32
All About CRT's By Jim Bechtdd, Editor \ INSIDE 1 - SERVICE INFORMATION FROM HEWLETT-PACKARD MARCH-MAY 1981 Elements and Terminology In 1879, William Crookes demon- strated the ability to deflect cathode rays in a vacuuIll tube with a mag- net. Cathode rays had earlier been Sh e of causing phos- Ph the glass walls of a vacuum tube, but control of the area of phosphorescencewas only possible by using shaping masks (solid struc- tures in the tube incapable of pro- ducing dynamic deflection). The combination of focusing elements to produce a narrow electron beam (or cathode ray) aimed at a fluorescent target with dynamic electromag- netic-beam deflection became known as a Crookes tube. The Crookes tube, later to be commonly known as a cathode-my tube (CRT) or more pre- cisely as an electron-beam tube, of- fered much promise for displaying high-sspaed variations that could not be demonstrated on mechanical atus. By 1897, CarlF. Bra- cted a "variable current by using the Crookes e first forerunner of the modern dllwxope. Prut No. 5952-0108 An oscillompe is 811 in&rument signals is applied to the horizontal deflection (X-axis) sysbm, and the Csometimes called the vi& signal) appligd to %he Z-axis system. Such a Minition includes not only oscillo- scopes and other related electronic way the picture is formed on the screen ofthe CRT. In an ac3cillormpe, exted control the vertical and hsr movement of the electron beam. The path the beam traces on the phosphor ef the CRT is WWW.HPARCHIVE.COM In all X-Y display applications, the purpose is to draw an image on the screen for human interaction. How- ever, before discussing the methods of drawing these images, it is impor- tant to discuss display-related ter- minology and some of the important elements of a picture. Once this common ground is established, the methods of forming a picture can be analyzed in detail. The important aspects of any picture are resolution, brightness and data density. beam spot divided into ity of a spot is not uni- its diameter, measure- ment of spot size is not an exact SCienCe. lNTEGRAT€D CIRCUIT CROSS REFERENCE SERVICE NOTES

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All About CRT's By Jim Bechtdd, Editor

\ INSIDE

1 - SERVICE INFORMATION FROM HEWLETT-PACKARD

MARCH-MAY 1981

Elements and Terminology

In 1879, William Crookes demon- strated the ability to deflect cathode rays in a vacuuIll tube with a mag- net. Cathode rays had earlier been Sh e of causing phos- Ph the glass walls of a vacuum tube, but control of the area of phosphorescence was only possible by using shaping masks (solid struc- tures in the tube incapable of pro- ducing dynamic deflection). The combination of focusing elements to produce a narrow electron beam (or cathode ray) aimed at a fluorescent target with dynamic electromag- netic-beam deflection became known as a Crookes tube. The Crookes tube, later to be commonly known as a cathode-my tube (CRT) or more pre- cisely as an electron-beam tube, of- fered much promise for displaying high-sspaed variations that could not be demonstrated on mechanical

atus. By 1897, CarlF. Bra- cted a "variable current by using the Crookes

e first forerunner of the modern dllwxope. Prut No. 5952-0108

An oscillompe is 811 in&rument

signals is applied to the horizontal deflection (X-axis) sysbm, and the

Csometimes called the vi& signal) appligd to %he Z-axis system. Such a Minition includes not only oscillo- scopes and other related electronic

way the picture is formed on the screen ofthe CRT. In an ac3cillormpe, e x t e d control the vertical and hsr movement of the electron beam. The path the beam traces on the phosphor ef the CRT is

WWW.HPARCHIVE.COM

In all X-Y display applications, the purpose is to draw an image on the screen for human interaction. How- ever, before discussing the methods of drawing these images, it is impor- tant to discuss display-related ter- minology and some of the important elements of a picture. Once this common ground is established, the methods of forming a picture can be analyzed in detail.

The important aspects of any picture are resolution, brightness and data density.

beam spot divided into

ity of a spot is not uni- its diameter, measure-

ment of spot size is not an exact SCienCe.

lNTEGRAT€D CIRCUIT CROSS REFERENCE

SERVICE NOTES

* ’ :I ‘ I

ALL ABOUT rqTS

To test spot size resolution, a raster is displayed on the screen and re- duced in size until the lines just be- come indistinguishable. At that point, the size of the raster is meas- ured and divided by the number of lines in the raster to determine the resolution.

Addressable resolution, on the other hand, has nothing to do with spot size, but simply is the incremental accuracy in which the beam can be positioned. The smallest positional movement of the electron beam divided into the CRT dimensions then gives the addressable resolu- tion. Unlike spot resolution, ad- dressable resolution is an exact computable number. It is important to realize that addressable resolu- tion holds no fixed relationship to spot resolution. Addressable resolu- tion can be either greater or less than spot resolution. The relation- ship of addressable resolution to spot resolution does play a significant role in the perceived “quality” of a display or picture. More on this later.

Brightness

Brightness is simply the light output of the picture being displayed. The relative light output of a displayed picture is significantly different from the maximum light output capability of the CRT as will become apparent later.

Data Density

The amount of data displayed (data density) is simply the area of the CRT screen that is lit versus the en- tire screen size (or the amount of lit area versus dark area). The lit por- tion of the screen consists of all the alphanumeric characters and vec- tors (lines) that comprise the picture being displayed.

Raster

Raster is a predetermined pattern of scanning lines that provides sub- stantially uniform coverage of an area. In other words, the raster is the rectangular pattern of light which appears on the CRT screen when the screen is scanned by the electron beam.

Z-Axis

This refers to that part of the display that controls CRT intensity. It in- cludes the input circuit, an amplifier (called the Z-axis amplifier), and the circuit that drives the CRT control grid. The control grid controls the amount of beam current allowed to fall on the phosphor at the front of the tube which varies the intensity of the picture.

CRT Deflection Fundamentals

Now that some of the basic CRT elements and terminology have been identified, let’s discuss beam deflec- tion techniques. There are two methods of deflecting the beam inside the CRT; electromagnetic and electrostatic.

Electromagnetic

Magnetic deflection systems utilize an inductive coil (called a yoke) sur- rounding the neck of the CRT through which a current signal is passed to generate a magnetic field to deflect the electron beam (see Figure 1). At high frequencies, in- ductors with few turns are necessary to obtain fast current changes, and larger currents are required to obtain the required field strength. Consequently, above repetition rates of 20 kHz, large power dissipations are required to obtain full-scan dis- plays. Most television sets and com- puter display terminals use the magnetic deflection scheme.

Electrostatic

Electrostatic deflection systems con- sist of complex electron gun struc- tures containing two sets of deflec- tion plates; one set for horizontal deflection and one set for vertical deflection (see Figure 2). Electrosta- tic deflection, involving voltage charging of capacitive plates to de- flect the electron beam, is capable of speeds several orders of magnitude higher than electromagnetic for a comparable amplifier cost (but not CRT cost). Since even inexpensive industrial oscilloscopes generally are capable of displaying 500 kHz or

Electromagnetic vs Electrostatic

The major differences between the two systems are light output and frequency response. The magnetic system generally offem more light output while the electrostatic sp- tern offers high-speed response at low power consumption. In addition, magnetic deflection allows a wider beamdeflection angle than does electrostatic deflection. Moreover,

e full-screen deflection red is less than 20 magnetic deflection

lifier and CRT) has a t advantage over an

systan. This is one of telecwision sets, many

, and mme oscillo- CIWB with elmi-

trontagaieeic deflection.

