About XBLW MC34063 DC-DC Converter Control Circuit Test Share
The article chapter before the speech
At present, DC/DC converters are widely used in remote and data communication, computers, office automation equipment, industrial instrumentation, energy storage, audio-visual multimedia and other fields, involving all walks of life in the national economy. Taking XBLW MC34063 circuit as an example, this paper introduces its electrical characteristics and the test method of its booster circuit, analyzes its test principle and the points for attention in the design of booster circuit, and provides some reference for the analysis and production test of DC/DC converters by the majority of users.
一、Quotation
XBLW MC34063 integrated circuit itself contains the main functions required by DC/DC converter, is a bipolar linear integrated monolithic control circuit, due to cost-effective, switching peak current up to 1.5a, the circuit is simple and the efficiency meets the general requirements. therefore, it is widely used in microprocessor (MPU) or MCU based systems. This paper takes our XBLW MC34063 integrated circuit as an example to discuss the test method of dc/dc conversion circuit.
二、The circuit interface is shao
XBLW MC34063 circuit introduction
The XBLW MC34063 circuit is composed of a reference voltage generator with automatic temperature compensation function, a comparator, a duty cycle controlled oscillator, an R-S Flip-Flop and a high-current output switching circuit. The device can be used as the control core of boost converter, buck converter and reverse converter, and the DC/DC converter composed of it is simple and reliable, and only uses a few external components.
Main features: input voltage range of 2.5~40V, output voltage adjustable range of 1.25~40V, output current up to 1.5A, operating frequency up to 180kHz, low static current, short circuit current limit, can achieve boost or buck power converter.
The basic structure and pin function are shown in figure 1:
Pin1: switch tube T1 collector outlet;
Pin2: T1 emitter outlet of the switch tube;
Pin3: timing capacitor CT terminal, adjusting CT can make the operating frequency change in the range of 100~100 KHz;
Pin4: power source;
Pin5: the inverting input end of the voltage comparator is also the output voltage sampling end, which should be connected with two precision resistors with an accuracy of not less than 1% when used;
Pin6: power end;
Pin7: peak load current (Ipk) sampling terminal; 6, 7 when the voltage between the pins exceeds 300mV, the chip will start the internal overcurrent protection function;
Pin8: drive tube T2 collector outlet.
Working principle: the oscillator is continuously charged and discharged by a timing capacitor connected to the CT Pin (Pin 3) from a constant current source to generate an oscillating waveform. Both charge and discharge currents are constant, so the oscillation frequency depends only on the capacity of the external timing capacitor. The C input of the gate is high when the oscillator is charged externally; D the input side is high when the input level of the comparator is below the threshold. When both inputs C and d become high level, the trigger is set to high level and the output switch tube is on. Conversely, when the oscillator is discharging, the C input is low and the flip-flop is reset, leaving the output switch tube in the off state. The current limit detection terminal Pin7 performs its function by detecting the voltage drop on the resistor connected between the VCC and Pin7. When the voltage drop across the resistor is detected to approach more than 300 mV, the current limiting circuit begins to work. At this time, the timing capacitor is quickly charged through the CT Pin (Pin3) to reduce the charging time and the on-time of the output switch tube, resulting in a longer closing time of the output switch tube.
三、Circuit performance electrical parameter test description
XBLW MC34063 circuit performance electrical parameter test description
The test of the circuit includes the oscillator part, the output switch part, the comparator part, the whole device, and the application part such as voltage boost. The following is a description of the main parameters of each part of the test method.
1、Qscillator section
Some parameters of the oscillator are tested, including oscillator frequency (Fosc), charge current (Ichg), discharge current (Idischg), discharge charge current ratio (Idischg/Ichg), current limit detection voltage (Vipk). When the voltage is applied according to the test conditions, the input timing capacitor will produce the charge-discharge triangle waveform as shown in figure 2, according to which the oscillator frequency can be known. According to the formula I=C×ΔV/Δt, its charge-discharge current can be calculated, and VCC= VPin7 = 5V. As shown in figure 2, the charging process of the timing capacitor is significantly greater than the discharge process. Until the current limiting circuit starts to work, the timing capacitor is quickly charged through the CT Pin (Pin3) to reduce the charging time and the on-time of the output switch tube. As a result, the discharge time and the closing time of the output switch tube are extended. When the charging time and the discharge time are equal, the pressure difference between VCC And Vpin7 is the current limiting detection voltage Vipk.
