参数资料
型号: NCP3163BSTEVB
厂商: ON Semiconductor
文件页数: 9/20页
文件大小: 0K
描述: EVAL BOARD FOR NCP3163BST
设计资源: NCP3163 Boost Eval Board BOM
NCP3163BSTEVB Gerber Files
NCP3163 Boost Eval Board Schematic
标准包装: 1
主要目的: DC/DC,步升
输出及类型: 1,非隔离
输出电压: 24V
电流 - 输出: 700mA
输入电压: 12V
稳压器拓扑结构: 升压
频率 - 开关: 300kHz
板类型: 完全填充
已供物品:
已用 IC / 零件: NCP3163
其它名称: NCP3163BSTEVBOS
NCP3163, NCV3163
t DLY = R LVI ? C DLY ? In
V th(MPU)
V out
Feedback and Low Voltage Indicator Comparators
Output voltage control is established by the Feedback
comparator. The inverting input is internally biased at 1.25 V
and is not pinned out. The converter output voltage is
typically divided down with two external resistors and
monitored by the high impedance noninverting input at Pin 2.
The maximum input bias current is ± 0.4 m A, which can cause
an output voltage error that is equal to the product of the input
bias current and the upper divider resistance value. For
applications that require 5.0 V, the converter output can be
directly connected to the noninverting input at Pin 3. The high
impedance input, Pin 2, must be grounded to prevent noise
pickup. The internal resistor divider is set for a nominal
voltage of 5.05 V. The additional 50 mV compensates for a
1.0% voltage drop in the cable and connector from the
converter output to the load. The Feedback comparator’s
3
output state is controlled by the highest voltage applied to
either of the two noninverting inputs.
The Low Voltage Indicator (LVI) comparator is designed
for use as a reset controller in microprocessor ? based
systems. The inverting input is internally biased at 1.125 V,
which sets the noninverting input thresholds to 90% of
nominal. The LVI comparator has 15 mV of hysteresis to
prevent erratic reset operation. The Open Collector output is
capable of sinking in excess of 6.0 mA (see Figure 13). An
external resistor (R LVI ) and capacitor (C DLY ) can be used to
program a reset delay time (t DLY ) by the formula shown
below, where V th(MPU) is the microprocessor reset input
threshold. Refer to Figure 20.
1
1 ?
14
2
+
+
-
Feedback
Comparator
15
Low Voltage
Indicator Output
R LVI
C DLY
1
LVI
+
+
-
1.25 V
1.125 V
16
L
(Bottom View)
Figure 20. Partial Application Schematic Showing
Implementation of LVI Delay with R LVI and C DLY
C O
V out
RSC +
RSC(min) +
+ 0.0735 W
Current Limit Comparator, Latch and Thermal
Shutdown
With a voltage mode ripple converter operating under
normal conditions, output switch conduction is initiated by
the oscillator and terminated by the Voltage Feedback
comparator. Abnormal operating conditions occur when the
converter output is overloaded or when feedback voltage
sensing is lost. Under these conditions, the Current Limit
comparator will protect the Output Switch.
The switch current is converted to a voltage by inserting
a fractional ohm resistor, R SC , in series with V CC and output
switch transistor Q 2 . The voltage drop across R SC is
monitored by the Current Sense comparator. If the voltage
drop exceeds 250 mV with respect to V CC , the comparator
will set the latch and terminate output switch conduction on
a cycle ? by ? cycle basis. This Comparator/Latch
configuration ensures that the Output Switch has only a
single on ? time during a given oscillator cycle. The
calculation for a value of R SC is:
0.25 V
Ipk (Switch)
Figures 14 and 15 show that the Current Sense comparator
threshold is tightly controlled over temperature and has a
typical input bias current of 1.0 m A. The propagation delay
from the comparator input to the Output Switch is typically
200 ns. The parasitic inductance associated with R SC and the
circuit layout should be minimized. This will prevent
unwanted voltage spikes that may falsely trip the Current
Limit comparator.
Internal thermal shutdown circuitry is provided to protect
the IC in the event that the maximum junction temperature
is exceeded. When activated, typically at 170 ° C, the Latch
is forced into the “Set” state, disabling the Output Switch.
This feature is provided to prevent catastrophic failures from
accidental device overheating. It is not intended to be used
as a replacement for proper heatsinking.
Driver and Output Switch
To aid in system design flexibility and conversion
efficiency, the driver current source and collector, and
output switch collector and emitter are pinned out
separately. This allows the designer the option of driving the
output switch into saturation with a selected force gain or
driving it near saturation when connected as a Darlington.
The output switch has a typical current gain of 70 at 2.5 A
and is designed to switch a maximum of 40 V collector to
emitter, with up to 3.4 A peak collector current. The
minimum value for R SC is:
0.25 V
3.4 A
http://onsemi.com
9
相关PDF资料
PDF描述
A9BBG-1408F FLEX CABLE - AFF14G/AF14/AFF14G
NCP1522BUGEVB EVAL BOARD FOR NCP1522BU
RBM11DRTI CONN EDGECARD 22POS DIP .156 SLD
A9CCA-1704E FLEX CABLE - AFK17A/AE17/AFK17A
RCM15DRTH CONN EDGECARD 30POS DIP .156 SLD
相关代理商/技术参数
参数描述
NCP3163BUCKEVB 功能描述:BOARD EVAL NCP3163 BUCK RoHS:是 类别:编程器,开发系统 >> 评估板 - DC/DC 与 AC/DC(离线)SMPS 系列:* 产品培训模块:Obsolescence Mitigation Program 标准包装:1 系列:True Shutdown™ 主要目的:DC/DC,步升 输出及类型:1,非隔离 功率 - 输出:- 输出电压:- 电流 - 输出:1A 输入电压:2.5 V ~ 5.5 V 稳压器拓扑结构:升压 频率 - 开关:3MHz 板类型:完全填充 已供物品:板 已用 IC / 零件:MAX8969
NCP3163BUCKGEVB 功能描述:电源管理IC开发工具 NCP3163 BUCK DEMO BOARD RoHS:否 制造商:Maxim Integrated 产品:Evaluation Kits 类型:Battery Management 工具用于评估:MAX17710GB 输入电压: 输出电压:1.8 V
NCP3163INVEVB 功能描述:电源管理IC开发工具 NCP3163 INVERT DEMO BRD RoHS:否 制造商:Maxim Integrated 产品:Evaluation Kits 类型:Battery Management 工具用于评估:MAX17710GB 输入电压: 输出电压:1.8 V
NCP3163INVGEVB 功能描述:EVAL BOARD FOR NCP3163INV RoHS:是 类别:编程器,开发系统 >> 评估板 - DC/DC 与 AC/DC(离线)SMPS 系列:- 标准包装:1 系列:- 主要目的:DC/DC,步降 输出及类型:1,非隔离 功率 - 输出:- 输出电压:3.3V 电流 - 输出:3A 输入电压:4.5 V ~ 28 V 稳压器拓扑结构:降压 频率 - 开关:250kHz 板类型:完全填充 已供物品:板 已用 IC / 零件:L7981 其它名称:497-12113STEVAL-ISA094V1-ND
NCP3163MNR2G 功能描述:直流/直流开关调节器 DFN 18EG 5X6X.9MM RoHS:否 制造商:International Rectifier 最大输入电压:21 V 开关频率:1.5 MHz 输出电压:0.5 V to 0.86 V 输出电流:4 A 输出端数量: 最大工作温度: 安装风格:SMD/SMT 封装 / 箱体:PQFN 4 x 5