IR2130
International iwR Rectifier
Vbias (Vcc, Vbsi,2,3) = 15V, Vso,l,2,3 = Vss, Cl = 1000 pF and Ta = 25SC unless otherwise specified.The dynamie electrical characteristics are defined in Figures 3 through 5.
Symbol |
Parameter Definition |
Figurę |
Min. |
Value Typ. |
Max. |
Units |
Test Conditions |
ten |
Turn-On Propagation Delay |
11 |
500 |
675 |
850 |
ns |
v,N = 0 & 5V Vs 1.2.3 = 0 to 600V |
Wf |
Turn-Off Propagation Delay |
12 |
300 |
425 |
550 | ||
V |
Turn-On Rise Time |
13 |
— |
80 |
125 | ||
tf |
Turn-Off Fali Time |
14 |
— |
35 |
55 | ||
Htrio |
ITRIP to Output Shutdown Prop. Delay |
15 |
400 |
660 |
920 |
V|N. VITRip=0&5V | |
t« |
ITRIP Blanking Time |
— |
— |
400 |
— |
VITRIP ~ W | |
tfi- |
ITRIP to FAULT Indication Delay |
16 |
335 |
590 |
845 |
V,N. VITRIP = 0 & 5V | |
tfltin |
Input Filter Time (All Six Inputs) |
— |
— |
310 |
— |
V|N = 0 & 5V | |
tfltdr |
LIN1,2,3 to FAULT Clear Time |
17 |
6.0 |
9.0 |
12.0 |
MS |
V|n- VITRIP = 0 & 5V |
DT |
Deadtime |
18 |
1.3 |
2.5 |
3.7 |
V,N = 0 & 5V | |
SR+ |
Operational Amplifier Siew Ratę (+) |
19 |
4.4 |
6.2 |
— |
V/ps | |
SR- |
Operational Amplifier Siew Ratę (-) |
20 |
2.4 |
3.2 |
— |
Static Electrical Characteristics
vbias (Vcc. VBS1,2,3)= 15V- vso. 1,2,3 = vss andTA = 25®C unless otherwise specified.The V|N, VTH and l|N parameters are referenced to Vssand are applicable to all six logie input leads: HIN1.2.3 & LIN 1,2,3.The Voand lo parameters are referenced to Vso 1 2.3 and are applicable to the respective output leads: H01.2.3 or L01.2.3.
Symbol |
Parameter Definition |
Figurę |
Min. |
Value Typ. |
Max. |
Units |
Test Conditions |
V|H |
Logic “0" Input Voltage (OUT = LO) |
21 |
2.2 |
— |
— |
V | |
V,L |
Logic “1" Input Voltage (OUT = HI) |
22 |
— |
— |
0.8 | ||
V|T.TH+ |
ITRIP Input Positive Going Threshold |
23 |
400 |
490 |
580 |
mV | |
Voh |
High Level Output Voltage. VRIAc; - VO |
24 |
— |
— |
100 |
V,M = 0V, lo = 0A | |
VoL |
Low Level Output Voltage, Vo |
25 |
— |
— |
100 |
Vin = 5V, ta = 0A | |
Ilk |
Offset Supply Leakage Current |
26 |
— |
— |
50 |
ma |
VB = Vs = 600V |
Iqbs |
Ouiescent VBs Supply Current |
27 |
— |
15 |
30 |
V|N = 0V or 5V | |
Iqcc |
Ouiescent VCc Supply Current |
28 |
— |
3.0 |
4.0 |
mA |
V|N = 0V or 5V |
•lN+ |
Logic “1" Input Bias Current (OUT = HI) |
29 |
— |
450 |
650 |
uA |
< Z II |
l|N- |
Logic “0” Input Bias Current (OUT = LO) |
30 |
— |
225 |
400 |
V,n=5V | |
l|TRIP+ |
“High” ITRIP Bias Current |
31 |
— |
75 |
150 |
ITRIP = 5V | |
llTRIP- |
“Low" ITRIP Bias Current |
32 |
— |
— |
100 |
nA |
ITRIP = 0V |
VBSUV+ |
VBs Supply Undervoltage Positive Going Threshold |
33 |
7.5 |
8.35 |
9.2 |
V | |
VBSUV- |
VBS Supply Undervoltage Negative Going Threshold |
34 |
7.1 |
7.95 |
8.8 | ||
Vccuv+ |
VCc Supply Unden/oltage Positive Going Threshold |
35 |
8.3 |
9.0 |
9.7 | ||
Vccuv- |
Vcc Supply Undervoltage Negative Going Threshold |
36 |
8.0 |
8.7 |
9.4 | ||
RonFLT |
FAULT Lew On-Resistance |
37 |
— |
55 |
75 |
£2 |
CONTROL INTEGRATED CIRCUIT DESIGNERS' MANUAŁ B-137