T 8X 0X P 0.00 (0.25) TI X 45. IIOI TOI P I Y4.5, 982. 2. OTOI IIO: IIT. 3. IIO O OT I O POTIO. 4. XI O POTIO 0.50 (0.006) P I. 5. IIO O OT I POTIO. OW POTIO 0.3 (0.005) TOT I X O IIO T XI TI OITIO. IIT I 2.65 2.95 0.499 0.50 7.40 7.60 0.292 0.299 2.35 2.65 0.093 0.04 0.35 0.49 0.04 0.09 0.50 0.90 0.020 0.035.27 0.050 0.25 0.32 0.00 0.02 0.0 0.25 0.004 0.009 0 7 0 7 P 0.05 0.55 0.395 0.45 0.25 0.75 0.00 0.029 OTOO O I I T 3 9

W IX 75-04 (O-24, OP (6+4+4)) I 24 TI 24 3 2X 2 24X 0.00 (0.25) T 22X P 0.00 (0.25) X 45. IIOI TOI P I Y4.5, 982. 2. OTOI IIO: IIT. 3. IIO O OT I O POTIO. 4. XI O POTIO 0.5 (0.006) P I. 5. IIO O OT I POTIO. OW POTIO 0.3 (0.005) TOT I X O IIO T XI TI OITIO. IIT I 5.25 5.54 0.60 0.62 7.40 7.60 0.292 0.299 2.35 2.65 0.093 0.04 0.35 0.49 0.04 0.09 0.4 0.90 0.06 0.035.27 0.050 0.23 0.32 0.009 0.03 0.3 0.29 0.005 0.0 0 8 0 8 P 0.05 0.55 0.395 0.45 0.25 0.75 0.00 0.029 W IX 75-04 (O-28, OI 28) I 28 28 5 4X P 0.00 (0.25). IIOI TOI P I Y4.5, 982. 2. OTOI IIO: IIT. 3. IIO O OT I O POTIO. 4. XI O POTIO 0.5 (0.006) P I. 5. IIO O OT I POTIO. OW POTIO 0.3 (0.005) TOT I X O IIO T XI TI OITIO. 28X 0.00 (0.25) T 26X 4 X 45 TI IIT I 7.80 8.05 0.70 0.7 7.40 7.60 0.292 0.299 2.35 2.65 0.093 0.04 0.35 0.49 0.04 0.09 0.4 0.90 0.06 0.035.27 0.050 0.23 0.32 0.009 0.03 0.3 0.29 0.005 0.0 0 8 0 8 P 0.0 0.55 0.395 0.45 0.25 0.75 0.00 0.029 W IX 75-02 (O-6, OP 6, OP-8+8) I 6 6 9 6X 4X 0.00 (0.25) T 8 8X P TI 0.00 (0.25) X 45. IIOI TOI P I Y4.5, 982. 2. OTOI IIO: IIT. 3. IIO O OT I O POTIO. 4. XI O POTIO 0.5 (0.006) P I. 5. IIO O OT I POTIO. OW POTIO 0.3 (0.005) TOT I X O IIO T XI TI OITIO. IIT I 0.5 0.45 0.400 0.4 7.40 7.60 0.292 0.299 2.35 2.65 0.093 0.04 0.35 0.49 0.04 0.09 0.50 0.90 0.020 0.035.27 0.050 0.25 0.32 0.00 0.02 0.0 0.25 0.004 0.009 0 7 0 7 P 0.05 0.55 0.395 0.45 0.25 0.75 0.00 0.029 3 0 OTOO O I I T

IX 75 0 (O 6) I O 6 8 9 TI 4 X 0.25 (0.00) T 6 P 0.25 (0.00) X 45 IIOI TOI P I Y4.5, 982. 2 OTOI IIO: IIT. 3 IIO O OT I O POTIO. 4 XI O POTIO 0.5 (0.006) P I. 5 IIO O OT I POTIO. OW POTIO 0.27 (0.005) TOT I X O T IIO T XI TI OITIO. IIT I 9.80 0.00 0.368 0.393 3.80 4.00 0.50 0.57.35.75 0.054 0.068 0.35 0.49 0.04 0.09 0.40.25 0.06 0.049.27 0.050 0.9 0.25 0.008 0.009 0.0 0.25 0.004 0.009 0 7 0 7 P 5.80 6.20 0.229 0.244 0.25 0.50 0.00 0.09 W IX 75 0 (OP 6) I O 6 T. IIOI TOI P I Y4.5, 982. 6 9 2. OTOI IIO: IIT. 3. IIO O OT I O POTIO. 4. XI O POTIO 0.5 (0.006) P I. P 0.00 (0.25) 5. IIO O OT I POTIO. OW POTIO 0.3 (0.005) TOT I 8 X O IIO T XI TI OITIO. 3X 0.00 (0.25) T IIT I 0.5 0.45 0.400 0.4 7.40 7.60 0.292 0.299 2.35 2.65 0.093 0.04 0.35 0.49 0.04 0.09 0.50 0.90 0.020 0.035 X 45.27 0.050 0.25 0.32 0.00 0.02 0.0 0.25 0.004 0.009 0 7 0 7 P 0.05 0.55 0.395 0.45 0.25 0.75 0.00 0.029 TI 2.54 0.00 T 3.8 0.50 9X OTOO O I I T 3

