OKI 0C360

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DISCLAIMER: The information provided herein is solely for informational purposes. Customers must be aware of the suitability of this product for their application, and consider that variable factors such as Manufacturer, Product Category, Date Codes, Pictures and Descriptions may differ from available inventory.

Working Peak Reverse Voltage: 5.0 - 170 Volts
Power Dissipation: 3000 Watts
TV30C5V0 Thru TV30C171
Features
Ideal for surface mount applications
Easy pick and place
Plastic package has Underwriters Lab.
flammability classification 94V-0
Typical IR less than 1uA above 10V
Fast reponse time: typically less 1nS for
uni-direction, less than 5nS for bi-
directiona, from 0 V to BV min.
Mechanical data
Case: JEDEC DO-214AB molded plastic
Terminals: solderable per MIL-STD-750,
method 2026
Polarity: Cathode band denoted
Mounting position: Any
Approx. Weight:0.21 gram
SMD Transient Voltage SuppressorSMD Transient Voltage Suppressor
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Maximum Ratings and Electrical Characterics
Rating at 25 C ambient temperature unless otherwise specified.
Single phase, half wave, 60Hz, resistive or inductive load.
For capacitive load, derate current by 20%
MDS0211017A
Page 1
Characteristics
Peak Power Dissipation on 10/1000uS
Waveform (Note 1, Fig. 1)
Peak Pulse Current of on 10/1000uS
Waveform (Note 1, Fig. 3)
Steady State Power Dissipation at
TL=75 C (Note 2)
Peak Forfard Surge Current, 8.3mS Single
Half Sine-Wave Superimposed on Rated
Load, Uni-Directional Only (Note 3)
Maxinum Instantaneous Forward Voltage
at 100A for Uni-Directional only
(Note 3 & 4)
Operation Junction Temperature Range
Storage Temperature Range
Symbol
PPPM
IPPM
PM(AV)
IFSM
VF
Tj
TSTG
Note: 1. Non-Repetitive Current Pulse, per Fig. 3 and Derated above TA=25 C, per Fig. 2.
2. Mounted on 8.0x8.0 mm . Copper Pads to Each Terminal.
3. Measured on 8.3 mS Single Half Sine-Wave or Equivalent Square Wave, Duty Cycle=4 Pulse per Minute Maximum.
4. VF=3.5V on TV30C5V0 thru TV30C900 Devices and VF=5.0V on TV30C101 thru TV30C171.
Value
3000
See Table 1
5.0
250
3.5/5.0
-55 to +150
-55 to +150
Units
Watts
A
Watts
A
Volts
C
C
SMC/DO-214AB
Dimensions in inches and (millimeter)
0.008(0.20)
0.0203(0.10)
0.124(3.15)
0.108(2.75)
0.103(2.62)
0.079(2.00)
0.050(1.27)
0.030(0.76)
0.245(6.22)
0.220(5.59)
0.280(7.11)
0.260(6.60)
0.012(0.31)
0.006(0.15)
0.320(8.13)
0.305(7.75)
Rating and Characteristic Curves (TV30C5V0 Thru TV30C171)
Fig. 1 - Reverse Characteristics
Fig. 2 - Pulse Derating Curve
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COMCHIPCOMCHIP
0.1 1.0 10 100 1000 10000
MDS0211017A
Page 2
SMD Transient Voltage SuppressorSMD Transient Voltage Suppressor
100
10
1.0
0.1
Non-Repetitive
Pulse Waveform
Shown in Fig. 3
TA=25 C
Mounted on 8mmx8mm
Copper Pads
Pulse Width, td (uS)
Peak Pulse Power, PPPM (KW)
0 25 50 75 100 125 150 175
Ambient Temperature,TA ( C)Ambient Temperature,TA ( C)
Peak pulse Power (Ppp) or Current (Ipp)
Derating in Percent (%)
140
120
100
80
60
40
20
0
Fig. 4 - Typical Junction Capacitance
Junction Capacitance, Cj (pF)
Breakdown Voltage,VBR (Volts)
100,000
10,000
1000
100
5.0 10 100 500
Tj=25 C
f=1.0MHz
Vsig=50mVp-p
Fig. 6 - Maxinum Non-Repetitive Peak
Forward Surge Current (Uni-
Directional Only)
Peak Forward Surge Current, IFSM (A)
350
300
250
200
150
100
50
0
1 10 100
Number of Cycle at 60Hz
Mounted on
5mmx5mm
Copper pads
Fig. 3 - Pulse Waveform
Time, t (mS)
0 1.0 2.0 3.0 4.0
125
100
75
50
25
0
Pulse Width (td) is Defined
as the Point Where the peak
Current Decay to 50% of Ipp
Peak Value IPPM
Half Value Ipp/2
10/1000 uS Waveform
as Defined by R.E.A.