图2 三角波充放电波形图
According to the charge-discharge triangle waveform in figure 2, the oscillator frequency can be known according to the formula I=C×ΔV/Δt, the charge-discharge current can be calculated, and VCC=Vpin7= 5V. From figure 2, it can be seen that the timing capacitor charging process is significantly greater than the discharge process, and the vpin7 voltage is adjusted downward until the current limiting circuit starts to work. At this time, the timing capacitor is quickly charged through the CT Pin (Pin3) to reduce the charging time and the on-time of the output switch tube, resulting in the discharge time and the closing time of the output switch tube being extended. When the charging time and discharge time are equal, the pressure difference between VCC And Vpin7 is the current limiting detection voltage Vipk.
2、Output switch section
In order to meet the requirements of 1.5A peak switching current, darlington connection is usually used. the output from Pin5 to the CE poles of the t1 tube involves the oscillator, gate, and R-S flip-flop. If the t1 tube is to be on, the oscillator output signal must be maintained in the logical 1 state. Figure 3 shows the typical values of the two darlington connections.
3、Comparator section
When the input voltage of Pin5 is lower than the internal Vref, Pin2 will output a square wave of 24-42 KHz, VOL=0 V, and VOH is VCC/2. When the input voltage of Pin5 is higher than the internal Vref, the output of Pin2 is 0 V. Thus, the Vref value is Vth. This test is completed together with the oscillator charge and discharge frequency. Vth electrical parameter table specification is 1.21~ 1.29V (operating temperature is 0~70 ℃), mass production test is usually normal temperature, taking into account the error in the test, the specification can be set to 1.225~ 1.275V range.
四、Test and research on building booster circuit
Test and research on building a boost circuit with XBLW MC34063
DC/DC converters are voltage converters that effectively output a fixed voltage after converting the input voltage. They are generally divided into three categories: boost DC/DC converters, buck DC/DC converters, and reverse DC/DC converters. the following is the test method of the booster circuit composed of XBLW MC34063. Test and research on building a boost circuit with XBLW MC34063
DC/DC converters are voltage converters that effectively output a fixed voltage after converting the input voltage. They are generally divided into three categories: boost DC/DC converters, buck DC/DC converters, and reverse DC/DC converters. The following is the test method of the booster circuit composed of XBLW MC34063.
1、Principle of booster circuit
The principle of the boost circuit composed of XBLW MC34063 is shown in figure 4. When the switch tube T1 in the chip is switched on, the input voltage vin is grounded by the sampling resistance RSC, inductor L, Pin1 and Pin2. At this time, the inductor L begins to store energy, while CO provides energy to the load. When T1 is disconnected, the input voltage vin and the inductor L provide energy to the output load and the capacitor CO simultaneously through the diode 1N5819. During the release of energy, the electromotive force polarity at both ends of the inductor L is the same as the polarity of the input voltage vin, which is equivalent to two power supplies in series, and CO stores the current from the inductor L. After several switching cycles (Figure 5), the voltage of the output capacitor co rises, resulting in the output voltage Vout being higher than the input voltage Vin. The frequency at which the switching tube is on and off is also the operating frequency of the OSC part of the oscillator. As long as this frequency is high enough in relation to the time constant of the output load, a continuous dc voltage can be obtained on the output load. The output voltage is divided by the voltage divider R1 and R2 and then input to the comparator, and the pulse width is controlled together with the reference voltage to obtain the required voltage, namely Vout=Vref× (R1/R2+1).
