MAX1610CSE+ Maxim Integrated, MAX1610CSE+ Datasheet

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MAX1610CSE+

Manufacturer Part Number
MAX1610CSE+
Description
LED Lighting Drivers
Manufacturer
Maxim Integrated
Datasheet

Specifications of MAX1610CSE+

Rohs
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The MAX1610/MAX1611 are fully integrated, high-
efficiency drivers for cold-cathode fluorescent lamps
(CCFLs). They operate from a 4.5V to 26V power
source. An on-board, high-switching-frequency power
MOSFET reduces external component count and mag-
netics size. The MAX1610/MAX1611 protect against
open or shorted lamps. The CCFL can be driven from
an isolated transformer secondary winding to improve
efficiency and avoid flicker at dim tube settings.
Brightness is adjusted by scaling the lamp current, or
by operating with a fixed lamp current and chopping
the CCFL on and off at a rate faster than the eye can
detect.
The MAX1610’s digital inputs increment, decrement, or
clear an internal, 5-bit up/down counter, which sets
CCFL brightness. The MAX1611 uses a System
Management Bus (SMBus) 2-wire serial interface to
directly set CCFL brightness. Both devices include
micropower shutdown and a linear regulator that elimi-
nates the need for a separate logic supply. The digital
interface remains active in shutdown, preserving the
brightness setting.
________________________Applications
19-1128; Rev 0; 9/96
For free samples & the latest literature: http://www.maxim-ic.com, or phone 1-800-998-8800
__________________________________________________________Pin Configurations
_______________General Description
Notebook/Laptop Computers
Point-of-Sale Terminals
Portable Medical Equipment
Instrument Displays
TOP VIEW
________________________________________________________________ Maxim Integrated Products
MINDAC
SHDN
SYNC
CSAV
UP
DN
CC
SS
1
2
3
4
5
6
7
8
MAX1610
Digitally Controlled CCFL Backlight
SO
16
15
14
13
12
11
10
9
BATT
LX
BST
GND
VL
CS
OTP
REF
____________________________Features
®
®
®
®
®
®
®
®
®
®
®
®
______________Ordering Information
MAX1610CSE
MAX1611CSE
Direct Digital Control of CCFL Brightness
Low Supply Current: 3mA Max Operating
Low-Voltage Operation, Down to 4.5V
Internal 26V, 0.7
Protection Against Open or Shorted Lamps
Supports Isolated Transformer Secondary
Winding
SMBus Serial Interface (MAX1611)
No Flicker at Low Brightness (internal 280Hz
current chopping)
High Power-to-Light Efficiency
Selectable 290kHz/145kHz Switching Frequency
Oscillator SYNC Input
16-Pin Narrow SO Package
PART
SMBSUS
MINDAC
SYNC
CSAV
SDA
SCL
CC
SS
1
2
3
4
5
6
7
8
Power Supplies
W
TEMP. RANGE
MAX1611
0°C to +70°C
0°C to +70°C
Power Switch
SO
20µA Max Shutdown
16
15
14
13
12
11
10
9
BATT
LX
BST
GND
VL
CS
OTP
REF
16 Narrow SO
16 Narrow SO
PIN-PACKAGE
1

Related parts for MAX1610CSE+

MAX1610CSE+ Summary of contents

Page 1

... CSAV 7 MINDAC 8 SO ________________________________________________________________ Maxim Integrated Products For free samples & the latest literature: http://www.maxim-ic.com, or phone 1-800-998-8800 ____________________________Features ® Direct Digital Control of CCFL Brightness ® Low Supply Current: 3mA Max Operating ® Low-Voltage Operation, Down to 4.5V ® Internal 26V, 0.7 ® ...

Page 2

Digitally Controlled CCFL Backlight Power Supplies ABSOLUTE MAXIMUM RATINGS BATT to GND ............................................................-0.3V to 28V BST to GND ..............................................................-0.3V to 30V BST to LX ....................................................................-0. GND ................................................-0.6V to (BATT + 0.3V GND...................................................................-0. ...

Page 3

Digitally Controlled CCFL Backlight ELECTRICAL CHARACTERISTICS (continued 0°C to +70°C, BATT = 8.2V, MINDAC = 0V, unless otherwise noted. Typical values are PARAMETER DAC AND ERROR AMPLIFIER DAC Resolution MINDAC Input Voltage Range MINDAC Input ...

Page 4

Digitally Controlled CCFL Backlight Power Supplies TIMING CHARACTERISTICS—MAX1610 (Figure +25°C, unless otherwise noted.) A PARAMETER SYMBOL UP, DN Pulse Width High t 1 UP, DN Pulse Width Low t 2 UP, DN Pulse Separation t 3 Counter ...

Page 5

Digitally Controlled CCFL Backlight __________________________________________Typical Operating Characteristics (T = +25°C, unless otherwise noted.) A REF OUTPUT VOLTAGE vs. REF OUTPUT CURRENT 2.2 SHDN = VL, BATT = 5V 2.1 2.0 1.9 1.8 1.7 1.6 1 100 1000 10000 ...

Page 6

Digitally Controlled CCFL Backlight Power Supplies ______________________________________________________________Pin Description PIN NAME MAX1610 MAX1611 1 — UP — 1 SDA 2 — DN — 2 SCL SHDN 3 — — 3 SMBSUS 4 4 SYNC ...