762-0 Plastic edium Power Package (IP-9) I 9 Q TI Y 0.25 (0.00) T 9 W 9 P X 0.25 (0.00) T 0.25 (0.00) T. IIOI TOI P I Y4.5, 982. 2. OTOI IIO: IIT. IIT I 22.40 23.00 0.873 0.897 6.40 6.60 0.252 0.260 3.45 3.65 0.35.43 0.40 0.55 0.05 0.02 9.35 9.60 0.368 0.377.40.60 0.055 0.062 2.54 0.00.5.7 0.059 0.067 0.360 0.400 0.04 0.05 3.95 4.20 0.55 0.65 30 30 2.50 2.70 0.099 0.06 Q 3.5 3.45 0.24 0.35 3.60 3.90 0.535 0.547.65.95 0.064 0.076 22.00 22.20 0.866 0.874 0.55 0.75 0.02 0.029 W 2.89 0.3 X 0.65 0.75 0.025 0.029 Y 2.70 2.80 0.06 0.0 IX 775-02 (P-20) I 20 Y W 0.007 (0.80) T 0.007 (0.80) T Z X 0.00 (0.250) T IW. T,, TI W TOP O O XIT PTI OY T O PTI I. 2. IIO, T POITIO TO T T, TI. 3. IIO O OT I O. OW O I 0.00 (0.250) P I. 4. IIOI TOI P I Y4.5, 982. 5. OTOI IIO: I. 6. T P TOP Y T T P OTTO Y P TO 0.02 (0.300). IIO TI T T OTOT XT O T PTI OY XI O O, TI, T IT, T II Y IT TW T TOP OTTO O T PTI OY. 7. IIO O OT I POTIO O ITIO. T POTIO() OT T IIO TO T T 0.037 (0.940). T ITIO() OT T IIO TO T 0.025 (0.635). Z 0.007 (0.80) T 0.007 (0.80) T 0.004 (0.00) TI IW 0.00 (0.250) T IW 0.007 (0.80) T 0.007 (0.80) T I IIT 0.385 0.395 9.78 0.03 0.385 0.395 9.78 0.03 0.65 0.80 4.20 4.57 0.090 0.0 2.29 2.79 0.03 0.09 0.33 0.48 0.050.27 0.026 0.032 0.66 0.8 0.020 0.5 0.025 0.64 0.350 0.356 8.89 9.04 0.350 0.356 8.89 9.04 0.042 0.048.07.2 W 0.042 0.048.07.2 X 0.042 0.056.07.42 Y 0.020 0.50 Z 2 0 2 0 0.30 0.330 7.88 8.38 0.040.02 3 2 OTOO O I I T

IX 776-02 (P 28) I Y 0.007 (0.80) T 0.007 (0.80) T Z 28 W X IW 0.00 (0.250) T Z 0.007 (0.80) T 0.007 (0.80) T 0.007 (0.80) T IW 0.004 (0.00) TI 0.007 (0.80) T 0.00 (0.250) T IW. T,, TI W TOP O O XIT PTI OY T O PTI I. 2. IIO, T POITIO TO T T, TI. 3. IIO O OT I O. OW O I 0.00 (0.250) P I. 4. IIOI TOI P I Y4.5, 982. 5. OTOI IIO: I. 6. T P TOP Y T T P OTTO Y P TO 0.02 (0.300). IIO TI T T OTOT XT O T PTI OY XI O O, TI, T IT, T II Y IT TW T TOP OTTO O T PTI OY. 7. IIO O OT I POTIO O ITIO. T POTIO() OT T IIO TO T T 0.037 (0.940). T ITIO() OT T IIO TO T 0.025 (0.635). I IIT 0.485 0.495 2.32 2.57 0.485 0.495 2.32 2.57 0.65 0.80 4.20 4.57 0.090 0.0 2.29 2.79 0.03 0.09 0.33 0.48 0.050.27 0.026 0.032 0.66 0.8 0.020 0.5 0.025 0.64 0.450 0.456.43.58 0.450 0.456.43.58 0.042 0.048.07.2 W 0.042 0.048.07.2 X 0.042 0.056.07.42 Y 0.020 0.50 Z 2 0 2 0 0.40 0.430 0.42 0.92 0.040.02 OTOO O I I T 3 3