2、Test methods and results
The test parameters of the booster circuit are shown in table 1. The linear adjustment rate is the relative change of the output voltage vout caused when the input voltage vin changes from 8 V to 16 V under specified conditions. Load adjustment rate is the relative change of output voltage vout when the output current IO changes from 75 MA to 175 MA under specified conditions. The output ripple is to adjust the size of the output load under the specified conditions, so that the output current IO=175 MA, read the ac component peak - peak value contained in the output voltage Vout with the oscilloscope, pay attention to the influence of external interference on the ripple measurement, can make the ground line between the oscilloscope ground terminal and the XBLW MC34063 ground terminal as short as possible. Generally not more than 10 cm, or the equivalent method of external circuit compensation; efficiency is the percentage of output power to input power.
The booster circuit is not connected with a high-power darlington structure switch tube, which is mainly used in the occasions where the output current is small, and the working current can reach tens to hundreds of ma. The test results show that the output stability is high and the conversion efficiency can reach more than 88%.
3、Considerations for designing MC34063 circuits
The design of this test circuit requires special attention (see figure 4) : first, on the PCB board layout, CI and CO should be as close as possible to the circuit under test, which can reduce the copper trace resistance that affects the Vin and Vout ripple. Minimizing the trace length between the inductor l and the output diode 1N5819 can reduce power consumption and improve efficiency. The distance between the output feedback resistor R2 and the inductor L minimizes noise effects. Secondly, in the selection of capacitance, since the input of the booster circuit is a triangular voltage waveform, the input capacitance CI must reduce the input ripple and noise. The size of the ripple is inversely proportional to the size of the input capacitance value, and the larger the capacitance value, the smaller the ripple. If the output load changes very little and the output current is small, it is also safe to use a small capacity input capacitor. If the input voltage of the circuit under test differs very little from the source output, a small volume capacitor can also be selected. If the circuit is required to interfere very little with the ripple of the input voltage source, large capacity capacitors may be required and/or the equivalent series resistance is reduced. The choice of output capacitance CO is determined by the output voltage ripple. In most cases, use capacitors with low equivalent series resistance, such as ceramic and polymer electrolytic capacitors. Otherwise, it is necessary to carefully look at the frequency compensation of the circuit under test, and an additional capacitor may be required at the output circuit end. Third, because the size of the inductance L affects the input and output ripple voltage and current, the choice of inductance is also the key to the design. The conversion efficiency of inductors with low equivalent series resistance is the best. The inductance saturation current rating should be greater than the steady-state peak inductance current of the circuit. Finally, choose a fast schottky rectifier diode (e.g. 1N5819). Compared with ordinary diodes, schottky diodes have low power consumption and high switching frequency. The schottky diode average voltage rating should be greater than the maximum output voltage of the circuit.
五、General knot
The above is from the perspective of the structure and working principle of XBLW MC34063 integrated circuit, the basic electrical parameters and the test method of its booster circuit are explained, which provides a certain reference for the peer test of this type of DC/DC circuit.
