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PDF OZ960 Data sheet ( Hoja de datos )

Número de pieza OZ960
Descripción Intelligrnt CCFL Inverter Controller
Fabricantes O2Micro 
Logotipo O2Micro Logotipo



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OZ960
Intelligent CCFL Inverter Controller
FEATURES
Supports wide-range voltage input
applications (8v to 20v)
Built-in intelligence to manage ignition and
normal operation of CCFLs
Reduces the number of components and
board size by 30% compared with
conventional designs
85% efficiency vs. typical 70% efficiency of
conventional designs
Zero-voltage-switching full bridge topology
Built-in internal open-lamp and over-voltage
protections
Integrated burst mode control, and wide
dimming range (10% to 100%) with
integrated burst mode control
Supports multiple CCFL lamps
Simple and reliable 2-winding transformer
design
Constant-frequency design eliminates
interference with LCDs
Low stand-by power
ORDERING INFORMATION
OZ960S - 20-pin plastic SSOP 150mil
OZ960IS - 20-pin plastic SSOP 150mil
OZ960G - 20-pin plastic SOP 300mil
OZ960IG - 20-pin plastic SOP 300mil
OZ960D - 20-pin plastic DIP 300mil
OZ960ID - 20-pin plastic DIP 300mil
GENERAL DESCRIPTION
The OZ960 is a unique, high-efficiency, Cold
Cathode Fluorescent Lamp (CCFL) backlight
inverter controller that is designed for wide input
voltage inverter applications. Additionally, the
OZ960 performs the lamp dimming function with
an analog voltage or low frequency Pulse Width
Modulation (PWM) control.
Operating Principle:
Operating in a zero-voltage switching, full-bridge
configuration, the inverter circuit achieves a very
high efficiency power conversion. In addition, the
transformer in the OZ960 does not require any
specific gap-less arrangement. The simple, low
cost transformer provides designers a high
degree of design flexibility in specifying
transformers. Setting the switching frequency
higher than the resonant frequency of a high-
quality-factor resonant tank circuit yields a good-
quality waveform received, at the CCFL voltage
and current.
The OZ960 operates at a single, constant
frequency in a phase-shift PWM mode. Intelligent
open-lamp and over-voltage protections provide
design flexibility so various transformer
models/manufacturers may be used. The built-in
burst mode control provides a wide dimming
range and simplifies the application circuit
designs. Both operating and burst-mode
frequencies are user-programmable parameters.
The single stage design results in a low cost,
reliable transformer without expensive, less
reliable secondary fold-back treatment. The
transformer does not require a more expensive
center tapped primary.
The OZ960 is available in a 20-pin SSOP
package. It is specified over the commercial
temperature range of 0°C to +70°C, and the
industrial temperature range of -40°C to +85°C.
FUNCTIONAL BLOCK
DIAGRAM
Refer to the functional block diagram in Figure 2,
page 3, and the Pin Description Table on page 4.
A precision reference provides a reference
voltage for both internal and external uses. An
oscillator circuit generates a user-programmable
operating frequency with an external capacitor
and a timing resistor. In addition, another resistor
to program striking frequency is provided. The
drive circuit consists of four outputs. These are
designed to achieve zero-voltage switching, full-
bridge applications. An error amplifier is provided
to regulate the CCFL current. The Soft-start
circuit offers a gradual increase of the power to
the CCFL during the ignition period. The over-
voltage protection block offers a regulated
striking voltage for CCFLs. The striking time is
programmable simply through an external
component. The open-lamp protection is
integrated in the protection block. This block
intelligently differentiates the striking condition
and open-lamp condition. ENA circuitry enables
the operation of the IC through a TTL signal
interface. Wide-dimming control is achieved
through the burst-mode control block.
10/23/01
Copyright 2000 - 01 by O2Micro
OZ960-DS-1.6
All Rights Reserved
Page 1
U.S. Patent #6,259,615

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OZ960 pdf
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FUNCTIONAL SPECIFICATIONS
OZ960
Parameter
Reference Voltage
Nominal voltage
Line regulation
Load regulation
High Frequency Oscillator
Initial accuracy
Ramp peak
Ramp valley
Temp. stability
Low Frequency Oscillator
Initial accuracy
Ramp peak
Ramp valley
Low Frequency PWM
Duty Cycle Range
Error Amplifier
Input offset voltage
Input voltage range
Offset current at FB pin
Reference voltage at non-
inverting input pin (internal)
Open loop voltage gain
Unity gain bandwidth
Power supply rejection
Threshold
Over Voltage Protection
Supply
Supply current
Supply current
SST current
CTIMR current
NDR-PDR Output
Output resistance
Output resistance
Symbol
Vref
fosc
VADJ
IOFF
ION
Rp
Rn
Test Conditions
VDDA=5V; Tamb = 25oC
Iload = 0.1mA
VDDA = 4.7V – 5.3V
Iload = 0.025 mA to 0.25 mA
CT = 100pF, RT = 120k(1)
TA = 0 oC to 70oC
ENA = low
ENA = high; VDDA = 5V;
Vdim = 2V; LPWM = 50k(2)
Ca=Cb=Cc=Cd=2nF(3)
HF = 60kHz; LF = 185Hz
Current source
Current sink
Limits
Min Typ
Max
Unit
2.37 2.5
-4
-2
2.63
-
-
V
mV/V
mV/mA
53 57
- 3.0
- 1.0
- 200
60 KHz
-V
-V
- ppm/ oC
See Table 1, page 6
2.85 3.0
3.15
V
0.94 1.0
1.06
V
0-
100 %
-7
- mV
0 - VDD-1.5V V
- - 100 nA
1.19 1.25
1.31
V
- 80
- 1.0
- 60
- dB
- MHz
- dB
1.90 2
2.15
V
- 150 200 µA
- 4.4 5.5 mA
See Table 1, page 6
See Table 1, page 6
- 27
- 14
-
-
OZ960-DS-1.6
Page 5

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OZ960 arduino
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PACKAGE INFORMATION (DIP 300mil)
D
OZ960
0.018typ.
0.060typ.
H SEATING
PLANE
0.100typ.
SYMBOL
A
A1
A2
D
E
E1
L
eB
θ
MIN NOR MAX
- - 0.210
0.015
-
-
0.125 0.130 0.135
0.98 1.030 1.060
0.300 BSC
0.245 0.250 0.255
0.115 0.130 0.150
0.335 0.355 0.375
0° 7° 15°
NOTES:
1. JEDEC OUTLINE: MS-001 AD
2. “D”, “E” DIMENSIONS DO NOT INCLUDE MOLD FLASH OR PROTRUSIONS.MOLD FLASH OR PROTRUSIONS
SHALL NOT EXCEED .010 INCH
3. eB IS MEASURED AT THE LEAD TIPS WITH THE LEADS UNCONSTRAINED.
4. POINTED OR ROUNDED LEAD TIPS ARE PREFERRED TO EASE INSERTION.
5. DISTANCE BETWEEN LEADS INCLUDING DAM BAR PROTRUSIONS TO BE .005 INCH MINIMUM.
6. DATUM PLANE H COINCIDENT WITH THE BOTTOM OF LEAD, WHERE LEAD EXITS BODY.
OZ960-DS-1.6
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