Peak Pulse Current, IPPM ( %)
tr =10uS
Fig. 5 - Steady State Power Derating Curve
Leadt Temperature,TL ( C)
Steady State Power Dissipation,
PM(AV), Watts
60Hz
Resistive or
Inductive
Load
Mounted on
8mmx8mm
Copper pads
7.0
6.0
5.0
4.0
3.0
2.0
1.0
0
0 25 50 75 100 125 150 175
Uni-Directional
Bi-Directional
Measure at
Zero Bias
Measure at
Standard-off
Voltage, Vwm
8.3mS Single Half Sine-Wave
(JEDEC Method) Tj=Tjmax
SMD Transient Voltage SuppressorSMD Transient Voltage Suppressor
www.comchip.com.tw
COMCHIPCOMCHIP
Table 1. Specification
MDS0211017A
Page 3
Part No. VRWM VBR Min VBR Max IT IFSM IR @VRWM
( V ) ( V ) ( V ) ( mA ) (A) @8 .3mS ( V ) Ipp(A) ( uA ) UNI BI
TV30C5V0K(B) 5.00 6.40 7.55 10 250 9.6 312.5 1000 HDD IDD
TV30C5V0J(B) 5.00 6.40 7.25 10 250 9.2 326.0 1000 HDE IDE
TV30C6V0K(B) 6.00 6.67 8.45 10 250 11.4 263.2 1000 HDF IDF
TV30C6V0J(B) 6.00 6.67 7.67 10 250 10.3 291.3 1000 HDG IDG
TV30C6V5K(B) 6.50 7.22 9.14 10 250 12.3 243.9 500 HDH IDH
TV30C6V5J(B) 6.50 7.22 8.30 10 250 11.2 267.9 500 HDK IDK
TV30C7V0K(B) 7.00 7.78 9.86 1 250 13.3 225.6 200 HDL IDL
TV30C7V0J(B) 7.00 7.78 8.95 1 250 12.0 250.0 200 HDM IDM
TV30C7V5K(B) 7.50 8.33 10.67 1 250 14.3 209.8 100 HDN IDN
TV30C7V5J(B) 7.50 8.33 9.58 1 250 12.9 232.6 100 HDP IDP
TV30C8V0K(B) 8.00 8.89 11.30 1 250 15.0 200.0 50 HDQ IDQ
TV30C8V0J(B) 8.00 8.89 10.23 1 250 13.6 220.6 50 HDR IDR
TV30C8V5K(B) 8.50 9.44 11.9 1 250 15.9 188.8 25 HDS IDS
TV30C8V5J(B) 8.50 9.44 10.8 1 250 14.4 208.4 25 HDT IDT
TV30C9V0K(B) 9.00 10.00 12.6 1 250 16.9 177.4 10 HDU IDU
TV30C9V0J(B) 9.00 10.00 11.5 1 250 15.4 194.8 10 HDV IDV
TV30C100K(B) 10.00 11.10 14.1 1 250 18.8 159.6 5 HDW IDW
TV30C100J(B) 10.00 11.10 12.8 1 250 17.0 176.4 5 HDX IDX
TV30C110K(B) 11.00 12.20 15.4 1 250 20.1 149.2 5 HDY IDY
TV30C110J(B) 11.00 12.20 14.0 1 250 18.2 184.8 5 HDZ IDZ
TV30C120K(B) 12.00 13.30 16.9 1 250 22.0 136.4 5 HED IED
TV30C120J(B) 12.00 13.30 15.3 1 250 19.9 150.6 5 HEE IEE
TV30C130K(B) 13.00 14.40 18.2 1 250 23.8 126.0 5 HEF IEF