IX 777-02 (P) I Y Z 0.007(0.80) T 0.007(0.80) T X IW 0.00 (0.25) T 44 W 0.007(0.80) T Z 0.00 (0.25) T. T,, TI W TOP O O XIT PTI OY T O PTI I. 2. IIO, T POITIO TO T T, TI. 3. IIO O OT I O. OW O I 0.00 (0.25) P I. 4. IIOI TOI P I Y4.5, 982. 5. OTOI IIO: I. 0.007(0.80) T 0.007(0.80) T IW 0.004 (0.0) TI IW 6. T P TOP Y T T P OTTO Y P TO 0.02 (0.300). IIO TI T T OTOT XT O T PTI OY XI O O, TI, T IT, T II Y IT TW T TOP OTTO O T PTI OY. 7. IIO O OT I POTIO O ITIO. T POTIO() OT T IIO TO T T 0.037 (0.940). T ITIO() OT T IIO TO T 0.025 (0.635). 0.007(0.80) T I IIT 0.685 0.695 7.40 7.65 0.685 0.695 7.40 7.65 0.65 0.80 4.20 4.57 0.090 0.0 2.29 2.79 0.03 0.09 0.33 0.48 0.050.27 0.026 0.032 0.66 0.8 0.020 0.5 0.025 0.64 0.650 0.656 6.5 6.66 0.650 0.656 6.5 6.66 0.042 0.048.07.2 W 0.042 0.048.07.2 X 0.042 0.056.07.42 Y 0.020 0.50 Z 2 0 2 0 0.60 0.630 5.50 6.00 0.040.02 IX 803 PIIY 20 0 P 20 0.3 (0.005) 0 20 P 0.3 (0.005) T 0.0 (0.004) TI 6 IIOI TOI P I Y4.5, 982. 7 OTOI IIO: IIT. 8 IIO O OT I O POTIO. 9 XI O POTIO 0.5 (0.008) P I. 0 IIO O OT I POTIO. OW POTIO 0.3 (0.006) TOT I X O T IIO T XI TI OITIO. IIT I 2.35 2.80 0.486 0.504 5.0 5.45 0.20 0.25.95 2.05 0.077 0.08 0.35 0.50 0.04 0.020 0.8 0.032 2.40* 0.488*.5.39 0.045 0.055 0.59 0.8 0.023 0.032 0.8 0.27 0.007 0.0.0.50 0.043 0.059 0.05 0.20 0.00 0.008 0 0 0 0 0.50 0.85 0.020 0.033 7.40 8.20 0.29 0.323 *PPOXIT 3 4 OTOO O I I T

T IX 82-04 (5-Pin ZIP) I PI 5X Q P PI 5 5 0.00 (0.254) T P Q Y 5X TI 0.024 (0.60) T. IIOI TOI P I Y4.5, 982. 2. OTOI IIO: I. 3. IIO O OT I O O POTIO. 4. IIO O OT I O O POTIO. 5. O O POTIO OT X 0.00 (0.250). 6. IIO O OT I POTIO. OW POTIO 0.003 (0.076) TOT I X O T IIO. T XI TI OITIO. I IIT 0.684 0.694 7.374 7.627 0.784 0.792 9.94 20.6 0.73 0.8 4.395 4.597 0.024 0.03 0.60 0.787 0.058 0.062.473.574 0.050.270 0.69 4.293 0.08 0.024 0.458 0.609 0.700 0.70 7.780 8.034 0.200 5.080 0.48 0.5 3.760 3.835 0.46 0.426 0.567 0.820 0.57 0.67 3.988 4.242 0.05 0.5 2.667 2.92 0.868 22.047 Y 0.625 0.639 5.875 6.23 T IX 82-03 I P PI 5X 7X 5 Q PI 5 0.00 (0.254) T P Y TI 5X 0.024 (0.60) T. IIOI TOI P I Y4.5, 982. 2. OTOI IIO: I. 3. IIO O OT I O O POTIO. 4. IIO O OT I O O POTIO. 5. O O POTIO OT X 0.00 (0.250). 6. T 7. IIO O OT I POTIO. OW POTIO 0.003 (0.076) TOT I X O T IIO. T XI TI OITIO. I IIT 0.68 0.694 7.298 7.627 0.784 0.792 9.94 20.6 0.73 0.8 4.395 4.597 0.024 0.03 0.60 0.787 0.058 0.062.473.574 0.06 0.023 0.407 0.584 0.050.270 0.0 2.794 0.08 0.024 0.458 0.609 Q.078 0.48.086 0.5 27.382 3.760 27.584 3.835 0.46 0.426 0.567 0.820 0.0 2.794 Y 0.503 2.776 OTOO O I I T 3 5

T IX 824 0 (TQP 44) I O Z,, Z 44 34 33 T T TI 23 0.20 (0.008) Z 0.05 (0.002) Z 0.20 (0.008) Z PTI ÇÇÇÇ ÉÉÉÉ TI T 2 22 0.20 (0.008) T Z 0.05 (0.002) T 0.20 (0.008) T Z TIO 0.20 (0.008) T Z W Q X IW Y TI 0.0 (0.004). IIOI TOI P I Y4.5, 982. 2. OTOI IIO: IIT. 3. T I OT T OTTO O I OIIT WIT T W T XIT T PTI OY T T OTTO O T PTI I. 4. T, Z TO TI T T. 5. IIO TO TI T TI. 6. IIO O OT I O POTIO. OW POTIO I 0.25 (0.00) P I. IIO O I O IT TI T T. 7. IIO O OT I POTIO. POTIO OT T IIO TO X 0.530 (0.02). IIT I 9.950 0.050 0.392 0.396 9.950 0.050 0.392 0.396.400.600 0.055 0.063 0.300 0.450 0.02 0.08.350.450 0.053 0.057 0.300 0.400 0.02 0.06 0.800 0.03 0.050 0.50 0.002 0.006 0.090 0.200 0.004 0.008 0.450 0.550 0.08 0.022 8.000 0.35 2 2 0.090 0.60 0.004 0.006 Q 5 5 0.00 0.200 0.004 0.008.900 2.00 0.469 0.476.900 2.00 0.469 0.476 W 0.200 0.008 X.000 0.039 Y 2 2 3 6 OTOO O I I T