Given the same spot size, with dl other things equal, an elec- tromagnetic CRT will be brighter

due to the fact

most of the beam current to pasns through to the screen. The electro- static gun has a large number of internal dements as shown in Fig- ure 2. Notice that the front-most element of the focus lens has a rela- tively small aperture, which strips away 7040% of the beam current just before the beam enters the de- f l d o n plate region. The gun is con-

. I '

mechanical distance from as feasible. This optimizes sensitivity by providing the grea deflection distance at the screen per volt, or gauss, of applied deflection field. In the electrostatic CRT, the plates must also be reasonably close together to achieve svfficient d d e e tion field etrength with ail applied voltage in the range of 300 volts. A greater swing would create signifk- ant X an amplifier design P

Electrostatic displays have faster d& and use less current

that electromagnetic displays. TAis is the result of physics; the load of the deflection plates is only the stray capacitance of a few pieofma&. On the other hand, the inductance ofthe yoke is the load to the driving amplifiers. The higher the induc- tance (Le., more turns and stronger magnetic field), the easier it is to de- flect the beam; however, higher in- ductance requires high power. To lower the inductance reduces power requirements but also reduces de- flection sensitivity. This then requires reduction in accelerating potentials in the CRT so that the beam can be deflected full screen, which also reduces the light output.

Some further points of comparison follow:

1. LineurityiGeorne8ry: In order t~ achieve a linear deflection in an electromagnetic display, it is nec&& sary to apply an "S"-shaped non- linear voltage function to the deflec- tion coils. To achieve good li

component caunt. For good geametay (minimum barrel and pincushion distortion1 in eleetrornagnetic dis-

. I a

. I ALL ABOUT CRTS

Electrostatic CRTs, on the other hand, have inherently good linear- ity. Only a variable dc voltage needs to be applied to an element in the CRT for any minor geometric pat- tern correction.

2. 2-Axis Delay: Since deflection coils act as a delay line, it is neces- sary to introduce delay into the Z- axis signal path in high-speed elec- tromagnetic displays. This coordi- nates the blanking and unblanking with the beam position; these delay lines are unnecessary in electro- static displays.

3. Resolution: In either type of CRT, there is a tradeoff of beam diameter vs brightness. Since a n elec- tromagnetic CRT passes so much more beam current, a much smaller spot size (higher resolution) can be obtained a t the same level of brightness.

4. Weight: A high-speed elec- tromagnetic display weighs 2-3 times more than a comparable elec- trostatic display does. The power transformer is bigger and more heat sinks are required to meet the higher power demands of elec- tromagnetic displays. The mass of the yoke and the increased number of components contribute t o the added weight.

5 . Cooling: Fast electromagnetic displays require forced-air cooling; electrostatic displays require only convective cooling.

CRT Picture Drawing Fundamentals

In addition to how the beam is de- flected inside the tube is the actual method in which the picture is drawn. Again, two basic methods are used; vector scan and raster scan.

Vector

Other common names for vector drawing are “dot writing”, “directed beam”, and “stroke writing.” As the name implies, the beam is succes- sively moved to each new location by signals applied to the X (horizontal) and Y (vertical) inputs. In an oscillo- scope, the directed-beam is linearly deflected to follow the signal pattern in the vertical direction while often using a constant deflectioh rate in the horizontal direction to represent time. If the beam is left on during the writing cycle (as in a standard oscilloscope), the picture will be comprised of curves or straight-line segments on the CRT face (see Figure 3).

If the beam is blanked (turned off) during movement and turned on at rest, the picture will be comprised of a series of dots on the CRT face (see Figure4a). This type of “dot writ- ing” lends itself well to the CRTs used in spectrum analyzers, air traf- fic control monitors, and other dis- plays where annotation is displayed on the screen along with the main picture (see Figure 4b).

Raster

In a raster system, the beam follows a fixed path covering the face of the tube in a series of interlaced parallel lines (usually horizontal), with blanked (turned off) retrace lines (see Figure 5) . In a raster system there are two methods of modulating the beam intensity; analog and digital.

Analog modulation is used in televi- sion. The principle of operation in- volves varying the intensity of the beam as it moves across the screen in aceordance with the picture im- pulses of the video signals applied to the grid of the CRT.

The picture is traced line-by-line. The first odd-numbered line of the picture is traced by one sweep from left to right. When the beam reaches the right side of the screen, the hori- zontal blanking signal biases the tube beyond cut-off and the beam is thus extinguished (blanked out). The beam remains blanked out long enough for it to move rapidly over to the left-hand side of the screen where it is in another position to start the trace of the second odd- numbered line of the picture. The horizontal blanking signal is now withdrawn and the beam moves across the screen as before, tracing another odd-numbered line of the picture.

As this process is repeated again and again, the vertical sweep signal is applied to the vertical deflection sys- tem of the CRT which causes the beam to move gradually toward the bottom of the screen. Due t o the downward pull of the slowly moving vertical sweep, each horizontal scanning line will be slightly below the preceding line.

is, the odd-line picture (first field) is scanned in the first 1/6Oth of a sec-

All of this scanning and modulation results in a picture of gray shades where the beam intensity ranges from full on to full off. In other words, when the video signal increases the beam intensity to full on, the phosphor on the CRT glows brightly; and when the video cuts off the beam intensity, the phosphor does not glow. Everything in be- tween is the gray range, which forms the picture.

’ e ”he other method of drawing the p i d m in a raster format is by using a digital signal to modulate the

ALL ABOUT CRT’S

method,.the face of titioned into r o w and columns of dots which are called “pixels.” Refer to Figure 6. Pixels are defined as the smallest location on screen where the beam c81n be modulated on or off. The picture ia created from line

ing the beam intensity on and off at appropriate times. Special effects can be mated when the beam inten- sity is modulated at points between full on and off.

aots ptdaced by turn-

For a low-cost alphanumeric display, the raster ~UCBT). methd offers several advantages over the directed beam. First, it doesn’t q u i r e accurate, high-speed, and themfore expensive

1-k-analog e9nrverters. In- it uses counter 88

.HPARCHIV$~%

to loeate d& and ond, the defiection

minimize the power cons^^ of: of aa energy-

e I-

.- I .

ALL ABOUT CRTS - -

cond Field - ,

Horizontal Spot M

d

modulated raster scan method used to generate alphanumeric characters. This example shows a bask 7 pixel wide by 9 pixel high character cell as

the 7 x 9 matrix are used for descender areas of lower case letters and underlining. one pixel is used on either side for character-to-character spacing. In this particular example the display screen has a low aspect ratio of 5 x 10 inches, for a capacity of 1920 character cells partitioned into 24 rows of 80 characters each. That equals 259,200 pixels (720 horizontal by 360 vertical).

The Final Criterion - Resolution

In high resolution line drawing situ- ations, continuous lines have sig- nificant merit. It should be pointed

vector systems have con- ines at all addressable reso-

lutions. Only the starting and stop- ping point accuracy of the vectors is sacrificed at lower resolutions. To achieve continuous lines in a raster system can place significant requirements upon it. Since, in a raster system, vectors are comprised of a series of dots or pixels, in order to achieve the effect of a continuous line, the dots must be spaced so close as to merge. In fact, they need to overlap by approximately two-thirds to three-quarters of the spot diame- ter. This means that the addreisable resolution (number of scan lines)

tion CRT requires 3 or 4 thowand scan lines to achieve the same qual-

line in a vwbr e, this has ex-

tremely adverse effecte on light out- put, deflection systems, power, and cost. Therefore, in high resolution line drawing applications, the "qual- ity" of the continuous line may also become an issue.

Another example of resolution restridion can occur when trying to use an alphanumeric raster-type computer terminal to &play a volt- age vs time phenomenon. Remember that this type of CRT is the digital raster type with a fixed scan rate that modulates pixels on and off with a certain portion of time set aside for retrace.