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芯伯乐(XBLW)半导体器件选型指南
描述- 芯伯乐产品专注于消费类和工业类市场。主要产品有电源管理IC、低功耗LDO、三端稳压、高中低压MOS管、马达驱动、接口RS485/RS232、达林顿及逻辑电路等。产品广泛应用于无人机、机器人、电源、计算机、仪器仪表、玩具、家电、通讯设备、照明应用、汽车电子、工业自动化设备等领域。
型号- UC2843,DS1302,UC2842,CP2139,TEA2025,UC2845,UC2844,DS1307,CD4069,74HC20,CD4073,CD4072,NE556,TL494,NE555,CD4077,24C128,CD4071,KA7500,CD4070,LM317,LM324B,74HC32,74系列,74HC595,50N06D,CD4066,74HC238,24C256,CD4060,74HC00,LM1875,74HC02,74HC04,74HC07,CP2119,CD4094,CD4518B,CD4093,SN65LBC184,74HC11,74HC14,MAX3485E,24C64,CD4511,74HC10,74HC573,74HC574,MAX3082E,74LVC00,74HC4053,74HC08,74HC4051,74HC4052,CD4082,CD4081,74XX,LMV321,CD4543,MAX3085E,LM239,LM358,CD4538,CD4541,LMV324,24C32,L7805,74HC151,74HC273,74HC153,LM321,LM324,MC33063,24C08,MAX202,74HC123,74HC244,74HC245,74HC126,24C02,24C01,24C04,DS18B20,SN75LBC184,74HC240,LM337,L78MXXH,SN65176,LM339,AMS1117,74HC132,74HC374,50P06D,74HC138,74HC259,74HC139,24C16,74HC373,L293D,CD40106,MAX3490E,ICL7660,LMV358,TDA2822,74XX系列,MAX3491E,TDA2030,74HC192,74HC193,MAX3088E,LM393,MAX481,MAX483,MAX485,MAX487,TLC555,74HC86,74HC165,TL071,MAX489,TL072,MAX488,TDA2003,ULN2001,ULN2002,CD4013,CD4012,CD4011,TL074,MAX3232,74HC160,74HC161,ULN2003,CP116,ULN2004,CP118,74HC164,4000,LM139,ULN2803,CP6208,ULN2804,LM2575,LM258,LM2576,SN75176,MAX232,MC34063,TL082,TL081,CD4001,TL084,24C512,4000系列,LM741,BISSS0001,74LVC1G14,LM2904,CD4027,CD4025,LM2901,LM2903,93C46,74HC540,74HC541,PCF8563,74HCT14,CD4528B,LM2596,MAX490,CD4017,MAX491,74HC74,L298N,CD4020,TL061,TL064,TL062,CD4021,CD4049,NE5532,CD4053,CD4052,93C66,CD4051,CD4050,SG3526,SG3524,L9110S,SG3525,UC3845,UC3846,CP1511,74LVC1G04,OP07C,UC3842,UC3843,UC3844,LM358B,74LVC1G08,TDA2050,93C56,CD4040,74HC533,74HC534,CD4043,LM293
芯伯乐电源管理类芯片介绍:提供主流降压、升压、升降压转换及PWM脉冲调制控制IC,用于驱动外部开关
芯伯乐XBLW的电源管理类芯片方面,主流的DC/DC芯片有降压(Buck)、升压(Boost)、 升降压转换(Buck-Boos)以及PWM脉冲调制控制IC,用于驱动外部开关。随着电子设备朝着更小型化、更高性能的方向发展,电源管理芯片也面临着诸多挑战。芯伯乐(XBLW)未来的发展趋势将聚焦于提高集成度、优化能源效率、提升兼容性和通用性,以及探索新材料和新技术的应用。
产品 发布时间 : 2024-05-04
KODENSHI(可天士)光电器件/编码器/传感器/红外遥控接收头选型指南
描述- 本手册记载的内容截止于2023年8月,后续产品升级时会有更新,届时不会另行通知。因此使用时请参考最新的规格书。没有事前确定规格书就使用产品的情况下,如造成机器故障,可天士概不负责。
