MAZK068D PANASONIC | Alldatasheet

Document overview

  • Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
  • PDF pages: 2

Technical content

V V Ω Ω µA µA mV/˚C pF Condition I F=10mA IZ= 5mA IZ= 0.5mA IZ= 5mA V R = 4V V R = 5.9V IZ= 5mA V R = 0V , f=1MHz Symbol V F V Z*2 R ZK R Z IR1 IR2 SZ*3 C t Note 1. Test method : Depend on JIS C7031 testing 2. Rated input/output frequency : 5MHz 3. * 1 : The VZ value is for the temperature of 25˚C. In other cases, carry out the temperature compensation. * 2 : Guaranteeed at 20ms after power application * 3 : Tj= 25 to 150˚C n Electrical Characteristics (Ta= 25˚C)*1 *1 W orking value in a single piece *2 With a printed-circuit board *3 t=100µ s, Tj=150˚C Unit mA mA mW W Rating 100 * 200 *1 100 *1 150 – 55 to + 150 Symbol IF(AV) IFRM Ptot*2 PZSM *3 Tj Tstg n Internal Connection MAZK068D Silicon planer type Constant voltage, constant current, waveform cripper and surge absorption circuit n Features l Mini type package (5-pin) l Four anode-common element wiring of MA3068 n Absolute Maximum Ratings (Ta= 25˚C) n Marking Unit : mm Parameter Average forward current Instanious forward current Total power dissipation Non-repetitive reverse surge power dissipation Junction temperature Storage temperature Zener Diodes Composite Elements MA111 Parameter Forward voltage Zener voltage Operating resistance Reverse current Temperature coefficient of zener voltage Terminal capacitance min 6.40 1.2 typ 0.8 6.80 3.0 max 0.9 7.20 140 4.5 110 1 : Cathode 1 4 : Anode 1, 2 2 : Cathode 2 Anode 3, 4 3 : Cathode 3 5 : Cathode 4 Mini Type Package (5-pin) 6.8A 2.8 +0.2 -0.3 3 2 1.45–0.1 0.95 0.95 1.9–0.10.8 +0.25 -0.05 0.3 +0.1 -0.05 0.16 0 to 0.1 +0.1 -0.06 2.9 +0.2 -0.051.1 +0.2 -0.1 0.4–0.2 0.1 to 0.3

Zener Diodes Composite Elements MAZK068D Ptot – Ta I F – VF IZ – VZ IR – VR R Z – IZ C t – VR Ambient temperature Ta (˚C) Power dissipation Ptot (mW ) 0 250 20015010050 100 150 200 250 300 With a printed-circuit board 10–5 10–4 10–3 10–2 10–1 Forward voltage VF (V) Forward current IF (A) Ta=150˚C –20˚C 100˚C 25˚C 10–6 02468 1 0 1 2 10–5 10–4 10–3 10–2 10–1 Zener voltage VZ (V) Zener current IZ (A) Ta=150˚C 100˚C –20˚C 25˚C Reverse voltage VR (V) Reverse current IR (A) 10–11 0123456 10–4 10–6 10–5 10–7 10–8 10–9 10–10 Ta=150˚C 100˚C 25˚C 10–4 102 103 10–3 10–2 10–1 Operating resistance RZ (R ) Zener current IZ (A) Ta=25˚C 100 120 140 160 0123456 Reverse voltage V R (V) Terminal capacitance Ct (pF) Ta=25˚C