MAX6948B MAXIM [Maxim Integrated Products], MAX6948B Datasheet

no-image

MAX6948B

Manufacturer Part Number
MAX6948B
Description
High-Efficiency PWM LED Driver with Boost Converter and Five Constant-Current GPIO Ports
Manufacturer
MAXIM [Maxim Integrated Products]
Datasheet

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
MAX6948B-SMP
Manufacturer:
ATMEL
Quantity:
2 670
Converter and Five Constant-Current GPIO Ports
The MAX6948B general-purpose input/output (GPIO)
peripheral drives a series string of white LEDs (WLEDs),
and contains up to five general-purpose input/output
(GPIO) ports to drive additional LEDs.
The integrated 2MHz boost converter minimizes the size
and cost of external components and supplies 30mA of
load current at up to 28V. The converter is stable under
all load conditions from 5V up to 28V and includes
open-circuit detection to prevent damage to the IC. An
I
signal enables 1024 levels of WLED intensity.
The five GPIO ports function as logic inputs, open-
drain logic outputs, or constant-current sinks in any
combination. Ports withstand 5.5V independent of the
MAX6948B’s supply voltage. Two of the ports drive addi-
tional LEDs up to 30mA/port, while the other three ports
drive LEDs at up to 10mA/port. The MAX6948B features
shutdown and standby modes for low-power dissipa-
tion. The constant-current drivers contain programmable
PWM outputs and allow staggering to reduce the input
peak-current requirements. The I/O ports also feature
ramp-up and ramp-down controls.
The MAX6948B features a single input to select from four
I
the five GPIO ports is identical to the MAX6946/MAX6947
I/O expanders.
The MAX6948B is available in a 25-bump (2.31mm x
2.31mm) WLP package for cell phones, PDAs, and
other portable consumer electronic applications. The
MAX6948B operates over the -40NC to +105NC tempera-
ture range.
For pricing, delivery, and ordering information, please contact Maxim Direct at 1-888-629-4642,
or visit Maxim’s website at www.maxim-ic.com.
19-4935; Rev 0; 9/09
2
2
C-programmable 10-bit pulse-width modulation (PWM)
C slave addresses. Programming and functionality for
LED Backlighting for LCDs
Cell Phones
PDAs
Handheld Games
Portable Consumer Electronics
High-Efficiency PWM LED Driver with Boost
_______________________________________________________________ Maxim Integrated Products 1
General Description
Applications
S 28V Step-Up DC-DC Converter with Integrated
S Built-In 10-Bit PWM Control for Improved Efficiency
S No Discharge Path During PWM Off Period for
S Fixed 2MHz Switching for Smaller Components
S ±8kV Human Body Model (HBM) ESD Protection
S Five Open-Drain GPIOs Capable of Constant-
S 2.7V to 5V Power-Supply Operation
S 400kbps, 5.5V Tolerant I
S Four I
S RST Input Clears Serial Interface and Exits
S Small (2.31mm x 2.31mm) WLP Package
+Denotes a lead(Pb)-free/RoHS-compliant package.
MAX6948BGWA+
nMOS Power Switch
Increased Battery Life
Drives up to 6 Series WLEDs
for GPIOs and Boost-Converter Output
Current LED Drive with Individual 8-Bit PWM
Intensity Control
Shutdown (Reset-Run Option)
2.2FF
2.7V TO 5.0V
PART
2
C Slave Address Choices
0.1FF
47nF
Typical Operating Circuit
10µH
1.7V TO V+
NOTE: R
-40NC to +105NC
TEMP RANGE
Ordering Information
LX
V+
SCL
SCL
SDA
SDA
RST
RST
V
COMP
AD0
B
DD
= 0.2V/I
MAX6948B
GND
2
LED
C Interface
LEDSW
PGND
= 0.2V/0.03A = 6.7I.
OUT
FB
P0
P1
P2
P3
P4
R
B
PIN-PACKAGE
Features
B
G
R
0.22FF
25 WLP
V
EXT

Related parts for MAX6948B

MAX6948B Summary of contents

Page 1

... The constant-current drivers contain programmable PWM outputs and allow staggering to reduce the input peak-current requirements. The I/O ports also feature ramp-up and ramp-down controls. The MAX6948B features a single input to select from four slave addresses. Programming and functionality for the five GPIO ports is identical to the MAX6946/MAX6947 I/O expanders ...

Page 2

High-Efficiency PWM LED Driver with Boost Converter and Five Constant-Current GPIO Ports ABSOLUTE MAXIMUM RATINGS V+ to GND ...............................................................-0. COMP to GND ....................................-0.3V to (V+ + 0.3V) DD PGND to GND ......................................................-0.3V to +0. ...

