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  • 型号: NJM7820FA
  • 制造商: NJR
  • 库位|库存: xxxx|xxxx
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NJM7820FA产品简介:

ICGOO电子元器件商城为您提供NJM7820FA由NJR设计生产,在icgoo商城现货销售,并且可以通过原厂、代理商等渠道进行代购。 NJM7820FA价格参考。NJRNJM7820FA封装/规格:PMIC - 稳压器 - 线性, Linear Voltage Regulator IC Positive Fixed 1 Output 20V 1.5A TO-220F。您可以下载NJM7820FA参考资料、Datasheet数据手册功能说明书,资料中有NJM7820FA 详细功能的应用电路图电压和使用方法及教程。

产品参数 图文手册 常见问题
参数 数值
产品目录

集成电路 (IC)半导体

描述

IC REG LDO 20V 1.5A TO220F线性稳压器 20V 1.5A 3 Terminal

产品分类

PMIC - 稳压器 - 线性

品牌

NJR

产品手册

点击此处下载产品Datasheet

产品图片

rohs

符合RoHS无铅 / 符合限制有害物质指令(RoHS)规范要求

产品系列

电源管理 IC,线性稳压器,NJR NJM7820FA-

数据手册

点击此处下载产品Datasheet

产品型号

NJM7820FA

PSRR/纹波抑制—典型值

68 dB

产品目录页面

点击此处下载产品Datasheet

产品种类

线性稳压器

供应商器件封装

TO-220F

其它名称

NJM#7820FA
NJM#7820FA-ND
NJM7820FA#
NJM7820FA#-ND

包装

散装

商标

NJR

商标名

NJM7820

安装类型

通孔

安装风格

Through Hole

封装

Bulk

封装/外壳

TO-220-3 整包

封装/箱体

TO-220-3 FP

工作温度

-40°C ~ 85°C

工厂包装数量

100

最大功率耗散

16000 mW

最大工作温度

+ 85 C

最大输入电压

40 V

最小工作温度

- 40 C

最小输入电压

23 V

极性

Positive

标准包装

100

电压-跌落(典型值)

-

电压-输入

最高 40 V

电压-输出

20V

电流-输出

1.5A

电流-限制(最小值)

-

稳压器拓扑

正,固定式

稳压器数

1

系列

NJM7820

线路调整率

200 mV

负载调节

200 mV

输出电压

20 V

输出电流

1.5 A

输出端数量

1

输出类型

Fixed

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PDF Datasheet 数据手册内容提取

NJM7800 3-TERMINAL POSITIVE VOLTAGE REGULATOR ■ GENERAL DESCRIPTION ■ PACKAGE OUTLINE The NJM7800 series of monolithic 3-Terminal Positive Voltage Regulators is constructed using the New JRC Planar epitaxial process. These regulators employ internal current-limiting, thermal-shutdown and safe-area compensation making them essentially indestructible. If adequate heat sinking is provided, they can deliver over 1A output current. They are intended as fixed voltage regulators in a wide range of applications including local (on card) regulation for elimination of distribution problems associated with single point regulation. In addition to use as fixed voltage regulators, these devices can be used with external components to NJM7800FA NJM7800DL1A obtain adjustable output voltages and currents. 1. IN 1. IN 2. GND 2. GND 3. OUT 3. OUT ■ FEATURES (note) The radiation fin is connected pin 2.  Internal Short Circuit Current Limit  Internal Thermal Overload Protection  Excellent Ripple Rejection  Guaranteed 1.5A Output Current  Package Outline TO-220F, TO-252  Bipolar Technology ■ EQUIVALENT CIRCUIT Ver.2019-11-14 - 1 -

