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MAX1586A_08

更新时间: 2024-11-06 11:18:31
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美信 - MAXIM 集成电源管理电路光电二极管电话
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30页 477K
描述
High-Efficiency, Low-IQ PMICs with Dynamic Core for PDAs and Smart Phones

MAX1586A_08 数据手册

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19-3089; Rev 3; 12/08  
High-Efficiency, Low-I PMICs with  
Q
Dynamic Core for PDAs and Smart Phones  
General Description  
Features  
The MAX1586/MAX1587 power-management ICs are  
optimized for devices using Intel XScale® microproces-  
sors, including Smart Phones, PDAs, internet appli-  
ances, and other portable devices requiring substantial  
computing and multimedia capability at low power.  
Six Regulators in One Package  
Step-Down DC-DC for I/O at 1.3A  
Step-Down DC-DC for Memory at 0.9A  
Step-Down Serial-Programmed DC-DC for CORE  
Up to 0.9A  
The ICs integrate seven high-performance, low-operating-  
current power supplies along with supervisory and  
management functions. Included are three step-down  
DC-DC outputs, three linear regulators, and a seventh  
always-on output. DC-DC converters power I/O, DRAM,  
and the CPU core. The I/O supply can be preset to  
3.3V or adjusted to other values. The DRAM supply on  
the A and C devices is preset for 1.8V or 2.5V, while the  
MAX1586B DRAM supply is preset for 3.3V or 2.5V. The  
DRAM supply on all parts can also be adjusted with  
external resistors. The CPU core supply is serial pro-  
grammed for dynamic voltage management and, on C  
devices, can supply up to 0.9A. Linear-regulated out-  
puts are provided for SRAM, PLL, and USIM supplies.  
Three LDO Outputs for SRAM, PLL, and USIM  
Always-On Output for VCC_BATT  
Low Operating Current  
60µA in Sleep Mode (Sleep LDOs On)  
130µA with DC-DCs On (Core Off)  
200µA All Regulators On, No Load  
5µA Shutdown Current  
Optimized for XScale Processors  
Backup-Battery Input  
1MHz PWM Switching Allows Small External  
Components  
Tiny 6mm x 6mm, 40-Pin and 7mm x 7mm, 48-Pin  
To minimize quiescent current, critical power supplies  
have bypass “sleep” LDOs that can be activated when  
output current is very low. Other functions include sep-  
arate on/off control for all DC-DC converters, low-bat-  
tery and dead-battery detection, a reset and power-OK  
output, a backup-battery input, and a two-wire serial  
interface.  
Thin QFN Packages  
Ordering Information  
PART  
TEMP RANGE  
PIN-PACKAGE  
MAX1586AETM -40°C to +85°C 48 Thin QFN 7mm x 7mm  
MAX1586BETM -40°C to +85°C 48 Thin QFN 7mm x 7mm  
MAX1586CETM -40°C to +85°C 48 Thin QFN 7mm x 7mm  
MAX1587AETL -40°C to +85°C 40 Thin QFN 6mm x 6mm  
MAX1587CETL -40°C to +85°C 40 Thin QFN 6mm x 6mm  
All DC-DC outputs use fast, 1MHz PWM switching and  
small external components. They operate with fixed-fre-  
quency PWM control and automatically switch from  
PWM to skip-mode operation at light loads to reduce  
operating current and extend battery life. The core out-  
put can be forced into PWM mode at all loads to mini-  
mize noise. A 2.6V to 5.5V input voltage range allows  
1-cell lithium-ion (Li+), 3-cell NiMH, or a regulated 5V  
input. The MAX1587 is available in a tiny 6mm x 6mm,  
40-pin thin QFN package. The MAX1586 features an  
additional linear regulator (V6) for VCC_USIM and low-  
battery and dead- battery comparators. The MAX1586  
is available in a 7mm x 7mm, 48-pin thin QFN package.  
Pin Configurations and Selector Guide appear at end of  
data sheet.  
Simplified Functional Diagram  
MAIN BATTERY  
IN MAX1586  
MAX1587  
BACKUP  
BATTERY  
VCC_IO 3.3V  
V1  
V2  
V3  
BKBT  
Applications  
VCC_MEM 2.5V  
PDA, Palmtop, and Wireless Handhelds  
Third-Generation Smart Cell Phones  
Internet Appliances and Web-Books  
VCC_CORE  
0.8V TO 1.3V  
MR  
VCC_PLL 1.3V  
V4  
V5  
RSO  
nRESET  
nVCC_FAULT  
nBATT_FAULT  
SYS_EN  
POK  
DBO  
VCC_SRAM 1.1V  
VCC_USIM  
0V, 1.8V, 3.0V  
V6  
V7  
ON1-2  
ON3-6  
PWR_EN  
VCC_BATT  
Intel XScale is a registered trademark of Intel Corp.  
________________________________________________________________ Maxim Integrated Products  
1
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.  

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