MAX8596YETA+T Maxim Integrated Products, MAX8596YETA+T Datasheet - Page 6

IC LED DRIVR WHITE BCKLGT 8-TDFN

MAX8596YETA+T

Manufacturer Part Number
MAX8596YETA+T
Description
IC LED DRIVR WHITE BCKLGT 8-TDFN
Manufacturer
Maxim Integrated Products
Type
Backlight, White LEDr
Datasheet

Specifications of MAX8596YETA+T

Constant Current
Yes
Topology
PWM, Step-Up (Boost)
Number Of Outputs
1
Internal Driver
Yes
Type - Primary
Backlight
Type - Secondary
White LED
Frequency
1MHz
Voltage - Supply
2.6 V ~ 6 V
Voltage - Output
36V
Mounting Type
Surface Mount
Package / Case
8-TDFN Exposed Pad
Operating Temperature
-40°C ~ 85°C
Current - Output / Channel
25mA
Internal Switch(s)
Yes
Efficiency
86%
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
The high efficiency and small size of the MAX8595X/
MAX8596X make them ideally suited to drive up to nine
series-connected LEDs. These devices operate as a
boost DC-DC converter that regulates output current
rather than voltage. The MAX8595X/MAX8596X provide
even illumination by sourcing the same output current
through each LED, eliminating the need for expensive
factory calibration. The fast 1MHz internal oscillator
allows for a small inductor and small input and output
capacitors while minimizing input and output ripple.
The single analog control input (CTRL) allows easy
adjustment of LED brightness and on/off control. This
allows simple logic-level on/off control, analog voltage
control, or PWM duty-cycle control of both brightness
and shutdown. In shutdown, supply current is reduced
to a low 0.3µA (typ). A soft-start gradually illuminates
the LEDs, eliminating the inrush current during startup.
The MAX8596X has the additional feature of derating
LED current as ambient temperature rises. Above
+42°C, the CS regulation voltage is reduced at a rate of
5.5mV/°C, thus reducing the LED current.
The MAX8595X/MAX8596X attain soft-start by charging
C
rises above 1.25V, the internal MOSFET begins switch-
ing at a reduced duty cycle. When V
2.25V, the duty cycle is at its maximum. See the
Typical Operating Characteristics for an example of
soft-start operation.
The MAX8595X/MAX8596X enter shutdown when V
is less than 100mV for more than 8.2ms. In shutdown,
supply current is reduced to 0.3µA (typ) by powering
down the entire IC except for the CTRL voltage-detec-
tion circuitry. C
allowing the device to reinitiate soft-start when it is
enabled. Although the internal n-channel MOSFET does
not switch in shutdown, there is still a DC current path
between the input and the LEDs through the inductor
and Schottky diode. The minimum forward voltage of the
LED array must exceed the maximum input voltage to
ensure that the LEDs remain off in shutdown. However,
with two or more LEDs, the forward voltage is large
enough to keep leakage current low, less than 1µA
(typ). Typical shutdown timing characteristics are shown
in the Typical Operating Characteristics.
Overvoltage lockout (OVLO) occurs when V
above 38V (typ). The protection circuitry stops the inter-
High-Efficiency, 36V Step-Up Converters
with T
6
COMP
_______________________________________________________________________________________
gradually with a current source. When V
A
COMP
Derating Option for 2 to 9 White LEDs
is discharged during shutdown,
Detailed Description
Overvoltage Protection
COMP
Shutdown
Soft-Start
rises above
OUT
COMP
CTRL
is
nal MOSFET from switching and causes V
decay towards 0V. The device comes out of OVLO and
into soft-start when V
The MAX8596X limits the maximum LED current
depending on the die temperature. V
343mV up to +42°C. Once the temperature reaches
+42°C, the maximum V
the minimum 106.5mV threshold is reached at +85°C.
Due to the package’s exposed paddle, the die temper-
ature is always very close to the PC board temperature.
The temperature derating function allows the LED cur-
rent to be safely set higher at normal operating temper-
atures, thereby allowing either a brighter display or
fewer LEDs to be used for normal display brightness.
See the Typical Operating Characteristics for LED
Current vs. Ambient Temperature.
Figure 1. Functional Diagram and Typical Application Circuit
OR DIRECT
DIMMING
Ambient Temperature Derating Function
ANALOG
0.1µF
PWM
CTRL
1MHz
COMP
f
OSC
170mV
TEMP DERATE CLAMP
121kΩ
CONTROL
1.25V CLAMP OR
PWM
279kΩ
OUT
2.6V TO 6.0V
GND
100kΩ
CS
falls below 36V (typ).
8.2ms
declines by 5.5mV/°C until
IN
g
m
PROTECT
VOLTAGE
SHUTDOWN
OVER-
PGND
2.2µF
OUT
CS
LX
(MAX8596X)
CS
is limited to
0.1µF
22µH
R
13Ω
COMP
SENSE
to

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