NJM7800 ■ ABSOLUTE MAXIMUM RATINGS (Ta = 25ºC) PARAMETER SYMBOL MAXIMUM RATINGS UNIT 7805 to 7810 35 Input Voltage V 7812 to 7815 35 V IN 7818 to 7824 40 Storage Temperature Range T -40 to +150 ºC stg Operating Junction Temperature T -40 to +150 j Operating Temperature Range ºC Operating Temperature T -40 to +85 opr TO-220F 16(T ≤70ºC) C Power Dissipation PD TO-252 10(TC25ºC) W 1(Ta≤25ºC) ■ ELECTRICAL CHARACTERISTICS (C = 0.33μF, C = 0.1μF, Tj = 25C) I O Measurement is to be conducted in pulse testing. TO-220F TO-252 RAMETER SYMBOL TEST CONDITIONS UNIT MIN. TYP. MAX. MIN. TYP. MAX. NJM7805FA/DL1A Output Voltage VO VIN10V, I00.5A 4.8 5.0 5.2 4.8 5.0 5.2 V Line Regulation ΔVO - VIN VIN7 to 25V, IO0.5A - 3 50 - 3 100 mV Load Regulation ΔVO - IO VIN10V, IO0.005 to 1.5A - 15 50 - 15 100 mV Quiescent Current IQ VIN10V, IO0mA - 4.2 6.0 - 4.2 6.0 mA Average Temperature Coefficient of Output Voltage ΔVO/ΔT VIN10V, IO5mA - -0.5 - - -0.5 - mV/ºC Ripple Rejection RR V 10V, I 0.5A , e 2V , f120Hz 68 78 - 68 78 - dB IN O in P-P Output Noise Voltage VNO VIN10V, BW10Hz to 100kHz, IO0.5A - 45 - - 45 - μV NJM7806FA/DL1A Output Voltage VO VIN11V, I00.5A 5.75 6.0 6.25 5.75 6.0 6.25 V Line Regulation ΔVO - VIN VIN8 to 25V, IO0.5A - 5 60 - 5 120 mV Load Regulation ΔVO - IO VIN11V, IO0.005 to 1.5A - 15 60 - 15 120 mV Quiescent Current IQ VIN11V, IO0mA - 4.3 6.0 - 4.3 6.0 mA Average Temperature Coefficient of Output Voltage ΔVO/ΔT VIN11V, IO5mA - -0.6 - - -0.6 - mV/ºC Ripple Rejection RR V 11V, I 0.5A , e 2V , f120Hz 65 75 - 65 75 - dB IN O in P-P Output Noise Voltage VNO VIN11V, BW10Hz to 100kHz, IO0.5A - 45 - - 45 - μV - 2 - Ver.2019-11-14

NJM7800 ■ ELECTRICAL CHARACTERISTICS (C = 0.33μF, C = 0.1μF, Tj = 25C) I O Measurement is to be conducted in pulse testing. TO-220F TO-252 PARAMETER SYMBOL TEST CONDITIONS UNIT MIN. TYP. MAX. MIN. TYP. MAX. NJM7808FA/DL1A Output Voltage VO VIN14V, I00.5A 7.7 8.0 8.3 7.7 8.0 8.3 V Line Regulation ΔVO - VIN VIN10.5 to 25V, IO0.5A - 6 80 - 6 160 mV Load Regulation ΔVO - IO VIN14V, IO0.005 to 1.5A - 15 80 - 15 160 mV Quiescent Current IQ VIN14V, IO0mA - 4.3 6.0 - 4.3 6.0 mA Average Temperature Coefficient of Output Voltage ΔVO/ΔT VIN14V, IO5mA - -0.8 - - -0.8 - mV/ºC Ripple Rejection RR V 14V, I 0.5A , e 2V , f120Hz 62 72 - 62 72 - dB IN O in P-P Output Noise Voltage VNO VIN14V, BW10Hz to 100kHz, IO0.5A - 55 - - 55 - μV NJM7809FA/DL1A Output Voltage VO VIN15V, I00.5A 8.65 9.0 9.35 8.65 9.0 9.35 V Line Regulation ΔVO - VIN VIN11.5 to 25V, IO0.5A - 7 90 - 7 180 mV Load Regulation ΔVO - IO VIN15V, IO0.005 to 1.5A - 15 90 - 15 180 mV Quiescent Current IQ VIN15V, IO0mA - 4.3 6.0 - 4.3 6.0 mA Average Temperature Coefficient of Output Voltage ΔVO/ΔT VIN15V, IO5mA - -0.9 - - -0.9 - mV/ºC Ripple Rejection RR V 15V, I 0.5A , e 2V , f120Hz 62 72 - 62 72 - dB IN O in P-P Output Noise Voltage VNO VIN15V, BW10Hz to 100kHz, IO0.5A - 60 - - 60 - μV NJM7810FA/DL1A Output Voltage VO VIN17V, I00.5A 9.60 10.0 10.4 9.60 10.0 10.4 V Line Regulation ΔVO - VIN VIN12.5 to 25V, IO0.5A - 7 100 - 7 200 mV Load Regulation ΔVO - IO VIN17V, IO0.005 to 1.5A - 15 130 - 15 200 mV Quiescent Current IQ VIN17V, IO0mA - 4.3 6.0 - 4.3 6.0 mA Average Temperature Coefficient of Output Voltage ΔVO/ΔT VIN17V, IO5mA - -0.9 - - -1.0 - mV/ºC Ripple Rejection RR V 17V, I 0.5A , e 2V , f120Hz 62 72 - 62 72 - dB IN O in P-P Output Noise Voltage VNO VIN17V, BW10Hz to 100kHz, IO0.5A - 60 - - 65 - μV Ver.2019-11-14 - 3 -

