IRS2153 IRF [International Rectifier], IRS2153 Datasheet

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IRS2153

Manufacturer Part Number
IRS2153
Description
SELF-OSCILLATING HALF-BRIDGE DRIVER IC
Manufacturer
IRF [International Rectifier]
Datasheet

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Features
Description
The IRS2153(1)D is based on the popular IR2153 self-
oscillating half-bridge gate driver IC using a more
advanced silicon platform, and incorporates a high
voltage half-bridge gate driver with a front end oscillator
similar to the industry standard CMOS 555 timer. HVIC
and latch immune CMOS technologies enable rugged
monolithic construction. The output driver features a high
pulse current buffer stage designed for minimum driver
cross-conduction. Noise immunity is achieved with low
di/dt peak of the gate drivers.
Typical Connection Diagram
Integrated 600 V half-bridge gate driver 
C
15.4 V Zener clamp on V
Micropower startup
Non-latched shutdown on C
Internal bootstrap FET
Excellent latch immunity on all inputs and outputs
+/- 50 V/ns dV/dt immunity
ESD protection on all pins
8-lead SOIC or PDIP package
Internal deadtime
T
, R
T
programmable oscillator
+ AC Rectified Line
- AC Rectified Line
CVCC
RVCC
CC
T
pin (1/6th V
SELF-OSCILLATING HALF-BRIDGE DRIVER IC
CT
RT
COM
VCC
RT
CT
1
2
3
4
CC
)
Product Summary
Package
8
7
6
5
IRS2153(1)DPbF
VB
VS
Driver source/sink
HO
LO
Duty cycle
Deadtime
PDIP8
current
V
V
CBOOT
OFFSET
clamp
IRS2153(1)D(S)PbF
MLS
MHS
Data Sheet No. PD60238 revE
L
IRS2153(1)DSPbF
0.6 µs typ. (IRS21531D)
1.1 µs typ. (IRS2153D)
RL
180 mA/260 mA typ.
15.4 V typ.
600 V Max
SO8
50%
1

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IRS2153 Summary of contents

Page 1

... ESD protection on all pins 8-lead SOIC or PDIP package Internal deadtime Description The IRS2153(1)D is based on the popular IR2153 self- oscillating half-bridge gate driver IC using a more advanced silicon platform, and incorporates a high voltage half-bridge gate driver with a front end oscillator similar to the industry standard CMOS 555 timer. HVIC and latch immune CMOS technologies enable rugged monolithic construction ...

Page 2

... V. Please note that this supply pin should not be driven by a DC, low impedance power source greater than the V Definition ≤ +25 ºC, 8-Pin DIP A ≤ +25 ºC, 8-Pin SOIC A specified in the Electrical Characteristics section. CLAMP IRS2153(1)D Min. Max. Units -0.3 625 ...

Page 3

... IC to keep the internal 15.6 V zener diode CC Component ( and °C, CLO = CHO = 1 nF Frequency vs. RT 10,000 100,000 RT (Ohm) For further information, see Fig. 12. IRS2153(1)D Min. Max. Units CLAMP -3.0 (Note 2) 600 V +0 CCUV + CC CLAMP (Note 3) 5 ...

Page 4

... °C unless otherwise specified. The output voltage and current (V A Min 10.0 8.0 1.6 supply current --- CC --- --- 14.4 --- 8.0 7.0 --- 18.4 88 --- --- 0.20 --- --- 2.2 --- - --- --- --- --- --- - --- IRS2153(1)D and I parameters are ) O O Test Conditions Typ Max Units 11.0 12.0 V 9.0 10.0 2.0 2.4 130 170 ≤ µA 800 1000 1.8 --- 36.9 kΩ T 15.4 16 µ ...

Page 5

... V Low-level output voltage OL V UV-mode output voltage OL_UV Output rise time t r Output fall time t f Shutdown propagation delay t sd Output deadtime (HO or LO) (IRS2153D Output deadtime (HO or LO) (IRS21531D Output source current O+ I Output sink current O- Bootstrap FET Characteristics V V when the bootstrap FET is on ...

Page 6

... T C Oscillator timing capacitor input T COM IC power and signal ground LO Low-side gate driver output V High voltage floating supply return S HO High-side gate driver output V High side gate driver floating supply B VCC COM Lead Description IRS2153(1)D 6 ...

Page 7

... Functional Block Diagram R R DETECT LEVEL SHIFT DEAD PULSE TIME GEN DEAD TIME Q IRS2153(1 PULSE FILTER S BOOTSTRAP DRIVE 15.4V DELAY VCC COM 7 ...

Page 8

... Timing Diagram Operating Mode VCCUV+ VCC 2/3 VCC VCT 1/3 VCC 1/6 VCC VCC LO DT VCC HO VCC VRT IRT Switching Time Waveform DTLO 90% HO IRS2153(1)D Fault Mode: CT <1/6*VCC Deadtime Waveform 90% 10% DTHO 10% 8 ...

Page 9

... VCC the start-up current drawn by the IC. This resistor is chosen to provide sufficient current to supply the IRS2153(1)D from the DC bus. C should be large enough to hold the voltage at Vcc VCC above the UVLO threshold for one half cycle of the line voltage as it will only be charged at the peak, typically 0 ...

Page 10

... VCC(V) FREQ vs VCC Fig. 3 1.4 1.3 1.2 1 VCC( VCC Fig. 5 (IRS2153D 120 Frequency(kHz) Tj vs. Frequency (SOIC) Fig. 7 100 - Temperature(C) FREQ vs TEMP Fig. 4 1.25 1.15 1.05 0.95 0.85 0.75 - Temperature( TEMP Fig ...

Page 11

... With External BS diode 125 100 T=25°C, VS=0V, CHO = 1nF VCC=14V, CHO=1nF, VS=0V Fre que ncy (k Hz) T=25c T=75c Fig. 13 IRS2153(1)D IsinkLO IsourceLO 100 125 Temperature(C) Fig external BS diode 150 200 250 300 350 400 Frequency (kHz) Fig. 12 T=125c ...

Page 12

... IRS2153(1)DPbF IRS2153(1)DSPbF IRS2153(1)D 12 ...

Page 13

... G H REEL DIMENSIONS FOR 8SOICN Metric Code Min Max A 329.60 330.25 B 20.95 21.45 C 12.80 13.20 D 1.95 2.45 E 98.00 102.00 F n/a 18.40 G 14.50 17.10 H 12.40 14.40 IRS2153(1 Imperial Min Max 0.311 0.318 0.153 0.161 0.46 0.484 0.214 0.218 0.248 0.255 0.200 0.208 0.059 n/a 0.059 0.062 D A Imperial Min Max 12.976 13 ...

Page 14

... PDIP IRS2153DPbF 8-Lead PDIP IRS21531DPbF 8-Lead SOIC IRS2153DSPbF 8-Lead SOIC IRS21531DSPbF 8-Lead SOIC Tape & Reel IRS2153DSTRPbF 8-Lead SOIC Tape & Reel IRS21531DSTRPbF This product has been designed and qualified for the industrial level. Qualification standards can be found at IR WORLD HEADQUARTERS: 233 Kansas St., El Segundo, California 90245, Tel: (310) 252-7105 Data and specifications subject to change without notice ...

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