PZM2.4N KEXIN | Alldatasheet
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Technical content
www.kexin.com.cn 1 Diodes ■ Features
- Total power dissipation: max. 300 mW
- Small plastic package suitable for surface mounted design
- Wide working voltage range:nom. 2.4 to 75 V 0.4+0.1 -0.1 2.9+0.1 -0.1 0.95+0.1 -0.1 1.9+0.1 -0.1 2.4+0.1 -0.1 1.3+0.1 -0.1 0-0.1 0.38+0.1 -0.1 0.97+0.1 -0.1 0.55 0.4 1 2 Unit: mmSOT-23 0.1+0.05 -0.01 1.anode 2.not connected 3.cathode n.c. 1 ■ Absolute Maximum Ratings Ta = 25℃ Parameter Symbol Rating Unit Continuous forward current IF 250 mA Peak forward surge current (Note.1) IZSM see Tables 1and 2 Power Dissipation PD 300 mW Thermal Resistance Junction to soldering point Ts = 60 °C RθJ-S 300 Junction Temperature TJ 150 Storage temperature range Tstg -65 to 150 Note.1: tp = 100 μs; square wave; Tj = 25 °C prior to surge K/W Zener Diodes PZM-N Series (KZM-N Series)
www.kexin.com.cn2 Diodes ■ Electrical Characteristics Ta = 25℃ Parameter Test Conditions Min Typ Max Unit IF= 10 mA 0.9 IF= 100 mA 1.1 PZM2.4N 50 PZM2.7N 20 PZM3.0N 10 PZM3.3N 5 PZM3.6N 5 PZM3.9N 3 PZM4.3N 3 PZM4.7N 3 PZM5.1N VR=1.5V 3 PZM5.6N VR=2.5V 2 PZM6.2N VR=3.0V 2 PZM6.8N VR=3.5 V 2 PZM7.5N VR=4.0 V 1 PZM8.2N VR=5.0 V 700 PZM9.1N VR=6.0 V 500 PZM10N VR=7.0 V 200 PZM11N VR=8 .0V 100 PZM12N VR=9.0 V 100 PZM13N VR=10 V 100 PZM15N VR=11 V 70 PZM16N VR=12 V 70 PZM18N VR=13 V 70 PZM20N VR=15 V 70 PZM22N VR=17 V 70 PZM24N VR=19 V 70 PZM27N VR=21 V 70 PZM30N VR=23 V 70 PZM33N VR=25 V 70 PZM36N VR=27 V 70 PZM39N 50 PZM43N 50 PZM47N 50 PZM51N 50 PZM56N 50 PZM62N 50 PZM68N 50 PZM75N 50 VR=1 V Forward voltage VF V VR=0.7 Vznom uA nA Symbol IR Reverse voltage leakage current PZM-N Series (KZM-N Series)
www.kexin.com.cn 3 Dio des ■ Electrical Characteristics Ta = 25℃ Table1 Per type; PZM2.4N to PZM24N Tj = 25 °C unless otherwise specified. PZM -XXX WORKING VOLTAGE VZ (V) at IZ = 5 mA; tm = 40 ms DIFFERENTIAL RESISTANCE rdif (Ω) TEMP. COEFF. SZ (mV/K) at IZ = 5 mA DIODE CAP. Cd (pF) at f = 1 MHz; VR = 0 NON-REPETITIVE PEAK REVERSE CURRENT IZSM (A) at tp = 100 µs; Tamb = 25 °C B B1 B2 B3 IZ = 1 mA IZ = 5 mA Table 2 Per type; PZM27N to PZM75N Tj = 25 °C unless otherwise specified. PZM -XXX WORKING VOLTAGE VZ (V) at IZ = 2 mA; tm = 40 ms DIFFERENTIAL RESISTANCE rdif (Ω) TEMP. COEFF. SZ (mV/K) at IZ = 2 mA DIODE CAP. Cd (pF) at f = 1 MHz; VR = 0 NON-REPETITIVE PEAK REVERSE