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CONTROLLED AVALANCHE DIODE
V07
FEATURES
• Transient surge voltage protection. • Diffused-junction. Glass passivated and encapsulated.
OUTLINE DRAWING
φ 3.5 MAX (0.14)
Unit in mm(inch)
Direction of polarity
φ 0.8 (0.03)
62MIN. (2.44)
5MAX (0.2)
V07E (400V) V07G (600V) V07J (800V)
Blue Red Green
Weight: 0.35 (g)
ABSOLUTE MAXIMUM RATINGS
Items
Repetitive Peak Reverse Voltage Peak Reverse Power Average Forward Current Surge(Non-Repetitive) Forward Current I t Limit Value Operating Junction Temperature Storage Temperature
2
Type
VRRM PRM IF(AV) IFSM It Tj Tstg
2
V07E
V W A A As °C °C
2
V07G
600
29MIN. (1.14)
Type
Color of cathode band
400
Symbol(Red)
V07J
800
40( Tj = 165°C,Pulse duration 1ms Non-repetitive ) Single-phase half sine wave 180° conduction 1.3 T =90°C, Lead length = 10mm L
(
40( Without PIV, 10ms conduction, Tj = 175°C start ) 6.4( Time = 2 ~ 10ms, I = RMS value ) -65 ~ +175 -65 ~ +200
Notes
(1) Lead mounting : Lead temperature 300°C max. to 3.2mm from body for 5sec. max.. (2) Mechanical strength : Bending 90°×2 cycles or 180°×1 cycle, Tensile 2kg, Twist 90°×1 cycle.
CHARACTERISTICS(TL=25°C)
Items
Peak Reverse Current Peak Forward Voltage Reverse Recovery Time
Symbols
IRRM VFM trr
Units
µA V µs V °C/W
Min.
-
Typ.
0.6 3.0
Max.
10 1.1 -
Test Conditions
All class, Rated VRRM IFM=1.3Ap, Single-phase half sine wave 1 cycle IF=2mA, VR=-15V IRM=1.0mA, Single-phase half sine wave 1 pps, Time ≤ 5s Lead length = 10 mm
Avalanche Voltage Steady State Thermal Impedance
VAVL Rth(j-a) Rth(j-l)
VRRM -
-
1600 80 50
PDE-V07-0
Datasheet pdf - http://www.DataSheet4U.net/
Cathode band
29MIN. (1.14)
)
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V07
Forward characteristics
100
Single-phase half sine wave Conduction : 10ms 1 Cycle
Max. average forward power dissipation (Resistive or inductive load)
MAX. AVERAGE FORWARD POWER DISSIPATION (W)
2.4
DC
PEAK FORWARD CURRENT (A)
2.0
10 TL=175˚C
1.6
Single-phase ( 50Hz )
1.2
TL=25˚C
1
0.8
0.4
0.1
0
1
2
3
4
5
6
7
0
0
0.4
0.8
1.2
1.6
2.0
2.4
PEAK FORWARD VOLTAGE DROP (V)
AVERAGE FORWARD CURRENT (A)
Max. allowable ambient temperature (Resistive or inductive load)
MAX. ALLOWABLE AMBIENT TEMPERATURE (˚C)
180 160 140 120 100 80 60
L L Lead length L=10mm 20mm 25mm Single-phase half sine wave 180˚ conduction (50Hz)
Max. allowable lead temperature (Resistive or inductive load)
180
MAX. ALLOWABLE LEAD TEMPERATURE (˚C)
Single-phase half sine wave 180˚ conduction (50Hz)
160 140 120 100 80 60 40
Lead temp L L Lead length L=10mm 20mm 25mm
40 20 0 0
PC board (100x180x1.6t) Copper foil ( 5.5)
20 0 0 0.2
PC board (100x180x1.6t) Copper foil ( 5.5)
0.2
0.4
0.6
0.8
1.0
1.2
1.4
0.4
0.6
0.8
1.0
1.2
1.4
AVERAGE FORWARD CURRENT (A)
AVERAGE FORWARD CURRENT (A)
Surge forward current characteristic (Non-repetitive)
50
Surge current peak value
Typ. Reverse current vs. junction temperature
500 Note : at VRRM 100
SURGE FORWARD CURRENT (A)
10ms
40
30
Without PIV
REVERSE CURRENT (µA)
1 cycle
10
20
With PIV
1
10
0
1
10 CYCLES
100
0.1
0
50
100
150
200
JUNCTION TEMPERATURE (˚C)
PDE-V07-0
Datasheet pdf - http://www.DataSheet4U.net/
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V07
Steady-state thermal impedance
140
Transient thermal impedance
200 Lead length = 10 mm
STEADY STATE THERMAL IMPEDANCE (˚C/W)
120 100 80 Rth(j - l) 60 40 20 0
Ambient temp. measured point Lead temp. Lead measured poin length (φ0.5 thermocouple) 2 Copper foil ( 5.5)
15
Lead length
Rth(j - a)
TRANSIENT THERMAL IMPEDANCE (˚C/W)
100
Rth(j - a)
Rth(j - l) 10
1
20
PC board (100×180×1.6t)
Note : PC. board mounted PC. board( 100 × 180 × 1.6t) Copper foil ( 5.5 ) 0.1 0.001 0.01 0.1 TIME (s) 1 10 100
0
10
20
30
LEAD LENGTH (mm)
Typical reverse power characteristic (Non-repetitive)
400
Reverse recovery time ( trr ) test circuit
50µF - 15V 22µs D.U.T 2mA 15V 600Ω 0 Irp trr t 0.1Irp
PEAK REVERSE POWER (W)
100
Tj=165˚C
10 0.01
0.1
1
10
RECTANGULAR PULSE DURATION (ms)
PDE-V07-0
Datasheet pdf - http://www.DataSheet4U.net/
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HITACHI POWER SEMICONDUCTORS Notices
1.The information given herein, including the specifications and dimensions, is subject to change without prior notice to improve product characteristics. Before ordering, purchasers are adviced to contact Hitachi sales department for the latest version of this data sheets. 2.Please be sure to read "Precautions for Safe Use and Notices" in the individual brochure before use. 3.In cases where extremely high reliability is required(such as use in nuclear power control, aerospace and aviation, traffic equipment, life-support-related medical equipment, fuel control equipment and various kinds of safety equipment), safety should be ensured by using semiconductor devices that feature assured safety or by means of users’ fail-safe precautions or other arrangement. Or consult Hitachi’s sales department staff. 4.In no event shall Hitachi be liable for any damages that may.