NJM7800 ■ ELECTRICAL CHARACTERISTICS (C = 0.33μF, C = 0.1μF, Tj = 25C) I O Measurement is to be conducted in pulse testing. TO-220F TO-252 PARAMETER SYMBOL TEST CONDITIONS UNIT MIN. TYP. MAX. MIN. TYP. MAX. NJM7812FA/DL1A Output Voltage VO VIN19V, I00.5A 11.5 12.0 12.5 11.5 12.0 12.5 V Line Regulation ΔVO - VIN VIN14.5 to 30V, IO0.5A - 10 120 - 10 240 mV Load Regulation ΔVO - IO VIN19V, IO0.005 to 1.5A - 25 120 - 25 240 mV Quiescent Current IQ VIN19V, IO0mA - 4.3 6.0 - 4.3 6.0 mA Average Temperature Coefficient of Output Voltage ΔVO/ΔT VIN19V, IO5mA - -1.2 - - -1.2 - mV/ºC Ripple Rejection RR V 19V, I 0.5A , e 2V , f120Hz 61 71 - 61 71 - dB IN O in P-P Output Noise Voltage VNO VIN19V, BW10Hz to 100kHz, IO0.5A - 75 - - 75 - μV NJM7815FA/DL1A Output Voltage VO VIN23V, I00.5A 14.4 15.0 15.6 14.4 15.0 15.6 V Line Regulation ΔVO - VIN VIN17.5 to 30V, IO0.5A - 11 150 - 11 300 mV Load Regulation ΔVO - IO VIN23V, IO0.005 to 1.5A - 35 150 - 35 300 mV Quiescent Current IQ VIN23V, IO0mA - 4.4 6.0 - 4.4 6.0 mA Average Temperature Coefficient of Output Voltage ΔVO/ΔT VIN23V, IO5mA - -1.5 - - -1.5 - mV/ºC Ripple Rejection RR V 23V, I 0.5A , e 2V , f120Hz 60 70 - 60 70 - dB IN O in P-P Output Noise Voltage VNO VIN23V, BW10Hz to 100kHz, IO0.5A - 90 - - 90 - μV NJM7818FA/DL1A Output Voltage VO VIN27V, I00.5A 17.3 18.0 18.7 17.3 18.0 18.7 V Line Regulation ΔVO - VIN VIN21 to 33V, IO0.5A - 15 180 - 15 360 mV Load Regulation ΔVO - IO VIN27V, IO0.005 to 1.5A - 55 180 - 55 360 mV Quiescent Current IQ VIN27V, IO0mA - 4.5 6.0 - 4.5 6.0 mA Average Temperature Coefficient of Output Voltage ΔVO/ΔT VIN27V, IO5mA - -1.8 - - -1.8 - mV/ºC Ripple Rejection RR V 27V, I 0.5A , e 2V , f120Hz 59 69 - 59 69 - dB IN O in P-P Output Noise Voltage VNO VIN27V, BW10Hz to 100kHz, IO0.5A - 100 - - 100 - μV NJM7820FA/DL1A Output Voltage VO VIN29V, I00.5A 19.2 20.0 20.8 19.2 20.0 20.8 V Line Regulation ΔVO - VIN VIN23 to 35V, IO0.5A - 16 200 - 16 400 mV Load Regulation ΔVO - IO VIN29V, IO0.005 to 1.5A - 61 200 - 61 400 mV Quiescent Current IQ VIN29V, IO0mA - 4.5 6.0 - 4.5 6.0 mA Average Temperature Coefficient of Output Voltage ΔVO/ΔT VIN29V, IO5mA - -2.0 - - -2.0 - mV/ºC Ripple Rejection RR V 29V, I 0.5A , e 2V , f120Hz 58 68 - 58 68 - dB IN O in P-P Output Noise Voltage VNO VIN29V, BW10Hz to 100kHz, IO0.5A - 120 - - 120 - μV - 4 - Ver.2019-11-14