型号- KEL-5315C,SCM02-B38,STE,KE2N23F-XX,SEL3528-01,SST553R-01,SIC507D,SST324R-02,SPDI5H7,SML955-11,SPS-12CU,SST553R-02,SRV455-ML01,ST-1MLA,SIS-ED05,ST-1MLB,SPDI542R-F4J,SIS-ED07,PS124TL1,SIS-ED04,SIS-ED03,SFIC553-01,SIS-ED27(ST),SFIC553-02,KEL-1ML2,PS119EL1,SIT30301,S系列,SST755-CL 01,SEL854-01L,SIC506L,SPDI552-02,SST334-02,SEL388-01,SST334-01,SEL755-01,SIT401P1,SPDTS-01,KEF252500CB,S SERIES,EL-1CL3,SIR801,SIT307,SIT204F-02,SIT204F-01,SIT304,SST533R-01,SIT306,SST533R-03,SIT305,PSR11TD1-A,SST433R-10,SPDI341R-01VS,SIT302,SF-14,KE2N19F-XX,SP-1ML,SML955-11T1,SEP,SST553-02,SIS-PT16(ST),SIS-ED23(ST),HPI6FER2,SEP W,SST533R-04,SEP Z,KEL-1KL3V,SIT509,KEITU013S,SEP FA,SGL324-02,SPDA-BD,SIT516,SPS119ED1,PSR11EL6-D,SIT515,SIT514,SRM603LM2M-2,SG-105LF,SIC801D,SIC504L,SIS-ED04(ST),SIC553-03,SIC553-04,SIC553-01,SPDI533R-02,SRV1206-04,SIC553-02,SCG系列,SIS-PT12(ST),SRS-16L,SIT401,SIC503L,SIC433-02,SIT316F,CL-1KL3,SUV455C-01,SIT512-C1,CL-1KL7,SE201,SF-10B,SML766L-01,SIT612,SIT512-CM,SIT401P,SEL553-02,SEL553-03,ORA3S01,SPDI441R-16F,SEL323-04L,KEL-1KL2,K1T3025S,SIA101,SIT206F,SIR-SD5,S42B8 SERIES,SIM304,SST955-01,SPDI552-01-KT,SPDI355-02,STE SERIES,S42B8,R903V-7CL,HPI610A,SPN-S6DN2-02,SIT506,SIT505,SF-10A,SIT508,SIT501,SPDI433-01,KEF SERIES,SIR201,SIC501L,KIR-5105J,SPDI754-03S,SIC501D,SRV555-CL01,SEL331,EL-1KL5,SCM SERIES,ORD1S06,APS01228D,SPDI488-01,EL-1KL3,SIA201R,CL-203,SBV533-06,ST-1CL3H,KE1△01C-15-18,KE2N26F-ZXX,CL-207,CL-209,SICD01L,PS117ED1,R123V-712,SIC553S-04,SCG01-F68,SUV455-03,SRV0805-03,SBV5073-01,SRV0805-01,PS124GD1,SML955-04,KEITU005C,SML955-03,SREC02 SERIES,SIC209D,SST655-01T,SCA系列,SIT604,SEL955-02,KIT2011S,SEL955-03,SIT601,SPDI754R-01,CL-211,SPDI754R-02,SIT602,SRS-13,SIS-ED03(ST),SPDI752-01,SG2A241,SG-105F6,STLS-150,SST331,SST533R-04N,APS623,PS124TD1,SEL755-CL01,KEITS003S,EL-1K3,PS119ED1,SCT-02,SCT-01,SEL3315,SIT205-01,PICA56337,SF-12B,KIR5105J,SIC401L,SIR501G,SIC401D,ORA1S01,KST-1KL3A,KIT3025S,SCA SERIES,SEP FA SERIES,SWL5050-03,SST5003,SML752-02,SST5001,SP-1CL3,SST3315R4,SEP08-W18-2PL,SCG SERIES,KEF302500CB,SF-12A,SPIC1206-01,SF-10,HP202G,SIS-ED06(ST),SUVM375-01,SIT303-01,SPT334R-01,SIC502D-E,KE1△01C-075,SST854R-01L,STE系列,SST0603R-02,SML655L-01,SPDA992-05,SIT512-C,SEP W