Page 3

High-Efficiency PWM LED Driver with Boost Converter and Five Constant-Current GPIO Ports ELECTRICAL CHARACTERISTICS (continued) (Typical Application Circuit 2.7V to 5.0V 3.3V 2.5V +25NC.) (Note PARAMETER SYMBOL Change ...

Page 4

High-Efficiency PWM LED Driver with Boost Converter and Five Constant-Current GPIO Ports ELECTRICAL CHARACTERISTICS (continued) (Typical Application Circuit 2.7V to 5.0V 3.3V 2.5V +25NC.) (Note PARAMETER SYMBOL BOOST ...

Page 5

High-Efficiency PWM LED Driver with Boost Converter and Five Constant-Current GPIO Ports TIMING CHARACTERISTICS (Typical Application Circuit 2.7V to 5.0V 3.3V 2.5V +25NC.) (Note PARAMETER SYMBOL Internal Boost-Converter ...

Page 6

... STANDBY CURRENT I vs. V+ RST 4 +105NC 3 +25NC 2 +85NC -40NC 1 0 5.00 2.70 3.16 3.62 4.08 V+ (V) SOFT-START V+, V OUT MAX6948B toc02 500mV/div V+ 5V/div V OUT SHUTDOWN RESPONSE (V+, V MAX6948B toc05 STANDBY CURRENT I 5.8 5.7 5.6 5.5 5.4 +25NC, +85NC, +105NC 5.3 5.2 4.54 5.00 2.70 3.16 3.62 4.08 V+ (V) (10/1024) MAX6948B toc03 OUT) MAX6948B toc06 500mV/div V+ 5V/div V OUT GND vs. V+ STBY -40NC 4.54 5.00 ...

Page 7

... ON, 10% PWM, FULL CURRENT AND HALF CURRENT) 7 -40NC, +25NC, +85NC, +105NC A 7.1 7.0 6.9 6.8 6.7 6.6 6.5 6.4 6.3 6.2 5.00 2.70 3.16 3.62 4.08 V+ (V) OUTPUT SINKING CURRENT vs. V PORT 40 FULL-CURRENT HALF-CURRENT PO FULL-CURRENT P2 10 HALF-CURRENT (V) PORT STAGGER PWM PORT WAVEFORMS vs. TIME ALL (50% PWM) MAX6948B toc17 1ms/div 4.54 5. ...

Page 8

... GPIO Port. Open-drain I/O. P4 can be configured as a 10mA (max) constant sink current output. E2 OUT Output Voltage Sense Input for Boost Converter E3 LEDSW High-Voltage, Constant-Current Input. Connect LEDSW to the cathode-end of the WLED string. E4 Inductor Switch Node 8 TOP VIEW (BUMP IN BOTTOM) MAX6948B RST SCL SDA ...

Page 9

... The constant-current drivers contain programmable PWM outputs and allow staggering to reduce the input peak current requirements. The I/O ports also feature ramp-up and ramp-down controls. The MAX6948B features a single input to select from four slave addresses. Programming and functionality for the five GPIO ports is identical to the MAX6946/MAX6947 I/O expanders ...

Page 10

... High-Efficiency PWM LED Driver with Boost Converter and Five Constant-Current GPIO Ports Register Description The MAX6948B contains 25 internal registers (Table 1). Registers 0x00 to 0x15 control ports P0–P4 and remain compatible with the MAX6946/MAX6947 port expanders. Table 1. Register Address Map and Autoincrement Address ...

Page 11

... R/W 0x00 0x21 R/W 0x00 0x22 R/W 0x01 On power-up, all control registers are set to power- up values and the MAX6948B is in shutdown mode (Table 3). VALUE FUNCTION 1 Half-boost current set Full-boost current set RST does not change register data 1 RST resets registers to POR values ...

Page 12

... The LSB register (0x21) allows for very fine adjustments in LED intensity. The MAX6948B checks the boost converter and indi- cates its status in the boost-converter status register (Table 6). Faults indicated in this register include ther- mal shutdown, overvoltage, and current limit ...

Page 13

... Bit D0 of the boost-converter status register (0x22 bit D0 of the configuration register (0x10 (reset), and the device is in shutdown mode. The MAX6948B turns on and begins to quick-start after the junction temperature cools by 10NC. Reading this regis- ter causes the bit to reset. If the fault is still active, the bit Quick Start will be set again ...

Page 14

... Phasing section). Use registers 0x0A, 0x0B, and 0x0C to assign the same port setting to multiple ports (Table 1). When powered off, the I/O ports remain in high impedance. Figure 1 shows the I/O port structure of the MAX6948B. I/O ports P0–P4 default to high impedance on power-up, to prevent connected ports from drawing current. Ports used as inputs do not load their source signals ...