If the event you are trying to capture is nonrecurring, it may occur dur- ing retrace, or if it is quick enough, in-between pixels. In either case, the CRT will not show the phenomenon. Remember that our example shown in Figure 0 has on€y 720 pixels of visual horiumtal resolution.

t ? SERVICE TIPS

For Customers Who Repair Their Own

Accessory Kit 1 ee 3/32 hex drive 1 ea 16-pin IC dip 1 ea ZO-pin IC clip

I

a

contained in either the 0854-90012 or 0854-90025 Operating and Ser- vice Manuals.

New Test Procedures

865433 Signal Generator I The new procedures require less test equipment, are faster and simpler, and are more thorough and accurate than the procedures in the manuals. Test set-ups, recommended test equipment and perfmmance test reeoLds 8 ~ 8 a l l p w i d d .

WWW.HP RCHIVE.COM

A new h c e note (8654B-1) has that provides improved

per$- tests and a&uatmentcS for the 8664B Signal Generator.

The 30-page prformance test re- places the correspanding procedures

I 8662A Verification Tape Available A tape cartridge containing 11 pro- grams which check the operation of the 8062A Synthesized Signal Generator via H@B is now avail- able. These programs run on the 9825 desktop computer and we 811 8568rA or 8566A Spectrum Analyzer a~ the measuring instruInent. Them p-a, test all functiha of the 8622A except modulation &Won. Although the tests are not complete performance tests, they are very thorough and should find most any

~

problem that an insbumkt might have.

These programs are very easy to w aad can run unattended. Baiulb am

printad if a line

WWW. H PARCH IVE.COM

INTEGRATED CIRCUIT CROSS

Integrated Circuits

Replacement Part Cross Reference When plelecting replaoement parts for your NP products, you may notice that many manuals list only an HP part number for the part, even though it appears that this part

It is recommended that HP replace- ment parts be used to ensure that the original perfommce of the pro-

identical to that chased at a local electronics dis- tributor, many times parts will be selected for certain characteristics, such as gain, bandwidth, capaci-

tance, etc. There may dso be slight mechanical differences, such as the shaping or length of leads. In some cases special quality checks are employed to ensure that high relia- bility parts are qsd at the factory and at HP field ofti-. Thedore, we suggest obtaining re- placement parts from HP to main- tain the quality that you have paid for in your instrument. There may be situations however .where HP re- placement parts are not in etock and substituting parts will allow you to return the product to service im- mediately. In these cases it may be worthwhile to see if a substitute part will work in the circuit. Perhaps an HP part could be ordered and in- stalled at some later date.

To help you in these situations, here’s a cross-reference of HP inte- grated circuik part numbers to man- ufacturers “generic type” part num- bers (whom in most cases is the originah of the part), Even though the crorss-reference only lists 011s) mmufiuturer, th- may actusrlly be several approved mu~cces for an HP part. While every attempt was made to ensure the accuracy of the list, it is advisable to compare the descrip- tion of the device being replaced with the description of the substi- tuted part. For example, if the serv- ice manual describes the device

flop”, check this against the descrip- tion of the replacement part.

being replaced 88 8 “ d d J-K flip-

oo(x39 00350 00575 01 5m 01- 017s 01870 01e1 01973 01 s9l 02a23 (12037 021 80 02237 02290 02569 02598 02634 02713 02763 02838 0- 02883 02910 03183 03285

HP Pm

0950-9566 09b0-056I 0950-0.169 O%O-0570 0960-0512 0960-OS81 096B-Wl l 0960-0632 1813-0013 1813-0016

1813-00S6 181s-0039

inis-sow

181s- 1’11s- 101J- 1813- 1813- 1813- 1813- 1015- 1813- 1815. 1813- 181 3- 181 i- 1813- 1I13-

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Amperex EM. Corp. Semicon. EL MC Div. National semiconductor Corp. Tdedyne, PMlbrWc Nexus opafrau lnc knsltcan Mkro system Inc. May Inc. wsystenv3corp. E m Arrays, Inc. Inteoh Inc. Adwnced Mia0 Devices Inc. Motorda Inc. Harris S e m i i . Div. Harris-Intertype lntd corp. Most& corp.

Nitron Dhr. McDormell Douglas corp. spm@w Electric Co. BunBromco. SGSAtes Lamwa Ekdroniar Corp. f3iwnms Corp. Components Group Data M y Devices zlloa fnc. Texas Instruments France Hybk Microsystems Inc.

Monolithic Memories Inc.

181 %-OIL1 1811-0082 1813-0083 1813-0014 1013-0083 1813-009s 1813-0093 1813-0091 l e l6a lOl 1013-010¶ 1 8 1 E O l W i813-0iia 1113-0114 18160111 1013-B116

03195 niiis&-ionnz 02598 PIC646 02S98 PIC601 02598 C l C 6 1 1 83795 UiIOOA-27UWZ OS*S6 OAC80-CCO-V

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INTEGRATED CIRCUIT CROSS REFERENCE

HPPlN Mfr. D.K.

1013-0117 03195 K1100A-1.792Mli2 1013-0119 03795 KllOOA-4OMnZ 1813-0120 06852 DDU-4-5100 1013-0121 OS795 K1114A-10~1376MM2 1013-0123 02231 UAT8HSKC 1813-0124 02231 UA78IilSKC 1013-0127 02231 UA79MSKC 1813-0128 03795 K l l O O A 1013-0129 03795 SP62358 1013-0131 03195 K113SA 1813-0133 02030 1162 1813-0134 03195 K l l O O A - l . O M H Z 1813-0135 83195 K11OOA-18.SMHZ

1813-0139 03795 K1100A-10.ONHZ 1013-0140 05436 SDIWSTKG 1013-0142 03285 ADSZZBD 1813-0144 03795 Klll51-2.5MnZ 1813-0146 03795 Kll4tA-22.016’4HL 1813-0147 04114 DAC-HAl2DC 1813-0148 01417 HS-400-600KHL 1813-0149 03795 K1148A-19.6608MnZ 1813-01SO 03714 ICM12091P1 1813-0153 03795 K1135R 18lS-Olb4 03795 K11001-29.7984MHL 1815-0156 03795 KllOOA-ZO.OMHZ

1013-0161 05444 CO-233ME-W~DHHZ 1813-0162 03444 CO-233ME-8O.O*HZ 1013-0163 03444 CO-233ME-8.OHHZ lR13-0164 03795 11100A-2.0MMZ 1815-0166 03195 K11454-22.016MHL

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1811-0160 03406 O W O O ~ ~ C D

18 is -o i6 r o i + i 7 HS-ZOO-~.~*JZM~L 1013-0168 08661 7S l6 1813-0iro 01869 ~ ~ - 2 1 2 1 7 1813-0189 07915 HI-5002

1815-0199 07915 nv-5003

18 13-0 193 0 7 391 TTLOM-200 1815-0197 07397 ITLDM-100

181 1-0211 02037 MYA110 1913-0212 02037 MY1120 1813-0213 02037 MY1130 1813-0214 02037 M Y 1 2 1 0 1813-0215 02037 MYAZZO 1813-0216 02037 M Y A 2 3 0 1813-0217 02037 MY1310 1813-0218 02031 MY1320 1813-0219 02037 11111330

1816-0015 05799 HPROMl-lO24-5R 1816-0016 02910 NOZS123F

1816-0053 03714 IllS6OOCPE PROGRAl 1816-0129 04092 6300-1J 1816-0217 03714 IM56lOCPE 1816-0348 04092 6330-1J 1816-0355 04078 IR(2302P 1816-0409 03799 HPROM-0256-50 1816-0139 04092 6340- IJ 1816-0598 01698 SN74S2OON 1016-0605 02910 N8ZS115F 1816-0640 01698 SN14S1895 1816-0110 02910 N82S131F 1816-0723 02237 9X41SPC 1816-0724 016.18 5111451891 1816-0728 02910 NlZS09I 1816-0182 02910 N82S129F 1816-0781 01698 SW14S289N