SERIES,ORD1M13,SIS-PT23(ST),SF-11B,SPDI753R-01,STLS-25D,SPS119EL1,OEA-01,KIT3033S,SCL555-CL01,SIS-PT06(ST),SEL753-03,SG-105,SIC302D,SIS-PT27(ST),KIT3035S,SIR501-C,SST755-CL01,SBV0805-01,SEL323-04,HPI6FER2H,SD202,SITK01-C,SPDI552R-02,SD201,SPDI752-01K,SF-11A,SIR501,SDS1A015-02,SST533R-02PT,SGV0603-03,SPDB82-01,SST533-03,SST388-01,SEL334-01,SEL334-02,SF-11,CL-1CL3,SEL334-03,SIC204F,SITAB74,ST-1KB,SIT511-C,SST854R-01,SITA01-C,ST-1KLB,SF-14B,ST-1KLA,SPD862-03,KCL-203HL,SPD994-02,SIT506S,ORA1L03,SPDI533-01,STE01-01 SERIES,SIT210,SST553-02LD,SIT2A082,SEL533-04,SIR765-02,SST955R-02,KEEN5001A,SST955R-01,SEL533-02,SEL533-03,SEP Z SERIES,SEL533-06,SFCV5050-05,SEL554-1ML2,SEL5003,SF-14A,ST-1MLBR2,SIS-PT20,SIT505S,SIT101,SCA02-W713,SREC02,SPDI754-03,KIT3032S,R123V-10E,SEL854-01,SIS-PT24,SF-12,SEL5001,SRV955-04,SST662-01,SST753R-01,SPDI752R-02,SRV655-CL01,STLS-20D,KAPD-800-001,SG130,SIS-ED20,KAPD-800-002,PSR11TL1-A,KDT-6315A,SIT510-C,SEL324-02,SG132,KEITS005S,STE01-01,SIS-PT18,SPDI542R-F4,SIS-PT16,SST533R-02P,SIT601S,SIS-PT19,SIT504S,SF-13B,SIT311,SPDI752R-03,SPDI752R-04,PS117EL1,SPDI955R-02F,SIS-PT12,SE202F,SPN-B6CA,SRS-12L,SCA,SEP SERIES,SCL334-02,SIS-PT07,SIT208,SIS-PT04,SIS-PT05,SIS-ED18,KST-1KLB,SIT205,SF-13A,SIS-PT08,SIT207,SCG,SST755-02,ST-1KL3A,KEF系列,ST-1KL3B,SCM系列,SPDI542R,SEP系列,SF-13,SP-1KL,SCM,SIS-PT03,SIT506F-A,SEP07-Z36L
润石科技(RUNIC)信号链和电源管理芯片产品选型指南(中英文)
描述- 江苏润石科技有限公司是一家专注于高性能、高品质模拟/混合信号集成电路研发和销售的高科技半导体设计公司。公司主要产品线分为两类:信号链和电源管理,其中信号链包含运算放大器、比较器、模拟开关、数据转换器、电平转换、电压基准源、逻辑器件;电源管理包含线性稳压器、DC/DC、负载开关、复位及马达驱动。产品广泛用于汽车电子、新能源、工业控制、消费类电子、医疗设备、安防监控、仪器仪表、智能家居以及信创等应用领域。
型号- RS1G11,RS2G139,RS2259B,RS7266,RS822S,RS393,RS151,RS1G17,RS50XX,RS1G14,RS8471,RS1G332,RS1G09,RS3112-Q1,RS381,RS1GT32,RS1GT34,RS07,RS266,RS8411-Q1,RS2G00,RS1G32,RS175,RS2G08,RS1G38,RS2G07,RS8491,RS2G04,RS1G34,RS8461P,RS0108-Q1,RS6332-Q1,RS299,RS2G241,RS2G125,RS2G126,RS8021,RS164,RS2587A,RS165,RS2587B,RS2G17,RS724-Q1,RS2G14,RS8462P,RS1507,RS622-Q1,RS1506,RS624P,RS8552,RS8551,RS721P,RS8554,LM2903H,RS6334-Q1,RS721S,RS1G373,RSA240,RS2117H,RS595,RS621-Q1,RS238,RS358,RS8561,RS8442,RS722P,RS8562,RS8441,RS1G240,RS8444,RS8564,RS1G125,RS1G126,RS1920,RS8558,RS2T245,RS8557,RS224,RS221,RS8559,RS222,RS8452,RS3G11-Q1,RS1G157,RS1430B,RS138,RS724P,RS1G00,LM331,RS821S,RS121,RS240,RS1G07,RS1G08,RS1G06,RS1G04,RS8581,RS1G386,RS1G02,RS1G139,RS124,RS245,RS2118H,RS122,RS0302-Q1,RS4T245-Q1,RS4G02,RS3G34,RS4G00,RS1G97,RS432AE,RS4G08,RS1G175,RS0102,RS1G125-Q1,RS1434,RS0104,RS6GT17,RS0101,RS6GT14,RS1438,RS0108,RS240T,RS1T34,RS6GT04,LM393,RS2G86,RS1T45-Q1,RS4G08-Q1,RS1461,RS8905-Q1,RS1T45,RS3750,RS6903,RS4G32,RS1472,RS8T245,RS8557-Q1,RS121P,RS2T45-Q1,RS8422P,RS721P-Q1,RS8032,RS8034,LM2904,RS8907-Q1,RS1G58,LM2901,RS8031,LM2903,RS1G57,RS2601,RS34XX-Q1,RS0302,RS199,RS432-Q1,RS2604,RS2G34,RS181,RS2G32,RS186,RS3G04,RS8452P,RS8464P,RS8488P,RS431AE,RS8054,RS3G11,RS1G74,RS393-Q1,RS8051,RS8052,RS3G14,RS1G79,RS0202,RS0204,RS0208,RS1G86,RS722P-Q1,RS1G08-Q1,RS2233-Q1,RS244-Q1,RS8454P,RS431-Q1,RS8T245-Q1,RS4G86,RS541T-Q1,RS8T245A,RS2251-Q1,RS2252,RS2253,RS3221,RS2251,RS8907,RS3217,RS8906,RS3215,RS8908,RS4GT08,RS8901,RS8905,RS3219,RS8904,RS6332P,RS6332S,RS3231,RS3232,RS2260,RS824,RS2259,RS2257,RS2254,RS706,RS2255,RS8910,RS8912,RS8911,RS821,RS822,RS6331S,RS6331P,RS8702-Q1,RS331-Q1,RS540T,RS3235,RS2268,RS3236,RS3112,RS2266,RS8920,RS8802,RS8452-Q1,RS1G32-Q1,RS8801,RS1GT125,RS4GT125,RS1GT126,RS724,RS3007,RS541T,RS3005,RS3002,RS8931,RS722,RS721,RS16T245A,RS1120,RS2323,RS1473,RS1118,RS73XX-1,RS2582,RS2583,RS2580,RS2099H,RS2T45,RS595T,RS244S,RS595S,RS244T,RS8412P,RS4GT32,RS6G07,RS1G17-Q1,LM2901-Q1,RS809,RS6G04,RS595-Q1,RS2227,RS2228,RS2588,RS2105,RS2102,RS245T,RS2103,RS0104-Q1,RS2101,RS810,RS8414-Q1,RS811,RS6G17,RS6334P,RS138T,RS6G14,RS4538,RS803,RS804,RS2599,RS802,RS2233,RS806,RS8414P,RS90LV011,RS8631,RS8752,RS6331,RS8751,RS6332,RS550,RS2GT08,RS8512,RS8754,RS8511,RS8632,RS6334,RS2099,RS90LV011B,RS2260-Q1,RS90LV047A,RS8454-Q1,RS553,RS432,RS8502,RS8504,RS431,RS555,RS4G157,RS8761,RS8521,RS621P,RS8762,RS8402,RS8522,RS8764,RS8401,RS90LV048A,RS4538-Q1,RS4040,RS8551-Q1,RS90LV012A,RS8514,RS421,RS8634,RS422,RS540,RS6331BP,RS541,RS321BK-Q1,RS8651,RS622P,RS8411,RS8652,RS8654,RS8412,RS8552-Q1,RS2252F,RS339,RS622A,RS8404,RS8524,RS331,RS573,RS574,RS8541,RS8662,RS8661,RS8664,RS8422,RS8542,RS8424,RS74HC74,RS2251F,RS4T774,RS1905,RS8414,RS8538,RS321,RS8539,RS324,RS4G126,RS4G125,RS8412-Q1,LM2903-Q1,RS6651,RS421V,RS2166,RS4T245,RS8701,RS0102-Q1,RS8702,RS8704,RS633,RS8411BP,RS2058,RS422V,RS2057,RS2299,RS6658,RS8837,RS624,RS621,RS622,RS75XX-1,RS1GT14,RS1GT17,RS1G14-Q1,RS8501,RS8622,RS8621,RS1GT08,RS1GT04,RS631B,RS521,RS524,RS522