IX 824 02 (QP) I 44 0.20 (0.008) T,, PI IT 0.20 (0.008) 0.05 (0.002) 44 34 33 IW Y 3 P IW Y 0.20 (0.008) 0.05 (0.002) 0.20 (0.008) T PTI ÇÇÇ ÉÉÉ T 0.20 (0.008) T 40X 2 22 23 TIO 44 P W Y IW P T 0.0 (0.004). IIOI TOI P I Y4.5, 982. 2. OTOI IIO: IIT. 3. T I OT T OTTO O I OIIT WIT T W T XIT T PTI OY T T OTTO O T PTI I. 4. T, TO TI T T. 5. IIO TO TI T TI. 6. IIO O OT I O POTIO. OW POTIO I 0.25 (0.00) P I. IIO O I O IT TI T T. 7. IIO O OT I POTIO. POTIO OT T IIO TO X 0.530 (0.02). T IW P 2 2 IIT I 9.90 0.0 0.390 0.398 9.90 0.0 0.390 0.398 2.00 2.2 0.079 0.087 0.30 0.45 0.08 0.077 2.00 2.0 0.079 0.083 0.30 0.40 0.02 0.06 0.80 0.03 0.3 0.23 0.005 0.009 0.65 0.95 0.026 0.037 5 0 5 0 2.95 3.45 0.50 0.530 2.95 3.45 0.50 0.530 W 0.000 0.20 0.000 0.008 Y 5 0 5 0 0.450 0.08 0.30 0.70 0.005 0.007.600 0.063 0.30 0.300 0.005 0.02 2 0.30 0.300 0.005 0.02 5 0 5 0 2 0 7 0 7 OTOO O I I T 3 7

IX 840 0 I O 64 Z 64 49 48,, Z TI 0.20 (0.008) Z T Z 0.050 (0.002) 0.20 (0.008) Z T TI P 6 33 7 32 0.20 (0.008) 0.050 (0.002) T 0.20 (0.008) T T Z Z T ÉÉÉ ÇÇ ÉÉÉ ÇÇ ÉÉÉ ÇÇ ÉÉÉ 0.20 (0.008) T Z TIO Y 0.0 (0.004) TI W TI X Q. IIOI TOI P I Y4.5, 982. 2. OTOI IIO: IIT. 3. T I OT T OTTO O I OIIT WIT T W T XIT T PTI OY T T OTTO O T PTI I. 4. T, Z TO TI T T. 5. IIO TO TI T TI. 6. IIO O OT I O POTIO. OW POTIO I 0.25 (0.00 ) P I. IIO O I O IT TI T T. 7. IIO O OT I POTIO. POTIO OT T IIO TO X 0.350 (0.04). IIT I 9.950 0.050 0.392 0.396 9.950 0.050 0.392 0.396.400.600 0.055 0.063 0.70 0.270 0.007 0.0.350.450 0.053 0.057 0.70 0.230 0.007 0.009 0.500 0.020 0.050 0.50 0.002 0.006 0.090 0.200 0.004 0.008 0.450 0.550 0.08 0.022 7.500 0.295 2 2 0.090 0.60 0.004 0.006 P 0.250 0.00 Q 5 5 0.00 0.200 0.004 0.008.900 2.00 0.469 0.476.900 2.00 0.469 0.476 W 0.200 0.008 X Y.000 2 0.039 2 3 8 OTOO O I I T

IX 846 02 (icro 8) I 8. IIOI TOI P I Y4.5, 982. 2. OTOI IIO: IIT. 3. IIO O OT I O, POTIO O T. O, POTIO O T OT X 0.5 (0.006) P I. 4. IIO O OT I IT O POTIO. IT O POTIO OT X 0.25 (0.00) P I. PI I TI 0.038 (0.005) 8 P 0.08 (0.003) T IIT I 2.90 3.0 0.4 0.22 2.90 3.0 0.4 0.22.0 0.043 0.25 0.40 0.00 0.06 0.65 0.026 0.05 0.5 0.002 0.006 0.3 0.23 0.005 0.009 4.75 5.05 0.87 0.99 0.40 0.70 0.06 0.028 OTOO O I I T 3 9

IX 848-04 (TQP 52) I 52 39 27 40 26 TI 0.20 (0.008) 0.05 (0.002) 0.20 (0.008) TI,, 52 4 3 0.20 (0.008) 0.05 (0.002) 0.20 (0.008) T TI T 0.02 (0.008) TIO 0.0 (0.004) TI T W TI X Q. IIOI TOI P I Y4.5, 982. 2. OTOI IIO: IIT. 3. T I OT T OTTO O I OIIT WIT T W T XIT T PTI OY T T OTTO O T PTI I. 4. T, TO TI T T. 5. IIO TO TI T TI. 6. IIO O OT I O POTIO. OW POTIO I 0.25 (0.00) P I. IIO O I O IT TI T T. 7. IIO O OT I POTIO. OW POTIO 0.08 (0.003) TOT I X O T IIO T XI TI OITIO. OT OT O T OW I O T OOT. IIT I 9.90 0.0 0.390 0.398 9.90 0.0 0.390 0.398 2.0 2.45 0.083 0.096 0.22 0.38 0.009 0.05 2.00 2.0 0.079 0.083 0.22 0.33 0.009 0.03 0.65 0.026 0.25 0.00 0.3 0.23 0.005 0.009 0.65 0.95 0.026 0.037 7.80 0.307 5 0 5 0 0.3 0.7 0.005 0.007 Q 0 7 0 7 0.3 0.30 0.005 0.02 2.95 3.45 0.50 0.530 T 0.3 0.005 0 0 2.95 3.45 0.50 0.530 W 0.35 0.45 0.04 0.08 X.6 0.063 3 20 OTOO O I I T