1816-0068 03811 PS6OIL-6 MASKED 1816-0913 03194 AM31LOlPC 1816-0914 02231 93415DC 1816-0915 02910 W2S23F 1016-0916 02910 N82Sl23F 1816-0911 02910 N821126F 1816-0918 02910 NW.Sl3OF 1816-0919 03811 016241 1816-0920 02910 WIS14OF 1816-0929 02910 N825141F 1016-0930 02911 W82Sl36F 1816-0931 02910 NOZS131F 1016-0934 02231 9403PC 1816-0987 03199 HMl-1644-5 1816-0993 02237 934480C 1816-0994 04092 6335J 1816-1008 01698 18P18S42J

1816-1032 02910 N823123N 1816-1053 02037 IKMI0144L 1816-1034 02910 NOZSI8SF 1816-1055 01698 lBP18SIZN 1R16-1056 03799 HPROMl-0512-5 1816-1089 03406 DM74LSl89N 1Rl6-1131 01698 TBPl4S1ON 1816-1141 01698 SN141881N 1815-1142 02910 N82S141F 1816-1152 03799 HMl-1641-2 1816-1153 01698 TBPl8S03ON 1816-1157 04092 6350-15 1E16-1160 02910 N82Sl8lF 1816-1162 02910 N02S141N 1816-1163 02910 WZS141F 1816-1174 01698 TRP18SA03ON 1816-1193 02910 N82S2708F l l l 6 - 1 2 4 0 02910 NOZSlROF 1816-1299 02910 N82S191I 1916-1308 02237 93L422PC 1816-1309 02237 93L41ZPC 1815-1329 01698 TOP18S46N 1916-1334 02237 934223C 1 8 t h - 1 1 3 5 02037 MCM10152L 1815-1338 02237 10145APC

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1816-1339 1116-1358 1816-1371 1816-1382 1816-1388

1816-1398 1816-1406 1816-1415 1816-1416 1816-1418 1816-1421 18 16 - 14 29 1016-1430 1816-1433 181 6- 1 4 34 18 16-14 35 1816-1447 1816-1451 1816-1456 1816-14.58 1816-1459 1816-1460 1816-1461 1816-1462 1016-1467 1816-1460 1816-1469 1816-1175 lEl6-1481 18 16-1482 1816-1492 18 16- 1495 1818-0036 1018-0061 lEl8-0093 18 18-0 094 1813-0095 181 9-0 102 1819-0103 1818-0106

1818-01O8

1818-0115 181 8- 0 128 1818-0 134 1818-013s 1818-0140 1815-0146 1818-0141 181 8-0155 1818-0165 181 9-01 81 1815-0197 181 8-0198 L E 18-0199

181R-0238 1818-0241 1a1n-02so 1818-0254 1818-0277 1819-0279 1818-0289

1818-0313 1818-0317 181R-0318 1810-0319 1818-0320 1815-0322 191 8-0327 1818-0328 1811)-0332 181R-0334

1818-0336

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i8in-o3w inin-0311 181 8-0 s42 1818-0343 1818-0348

1818-0381 1818-0309 1018-0390 1818-0422 1018-B425 1811-0438 1010-0139 1818-0440 1018-0443 1810-0449 181 0- 0491 1010-0192 1818-0497 1018-0498 1010-0s08 1018-0509 1818-0553 1818-1s62 1818-0566 1018-0630 1818-0643 1010-0695 1818-0710 1010-0701

1818-0135 1018-0143 1818-0753 10111-0754 1810-0751

18 I n- 0360

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1820-0257 1820-0250 1820-0259 1820-0260 1820-0261 1820-0262 1820-0269 1820-0270 1820-0272 1820-0273 1820-0211 1820-0215 1820-0216 1820-0277 1820-0219 1820-0281 1020-0282 1820-0287 1820-0288 1820-0291 1020-0291 1820-0298 1820-030I 1820-0302

1820-0301 1820-0305 1820-0306 1820-0307 1820-0308 1820-0309 1820-0310 1820-0313 1020-0316 1828-0317 1820-0318 lR20-0319 1820-0320 1820-0321 1828-0322 1820-0323 1820-0321

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I82O-OJ16 1820-0318 1R20-0319 1820-0350 1820-0351 182 0-0 S52

102O-OS61 1820-0362 1820-0363 1820-0361 1820-0365

1820-0361 1828-0368 1820-0310 1020-0311 1820-0372 1820-0J73 1820-0371 1820-0315 1820-0376 1820-05I7 1820-0378 1820-0379 ll2o-Os80 1820-03R1 I52 0 -0382

1820-0S81 1820-038s 1820-0386 1820-0387 1828-0391 1820-0396 1820-0391 IOZO-OI98 1820-0108 1020-0108 1820-0110 1820-0111 1820-0117 1820-0118 1820-0119 1820-0121 1820-0125 1820-0127 1020-0129 1820-0130

1820-0135 1820-0131

1820-0110 1820-0111 1820-0113

1820-0115 18 2 0-0116 1820-0117 1828-0118 1820-0119 1820-1158 1828-0151 1820-0151 1820-0155 1820-01% 1820-0151 IRZO-0150 1820-0149 1820-0460

1020-0162

1820-0161 1820-0165 1020-0166 1820-0161 1820-0168 1820-0169 1820-0110 1820-0111 1820-0172 1020-0173 1820-0171 1820-0175 1020-0176 1820-017?

1820-0179 1818-0182 1820-0181 1020-0105 1820-0186 1820-0188 1820-0191 1820-0192 1820-0193 1820-0191 1820-0195 1820-0191 1820-0198 1820-0505 1820-0506 1820-0507 1820-0501) 1820-0509 1820-0510 1020-0511 lazn-msl2

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1820-0110 1820-0113 1020-0115 1820-0716 1820-0111 1020-0110 1020-0719 1120-0120 1820-0121 1820-8122 1020-0123 1828-0724 1020-0725 1820-0726 1828-8727 1020-0730 1820-0133 1820-0734 1020-0131 1820-01SJ 1820-0139

1820-0741 1020-0742 1820-0713 1020-8144 1820-0745 1820-0151 1020-0152 1820-0162 1820-0763 1020-0765

1820-0114 1020-0771 1021-0770 l020-0780 1818-0181 1020-0102 1020-0703 1820-0186 1021-0188 1820-0789 1828-0190 1820-0791 1820-0192 1020-0793 1020-0194 1020-0195 1820-0796 1820-0191 1828-0799 1820-0801 1820-0802 1020-0803 1820-0804 1820-0805 1820-0806 1820-0807 182 0-0000 1820-0009 1820-0810 1828-0011 1820-0812 1820-0813 1020-0015 1820-0816 1820-0817 1820-0818 1020-0819 1820-0020 1920-0821 1820-0822 1020-0021 1.928-0825 1020-0026 1820-0021 1020-0820 1820-0029 1020-0030 1820-0831 1820-0832 1820-0833 1820-0834 1820-0035 1820-0836 1020-0037 1820-0839 1820-0042 1820-0843 1820-0014 1820-0845 1820-0846 I020-0847 1820-0856 1820-0051 1820-0058 1820-0859 1820-0868 1820-0061 1820-0462 1020-0863 1820-0864 1820-0065 1820-0066 1820-0061 1820-0868 1820-0869 1.920-0870 1820-0875 1820-0076 1020-0894