Page 15

High-Efficiency PWM LED Driver with Boost Converter and Five Constant-Current GPIO Ports Ports Configured as Outputs The global-current register sets the full (maximum) constant-current sink amount for I/O ports configured as an output (Table 8). Power-up sets the global current ...

Page 16

... High-Efficiency PWM LED Driver with Boost Converter and Five Constant-Current GPIO Ports PWM Intensity Control and Phasing The MAX6948B uses an internal 31.25kHz oscillator to generate PWM timing for LED intensity control. A PWM period comprises 256 cycles of the nominal 31.25kHz PWM clock (Figure 2). Each port can have an individual PWM duty cycle between 3/256 and 254/256 ...

Page 17

... The input port register returns logic 0 in the appropriate bit position for a port not configured as a logic input. The input ports’ registers are read only. The MAX6948B ignores writes to the input ports register. Standby Mode and Operating Current ...

Page 18

... This means that any ports used for GPIOs are still operational in shutdown mode. Put the MAX6948B into shutdown mode by setting the run bit (D0 the configuration register (0x10) (Table 2). Exit shutdown by setting the run bit high through the serial interface or by using the reset-run option (see the Reset-Run Option section) ...

Page 19

High-Efficiency PWM LED Driver with Boost Converter and Five Constant-Current GPIO Ports FULL CURRENT/ HALF CURRENT Figure 4. Ramp-Up Behavior ZERO TO 4s HOLD-OFF DELAY BEFORE RAMP-DOWN FULL CURRENT/ HALF CURRENT 0 1/4s 1/2s 1s 1/8s 1/16s Figure 5. Hold-Off ...

Page 20

High-Efficiency PWM LED Driver with Boost Converter and Five Constant-Current GPIO Ports Table 11. Port Ramp-Down Register Format (0x11) (continued) REGISTER DESCRIPTION 4.164s ramp-down from full current after ramp-down delay Zero ramp-down delay before fade-off 0.0655s ramp-down delay before fade-off ...

Page 21

... PWM clock. After enabling the reset-run option, the MAX6948B uses the rising edge on RST, followed ity to the MAX6948B for 128 to 129 periods of the GPIO PWM clock (32kHz typ) to trigger the reset-run option. If this timeout period elapses without the MAX6948B ...

Page 22

... Figure 9. START and STOP Conditions 22 Each transmission consists of a START condition (Figure 9) sent by a master, followed by the MAX6948B 7-bit slave address plus R/W bit, a register address byte more data bytes, and finally a STOP condition. Both SCL and SDA remain high when the interface is not busy ...

Page 23

... The bit following a 7-bit slave address is the R/W bit, which is low for a write command and high for a read command. Five bits (A6, A5, A4, A2, and A1), of the MAX6948B slave address are always and 0, respectively. Slave address bits A7 and A3 correspond, by the matrix in Table 13, to the states of the device address input AD0, and A0 corresponds to the R/W bit ...

Page 24

... R/W bit set to zero, followed by at least 1 byte of information. The first byte of infor- mation is the command byte. The command byte deter- mines which register of the MAX6948B written by the next byte, if received STOP condition is detected after the command byte is received, the MAX6948B takes no further action (Figure 13) beyond storing the command byte ...

Page 25

... The five I/O ports P0–P4 are overvoltage pro- × µ 0.5 s IN(MIN) tected to 5.5V independent × MAX6948B to operate from one supply voltage, such as 3.3V, while driving some of the five I/Os as inputs from a different logic level, such as 5V. L DCR (µH) (mω) 22 570 ...

Page 26

... High-Efficiency PWM LED Driver with Boost Converter and Five Constant-Current GPIO Ports Driving LEDs into Brownout The MAX6948B correctly regulates the constant-current outputs, provided there is a minimum voltage drop across the port output. This port output voltage is the dif- ference between the load (typically LED) supply and the load voltage drop (LED forward voltage) ...

Page 27

... Keep traces short, direct, and wide. Keep noisy traces, such as the LX node trace, away from sensitive analog circuitry. For improved thermal per- formance, maximize copper area of the LX and PGND traces. Refer to the MAX6948B EV kit data sheet for an example layout. oper- DD ...

Page 28

High-Efficiency PWM LED Driver with Boost Converter and Five Constant-Current GPIO Ports Chip Information PROCESS: BiCMOS Maxim cannot assume responsibility for use of any circuitry other than circuitry entirely embodied in a Maxim product. No circuit patent licenses are implied. ...

Related keywords