TV30C130J(B) 13.00 14.40 16.5 1 250 21.5 139.4 5 HEG IEG
TV30C140K(B) 14.00 15.60 19.8 1 250 25.8 116.2 5 HEH IEH
TV30C140J(B) 14.00 15.60 17.9 1 250 23.2 129.4 5 HEK IEK
TV30C150K(B) 15.00 16.70 21.1 1 250 26.9 111.6 5 HEL IEL
TV30C150J(B) 15.00 16.70 19.2 1 250 24.4 123.0 5 HEM IEM
TV30C160K(B) 16.00 17.80 22.6 1 250 28.8 104.2 5 HEN IEN
TV30C160J(B) 16.00 17.80 20.5 1 250 26.0 115.4 5 HEP IEP
TV30C170K(B) 17.00 18.90 23.9 1 250 30.5 98.4 5 HEQ IEQ
TV30C170J(B) 17.00 18.90 21.7 1 250 27.6 106.6 5 HER IER
TV30C180K(B) 18.00 20.00 25.3 1 250 32.2 93.2 5 HES IES
TV30C180J(B) 18.00 20.00 23.3 1 250 29.2 102.8 5 HET IET
TV30C200K(B) 20.00 22.20 28.1 1 250 35.8 83.8 5 HEU IEU
TV30C200J(B) 20.00 22.20 25.5 1 250 32.4 92.6 5 HEV IEV
TV30C220K(B) 22.00 24.40 30.9 1 250 39.4 76.2 5 HEW IEW
TV30C220J(B) 22.00 24.40 28.0 1 250 35.5 84.4 5 HEX IEX
TV30C240K(B) 24.00 26.70 33.8 1 250 43.0 69.8 5 HEY IEY
TV30C240J(B) 24.00 26.70 30.7 1 250 38.9 77.2 5 HEZ IEZ
TV30C260K(B) 26.00 28.90 36.6 1 250 46.6 64.4 5 HFD IFD
TV30C260J(B) 26.00 28.90 33.2 1 250 42.1 71.2 5 HFE IFE
TV30C280K(B) 28.00 31.10 39.4 1 250 50.0 60.0 5 HFF IFF
TV30C280J(B) 28.00 31.10 35.8 1 250 45.4 66.0 5 HFG IFG
TV30C300K(B) 30.00 33.30 42.2 1 250 53.5 56.0 5 HFH IFH
TV30C300J(B) 30.00 33.30 38.3 1 250 48.4 62.0 5 HFK IFK
TV30C330K(B) 33.00 36.70 46.5 1 250 59.0 50.4 5 HFL IFL
TV30C330J(B) 33.00 36.70 42.2 1 250 53.3 56.2 5 HFM IFM
TV30C360K(B) 36.00 40.00 50.7 1 250 64.3 46.6 5 HFN IFN
TV30C360J(B) 36.00 40.00 46.0 1 250 58.1 51.6 5 HFP IFP
TV30C400K(B) 40.00 44.40 56.3 1 250 71.4 42.0 5 HFQ IFQ
TV30C400J(B) 40.00 44.40 51.1 1 250 64.5 46.4 5 HFR IFR
TV30C430K(B) 43.00 47.80 60.5 1 250 76.7 39.2 5 HFS IFS
TV30C430J(B) 43.00 47.80 54.9 1 250 69.4 43.2 5 HFT IFT
TV30C450K(B) 45.00 50.00 63.3 1 250 80.3 37.4 5 HFU IFU
TV30C450J(B) 45.00 50.00 57.5 1 250 72.7 41.2 5 HFV IFV
Max Vc Marking Code
Absolute Maximum R ating ( Ta=25 C ) Electrical Characteristics ( Ta=25 C )
12NEXT

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