CURRENT IZSM (A) at tp = 100 µs; Tamb = 25 °C B B1 B2 B3 IZ = 0.5 mA IZ = 2 mA 27N 25.10 28.90 − − − − − − 35 250 8 40 23.4 73 1.00 30N 28.00 32.00 − − − − − − 35 250 10 40 26.6 66 1.00 33N 31.00 35.00 − − − − − − 40 275 11 40 29.7 60 0.90 36N 34.00 38.00 − − − − − − 40 300 15 60 33.0 59 0.80 39N 37.00 41.00 − − − − − − 40 300 25 75 36.4 58 0.70 43N 40.00 46.00 − − − − − − 45 325 30 80 41.2 56 0.60 47N 44.00 50.00 − − − − − − 45 325 30 90 46.1 55 0.50 51N 48.00 54.00 − − − − − − 45 350 35 110 51.0 52 0.40 56N 52.00 60.00 − − − − − − 50 375 40 120 57.0 49 0.30 62N 58.00 66.00 − − − − − − 60 400 50 140 64.4 44 0.30 68N 64.00 72.00 − − − − − − 75 400 55 160 71.7 40 0.25 75N 70.00 79.00 − − − − − − 85 400 70 175 80.2 35 0.20 PZM-N Series (KZM-N Series)
www.kexin.com.cn4 Diodes ■ Marking TYPE NUMBER MARKING CODE TYPE NUMBER MARKING CODE 3B2B1BB3B2B1BB PZM2.4N 2V4 − − − PZM15N 15V 151 152 153 PZM2.7N 2V7 271 272 − PZM16N 16V 161 162 163 PZM3.0N 3V0 301 302 − PZM18N 18V 181 182 183 PZM3.3N 3V3 331 332 − PZM20N 20V 201 202 203 PZM3.6N 3V6 361 362 − PZM22N 22V 221 222 223 PZM3.9N 3V9 391 392 − PZM24N 24V 241 242 243 PZM4.3N 4V3 431 432 433 PZM27N 27V − − − PZM4.7N 4V7 471 472 473 PZM30N 30V − − − PZM5.1N 5V1 511 512 513 PZM33N 33V − − − PZM5.6N 5V6 561 562 563 PZM36N 36V − − − PZM6.2N 6V2 621 622 623 PZM39N 39V − − − PZM6.8N 6V8 681 682 683 PZM43N 43V − − − PZM7.5N 7V5 751 752 753 PZM47N 47V − − − PZM8.2N 8V2 821 822 823 PZM51N 51V − − − PZM9.1N 9V1 911 912 913 PZM56N 56V − − − PZM10N 10V 101 102 103 PZM62N 62V − − − PZM11N 11V 111 112 113 PZM68N 68V − − − PZM12N 12V 121 122 123 PZM75N 75V − − − PZM13N 13V 131 132 133 − − − − − PZM-N Series (KZM-N Series)
www.kexin.com.cn 5 Diodes ■ Typical Characterisitics Fig.1 Forward current as a function of forward voltage; typical values. Tj = 25 °C. handbook, halfpage 0.16.0 300 100 200
0.8 VF (V)
(mA) Fig.2 Temperature coefficient as a function of working current; typical values. PZM2.4N to PZM4.3N. Tj = 25 °C to 150 °C. handbook, halfpage 060 20 40 IZ (mA) SZ (mV/K) 4V3 3V9 3V6 3V0 2V4 2V7 3V3 Fig.3 Temperature coefficient as a function of working current; typical values. PZM4.7N to PZM12N. Tj = 25 °C to 150 °C. handbook, halfpage 020 16 4 8 12 IZ (mA) SZ (mV/K) 4V7 9V1 8V2 7V5 6V8 6V2 5V6 5V1 Fig.4 Power derating curve. handbook, halfpage 0 50 100 200 Ptot (mW) Tj (°C) 400 300 100 200 150 PZM-N Series (KZM-N Series)