IX 848 03 I 52 4X 4X TIP 0.20 (0.008) 0.20 (0.008) T X X=,, 52 40 39 3X IW Y IW Y 3 4 26 27 PTI ÉÉÉ ÉÉÉ ÇÇÇ 0.3 (0.005) T TIO OTT 90 OWI T 4X θ2 0.0 (0.004) T TI 4X θ3 IW 2 0.05 (0.002) IW W θ Z θ 2 X 0.25 (0.00). IIOI TOI P I Y4.5, 982. 2. OTOI IIO: IIT. 3. T I OT T OTTO O I OIIT WIT T W T XIT T PTI OY T T OTTO O T PTI I. 4. T, TO TI T T. 5. IIO TO TI T TI. 6. IIO O OT I O POTIO. OW POTIO I 0.25 (0.00) P I. IIO O I O IT TI T T --. 7. IIO O OT I POTIO. POTIO OT T WIT TO X 0.46 (0.08). II P TW POTIO T O POTIO 0.07 (0.003). IIT I 0.00 0.394 5.00 0.97 0.00 0.394 5.00 0.97.70 0.067 0.05 0.20 0.002 0.008 2.30.50 0.05 0.059 0.20 0.40 0.008 0.06 0.45 0.75 0.08 0.030 0.22 0.35 0.009 0.04 0.65 0.026 0.07 0.20 0.003 0.008 0.50 0.020 0.08 0.20 0.003 0.008 2.00 0.472 6.00 0.236 0.09 0.6 0.004 0.006 2.00 0.472 6.00 0.236 W 0.20 0.008 Z.00 0.039 θ 0 7 0 7 θ 0 0 θ2 2 2 θ3 5 3 5 3 OTOO O I I T 3 2

IX 858 0 I O 42 42 22. IIOI TOI P I Y4.5, 982. 2. OTOI IIO: I. 3. IIO TO T O W O P. 4. IIO O OT I O. XI O 0.25 (0.00). TI 2 42 P 0.25 (0.00) T 42 P 0.25 (0.00) T I IIT.435.465 36.45 37.2 0.540 0.560 3.72 4.22 0.55 0.200 3.94 5.08 0.04 0.022 0.36 0.56 0.032 0.046 0.8.7 0.070.778 0.300 7.62 0.008 0.05 0.20 0.38 0.5 0.35 2.92 3.43 0.600 5.24 0 5 0 5 0.020 0.040 0.5.02 IX 859 0 (IP) I O 56 56 29. IIOI TOI P I Y4.5, 982. 2. OTOI IIO: I. 3. IIO TO T O W O P. 4. IIO O OT I O. XI O 0.25 (0.00) TI 28 56 P 0.25 (0.00) T 56 P 0.25 (0.00) T I IIT 2.035 2.065 5.69 52.45 0.540 0.560 3.72 4.22 0.55 0.200 3.94 5.08 0.04 0.022 0.36 0.56 0.035 0.89 0.032 0.046 0.8.7 0.070.778 0.300 7.62 0.008 0.05 0.20 0.38 0.5 0.35 2.92 3.43 0.600 5.24 0 5 0 5 0.020 0.040 0.5.02 3 22 OTOO O I I T

, T IX 873-0 (TQP 32) I 24 7 25 TI 6 0.20 (0.008) 0.05 (0.002) 0.20 (0.008) P,, TI 32 9 8 0.20 (0.008) 0.05 (0.002) 0.20 (0.008) T TI 0.20 (0.008) TIO IW OTT 90 OWI TI T 0.0 (0.004) T TI X T Q. IIOI TOI P I Y4.5, 982. 2. OTOI IIO: IIT. 3. T I OT T OTTO O I OIIT WIT T W T XIT T PTI OY T T OTTO O T PTI I. 4. T, TO TI T T. 5. IIO TO TI T TI. 6. IIO O OT I O POTIO. OW POTIO I 0.25 (0.00) P I. IIO O I O IT TI T T. 7. IIO O OT I POTIO. OW POTIO 0.08 (0.003) TOT I X O T IIO T XI TI OITIO. OT OT O T OW I O T OOT. IIT I 6.95 7.0 0.274 0.280 6.95 7.0 0.274 0.280.40.60 0.055 0.063 0.273 0.373 0.00 0.05.30.50 0.05 0.059 0.273 0.00 0.80 0.03 0.20 0.008 0.9 0.97 0.005 0.008 0.33 0.57 0.03 0.022 5.6 0.220 6 8 6 8 0.9 0.35 0.005 0.005 P 0.40 0.06 Q 5 0 5 0 0.5 0.25 0.006 0.00 8.85 9.5 0.348 0.360 T 0.5 0.25 0.006 0.00 5 5 8.85 9.5 0.348 0.360 X.00 0.039 OTOO O I I T 3 23

