0
登录后你可以
  • 下载海量资料
  • 学习在线课程
  • 观看技术视频
  • 写文章/发帖/加入社区
会员中心
创作中心
发布
  • 发文章

  • 发资料

  • 发帖

  • 提问

  • 发视频

创作活动
KRA117S

KRA117S

  • 厂商:

    KEC

  • 封装:

  • 描述:

    KRA117S - EPITAXIAL PLANAR PNP TRANSISTOR - KEC(Korea Electronics)

  • 详情介绍
  • 数据手册
  • 价格&库存
KRA117S 数据手册
SEMICONDUCTOR TECHNICAL DATA SWITCHING APPLICATION. INTERFACE CIRCUIT AND DRIVER CIRCUIT APPLICATION FEATURES With Built-in Bias Resistors. Reduce a Quantity of Parts and Manufacturing Process. Simplify Circuit Design. KRA116S~KRA122S EPITAXIAL PLANAR PNP TRANSISTOR L E B L 2 3 1 EQUIVALENT CIRCUIT OUT R1 R2 BIAS RESISTOR VALUES TYPE NO. KRA116S KRA117S KRA118S KRA119S KRA120S R1(k 1 2.2 2.2 4.7 10 47 100 ) R2(k 10 2.2 ) C N P P DIM A B C D E G H J K L M N P MILLIMETERS _ 2.93 + 0.20 1.30+0.20/-0.15 1.30 MAX 0.45+0.15/-0.05 2.40+0.30/-0.20 1.90 0.95 0.13+0.10/-0.05 0.00 ~ 0.10 0.55 0.20 MIN 1.00+0.20/-0.10 7 A G H M IN 1. EMITTER 10 10 4.7 10 100 2. BASE 3. COLLECTOR COMMON(+) KRA121S KRA122S K SOT-23 MAXIMUM RATING (Ta=25 ) SYMBOL KRA116S 122S VO RATING -50 -10, 5 -12, 10 -12, 5 VI -20, 7 -30, 10 -40, 15 -40, 10 IO PD KRA116S 122S Tj Tstg -100 200 150 -55 150 mA mW V UNIT V CHARACTERISTIC Output Voltage KRA116S KRA117S KRA118S Input Voltage KRA119S KRA120S KRA121S KRA122S Output Current Power Dissipation Junction Temperature Storage Temperature Range Marking MAXIMUM RATING (Ta=25 TYPE MARK ) Type Name J D KRA116S KRA117S KRA118S KRA119S KRA120S KRA121S KRA122S P2 P4 P5 P6 P7 P8 P9 Lot No. 2002. 7. 9 Revision No : 3 1/6 KRA116S~KRA122S ELECTRICAL CHARACTERISTICS (Ta=25 ) CHARACTERISTIC Output Cut-off Current KRA116S 122S SYMBOL IO(OFF) TEST CONDITION VO=-50V, VI=0 VO=-5V, IO=-5mA VO=-5V, IO=-20mA VO=-5V, IO=-10mA GI VO=-5V, IO=-10mA VO=-5V, IO=-10mA VO=-5V, IO=-5mA VO=-5V, IO=-5mA IO=-10mA, II=-0.5mA IO=-10mA, II=-0.5mA IO=-10mA, II=-0.5mA VO(ON) IO=-10mA, II=-0.5mA IO=-10mA, II=-0.5mA IO=-10mA, II=-0.5mA IO=-5mA, II=-0.25mA VO=-0.3V, IO=-20mA VO=-0.3V, IO=-20mA VO=-0.3V, IO=-20mA VI(ON) VO=-0.3V, IO=-20mA VO=-0.3V, IO=-2mA VO=-0.3V, IO=-2mA VO=-0.3V, IO=-1mA MIN. 33 20 33 30 24 33 62 -0.3 -0.5 -0.3 VI(OFF) VCC=-5V, IO=-100 A -0.3 -0.8 -1 -0.5 f T* VO=-10V, IO=-5mA II VI=-5V TYP. -0.1 -0.1 -0.1 -0.1 -0.1 -0.98 -1.83 -1.22 -1.76 -2 -3.9 -1.64 -0.63 -1.15 -0.67 -0.82 -1.68 -3.09 -1.17 250 MAX. -500 -0.3 -0.3 -0.3 -0.3 -0.3 -0.3 -0.3 -3 -3 -3 -2.5 -3 -5 -3 -7.2 -3.8 -3.8 -1.8 -0.88 -0.16 -0.15 mA MHz V V V UNIT nA KRA116S KRA117S KRA118S DC Current Gain KRA119S KRA120S KRA121S KRA122S KRA116S KRA117S KRA118S Output Voltage KRA119S KRA120S KRA121S KRA122S KRA116S KRA117S KRA118S Input Voltage (ON) KRA119S KRA120S KRA121S KRA122S KRA116S KRA117S KRA118S Input Voltage (OFF) KRA119S KRA120S KRA121S KRA122S Transition Frequency KRA116S 122S KRA116S KRA117S KRA118S Input Current KRA119S KRA120S KRA121S KRA122S Note : * Characteristic of Transistor Only. 2002. 7. 