MCC DL4619 500mw silicon zener diode Datasheet

MCC
DL4614
THRU
DL4125
omponents
20736 Marilla Street Chatsworth
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Features
•
•
•
•
•
Zener Voltage Range = 1.8V to 47V
Double Slug Type Construction
Metallurgical Bonded Construction
Lead Free Finish/Rohs Compliant (Note1) ("P"Suffix designates
Compliant. See ordering information)
Moisture Sensitivity: Level 1
500mW Silicon
Zener Diodes
Mechanical Data
•
•
MINIMELF
Case: Double slug type, hermetically sealed glass
Marking : Cathode band and type number
Cathode Mark
Maximum Ratings
C
Max. Steady State Power
Dissipation at
TL<75OC, Lead Length=3/8”
Junction Temperature
Storage Temperature Range
Thermal Resistance, Junction
to lead @3/8" lead length
from body
Symbol
Value
Units
PD
500
mW
TJ
TSTG
175
-55 to 175
RthJL
250
Note:
A
o
C
o
C
DIMENSIONS
o
C/W
Electrical Characteristics @ 25°C Unless Otherwise Specified
Max. Forward Voltage
@ I F=200mA
B
Symbol
Maximum
Unit
VF
1.1
V
DIM
A
B
C
INCHES
MIN
.134
.008
.055
MM
MIN
3.40
.20
1.40
MAX
.142
.016
.059
MAX
3.60
.40
1.50
NOTE
∅
SUGGESTED SOLDER
PAD LAYOUT
0.105
1. Lead in Glass Exemption Applied, see EU Directive Annex 5.
0.075”
0.030”
Revision: B
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ELECTRICAL CHARACTERISTICS (TA = 25ºC unless otherwise noted, VF = 1.1 V Max @ IF = 200mA for all types)
(3)
(4)
Maximum
ReverseLeakage Current
Zener (IZM)
IR@VR
Current
Zener Voltage (2)
Device (1)
VZ (Volts) @IZT=250UA
Min
DL4614
DL4615
Nom
Max
1.71
1.90
1.8
2.0
1.89
2.10
2.09
2.2
2.31
DL4617
2.28
DL4618
2.565
2.4
2.7
2.52
2.835
DL4619
2.85
3.135
3.42
3.0
3.15
DL4616
-----
DL4620
DL4621
DL4622
DL4623
DL4624
DL4625
DL4626
-
3.465
3.6
3.78
83
3.705
4.085
3.9
4.3
4.095
80
4.515
4.465
4.845
5.32
4.7
5.1
4.935
5.355
77
75
70
5.6
6.2
5.88
6.51
65
61
6.8
7.14
7.875
8.61
56
DL4099
6.46
7.125
DL4102
DL4103
DL4104
DL4105
DL4106
DL4107
DL4108
DL4109
DL4110
DL4111
DL4112
DL4113
DL4114
DL4115
DL4116
DL4117
DL4118
DL4119
DL4120
DL4121
DL4122
DL4123
DL4124
DL4125
110
100
3.3
5.89
DL4100
120
95
90
87
85
DL4627
DL4101
mA
7.79
8.265
8.645
9.5
10.45
11.4
12.35
13.3
14.25
15.2
16.15
17.1
18.05
19
20.9
22.8
23.75
25.65
26.6
28.5
31.35
34.2
37.05
40.85
44.65
7.5
8.2
8.7
9.1
10
11
12
13
14
15
16
17
18
19
20
22
24
25
27
28
30
33
36
39
43
47
51
46
9.135
44
42
9.555
38
35
32
29
27
25
24
22
21
20
19
17
16
1
15
14
1
14
13
12
11
9.8
8.9
8.1
10.5
11.55
12.6
13.65
14.7
15.75
16.8
17.85
18.9
19.95
21
23.1
25.2
26.25
28.35
29.4
31.5
34.65
37.8
40.95
45.15
49.35
µA( Max) Volts
Zener Ipedance (5)
ZZT@IZT
ohm(Max)
1200
1250
7.5
5.0
4.0
2.0
1
1
1400
1.0
0.8
1
1500
1600
7.5
7.5
1
1
1
1.5
2
1300
1650
1700
5.0
4.0
2
2
10.0
10.0
10.0
3
1600
1550
3
1500
4
1400
10.0
10.0
10.0
1.0
5
5.17
1200
200
5.70
6.24
6.61
200
1.0
1.0
1.0
.05
.05
.05
.05
.05
.05
.05
.05
.05
.01
.01
.01
.01
.01
.01
.01
.01
.01
.01
.01
.01
1650
200
200
6.92
200
7.60
8.44
8.12
9.857
10.65
11.40
12.15
12.92
13.67
14.44
15.20
16.72
18.25
19.00
20.45
21.28
22.80
25.08
27.38
29.65
32.65
35.75
200
200
200
200
200
100
100
100
100
150
150
150
150
150
150
200
200
200
200
200
250
250
NOTES: 1. TOLERANCE AND TYPE NUMBER DESIGNATION (VZ)
The type numbers listed have a standard tolerance on the nominal zener voltage of ±5%.
