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MA3047W

Panasonic
Part Number MA3047W
Manufacturer Panasonic
Description Silicon planer type
Published Apr 27, 2005
Detailed Description Zener Diodes Composite Elements MA111 MA3047W Silicon planer type Constant voltage, constant current, waveform cripper...
Datasheet PDF File MA3047W PDF File

MA3047W
MA3047W


Overview
Zener Diodes Composite Elements MA111 MA3047W Silicon planer type Constant voltage, constant current, waveform cripper and surge absorption circuit s Features 2.
9 –0.
05 Unit : mm 2.
8 –0.
3 0.
65±0.
15 +0.
2 +0.
25 1.
5 –0.
05 0.
65±0.
15 0.
5R 0.
95 4 1 q Mini type package (4-pin) wiring in parallel of MA3047 1.
9±0.
2 +0.
2 0.
95 0.
5 0.
4 –0.
05 +0.
1 q Two-element 2 3 0.
2 1.
1 –0.
1 +0.
2 s Absolute Maximum Ratings (Ta= 25˚C) Parameter Average forward current Instanious forward current Total power dissipation Single Double Single Double Single Double Symbol IF(AV) IF(AV) IFRM IFRM Ptot *1 Ptot *1 PZSM*2 Tj Tstg Rating 100 75 200 150 200 150 15 150 – 55 to + 150 Unit mA mA mA mA mW mW W ˚C ˚C 0.
4±0.
2 1 : Cathode 1 2 : Cathode 2 3 : Anode 2 4 : Anode 1 Mini Type Package (4-pin) s Internal Connection 4 3 1 2 Non-repetitive reverse surge power dissipation Junction temperature Storage temperature With a printed-circuit board *2 t=100µ s, Tj=150˚C *1 1 s Electrical Characteristics (Ta= 25˚C)* Parameter Forward voltage Zener voltage Operating resistance Reverse current Temperature coefficient of zener voltage Symbol VF VZ RZ IR SZ *3 *2 IF=10mA IZ= 5mA IZ= 5mA VR= 1V IZ= 5mA – 3.
5 –1.
4 4.
4 Condition min typ 0.
8 4.
7 50 max 0.
9 5.
0 80 3 0.
2 Unit V V Ω µA mV/˚C Note 1.
Rated input/output frequency : 5MHz 2.
* 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 125˚C s Marking 4.
7W 0 to 0.
1 0.
1 to 0.
3 0.
8 0.
16 –0.
06 +0.
1 0.
6 –0 +0.
1 0.
4 –0.
05 1.
45 +0.
1 Zener Diodes Composite Elements MA3047W IF – VF 100 1.
6 1.
4 VF – Ta 10000 IR – VR Ta=150˚C 100˚C 25˚C IF (mA) VF (V) 1.
0 IF=100mA 0.
8 0.
6 0.
4 0.
2 0 –40 10mA 3mA Forward curren Forward voltage Reverse current IR (nA) 10 1.
2 1000 1 100 0.
1 Ta=150˚C 100˚C –20˚C 25˚C 10 0.
01 0 0.
2 0.
4 0.
6 0.
8 1.
0 1.
2 Forward voltage VF (V) 1 0 40 80 120 Ta 160 (˚C) 200 0 1.
0 2.
0 3.
0 4.
0 ...



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