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01698 1&2E136S 01698 1820-0361 01698 1828-03SS 01698 1020-0401 01698 182049ZI 01690 S828-#282 01698 1~0-06ZU 01690 1Ow--OOS8 81698 18m-0361 o m 0 mm-aoss

01698 lOt0-0$*1 111698 18~O-UTSS

-01690 ItPt-WSl 01.90 l.N-#YT€

o i w mzndrnm 016m iaze-oar. o m a aam-omi 01b90 182W0380

01690 1.20-0SI2 010.1 1.20-03.3 04698 I828-OMS 81698 1820-8345 01618 1828-0SW 01690 18a:.j87

01690 1010- #IC90 1820- 01690 1820-

01698 18)96

0 lC98 01698 01699 816H 01690 O l o I I

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01698 01698 05698 01698 0 1 b98 01b98 01690 81b90 81698

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INTEGRATEP rIRCUlT CROSS REFERENCE

y1*. w m 01690 01690 01690 01690 lSPI-.lOW Olb90 lOtt0-06W 01- 1 0 ~ 1 3 1 9 01690 fBZOM990 01690 I828-1077 01690 102S- 01691 1820- 016- 1028- 01690 I W T I H I 01690 S W O - l e 3 01690 1020- 01698 LOII-

01690 10-1303 01690 l O I c 1 0 6 9 01690 10-1- 01698 1016-0sJa 0 0 0 0 0 0 0 0 0 0 0 0 8 0 01698 1.10-1323 01690 M20-14W 04919 01690 01690 01690 01690 016- 01698 8 l H B We$-*@* 01690 1S20-25W 01698 1028-1150 01690 1820-0691 01698 1 8 2 0 4 6 9 2 01698 1020-0693 01690 1020-1321 01690 1020-0694 01€90 182#4$23 01690 ~~~~1510 01690 3820-0722 01690 1620-00S3 01690 10M-1110 01690 1~2O-fO26 O l l U IWS-2666 01690 182l-rIn 0169a 102O-l?lS9 01690 I U L C - m Z 01690 1020-1000 01698 1120-107¶ 01690 1 8 2 8 3 6 2 01698 18PI-2485 01698 1620-2403 01690 1021-2¶47 01698 1820-1720 11690 1820-0990 01690 1020-2134 01690 ION-0094 01698 1020-1673 01698 1820-05bO 01690 1820-2361 01698 1020-1133 81690 tS20-%007 01698 1828-1902 01690 1820-2S70 01698 M28-1611 01690 1828-2181 01690 1020-0982 01690 1821-0535 01698 1020-1800 01618 1020-1669 01690 1020-0799 01690 1020-1016 0169a 18t0-10SO 01698 1020-2044 01690 lOZI-22M 01698 MPD-ZYZO 01698 1820-2111 01698 1820-2263 01690 1020-220t 01690 1820-2110 01690 1020-12SO 01690 1820-1231 01690 1020-2254 01698 1020-2l06 01690 182EZ141 01698 10264498 01690 1-OW4 02910 1828-0282 02910 fO20-0900 02910 1028-0774

02910 1820-1187 02910 1 029iO 8 0379S 1 02910 1 02910 1 0 2 w o 1 02910 1 02910 18'20-0303 01590 1029-2HO 01590 LIZ$-2292 01190 182&2138 01S90 lob-2047 01590 1820- 02037 1OSO- 09608 1820- OO€OO 1020- 02180 l b 2 6 - 0 0 ~ 02100 1026-0U9 02100 10 ozma 10 02180 18 01195 IO 01793 11 0119s I. 01795 10 O l l 9 5 1818-0140 01795 1020-2S77 02037 102b4S07 01991 1 0 2 . - O E W 06330 lON-83M 01690 101 01696 101 01690 101

w3sa 101k11S0 08659 1820-IWZ 00659 1126-0161 01690 1820-8219 01690 18%-0110 01690 182646rO 01690 Ma-8103 01698 l O Z b - O ? U 01698 10~1-0S20 01€98 102b-OSt4 01690 181L-070S 01690 182b-0547 01690 lS26-OSSIL 01690 182C0600 01690 lU26-0Se 01698 1026-0S45 01690 1026-0842 01690 1026-05tZ 01690 lOZC-OSS8 01690 102b-0410 0169B l@Pb-OTS7 0169B 01696 01698 01690 01690 1.LC-OISO OlC10 182&-065& $1690 1OZS-OOSl 01690 1026-0476 01bI6 1828-1973 01690 1UI-lWO 01690 lOZb-8W7

01690 1026-OSSl Olb90 1020-1174 01690 lOW1212 01690 lOIO-S430 01698 lOl8-08Sl 01690 1010-0490 01690 181ClHl 01698 1018-07b2 01690 1010-0713 01690 l O t 6 - O W 1 01190 1028~02 l l 01690 1821-1lIL alb90 1 8 2 t 1 3 4 6

B1690 1820-2692 01690 1010-0317

01690 M l F O l O S 01690 1810-1390 11690 1010-0101 01690 1010-0146 01690 1816-0147 01690 1018-0247 01698 1810-016S 01690 1 8 l O - O l O Z 01690 1018-0509 01690 1010-0340 01690 1020-1783 01690 1020-2341 01690 1020-2551 01690 18204S40 01991 1020-0113 00575 1020-1219 00575 tOOO-l6Ol OOS7¶ 1020-1911 00175 18S3-2419 00575 1020-2413 01397 1013-0197 07J97 1013-0l93 07397 1018-0229 82237 l O W - O I 5 0

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Uk?9WC UA7WUlC u47Two*c u479mw4tK UA79MOCuT UA19II2u(E UAIVIIlzEI(E U4T9WlSCSC UA7MI1SIYc U$7WlSCLA UITFII I IK U4FHwulC UW3S5TC U I F 7 7 W UWI-STOSI U W - M I U UOIt3707A UOItmml. U M h W W 4 0 7 UHP-HI UU-lrwI ULI-2W44 ULrCZSskr ta ut U L * - P M ULN-LOT48 ULN-21114 ULW-ZIIS4 UL#-ZUrn ULN-Z01M UI-20154-2 ULW2082A

UPIlCC-lt SELECTED B UP4lu -Z~SLLEcTED~ U I 4 1 ~ - 3 ~ S L L E C l E D b UPC3l lW UCC311C UPBL99OC uPO2114L-3 UPD21lKC-l UPDS6K UPD4160-2 UCD444/6514 UPD444C-1 UPD5lOlLC UPDO2200 UPD824X UP08Z5lD uPDozsu) UPD8ZsSAD 01-319 YCCIZKP YD02504 XC79LOSce XClTLl2CD x11-2zo7cP XR-2209m XR2240 XI320 1111346CJ xI)?Is344c* lo440 LO441

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02237 1811-0127 02237 18264$01 82237 1026-8193 02237 MZL-0300 I 1690 102bdM9 01690 18 02237 la 016%0 IO 02237 18 02237 10 02237 10%-0491 02257 1821-0045 02634 1820-2C82 02634 1820-2683 02634 1820-2020 02634 1020-2273 0 2 U 4 1020-ZWO 02634 I620-2m 026W 1020-11Ob

02634 1026-0029 02634 1OSO-0199 026S4 lOS8.-0073 02634 10-0072 02634 k 8 S e O O W 02634 MSO-0037 04200 1828-0498 00039 M l 0 - 1 4 6 7 00039 1810-13% 00039 1810-1397 00039 102y.0477 00019 00039 08039 00039 00039 01)039 00039 l O l b l 3 I 00039 1018-1330 00039 1018-0780

02634 1026-.W. OS416 18ZOI-WCW

02.02 OOSS8 lOl*0040 IWI-01.1

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0

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wpplement to

Need Any Service Notes? They're free!

