RZ39A STMICROELECTRONICS | Alldatasheet

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7.) THOMSON-CSF oo RZ6A — RZ18B ZENER DIODES DIODES ZENER Prot = 20W

50 W silicon Zener diodes :

© Hermetically sealed matal according to 68 V < VzT nom < 180 V normalization CCTU : F 10'and JEDEC DO-5. © Available with anode to case or cathode to case connections. © High surge capability :300W @10 ms. Diodes Zener de 60 W au silicium : 5 © Encapsulées métal_ selon normalisation Bottier 1DO-6 (CB-34) a CCTU:F 10 et JEDEC DO-5. iS © Disponible avec anode ou cathode reliée au bottier. Cathode connected to case ov © Forte tenue en surcharge : 300 W@ 10 ms. RZ6A — RZ 188 LS Anode connected to case S i} RZ6AR —> RZ 18BR pb ABSOLUTE RATINGS (LIMITING VALUES) a. VALEURS LIMITES ABSOLUES D'UTILISATION Tamb = DC power dissipation (see fig. 1) mw Dissipation de puissance en régime permanent (voit fig. 1) Continuous reverse current See page 2 Courant inverse continu Voir page 2 Non repetitive surge peak power dissipation (t = 10 ms) (see fig. 7) Puissance de surcharge créte accidentelle (t = 10 ms) (voir fig. 7) Operating temperature _ Température de fonctionnement Toper 85—- + 160 Storage temperature [imeem ee | Maximum junction temperature max = Température maximale de jonction j Junction-case thermal resistance cow Résistance thermique jonction-bottier Ld December 1983 - 1/3 ‘50. rue Jean-Pierre Timbaud- 8 P. 5 F - 92403 Courbevoie Cedex FRANCE #\\ THOMSON Tél. (1)788-50-01 Telex 610560 F 147 ‘@ COMPOSANTS

ELECTRICALCHARACTERISTIC 7, = a50¢ S CARAGTERISTIQUES ELECTRIQUES = 8™" Var llr vavllzr reKliz« “vz ‘zm min nom) max | max max typ w oy o (104°C) (mA) RZ 6A, (R) 64 68 75 1 730 (250 3 2700 RZ 8A, (R) 74 8,2 a1 12 610 150 4 2200 ‘RZ 10A, (R) 9.0 10 W 18 500 160 6 1800 RZ 12A, (R) 10,5 12 13,5 24 420 150 5,7 1540 RZ 15A, (R) 13 1S 16,5 39 330 180 63 1250 RZ 18A, (RD 16 18 20,5 57 280 150 68 1000 RZ 228, (A 2 2 26 {| 69 | 20 180 73 | 330 RZ 27A, (R) 24 27 30 9 180° 200 77 665 RZ 33A, (R) 29 33 36 Ww 150 200 8 555 RZ 39A, (R) 35 39 43 13 120 200 83 465, RZ 474, (RP az 47 52 16 100 200 86 390 RZ 56A, (R) 60 56 62 18 30 600 88 320 RZ 68A, {R} 61 68 oi 24 73 500 3 265 R2 682A, {R) wm 82 1 33 60 500 92 220 RZ 108, (R) 90 100 110 66 50 700 93 180 RZ 128, (R) 105, 120 138 76 42 700 94 164 RZ 158, (RA) 130 150 165 150 33 1000 96 125 . RZ 188, {R) 160 180 205 280 28 1000, 96 100 CASE DESCRIPTION DESCRIPTION DU BOITIER 10,72 2,93 ois 12,70 5,08 ve Weight ie 444 9,52 mox. Mase * 289 | |) Marking : clear {| Marquage en clair E-]H— 330) E4->+4-|- ‘Maximum torque value . t Ee | | and Couple de serrage maximum *310 em AN war-2aunr |) uw asia A AG our plats / 6sided 116,94 max pans 25,4 max. 00-5 (CB-34) 3021 20 2. a a a ee oe a 20 a a a a a a a a SCS | a on on =o wof--+-4 a Cer fT oe a oe a SEE ES BEERS HRE RE Sete = 0) 80.75 ~—~«T00 1600 60 100 150 Fig. 1 - Maximum mean allowable power dissipation versus Fig. 2 - Maximum mean allowable power dissipation versus case temperature. ambient temperature for different thermal resistances.

3 = mane erase eect eriiil| = ae Sas CV SSS

4 SS ee 93 Ve

HEE EEE EEE EHH). EERE Sty i Sos eS 5s ee ee ft or Lt Sas ae — # EERE EEE oat CEA =F Ht Fz ina i) 20 40 60 80 100 120 140 160 180 200 1 10 102 103 104 Fig. 3 - Temperature coefficient « Vz =-4V2T versus Fig. 4 - Differential resistance RT versus Iz (maximum V2T (typical values). Vat ATi values). C (pF)

1 CaS 105 ee

_——— ee ee ee a ae a oe a es ee ee es Ss eS ey A beet os ss eH PERERA et TEE ro Lt EIT TT” TTT 04 SS aS ee mantic

1 TET), SS | a

= SS Sas Smee eee eases Saaiiiiman eat orl TTT TTF very) yoo LL SS Yeo 1 10 102 103 1 10 102 103 Fig. 5 - Regulation voltage variation for Iz variation Fig. 6 - Capacity C versus reverse voltage VR (typical between 10% and 50% of Iz {typical values) D.C. values). measure (Toase = 25°C),

108 Prasm (Wh tem tA)

| HECCHEHe mnie ie maaiit con 103 wo LETT TTT SS aa ee oo oe ee rT vel SCOTTI Fin EECCA 10-2 10° 1 10 [| Fig. 7 - Non repetitive surge peak reverse power dissipa- 6 Hee HH tion PRM versus pulse duration (rectangular impulsion). Cod WJ (- ‘2th (% Rth) ty a Hoe HH a ete 0 | 2 [\\ HHH HEHE rT LLY] rly ty a |

100 KEE LETT | Vem WV)

FEAR eH HAA 07 08 09 1 14 1,2 a Ht HH ’ ” " ‘ es HEH ee ay) ig.9 - Peak dé t so} AEH ny Fig.9 - Peak forward current EH EE ry pM versus peak forward EGE EA 2500 typical valcsy 25° = °C (typical values). Ty lf o EEA F AE ETE FH | 10-1 1 10 102 103 Fig. 8 - Transient thermal impedance Zth versus pulse duration (rectangular impulsion).