参数资料
型号: ISL8112IRZ-T
厂商: Intersil
文件页数: 11/27页
文件大小: 0K
描述: IC REG DL BCK/LINEAR SYNC 32-QFN
标准包装: 6,000
拓扑: 降压(降压)同步(1),线性(LDO)(1)
功能: 任何功能
输出数: 2
频率 - 开关: 可调式
电压/电流 - 输出 1: 控制器
电压/电流 - 输出 2: 0.7 V ~ 4.5 V,200mA
带 LED 驱动器:
带监控器:
带序列发生器:
电源电压: 4.5 V ~ 25 V
工作温度: -40°C ~ 100°C
安装类型: 表面贴装
封装/外壳: 32-VFQFN 裸露焊盘
供应商设备封装: 32-QFN(5x5)
包装: 带卷 (TR)
ISL8112
Typical Performance Curves
177.5
177.0
176.5
176.0
175.5
175.0
174.5
174.0
173.5
Circuit of Figure 17 and Figure 18, no load on LDO, VSEN1, VSEN2, VREF2, and VREF1,
V IN = 12V, EN2 = EN1 = VCC, VBYP = 5V, PVCC = 5V, VEN_LDO = 5V, T A = -40°C to +100°C,
unless otherwise noted. Typical values are at T A = +25°C. (Continued)
26.5
26.0
25.5
25.0
24.5
24.0
23.5
23.0
22.5
173.0
7
9
11
13 15 17 19
21
23
25
22.0
7
9
11
13 15 17 19
21
23
25
INPUT VOLTAGE (V)
FIGURE 15. STANDBY INPUT CURRENT vs V IN
(EN = EN2 = 0, EN_LDO = VCC)
Typical Application Circuits
The typical application circuits are shown in Figures 17, 18
and 19. In Figure 17, the power supply system generates
1.25V/5A and dynamic voltage/10A. Figure 18 shows
system having1.5V/5A and 1.05V/5A output. The input
supply range is 5.5V to 25V. Figure 19 shows system
having1.2V/15A and 2.5V/5A output. The input supply range
is 5.5V to 25V and 4.5V to 5.5V respectively.
Detailed Description
The ISL8112 dual-buck, BiCMOS, switch-mode power-
supply controller generates logic supply voltages for
notebook computers. The ISL8112 is designed primarily for
battery-powered applications where high efficiency and low-
quiescent supply current are critical. The ISL8112 provides a
pin-selectable switching frequency, allowing operation for
200kHz/300kHz, 400kHz/300kHz, or 400kHz/500kHz on the
SMPSs.
INPUT VOLTAGE (V)
FIGURE 16. SHUTDOWN INPUT CURRENT vs V IN
(EN = EN2 = EN_LDO = 0)
undervoltage and overvoltage conditions. A power-on
sequence block controls the power-up timing of the main
PWMs and monitors the outputs for undervoltage faults. The
ISL8112 includes an adjustable low drop-out linear regulator.
The bias generator blocks include the linear regulator, 3.3V
precision reference, 2V precision reference and automatic
bootstrap switch over circuit.
The synchronous-switch gate drivers are directly powered
from PVCC, while the high-side switch gate drivers are
indirectly powered from PVCC through an external capacitor
and an internal Schottky diode boost circuit.
An automatic bootstrap circuit turns off the LDO linear
regulator and powers the device from BYP if LDOREF is set
to GND or VCC. See Table 1.
TABLE 1. LDO OUTPUT VOLTAGE TABLE
LDO VOLTAGE CONDITIONS COMMENT
Light-load efficiency is enhanced by automatic Idle-Mode
operation, a variable-frequency pulse-skipping mode that
reduces transition and gate-charge losses. Each step-down,
power-switching circuit consists of two n-channel MOSFETs,
a rectifier, and an LC output filter. The output voltage is the
average AC voltage at the switching node, which is
regulated by changing the duty cycle of the MOSFET
switches. The gate-drive signal to the n-channel high-side
MOSFET must exceed the battery voltage, and is provided
by a flying-capacitor boost circuit that uses a 100nF
VOLTAGE at BYP
VOLTAGE at BYP
5V
3.3V
2 x LDOREF
LDOREF < 0.3V,
BYP > 4.63V
LDOREF > VCC - 1V,
BYP > 3V
LDOREF < 0.3V,
BYP < 4.63V
LDOREF > VCC - 1V,
BYP < 3V
0.35V <LDOREF < 2.25V
Internal LDO is
disabled.
Internal LDO is
disabled.
Internal LDO is
active.
Internal LDO is
active.
Internal LDO is
active.
capacitor connected to BOOT_.
Both SMPS1 and SMPS2 PWM controllers consist of a
triple-Mode feedback network and multiplexer, a multi-input
PWM comparator, high-side and low-side gate drivers and
logic. In addition, SMPS2 can also use OUT2REF to track its
output from 0.5V to 2.50V. The ISL8112 contains fault-
protection circuits that monitor the main PWM outputs for
11
FREE-RUNNING, CONSTANT ON-TIME PWM
CONTROLLER WITH INPUT FEED-FORWARD
The constant on-time PWM control architecture is a
pseudo-fixed-frequency, constant on-time, current-mode
type with voltage feed forward. The constant on-time PWM
control architecture relies on the output ripple voltage to
FN6396.1
August 10, 2010
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