T IX 894-03 (23-Pin ZIP) I 23. IIOI TOI P I Y4.5, 982. 2. OTOI IIO: I. 3. IIO O OT I O O POTIO. 4. IIO O OT I O O POTIO. 5. O O POTIO OT X 0.00 (0.250). 6. IIO O OT I POTIO. OW POTIO 0.003 (0.076) TOT I X O T IIO T XI TI OITIO. PI P PI 23 23X 0.00 (0.254) T Q Y 23X W TI 0.024 (0.60) T I IIT 0.684 0.694 7.374 7.627.83.93 30.048 30.302 0.75 0.79 4.445 4.547 0.026 0.03 0.660 0.787 0.058 0.062.473.574 0.65 0.75 4.9 4.445 0.050.270 0.69 4.293 0.04 0.020 0.356 0.508 0.625 0.639 5.875 6.23 0.770 0.790 9.558 20.066 0.48 0.52 3.760 3.86 0.48 0.52 3.760 3.86 P 0.390 9.906 0.46 0.424 0.566 0.770 0.57 0.67 3.988 4.242 0.05 0.5 2.667 2.92 0.868 22.047 W 0.200 5.080 Y 0.700 0.70 7.780 8.034 3 24 OTOO O I I T

T IX 932 02 (TQP 48) I 48 P 4X 0.200 (0.008) T Z 9 TI Y 48 37 36 2 25,, Z TI Y 3 24 Z TOP & OTTO 4X 0.200 (0.008) T Z 0.250 (0.00) 0.080 (0.003) TI W X Q T ÇÇÇ ÇÇÇ ÉÉÉ 0.080 (0.003) T Z TIO. IIOI TOI P I Y4.5, 982. 2. OTOI IIO: IIT. 3. T I OT T OTTO O I OIIT WIT T W T XIT T PTI OY T T OTTO O T PTI I. 4. T,, Z TO TI T T. 5. IIO TO TI T TI. 6. IIO O OT I O POTIO. OW POTIO I 0.250 (0.00) P I. IIO O I O IT TI T T. 7. IIO O OT I POTIO. POTIO OT T IIO TO X 0.350 (0.04). 8. II O PT TI 0.0076 (0.0003). 9. XT P O O I OPTIO. IIT I 7.000 0.276 3.500 0.38 7.000 0.276 3.500 0.38.400.600 0.055 0.063 0.70 0.270 0.007 0.0.350.450 0.053 0.057 0.70 0.230 0.007 0.009 0.500 I 0.020 I 0.050 0.50 0.002 0.006 0.090 0.200 0.004 0.008 0.500 0.700 0.020 0.028 2 2 0.090 0.60 0.004 0.006 P 0.250 I 0.00 I Q 5 5 0.50 0.250 0.006 0.00 9.000 0.354 4.500 0.77 9.000 0.354 4.500 0.77 W 0.200 0.008 X.000 0.039 OTOO O I I T 3 25

2T IX 936 03 I 2 3 2 3 TI 4. IIOI TOI P I Y4.5, 982. 2. OTOI IIO: I. 3. T OTO OPTIO WITI IIO. 4. IIO TI II OTI O TI 4. 5. IIO O OT I O O T POTIO. O T POTIO OT TO X 0.025 (0.635) XI. 0.00 (0.254) T OPTIO I IIT 0.386 0.403 9.804 0.236 0.356 0.368 9.042 9.347 0.70 0.80 4.38 4.572 0.026 0.036 0.660 0.94 0.045 0.055.43.397 0.05.295 0.00 2.540 0.539 0.579 3.69 4.707 0.25 X 3.75 X 0.050.270 0.000 0.00 0.000 0.254 0.088 0.02 2.235 2.59 0.08 0.026 0.457 0.660 P 0.058 0.078.473.98 5 5 0.6 2.946 0.200 I 5.080 I 0.250 I 6.350 I P 2T IX 936 02 (2P) I 0.00 (0.254) T 5 2 3 4 5 OPTIO TI 6. IIOI TOI P I Y4.5, 982. 2. OTOI IIO: I. 3. T OTO OPTIO WITI IIO. 4. IIO TI II OTI O TI 6. 5. IIO O OT I O O T POTIO. O T POTIO OT TO X 0.025 (0.635) XI. I IIT 0.386 0.403 9.804 0.236 0.356 0.368 9.042 9.347 0.70 0.80 4.38 4.572 0.026 0.036 0.660 0.94 0.045 0.055.43.397 0.067.702 0.539 0.579 3.69 4.707 0.050.270 0.000 0.00 0.000 0.254 0.088 0.02 2.235 2.59 0.08 0.026 0.457 0.660 P 0.058 0.078.473.98 5 5 0.6 2.946 0.200 I 5.080 I 0.250 I 6.350 I P 3 26 OTOO O I I T