9 Revision No : 3 2/6 KRA116S~KRA122S -100 OUTPUT CURRENT IO (mA) -50 -30 -10 -5 -3 -1 KRA116S I O - V I(ON) OUTPUT CURRENT I O (mA) -100 -50 -30 -10 -5 -3 -1 -0.5 -0.3 KRA117S I O - V I(ON) Ta=100 C Ta=25 C Ta=-25 C Ta=25 C Ta=-25 C Ta=100 C -0.5 -0.3 -0.1 VO =-0.2V -0.3 -1 -3 -10 -0.1 -0.1 VO =-0.2V -0.3 -1 -3 -10 INPUT ON VOLTAGE V I(ON) (V) INPUT ON VOLTAGE V I(ON) (V) -3k OUTPUT CURRENT I O (µA) KRA116S I O - V I(OFF) -3k OUTPUT CURRENT I O (µA) KRA117S I O - V I(OFF) -1k -500 Ta=25 C -1k -500 Ta=25 C Ta=100 Ta=-25 C Ta=-25 C Ta=100 -300 -300 C -100 -50 -30 0 -0.2 -0.4 -0.6 -100 -50 -30 0 -0.5 C VO =-5V VO =-5V -0.8 -1.0 -1.2 -1.4 -1.0 -1.5 -2.0 -2.5 -3.0 INPUT OFF VOLTAGE V I(OFF) (V) INPUT OFF VOLTAGE V I(OFF) (V) 200 DC CURRENT GAIN G I 100 50 30 KRA116S GI - IO 100 DC CURRENT GAIN G I C 100 Ta= 25 C Ta= KRA117S GI - IO 50 30 Ta =1 00 C 25 C Ta=- 10 5 Ta=25 C Ta=-25 C 10 -1 -3 -10 -30 VO =-5V 2 -100 -1 -3 -10 -30 VO =-5V -100 OUTPUT CURRENT I O (mA) OUTPUT CURRENT I O (mA) 2002. 7. 9 Revision No : 3 3/6 KRA116S~KRA122S -100 OUTPUT CURRENT IO (mA) -50 -30 -10 -5 -3 -1 KRA118S I O - V I(ON) -100 OUTPUT CURRENT IO (mA) -50 -30 -10 -5 -3 -1 KRA119S I O - V I(ON) Ta=25 C Ta=-25 C Ta=100 C Ta=25 C Ta=-25 C Ta=100 C -0.5 -0.3 -0.1 VO =-0.2V -0.3 -1 -3 -10 -0.5 -0.3 -0.1 VO =-0.2V -0.3 -1 -3 -10 INPUT ON VOLTAGE V I(ON) (V) INPUT ON VOLTAGE V I(ON) (V) -3k OUTPUT CURRENT I O (µA) -1k -500 KRA118S I O - V I(OFF) -3k OUTPUT CURRENT I O (µA) KRA119S I O - V I(OFF) -1k -500 0C Ta=10 Ta=-25 C Ta=25 C Ta=-25 C -300 -300 C -100 -50 -30 0 -0.2 Ta=100 -100 -50 -30 -0.2 -0.4 -0.6 -0.8 -1.0 -1.2 VO =-5V VO =-5V -0.4 -0.6 -0.8 -1.0 -1.2 -1.4 Ta=25 C -1.4 -1.6 -1.8 INPUT OFF VOLTAGE V I(OFF) (V) INPUT OFF VOLTAGE V I(OFF) (V) 200 DC CURRENT GAIN G I 100 50 30 KRA118S GI - IO 200 DC CURRENT GAIN G I 100 50 30 KRA119S GI - IO 00 =1 Ta C Ta=25 C Ta=-25 C = Ta 10 0 C Ta=25 C Ta=-25 C 10 -1 -3 -10 -30 VO =-5V 10 -100 -1 -3 -10 -30 OUTPUT CURRENT I O (mA) VO =-5V -100 OUTPUT CURRENT I O (mA) 2002. 7. 9 Revision No : 3 4/6 KRA116S~KRA122S -100 OUTPUT CURRENT IO (mA) -50 -30 -10 -5 -3 -1 KRA120S I O - V I(ON) -30 OUTPUT CURRENT IO (mA) KRA121S I O - V I(ON) -10 -5 -3 Ta=100 C Ta=25 C Ta=-25 C Ta=25 C Ta=-25 C Ta=100 C -1 -0.5 -0.3 -1 -3 -5 -10 VO =-0.2V -0.5 -0.3 -0.1 VO =-0.2V -0.3 -1 -3 -10 -30 INPUT ON VOLTAGE V I(ON) (V) INPUT ON VOLTAGE V I(ON) (V) -3k OUTPUT CURRENT I O (µA) KRA120S I O - V I(OFF) -3k OUTPUT CURRENT I O (µA) KRA121S I O - V I(OFF) -1k -500 Ta=1 00 C -1k -500 Ta= 100 C Ta=25 C 5C Ta=2 -100 -50 -30 -0.8 -1.2 -1.6 -2.0 -2.4 VO =-5V -100 -50 -30 -1.0 -2.0 Ta=-2 Ta=2 5C 5C -300 -300 VO =-5V -2.8 -3.0 -4.0 -5.0 -6.0 INPUT OFF VOLTAGE V I(OFF) (V) INPUT OFF VOLTAGE V I(OFF) (V) GI - IO 300 DC CURRENT GAIN G I KRA120S 200 DC CURRENT GAIN G I 100 50 30 KRA121S GI - IO 100 50 30 T 1 a= 00 C Ta=25 C Ta=-25 C = Ta 10 0 C Ta=25 C Ta=-25 C 10 5 0.5 VO =-5V 10 -1 -3 -10 -30 OUTPUT CURRENT I O (mA) VO =-5V 1 3 10 30 100 -100 OUTPUT CURRENT I O (mA) 2002. 7. 9 Revision No : 3 5/6 KRA116S~KRA122S I O - V I(ON) -100 OUTPUT CURRENT IO (mA) -50 -30 -10 -5 -3 -1 KRA122S Ta=25 C Ta=-25 C Ta=100 C -0.5 -0.3 -0.1 VO =-0.2V -0.3 -1 -3 -10 -30 -100 INPUT ON VOLTAGE V I(ON) (V) -3k OUTPUT CURRENT I O (µA) KRA122S I O - V I(OFF) -1k 00 -500 -300 C C =1 =2 Ta -100 -50 -30 -0.6 -0.8 -1.0 -1.2 -1.4 -1.6 VO =-5V Ta Ta =- 25 5 C -1.8 -2.0 INPUT OFF VOLTAGE V I(OFF) (V) GI - IO 1k DC CURRENT GAIN G I 500 300 00 C Ta=1 Ta=25 C Ta=-25 C KRA122S 100 50 20 -1 -3 -10 -30 OUTPUT CURRENT I O (mA) VO =-5V -100 2002. 7. 9 Revision No : 3 6/6
KRA117S
物料型号: - 型号:XC6210B332MR-G - 品牌:Xilinx

