PANASONIC MAZL062D

MA111
Zener Diodes Composite Elements
MAZL062D
Silicon planer type
Unit : mm
Constant voltage, constant current, waveform
cripper and surge absorption circuit
+0.2
2.8 -0.3
+0.25
0.65±0.15
1.5 -0.05
0.65±0.15
3
2
+0.1
0.16 -0.06
0 to 0.1
0.8
1.1 -0.1
+0.2
+0.1
0.3 -0.05
Four anode-common element wiring of MA8062
4
1
1.45±0.1
1.9±0.1
type package (5-pin)
0.95
●
+0.2
● Mini
2.9 -0.05
■ Features
0.95
5
■ Absolute Maximum Ratings (Ta= 25˚C)
Parameter
Average forward current
Symbol
Rating
Unit
IF(AV)
100 *1
mA
*1
mA
Instanious forward current
IFRM
200
Total power dissipation
Ptot*2
200 *1
mW
Junction temperature
Tj
150
˚C
Storage temperature
Tstg
– 55 to + 150
˚C
0.1 to 0.3
0.4±0.2
1 : Cathode 1
4 : Anode 1, 2
2 : Cathode 2
Anode 3, 4
3 : Cathode 3
5 : Cathode 4
Mini Type Package (5-pin)
■ Internal Connection
*1
5
Working value in a single piece
*2 With a printed-circuit board
1
4
3
2
1
■ Electrical Characteristics (Ta= 25˚C)*
Parameter
Symbol
Condition
Forward voltage
VF
IF=10mA
Zener voltage
VZ*2
IZ= 5mA
RZK
IZ= 0.5mA
Operating resistance
min
5.80
typ
max
0.9
1.0
6.20
6.60
V
100
Ω
Unit
V
RZ
IZ= 5mA
30
Ω
Reverse current
IR
VR= 4V
0.2
µA
Temperature coefficient of zener voltage
SZ*3
IZ= 5mA
Terminal capacitance
Ct
VR= 0V, f=1MHz
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
■ Marking
6.2D
2.3
mV/˚C
50
pF
MAZL062D
Zener Diodes Composite Elements
Ptot – Ta
IF – VF
300
IZ – VZ
10–6
1
With a printed-circuit board
100
10–3
10–4
50
0
50
100
150
200
IR – VR
0.6
0.8
1.0
25˚C
0
1.2
1
5
6
(V)
Ta=25˚C
102
30
Ct
Terminal capacitance
10–4
4
VR
40
Ta=25˚C
(pF)
(R)
10–3
3
Ct – VR
RZ
150˚C
10–2
2
Reverse voltage
(V)
VF
25˚C 100˚C
Operating resistance
IZ (mA)
0.4
103
Ta=–20˚C
10–10
RZ – IZ
1
Zener current
0.2
Forward voltage
Ambient temperature Ta (˚C)
10–1
100˚C
10–12
0
250
10–9
10–11
10–5
0
Ta=150˚C
10–8
IR
10–2
Reverse current
150
–20˚C
(A)
Ta=150˚C
(A)
IF
200
10–7
100˚C 25˚C
10–1
Forward current
Power dissipation Ptot (mW)
250
10
1
20
10
10–5
10–6
0
2
4
Zener voltage
6
8
VZ (V)
10
10–1
10–4
10–3
Zener current
10–2
IZ
(A)
10–1
0
0
1
2
3
Reverse voltage
4
VR
5
(V)
6