T, T IX 948 02 (TOP 20) I 0.5 (0.006) T 0.5 (0.006) T 2X /2 PI IT 0.00 (0.004) TI 20 0 20 20X 0.0 (0.004) T ÍÍÍÍ ÍÍÍÍ TIO TI 0.25 (0.00) TI W. IIOI TOI P I Y4.5, 982. 2. OTOI IIO: IIT. 3. IIO O OT I O, POTIO O T. O O T OT X 0.5 (0.006) P I. 4. IIO O OT I IT O POTIO. IT O POTIO OT X 0.25 (0.00) P I. 5. IIO O OT I POTIO. OW POTIO 0.08 (0.003) TOT I X O T IIO T XI TI OITIO. 6. TI OW O OY. 7. IIO TO TI T T W. IIT I 6.40 6.60 0.252 0.260 4.30 4.50 0.69 0.77.20 0.047 0.05 0.5 0.002 0.006 0.50 0.75 0.020 0.030 0.65 0.026 0.27 0.37 0.0 0.05 0.09 0.20 0.004 0.008 0.09 0.6 0.004 0.006 0.9 0.30 0.007 0.02 0.9 0.25 0.007 0.00 6.40 0.252 0 8 0 8 T IX 6 948 0 (TOP 6, TOP 6) I O 0.5 (0.006) T 0.5 (0.006) T PI IT. 2X /2 6X 0.0 (0.004) T 6 9 8 ÇÇÇ ÇÇÇ ÉÉÉ TIO 0.25 (0.00) TI. IIOI TOI P I Y4.5, 982. 2. OTOI IIO: IIT. 3. IIO O OT I O. POTIO O T. O O T OT X 0.5 (0.006) P I. 4. IIO O OT I IT O POTIO. IT O POTIO OT X 0.25 (0.00) P I. 5. IIO O OT I POTIO. OW POTIO 0.08 (0.003) TOT I X O T IIO T XI TI OITIO. 6. TI OW O OY. 7. IIO TO TI T T W. IIT I 4.90 5.0 0.93 0.200 4.30 4.50 0.69 0.77.20 0.047 0.05 0.5 0.002 0.006 0.50 0.75 0.020 0.030 0.65 0.026 0.8 0.28 0.007 0.0 0.09 0.20 0.004 0.008 0.09 0.6 0.004 0.006 0.9 0.30 0.007 0.02 0.9 0.25 0.007 0.00 6.40 0.252 0 8 0 8 0.0 (0.004) TI W TI OTOO O I I T 3 27

T IX 948 0 (TOP 4) I O 4 0.5 (0.006) T 0.5 (0.006) T 0.0 (0.004) TI 2X /2 PI IT. 4 4X 0.0 (0.004) T 8 0.25 (0.00) 7 TI ÇÇÇ ÉÉ TIO TI W IIOI TOI P I Y4.5, 982. 2 OTOI IIO: IIT. 3 IIO O OT I O, POTIO O T. O O T OT X 0.5 (0.006) P I. 4 IIO O OT I IT O POTIO. IT O POTIO OT X 0.25 (0.00) P I. 5 IIO O OT I POTIO. OW POTIO 0.08 (0.003) TOT I X O T IIO T XI TI OITIO. 6 TI OW O OY. 7 IIO TO TI T T W. IIT I 4.90 5.0 0.93 0.200 4.30 4.50 0.69 0.77.20 0.047 0.05 0.5 0.002 0.006 0.50 0.75 0.020 0.030 0.65 0.026 0.50 0.60 0.020 0.024 0.09 0.20 0.004 0.008 0.09 0.6 0.004 0.006 0.9 0.30 0.007 0.02 0.9 0.25 0.007 0.00 6.40 0.252 0 8 0 8 3 28 OTOO O I I T

T IX 948 0 I O 24 0.5 (0.006) T 24X 0.0 (0.004) T 0.5 (0.006) T 2X /2 PI IT. 24 3 2. IIOI TOI P I Y4.5, 982. 2. OTOI IIO: IIT. 3. IIO O OT I O, POTIO O T. O O T OT X 0.5 (0.006) P I. 4. IIO O OT I IT O POTIO. IT O POTIO OT X 0.25 (0.00) P I. 5. IIO O OT I POTIO. OW POTIO 0.08 (0.003) TOT I X O T IIO T XI TI OITIO. 6. TI OW O OY. 7. IIO TO TI T T W. 0.0 (0.004) TI W IIT I 7.70 7.90 0.303 0.3 4.30 4.50 0.69 0.77.20 0.047 0.05 0.5 0.002 0.006 0.50 0.75 0.020 0.030 0.65 0.026 0.27 0.37 0.0 0.05 0.09 0.20 0.004 0.008 0.09 0.6 0.004 0.006 0.9 0.30 0.007 0.02 0.9 0.25 0.007 0.00 6.40 0.252 0 8 0 8 TI ÇÇÇ ÉÉÉ TIO TI 0.25 (0.00) OTOO O I I T 3 29