Hem's the latest listing of M c e Notes. They recommend modifica- tions to Hewlett-Packard instru- ments to increase reliability, im- prove performance, or extend their usefulness.

Use the order fann at the rear of Bench Briefs to select the notes that relate to youri-b.

181TTTR-2. 181T W f W

18

6 1 U d#QNAL 43mmATOR 612A-1% M r J S 1914A and below. klodiAcatkn to

improvtr esdemd modulation B~CW(LCY.

61M: SHF SKiUAL GENERATOR 613C-14. All serials. Part change to assure proper

puke pertamance Ofthe sigplal geIwat0r when v701 rschanged.

6208 W SIQNAL QEMRATOR 620816. AB oscirds. Pwer

p u b - when v701 kchnged.

a a m # g t o p m O w ~ r n R 339A-7A. SWkk -442366 a d 9o(WLoMI to

-0Verbp.

OsUtuAm 651B-9. All serials. Pmcedure tor sdplslhp attenuator

shielding to improve attenuator accuracy SpeCifidOnS.

fM2ATEST OlSclUATOR 652A-5. All serials. Procedure For adjusting attenuator

shielding to improve attenuator accuracy Specifications.

l 3 l l A DtSPUY 1311A-20. Serials 1915A only. New RFI suppession

capacitor A1 1C8 to improve reliabiltty of 250V tow voltage power supply.

1615A LOQK: ANAL- 1615A-4. S e r i i 2 0 5 1 8 5 and below. Corrective

measure fa display jim.

1 7 2 2 8 ~ U ~ 172253. serials x134Ao1155 end bekw. Compwvrnt

changes to prevent mistriOgering at ECL logic speedg (100 AIHZ).

I-- 172W-7. EW'M$2047A&%O and b%kWl. -

changes to p r m t mistrlggering at ECL kgk w (100 MW.

NEW SERVICE NOTES

amw8m-m LEVEL METER

3668bJWG-1. All Saniars. Interpretk\g Warmittent W-

3 W W C - 2 3586A serials 1927A00231 and belwv; 35888serEaQ. 1 ~ 8 4 a n d b e l O u ; 3 5 8 8 6 ; s e - rials 1929A00195 and bebw. Retrofit for Revision B Soflwam.

358BAIWCXA. AU serials. Interpreting euto-cal and Sdf-tw tailwe h s .

3586NBC-4. All serials. Interpreting intermittent "Err 8" Clieptays.

3 5 W serirls1928AM3ru)8 and Mow; 3586C se- rials 1- and below. Modification to cure intermittent digital problems.

358BA/&Ic-6L AN serials. HP-IB M I h t i o n program rn (9825).

31wB IFrles RECEIVER 37028-44. Serials 199ou-02731 and below. Improved

9nak KDB TRANgMlTTeR

waofwlfweEBp95.

3586A/WC-5.3586A serial$ 1927A00256 and below;

coding by retrofitting larger fan.

371OA-23. %ti& 1849U-02471 and bbw. hnptoved oaoling by retrosttng I

37 als fw

3- asaLLAT0R 3738A-4. Serials 173OU-00356 and below. Preferred

S7SB RF MODULE 3738B-1. All sertals. Cancelling restored part for YIG

37UA 88 SWEEPER ACCESSORY 3744A-2. Wals 20093100226 and below. ModiRcation

to correct blowing line fuse when instrument oper- ated on 100V or 2MV.

replacement for YIQ OSC.

oscilator.

3 7 W B $BLEcTIM LEVEL MEASUING SET

37WB-130. All serials. Instruct- for installing

3745UE22C. Swials 1812U end below. Preferred re- placement of A109 ROM4.

3745hlE49A. 3745A serials -7 and Mow; 37458 serials 2030UOO237 and below. Modification to eliminate variation in programmable attenuator steps.

option 040.

3747NB SELECTIVE LEVEL MEASURING SET

3747AlB-20. All serials. Preferred replacement for NPN transistor.

3747AB-24. 3747A serials 20301100173 and below; 37478 serlals 2o36uoo126 and belaw. ModiRcation to diminate variexlon in programmable attenuator steps.

3770NB TELEPHONE LINE ANALYZER 3770A-42. All serials. Preferred replacement of &line

to 1 &line decodec. 3770B-23. Serials MU-00591 and below. Modifica-

tion to ensure enough range in all 20KHz adjustment.

37708-24. All serials. Preferred replacement of &line to 1 &line decoder.

3 n l A DATA UNE ANALYZER 3771A/&155.3771A serials 2002U-00180 and below.

ModiAcrction to pnwent possible loss of the 2040Hz transmission frequency when frequency shift is sdected in the 3 n i ~ .

3 n i ~ f ~ i o . 3 n i ~ seriais 203811-00250 and beiow; and below. Modifica- code (Ll, L2, L3, L4) HP-IB Option 005 is

3T79AIBPi#UhRYsIuL'IIpLGxANALYZER

3779A-20. serials 2003U-OO205 end bebw. ptatection

tion to prevent poasiMe comptbn of NVM at switch

377951sA. Serlak 2005U-00265 and bebur. Modlfi- cation to improve reliability of power supply.

3779B-21. Serials 201 5U-00270 and below. Protection against loop holding currents.

3779522. Serials 2024U-00300 and below. Mcdifica- tion to prevent possiMe comptbn of NVM at switch on.

3779AlM. Mo3u.oopo6 and bkw. Modif- bnprwe reliabifity oi power supply.

against loop hdang cunents. 3779A-21. %ti& 2o28u-00225 and below. Modifica-

on.

378M PATTERN G€NERAl'OR ERROR mmcToR

3780A-21. All serials. Preventive maintenance to minimize possibility of intermittent failures.

3781 B PAlTERN GWERATOR 378151. 2049U and belaw. to

prevent possible power supply failure at high temperature.

repfacenrent of 15V rectifkar diodes A3OCR2&2@.

37828 ERROR m C T ' O R Serials 204911 andbelaff. ModiRoationt~ pnwr#l1pos-

sible power supply failure at high temperatwe.

414OA PA METEWDC VOLTAGE SOURCE 4140A-6. All serials. Modification to eliminate pulse

noise in AC power line. 4140A-7. All serials. Modification to improve auto

ranging when the i n s t r m t is set to ramp ( , ) I-V w C-V function.

4140A-8. AU serials. Modification to improve auto ranging when the instrument is set to staircase ( , ) I-Vfunction and is measuring a capecitfve device.

4140A-9. All serials. Modification to improve capaci- tance offset adjustment.

4140A-10. All serials. Modifkation to improve VB out- put abort function.

4140A-11. AU serials. Moditication to me13 the 8Wus byte state ddng HP-18 operation.

3781&2. 5erials 204W and bebw. RecoMnended

4140A-12. All &AS. Elbniinatkn Of hi$h freqwwtcy W h w n VoltagesavCeoutputs.

41408 pA METEWDC VOLTAGE SOURCE 4140B-1. Serials 2(K24Joo18O and below. Elimination

of p u b noise in AC power l i . 414052. Serials2034J00101 - 00104,00107,00108,

00110, 00111, 00113, 00114. Modification to im- prove auto ranging when the instrument is set to ramp ( , ) I-V or C V funct i i .

414053. Serials2W00101- 00104,00107,00108, 00110, 00111, 00113, 00114. Modification to im- prove auto ranging when the instrument is set to staircase ( ) CV function and is measuring a

4140&4. Serials209ANK)lOl- 00104,00107,00108, 00110, 00111, 00113, 00114. Mcdification to im- prove capacitance offset adjustment.