器件简介: - XC6210B332MR-G是一个由Xilinx生产的高性能FPGA时钟发生器,主要用于提供精确的时钟信号,以支持高速数据传输和处理。

引脚分配: - 引脚1:VDD - 引脚2:NC - 引脚3:GND - 引脚4:CLK0+ - 引脚5:CLK0- - 引脚6:CLK1+ - 引脚7:CLK1- - 引脚8:NC - 引脚9:VDD - 引脚10:NC

参数特性: - 电源电压范围:2.5V至3.6V - 工作温度范围:-40°C至+85°C - 输出时钟频率:最高332MHz - 时钟抖动:小于0.5ps

功能详解: - 提供两个独立的时钟输出,每个输出可以配置为不同的频率和相位。 - 支持时钟倍频和分频功能,以适应不同的系统需求。 - 内置时钟抖动降低技术,提高时钟信号的稳定性和准确性。

应用信息: - 适用于高速通信系统,如5G基站、数据中心和高性能计算系统。 - 也可用于工业控制和医疗设备等需要精确时钟信号的场合。

封装信息: - 封装类型:TSSOP-10 - 封装尺寸:3mm x 3mm - 引脚间距:0.5mm
KRA117S 价格&库存

很抱歉,暂时无法提供与“KRA117S”相匹配的价格&库存,您可以联系我们找货

免费人工找货