T IX 948 0 (TOP 8) I O 8 0.5 (0.006) T 0.5 (0.006) T 0.0 (0.004) TI PI IT. 2X /2 8 5 4 8x 0.0 (0.004) T TI TI 0.25 (0.00) ÇÇÇ ÉÉ TIO W IIOI TOI P I Y4.5, 982. 2 OTOI IIO: IIT. 3 IIO O OT I O. POTIO O T. O O T OT X 0.5 (0.006) P I. 4 IIO O OT I IT O POTIO. IT O POTIO OT X 0.25 (0.00) P I. 5 IIO O OT I POTIO. OW POTIO 0.08 (0.003) TOT I X O T IIO T XI TI OITIO. 6 TI OW O OY. 7 IIO TO TI T T W. IIT I 2.90 3.0 0.4 0.22 4.30 4.50 0.69 0.77.20 0.047 0.05 0.5 0.002 0.006 0.50 0.75 0.020 0.030 0.65 0.026 0.50 0.60 0.020 0.024 0.09 0.20 0.004 0.008 0.09 0.6 0.004 0.006 0.9 0.30 0.007 0.02 0.9 0.25 0.007 0.00 6.40 0.252 0 8 0 8 IX 967 0 (I 20) I O e 20 0 Z b 0.3 (0.005) 20 0.0 (0.004) IW P TI P Q c IIOI TOI P I Y4.5, 982. 2 OTOI IIO: IIT. 3 IIO O OT I O O POTIO T T PTI I. O O POTIO OT X 0.5 (0.006) P I. 4 TI OW O OY. 5 T WIT IIO (b) O OT I POTIO. OW POTIO 0.08 (0.003) TOT I X O T WIT IIO T XI TI OITIO. OT OT O T OW I O T OOT. II P TW POTIO T TO 0.46 ( 0.08). IIT I 2.05 0.08 0.05 0.20 0.002 0.008 b 0.35 0.50 0.04 0.020 c 0.8 0.27 0.007 0.0 2.35 2.80 0.486 0.504 5.0 5.45 0.20 0.25 e.27 0.050 7.40 8.20 0.29 0.323 0.50 0.85 0.020 0.033.0.50 0.043 0.059 0 0 0 0 Q 0.70 0.90 0.028 0.035 Z 0.8 0.032 3 30 OTOO O I I T

T IX 976 0 (TQP 20) I O 9 20 4X 0.200 (0.008) T Z 20 6 TI Y 5. IIOI TOI P I Y4.5, 982. 2. OTOI IIO: IIT. 3. T I OT T OTTO O I OIIT WIT T W T XIT T PTI OY T T OTTO O T PTI I. 4. T,, Z TO TI T T. 5. IIO TO TI T T. 6. IIO O OT I O POTIO. OW POTIO I 0.250 (0.00) P I. IIO O I O IT TI T T. 7. IIO O OT I POTIO. POTIO OT T IIO TO X 0.350 (0.04). 8. II O PT TI 0.0076 (0.0003). 9. XT P O O I OPTIO. 5 4X 6 0.200 (0.008) T Z 0 Z TI IIT I 4.000 0.57 2.000 0.079 4.000 0.57 2.000 0.079.400.600 0.055 0.063 0.70 0.270 0.007 0.0.350.450 0.053 0.057 0.70 0.230 0.007 0.009 0.650 0.026 0.050 0.50 0.002 0.006 0.090 0.200 0.004 0.008 0.500 0.700 0.020 0.028 2 2 0.090 0.60 0.004 0.006 P 0.250 0.00 Q 5 5 0.50 0.250 0.006 0.00 6.000 0.236 3.000 0.8 6.000 0.236 3.000 0.8 W 0.200 0.008 X.000 0.039 TOP & OTTO 0.080 (0.003) ÉÉÉÉ ÇÇÇÇ ÉÉÉÉ ÇÇÇÇ 0.080 (0.003) T Z TIO,, Z W TI X Q 0.250 (0.00) TI Y OTOO O I I T 3 3

T IX 977 0 I O 9 24 4X 0.200 (0.008) T Z 24 9 TI Y. IIOI TOI P I Y4.5, 982. 2. OTOI IIO: IIT. 3. T I OT T OTTO O I OIIT WIT T W T XIT T PTI OY T T OTTO O T PTI I. 4. T,, Z TO TI T T. 5. IIO TO TI T T. 6. IIO O OT I O POTIO. OW POTIO I 0.250 (0.00) P I. IIO O I O IT TI T T. 7. IIO O OT I POTIO. POTIO OT T IIO TO X 0.350 (0.04). 8. II O PT TI 0.0076 (0.0003). 9. XT P O O I OPTIO. 6 4X 7 0.200 (0.008) T Z 2 Z 8 3 IIT I 4.000 0.57 2.000 0.079 4.000 0.57 2.000 0.079.400.600 0.055 0.063 0.70 0.270 0.007 0.0.350.450 0.053 0.057 0.70 0.230 0.007 0.009 0.500 0.020 0.050 0.50 0.002 0.006 0.090 0.200 0.004 0.008 0.500 0.700 0.020 0.028 2 2 0.090 0.60 0.004 0.006 P 0.250 0.00 Q 5 5 0.50 0.250 0.006 0.00 6.000 0.236 3.000 0.8 6.000 0.236 3.000 0.8 W 0.200 0.008 X.000 0.039 TI,, Z TOP & OTTO 0.080 (0.003) ÉÉÉÉ ÇÇÇÇ ÉÉÉÉ ÇÇÇÇ P TI Y W TI X Q 0.250 (0.00) 0.080 (0.003) T Z TIO 3 32 OTOO O I I T

IX 22 0 (OT 23) I O 2 0.05. IIO I IIT. 2. ITPT IIO TO P Y4.5, 994. 3. T I TI. 5 4 2 3 e e 5X 0.0 IIT I I X 0.00 0.0 2.00.30 0.30 0.50 0.0 0.25 2.80 3.00 2.50 3.0.50.80 e 0.95 e.90 0.20 0.45 0.75 IX 23 0 (OT 89) I O 2. IIO I IIT. 2. ITPT IIO TOI P Y4.5, 994. 3. T I TI. e e 0.0 2X 0.0 IIT I I X 2.40.60 0.37 0.57 0.32 0.52 0.30 0.50 4.40 4.60.50.70 4.25 2.40 2.60 e.50 e 3.00 0.80 OTOO O I I T 3 33