Page 7

Digitally Controlled CCFL Backlight Figure 1. MAX1610 UP and DN Signal Timing START CONDITION CLOCKED INTO SLAVE SCL t HD:STA SDA t SU:STA Figure 2. MAX1611 SMB Serial-Interface Timing—Address _______________________________________________________________________________________ MOST SIGNIFICANT ...

Page 8

Digitally Controlled CCFL Backlight Power Supplies • • • SCL • • • SDA Figure 3. MAX1611 SMB Serial-Interface Timing—Acknowledge _______________Detailed Description A cold-cathode fluorescent lamp (CCFL) has two termi- nals. For the CCFL to emit light, the two lamp ...

Page 9

Digitally Controlled CCFL Backlight BATT + C9 MAX1610 MAX1611 SYNC 9 REF MINDAC R6 * DIGITAL INTERFACE NOT SHOWN Figure 4. Typical Floating-Lamp Application Circuit Table 1. ...

Page 10

Digitally Controlled CCFL Backlight Power Supplies Table 2. Typical Application Circuit Component Values a) Resistors SYMBOL VALUE TOLERANCE R1 (Note) ±1% R2 510 ±10% 51k R3 ±5% 8.2k R4 ±5% 150k R5 ±5% 51k R6 ± ±10% c) ...

Page 11

Digitally Controlled CCFL Backlight FIGURE 4 CIRCUIT 15pF 462mA, R1 CCFL VL = 500V RMS BATT = 10V 0.20A, BATT MINDAC = 0.5V, D/A VALUE = 11111 5µs/div Figure 5. Royer Oscillator Typical Operating ...

Page 12

Digitally Controlled CCFL Backlight Power Supplies Open-Tube Protection (OTP) Any real transformer used in a Royer oscillator will have a maximum-allowed secondary voltage. If the maximum- allowed secondary voltage is exceeded, the winding insulation can break down, leading to permanent ...

Page 13

Digitally Controlled CCFL Backlight BATT BST DMOS POWER SWITCH LX CS CSAV CC REF MINDAC SYNC SS OTP SHDN (SMBSUS ARE FOR MAX1611 NOTE: CIRCUITRY TO DETECT MINDAC = VL NOT SHOWN. SEE CHOPPING THE LAMP CURRENT SECTION. ...

Page 14

Digitally Controlled CCFL Backlight Power Supplies MOST SIGNIFICANT ADDRESS BIT START CONDITION SCL SDA Figure 10. MAX1611 Serial-Interface Single-Byte Write Example (REGSEL = 0) MOST SIGNIFICANT ADDRESS BIT START CONDITION SCL SDA Figure 11. MAX1611 Serial-Interface Single-Byte Write Example (REGSEL ...

Page 15

Digitally Controlled CCFL Backlight SCL SDA IN LE 7-BIT LATCH-0 SMBSUS 5-BIT DAC Figure 12. MAX1611 Serial-Interface Circuitry Block Diagram ______________________________________________________________________________________ OTPOK CONTROL LOGIC 8 8-BIT SHIFT REGISTER DATA 7-BIT LATCH ...

Page 16

Digitally Controlled CCFL Backlight Power Supplies Table 4. MAX1611 Configuration Byte with REGSEL = 0 POR BIT NAME STATE* 7 REGSEL — 6 SHDNB STDBY D1-0 0 ...

Page 17

Digitally Controlled CCFL Backlight MOST SIGNIFICANT ADDRESS BIT START CONDITION SCL SDA Figure 13. MAX1611 Serial-Interface Read Example Table 6. MAX1611 Status Bits POR BIT NAME STATE* 7 OTPOK 1 6 — — 5 — — 4 DA4 3 DA3 ...

Page 18

Digitally Controlled CCFL Backlight Power Supplies minimum 9% duty cycle. DAC code 00000 shuts off the lamp entirely (0% duty cycle). Figure 14 shows the chopped waveforms with the DAC set to mid-scale. __________ Applications Information Directly Regulating the Lamp ...

Page 19

Digitally Controlled CCFL Backlight Table 7. Capacitor C1 Supplier Information PART SUPPLIER SMD7.3104 WIMA PACCOM CHEV0025J104 Electronics 4040N104M250 NOVACAP Table 8. Capacitor C2 Supplier Information PART 1808HA330KATMA AVX/Kyocera GHM1040SL330J3K Murata 302C1812A330K Metuchen Capacitors, Inc. 302R29N330K Johanson Dielectrics ___________________Chip Information TRANSISTOR ...

Page 20

... Maxim reserves the right to change the circuitry and specifications without notice at any time. implied. Maxim reserves the right to change the circuitry and specifications without notice at any time. 20 __________________Maxim Integrated Products, 120 San Gabriel Drive, Sunnyvale, CA 94086 (408) 737-7600 20 __________________Maxim Integrated Products, 120 San Gabriel Drive, Sunnyvale, CA 94086 (408) 737-7600 20 __________________Maxim Integrated Products, 120 San Gabriel Drive, Sunnyvale, CA 94086 (408) 737-7600 © ...

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