NJM7800 ■ ELECTRICAL CHARACTERISTICS (C = 0.33μF, C = 0.1μF, Tj = 25C) I O Measurement is to be conducted in pulse testing. TO-220F TO-252 PARAMETER SYMBOL TEST CONDITIONS UNIT MIN. TYP. MAX. MIN. TYP. MAX. NJM7824FA/DL1A Output Voltage VO VIN33V, I00.5A 23.0 24.0 25.0 23.0 24.0 25.0 V Line Regulation ΔVO - VIN VIN27 to 38V, IO0.5A - 18 240 - 18 480 mV Load Regulation ΔVO - IO VIN33V, IO0.005 to 1.5A - 65 240 - 65 480 mV Quiescent Current IQ VIN33V, IO0mA - 4.6 6.0 - 4.6 6.0 mA Average Temperature Coefficient of Output Voltage ΔVO/ΔT VIN33V, IO5mA - -2.4 - - -2.4 - mV/ºC Ripple Rejection RR V 33V, I 0.5A , e 2V , f120Hz 56 66 - 56 66 - dB IN O in P-P Output Noise Voltage VNO VIN33V, BW10Hz to 100kHz, IO0.5A - 120 - - 120 - μV Ver.2019-11-14 - 5 -

NJM7800 ■ POWER DISSIPATION VS. AMBIENT TEMPERATURE NJM7800DL1A ■ TEST CIRCUIT 1. Output Voltage, Line Regulation, Load Regulation, 2. Ripple Rejection Quiescent Current, Average Temperature Coefficient of Output Voltage, Output Noise Voltage - 6 - Ver.2019-11-14

NJM7800  Input Capacitor C IN Input Capacitor C is required to prevent oscillation and reduce power supply ripple for applications when high IN power supply impedance or a long power supply line. Therefore, use the recommended C value (refer to conditions of ELECTRIC CHARACTERISTIC) or larger and IN should connect between GND and V as shortest path as possible to avoid the problem. IN  Output Capacitor C O Output capacitor (C ) will be required for a phase compensation of the internal error amplifier. O The capacitance and the equivalent series resistance (ESR) influence to stable operation of the regulator. Use of a smaller C may cause excess output noise or oscillation of the regulator due to lack of the phase O compensation. On the other hand, Use of a larger C reduces output noise and ripple output, and also improves output O transient response when rapid load change. Therefore, use the recommended C value (refer to conditions of ELECTRIC CHARACTERISTIC) or larger O and should connect between GND and V as shortest path as possible for stable operation OUT In addition, you should consider varied characteristics of capacitor (a frequency characteristic, a temperature characteristic, a DC bias characteristic and so on) and unevenness peculiar to a capacitor supplier enough. When selecting C recommend that have withstand voltage margin against output voltage and superior O, temperature characteristic though Ver.2019-11-14 - 7 -

NJM7800 ■ TYPICAL CHARACTERISTICS NJM7805 Output Voltage vs. Temperature NJM7808 Output Voltage vs. Temperature V) V) (O (O V V e e g g olta olta V V ut ut p p ut ut O O Ambient Temperature Ta(°C) Ambient Temperature Ta(°C) NJM78M00 Series Equivalent Series Resistance vs. Output Current Vin=Output voltages of the conditions described in the ELECTRICAL CHARACTERISTICS Ta=25 ,Cin=0.33uF, Co=0.1uF 100 10 Ω] STABLE REGION R[ 1 S E 0.1 0.01 0.001 0.01 0.1 1 10 100 1000 Output Current Io [mA] - 8 - Ver.2019-11-14

NJM7800 ■ TYPICAL CHARACTERISTICS NJM7805/15/24 Output Characteristics (Io=0.5A, Tj=25°C) V) ( O V e g a olt V ut p ut O Input Voltage V (V) IN NJM7805 Dropout Characteristics NJM7812 Dropout Characteristics (Tj=25°C) (Tj=25°C) V) ) ( V O ( V O ge e V a g Volt olta put ut V Out utp O Input Voltage V (V) IN Input Voltage V (V) IN NJM7805/15/24 Load Characteristics (Tj=25°C) ) V ( O V e g a olt V ut p ut O Output Current I (A) O Ver.2019-11-14 - 9 -

NJM7800 ■ TYPICAL CHARACTERISTICS NJM7800 Series Short Circuit Output Current (Tj=25°C, ∞ Heat Sink) NJM7805/24 Quiescent Current vs. Input Voltage ) (Tj=25°C,) urrent I(AO nt I(mA) Q C e r ut ur p C ut nt O e sc e Dropout Voltage VIN –VO (V) Qui Input Voltage V (V) IN NJM7805/15/24 Output Voltage vs. Junction Temperature ) V ( O V e g a olt V ut p ut O Junction Temperature T(°C) j NJM7805/15/24 Ripple Rejection vs. Frequency B) d V = 10V (05) e = 2V R( IN in P-P R 19V (12) n o 33V (24) cti eje Tj = 25°C R e pl p Ri Frequency (Hz) [CAUTION] The specifications on this databook are only given for information , without any guarantee as regards either mistakes or omissions. The application circuits in this databook are described only to show representative usages of the product and not intended for the guarantee or permission of any right including the industrial rights. - 10 - Ver.2019-11-14