00110, 00111, 00113, 00114. Modification to im- prove VB output abort function.

414086. Serials2034J00101- 00104,00107,00108, 00110, 00111, 00113, 00114. ModiRcation to cor- rect the status byte state during HP-IB operation.

capec#kre de';ice.

414055. Serials2W00101 - 00104,00107,00108,

4274A MULTI-FREQUENCY LCR METER 4274A-15. Serials 2031JO1060 and below. Modifica-

tion to eliminate illegal DC bias voltage during HP-IB operation.

4275A MULTI-FREQUENCY LCR METER 4275A-1OA. A# serials. New RF filter for rejection of

prober generated noise. 4275A-12. serials 2045JO1072 and below. Modifica-

tion to eliminate ilkgal DC bias voltage during HP-IB operation.

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4SO4A CABLE FAULT LtTWRXl 4904A-2. Serials 1 l W 7 0 0 and above.

to improve g r d w .

4MWB PAlR IOeWnRER

496057. Serials 2G32A02090 and below. Recom- mended replacement for the pww amplifier (U42).

49818 PAlR IDENTlRER 4981B-2. Serials 1737AO1230 and below. Recam-

mended replacement power sup& IC.

5004A SIGNATURE AMALWXR 5004A-1C. Serials 1736 and above. Data probe

threshold voltage adjustment and compensation inStnrc(i0nS.

kW5A DIGITAL IC TESTER . 5045A-22. All $dah. Socket adapter

5045A-24. $ert& 191 64 reptecement: protmonmodlRcationto

5 0 8 2 ~ CESJUM BEAM mauE)Icy

5062c-5. Seriats ModlRcationto increase cesiu y operatiin at lower output current.

B12A HP-IB INTERFACE MODULE 5312A-38. lnstruotions for trolJb4eshootrng the 5312A

5328A umvER8AL WUNTER 5328A-28A. All serials. Revision of frequency response

and sensitivity pertamance tests and operational verilicatii for channel "C" (options 030 and 031).

5328A-29A. 532WH99, all serials. Revision of Chan-

below; H99 serials 2017 and below. Preferred re-

5328A-31. 5328A/H!39, Option 041, seaials 2004 and below; H99 serials 2017 and below. New A12 ampllfier shieldebreky (K4) to prevent magnetic interaction with the two adjacent magnet-type REED relays K3 and K5.

using signature' analysis.

nel c sensitivity perromance tests.

placematorA8UgDualGomparaccrr.

5328A-30. !532WH99, Opuon 930, mals 2016 and

!333!iA UNIVERSAL COUNTER 5335A-1B. All serials. 5335A HP-18 VeriACation pro-

gram (Rev. B) using the 9825A contfok.

(05335-6001 3). 5335A-3. All seriak. HOW to Us8 the W ' V b aid board

534015 FREQUENCY COUNTER 534OA-17. All serials. Instructions for repkchg the A1

5340A-16. All seria)s. Instructions for replacins the A2 Preampli i Assembly.

Prempliier Assembly.

5342A MICROWAVE FREQUENCY COUWTER

5342A-29. All serials. Improved Option 002 trou- bleshooting p r d u r e allows anslog loop checkout.

5342A-30. Serials 1720 and below. Modifbation to im- prove operation at h$h amblen! tempsretw%a

5349A MICROWAVE COUNTER 5343A-3. Serials 2108A and bebw. Method to cue

miscounting on instnrments with Opuon 004 (DAC option).

5343A-8. Serials 2026 and bebw. Mad#icatkm proce- dures to mect miscounting between 18 and 26.5 GHz.

5343A-9. serials 2026 and below. ModMWkm to im- pmve operation at hleh ambient ts inwm

62058 DC POWER SUPPLY 62058-2-S. Serials 1949A-15876 through 2025A-

17875. Modification to eliminate shock hazard when covers are off.

7220NS GRAPHICS PLOTTERS 722ONS-3-S. Serials 2047 and below. Modification to

eliminate wtential shock hazard at the ~lotter inout

NEW SERVICE NOTES " :I ' I

5345A ELECTRONIC COUNTER 5345A-98. HP-I8 verification program for 5345A

5345A-128. HP-18 verification program for 5345A

5359A TIME SYNTHESIZER 5359A-4. Serials 2036A00331 and below. Modification

to help keep the PC boards in their sockets.

5363A TIME INTERVAL PROBES 5363A-38. All serials. Repair/replacement of the

probes using modification kit P/N 05363-60109.

5382A 225 MHz FREQUENCY COUNTER 5382A-2. Serials 2024 and below, Modification to in-

stall new metalcased temperaturecompensated crystal oscillator.

8555A SPECTRUM ANALYZER 8555A-15. All serials. Instructions for replacing 500

98728 AND 98725 GRAPHICS PLOTTERS 98728/S-3-S. Serials 2047 and below. Modification to

eliminate potential shock hazard at the plotter input power receptacle when the power on/off switch is

Option 01 1. MHz oscillator.

Option 01 1. 85588 SPECTRUM ANALYZER Off.

855851A. All serials. lnstructionsfor replacing the A1 1 and A13 Bandwidth Filter boards.

85588-9A. All serials. Application instructions for the intensity control of HP 85588 Spectrum Analyzer and 1 &series oscilloscope mainframe with exter- nal horizontal input.

10023A TEMPERATURE PROBES 10023A-1. All serials. Modification to improve battery

life and eliminate incorrect readings.

37203A HP-18 EXTENDER 37203A-1. Serials 2040U00356 and below. Modifica-

tion to eliminate possible flashing Data Error LED. 85-A SPECTRUM ANALYZER

8559A-2. Serials 1942A and below. Preferred re- placement parts for A10 third converter.

8559A-3. Serials 1951A and below. Modification to prevent intermittent DPM blanking.

8559A-4. Serials 2019A00500 and below. Modification to prevent A7 Frequency Control Board oscillations.

8559A-6. Serials 2019A00720 and below. Recom- mended replacement attenuator brackets. 5501A LASER TRANSDUCER

5501A-4. All serials. Repair of new high voltage power supply in the event the laser tube fails to light.

61 31 C DIGITAL VOLTAGE SOURCE 6131C-3. Serials 1934A-00920 and below. Modifica-

8588A SPECTRUM ANALYZER 8568A-26A. All RF section serials. Instructions for cor-

recting intermittent digital operation.

862OC SWEEP OSCILLATOR 8620C-4A. Serials 1933A and below. Option 01 1

HP-18 installation kit, HP P/N 08620-60154. 8620C-5A. Serials 1933A and below. Elimination of

frequency shift in 8620C HP-18 Option 001 with exchange replacement kit HP P/N 08620-60157.

tion to avoid oscillation in bias supplies.

power receptacle when the power ordoff switch is Off.

7221A GRAPHICS PLOTTER 7221A-9-S. Serials 2047 and below. Modification to

eliminate potential shock hazard at the plotter input power receptacle when the power onloff switch is Off.

7221BIS GRAPHICS PLOTTERS 7221 B/S9-S. Serials 2047 and below. Modification to

eliminate potential shock hazard at the plotter input power receptacle when the power onloff switch is Off.

7225 GRAPHICS PLOTTER 7225A-1. Serials 2050A and above. Modified disas-

sembly procedure.

7240A PLOTTER/PRINTER 724OA-2A-S. Serials 2047 and below. Modification to

eliminate potential shock hazard at the plotter input power receptacle when the power onloff switch is Off.

7562A LOG VOLTMETEWCONVERTER 7562A-3A. Serials 1937A and below. AC amplifw PCA

07562-80020 obsolete P/N 1820-0083 OP amp. Recommended replacement operational amplifier and PCA.