2. ZENER VOLTAGE (VZ) MEASUREMENT Nominal zener voltage is measured with the device junction in the thermal equilibrium
. the lead temperature (TL) at 30°C ±1°C and 3/8” lead length.
at
3. MAXIMUM ZENER CURRENT RATINGS (IZM) This data was calculated using nominal voltages. The maximum handing current
capability on a worst case basis is limited by the actual zener voltage at the opertation piont and the power derating curve.
.
4.Reverse
Leakage Current(IR)reverse leakage current are guaranteed and measured at VR shown on the table .
5. Zener Impedance(ZZT) Derivation The Zener impedance is derived from the 60 cycle ac voltage.which results when an Ac
.
current
having an rms value to 10% of the DC zener current (IZT) is superimposed on IZT.
Revision: B
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DL4614 thru DL4125
θ VZ ,
TEMPERA TURE COEFFICIENT (mV/ °C)
Micro Commercial Components
+12
+10
+8
+6
+4
+2
RANGE
VZ @ IZT
(NOTE 2)
0
-2
-4
2
4
3
5
7
6
8
9
10
11
12
V Z , ZENER VOLTAGE (VOLTS)
Figure 1. Range for Units to 12 Volts
TEMPERATURE COEFFICIENT (mV/°C)
+6
VZ @ IZ
TA= 25 °C
+4
+2
20mA
0
0.01mA
1mA
θ VZ ,
-2
NOTE: BELOW 3 VOLTS AND ABOVE 8 VOL TS
NOTE: CHANGES IN ZENER CURRENT DO NOT
NOTE: AFFECT TEMPERATURE COEFFICIENTS
-4
3
6
5
4
8
7
V Z , ZENER VOL TAGE (VOLTS)
Figure 2. Effect of Zener Current
1000
TA = 25 ° C
500
0V BIAS
C, CAP ACIT ANCE (pF)
200
100
1V BIAS
50
20
10
50% OF
V Z BIAS
5
2
1
1
2
5
10
20
50
100
V Z, ZENER VOLTAGE (VOLTS)
Figure 3. Typical Capacitance 2.4-100 Volts
Revision: B
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MCC
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Ppk , PEAK SURGE POWER (WATTS)
100
70
50
RECT ANGULAR
WAVEFORM
T J = 25°C PRIOR TO
INITIAL PULSE
11V-91V NONREPETITIVE
30
5% DUTY CYCLE
1.8V-10V NONREPETITIVE
20
10
10% DUTY CYCLE
7
5
20% DUTY CYCLE
3
2
1
0.01
0.02
0.05
0.1
0.2
0.5
1
2
5
10
20
50
100
200
500
1000
PW, PULSE WIDTH (ms)
Figure 4. Maximum Surge Power 1.8-91 Volts
1000
Z Z , DYNAMIC IMPEDANCE (OHMS)
500
T J = 25°C
iZ (rms) = 0.1 Iz(dc)
VZ = 2.7V
f = 60 Hz
200
47V
100
27V
50
20
6.2V
10
5
2
1
0.1
0.2
0.5
1
2
5
10
20
50
100
IZ , ZENER CURRENT (mA)
Figure 5. Effect of Zener Current on
Zener Impedance
TJ = 25°C
1000
MAXIMUM
iZ (rms) = 0.1 IZ (dc)
500
f = 60Hz
IZ = 1mA
I F , FOR WARD CURRENT (mA)
Z Z , DYNAMIC IMPEDANCE (OHMS)
1000
700
500
200
100
70
50
5mA
20
20mA
10
7
5
2
MINIMUM
200
100
50
75 °C
20
10
25 °C
5 150 °C
0 °C
2
1
1
1
2
3
5
7
10
20
30
50
70 100
0.4
V Z , ZENER VOLTAGE (VOLTS)
0.6
0.7
0.8
0.9
1
1.1
V F , FOR WARD VOLTAGE (VOLTS)
Figure 6. Effect of Zener Voltage on Zener Impedance
Revision: B
0.5
Figure 7. Typical Forward Characteristics
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Ordering Information :
Device
Packing
Part Number-TP
Tape&Reel: 2.5Kpcs/Reel
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