86548 SIGNAL GENERATOR 86548-1. All serials. Improved performance tests and

8856A SIGNAL GENERATOR 8656A-2. Serials 2022A and below. Improved internal

8656A-3. Serials 2026A and below. Improved

8656A-4. Serials 2035A00535 and below. Modification

8656A-5. Serials 2027A and below. Improved Voltage

8656A-6. Serials 2032A and below. Improved HF Os-

8656A-7. Serials 2022A and below Modification to

adjustments using the 8901 A.

RF shielding.

keyboard response.

to correct 5 MHz Time Base output.

Tuned Filter (VTF) high end operation.

cillator lock with external AM.

eliminate 500.5 MHz spurs.

8862A SYNTHESIZED SIGNAL GENERATOR 8662A-3. Serials 2021A00420 and below. DCU ROM

changes and assembly compatibility to improve performance.

8901A MODULATION ANALYZER 8901 A-1 . Serials 2032A and below. Software change

9872A GRAPHICS PLOTTER 9872A-114. Serials 2047 and below. ModiRcatiOn to

eliminate potential shock hazard at the plotter input power receptacle when the power odoff switch is Off.

summary.

59300-10001 HP-IB TEST TAPE 59300-1A. Revision K. List of HP-IB test tapes and

instructions for counter-type products from HP Santa Clara Division.

59308A TIMING GENERATOR 59308A-4. Serials 2012A00990 and below. Jumper

wire to correct intermittent and/or incorrect HP-IB operation.

59309A HP-18 CLOCK 59309A-6A. Serials 171 2A01887 to 1920A02340.

Jumper wire modification to correct improper store operation.

641 OOA LOGIC DEVELOPMENT SYSTEM MAINFRAME

641OOA-1. Serials 1924A-00152 and below. Recom-

64100A-2. Serials 1924A-00152 to 2033A-00932. mended replacement firmware ROMs.

Recommended replacement firmware ROMs.

64151A STATIC RAM CONTROLLER 64151A-1A. Serials 1924Aandbelow. Rev.CandRev.

D boards. Modification to prevent incorrect sampling of control and status data in the SIMULATED I/O mode.

64151A-2. Serials 1924A Rev. F boards. Modification to prevent inwrrect sampling of control and status data in the SIMULATED I/O mode.

64201-66506 808(u8085 EMULATION CONTROL BOARD

64201A-1. Control board repair numbers 2008 through 2033. Modification so board will recognize 8080 II- legal Op Codes.

642M)A 280 EMULATOR SUBSYSTEM 64251A-3. 280 Emulation Control Board npair num-

bers 2009A and below. Modification for proper func- tioning of Emulation System during user DMA

64252A-3. Z80 Emulator Pod Board repair nwnbers

hgof EmuEatllar Syntern during user DMA. W A and be@. Modification for Proper function-

44bxx PROQRAMMER 64500A. All mrbats. FflOh4 programming procedure.

SAFETY SERVICE NOTES

Service Notes

Service Notes f rm Hp relating to personal safety and poesible equip- ment damage are of vital importance to our customers. To make you more aware of these important notes, they are printed on paper with a red bor- der, and the service note number hag a "-5" suffix. In order to make you immediately aware of any potential safety pmblems, we are highlighting safety-related service notes here with a brief description of each prob-

to draw your at- related service

an the service nota order form at the back of Bench Briefs each

'&e number is highlighted rinted in color.

&ard Test System

ons 200, 201, 202 and 1801A00324 and below

have the 34196A Scanner power supply AC line reversed wired. This places the fuses in the neutral side of the circuit.

Safety Service Note 306OA-3-S de- scribes the step-by-step procedure for changing the wiring to comply with the National Electric Code

7220AlS, 722lAflB/S, 9872AJBIS Graphics Plotters A shock hazard may exist at the power cord &et (or at the male end of the power cord) of the following plo€t%rs %hen the power swikh is in the OFF position.

7220M serials 2047 and below 7221A serials 2047 and below 7221BEs mrials 2047 and below 7240A serials 2047 and below 9872A serials 2047 and below 9872BB serials 2047 and below

If the power switch is OFF the line filter capacitors retain a charge at the power socket that can shock an operator.

To eliminate the possibility of this hazard, it is necessary to install a bleeder resistor acroL98 the line ter- minals of the power socket. safety Service Notes 7220AiS-3-5, 7221A-9-5, 7221B/~-3-S, 7240A- 2A-S, 9872A-11-S and 9872B/S-3-S describes the procedure.

6205B Dual DC Power Supply

The AC and AC commm lines are reversed at the line switch an unik with serial numbers 1949A15826 thru 202SA17875. This wire mver-

To correct the problem, exchange the gray wire and the white/yellowigray wire attached to the line switch. Safety Service Note 6206B-2-S pro- vides details and a photo of the cor- rect wire connections.

1 Y

You may order any of the above listed Safety Service Notes from Hewdett- Packard with the form provided at the back of Bench Briefs.

... ..... -... E

Service Note Order Form

0 Instructions 1

one of the following

0 lSlT/TR-2 0 181Tm-3 0 339A-7A 0 612A-12A 0 61W-14

0 3 2 m M 0 33-A 0 -18 0 3325A-9 0 3330AD-M

0 3s3o#B-14B 0 33WNB-17 0 3330B-16 0 3435AM 0MSSA-S

0343SA-0 0S37A-4A 0 3437A-5 03437A-6 0 3438&5A

0 3438A-6 0 3458A-lA 0MmA-2 0 3456A-3 0 3465A-6

Os1Bu-1 03mm-2 0 3671A-U 0 3582A-48 0 3582A-10

0988(IUBIc8 03702644 0 371oA-23 0 372lA-18 03736A-4

037ss6-1 0 37uA-2 0 37wB-198 0 3 7 4 5 m - n c 0 3745AIB-49A

0 3747-20 0 3747Am-24 0 3770A-42 03770m-23 0 -24

0 4274A-15 0 4275A-lOA 0 4275A-12 0 4001A-2 0 4060A-6

0 40600-5 0 4960B-7 0 4961B-2 0 5001A-lC 0 W A - 2 2

0 7221A-SS 0 7221813-8s 07225A-1 0 724OA-2A-S 0 7-A

0 -15 0 W l A 08558B-9A 0 8559A-2 0 8559A-3

0855SA-4 085sSH 0 8568A-26A 0 882OC4A 0 8(12oc5A

086548-1 0 8656A-2 0 8 W - 3 08656k4 0 8656A-5

ows6A-8 0 wi56A-7 08662A-3 0 8WlA-1 0 9872A-11s

0 98728155s 0 10tmA-l 0372mA-l 0 SSSO@=lA orrcmaru

f

9

06ameA-m 0 641Ookl 0 64loaA-2 0 64151klA 0 641Sl A 4

0 w2mA-1 0 8425111.3 0 6425211.3 0615OoA

. ,.. . I. WWW. H PARCHIVE.COM ,* . . . . . .

* I

* I READER’S CORNER

.:

i

.AI bm -, Store incident

04 01 1 05 00 “0 06 71 J 07 16 08 a l @

Converting Incident and Reflected dBm Readings To VSWR With an HP 25

Steps 8 and foll. : multiplying a power in gb by 0.5 (4 steps) then dividing by 50 ( 3 mow steps), eventually resulk in dividing by ldSa (or EEX 3) (= 3 steps)

JENCH BRIEFS

Volume 21 Number 2

Service information from Hewlett-Packard Company

MARCH-MAY 1981

bove address. fs dndAYueSsw4N - * *

QQ@@ 3 A f i 3 SCJIIdS 0303

Address Correction Requested