纳芯微电子(NOVOSENSE)信号感知芯片/隔离与接口芯片/驱动与采样芯片选型指南(英文)
描述- NOVOSENSE Microelectronics (NOVOSENSE, SSE Stock Code 688052) is a highly robust & reliable analog and mixed signal Chip company. Since its establishment in 2013, the company has been focusing on sensor, signal chain, and power management, providing comprehensive semiconductor products and solutions, which are widely used in automotive, industrial, information communication and consumer electronic
型号- NSI6602NA-DLAR,NSL21924-Q1,NCA1051,NSI6602VC-Q1SWR,NSI6622NB-Q1SWKR,NCA1051N-Q1SPR,NSM2017,NSI6602NC-Q1SWR,NSM2019,NSM211X,NSI6602A-Q1SWKR,NSM2013,NIRS485,NSIP83086,NSI6622VB-Q1SPOR,NSM2015,NSM2016,NSC9260X,NSHT30-CLAR,NSD1624-Q1SPR,NSM2011,NSM2012,NSI8231,NSI8230,NSD2621C-DQAGR,NSR33XXX,NSC9262,NSC9260,NSI6801LC-DDBR,NSI6602VD-Q1SWKR,NSC9264,NSP1830,NSG65N15K-DQAFR,NST112X,NCA1042C-Q1DNR,NCA1042,NCA1042A-Q1DNHR,NSI8220NX,NSI6622A-DSWKR,NSI6801TB-DDBR,NSD1624-DSPKR,NSP1833,NST7719,NSP1831,NSP1832,NSM1052,NSM1053,NSI8222,NSA2860X,NSI8221,NSI8220,NSE5701 SERIES,NSI6642C-DSPNR,NSM1051,NSI822XC,NSIP8921W1-DSWR,NSI6602MNF-Q1SWTR,NSD11416-Q1STBR,NSI6602VB-Q1SPNR,NCA3491,NSI6642A-DLAR,NSI6602NB-Q1SWKR,NSA2860_TSSOP,NSD1026V,NSI8221CX-DSWR,NSE34050,NCA1043B-Q1DNKR,NCA1044N-Q1SPR,NSIP8944W1-DSWR,NSL21912-Q1,NSM201X,NSI6622A-Q1SPNR,NCA1051N-Q1,NSM2031,NSI6602MNB-Q1SWTR,NSD7310A-DHSPR,NSM2032,NCA1145-Q1SPKR,NSM2033,NSI8210,NSM2034,NST112-DSTR,NSI6601MB-DSPR,NSD1015T,NSI8266CX-DSWR,NSI6602VD-DSWKR,NSI8222CX-DSPR,NSM105X SERIES,NSD1015MT-DSPR,NSC2860X_DQNR,NCA1021S-Q1SPR,NSI8262CX-DSWR,NSPGS2,NCA34XX,NCA3485,NCA1051C,NSI68011C-DSWAR,NSI8221NX,NSI6602NC-DLAMR,NST1002,NSPGS5,NSM211X SERIES,NSI6602VC-DLAMR,NST1001,NCA1042C-Q1,NSI6602A-DLAR,NSI6602ND-DSWKR,NSM105X,NSD16241-Q1SPR,NSI1303M0X,NSM3011,NSPAS3M SERIES,NSI8240CX-DSPR,NSD7312-Q1,NSM3013,NSM3012,NSA2860_SSOP16,NSA2862X,NSI6642B-DSWKR,NSM1071,NSM1072,NSI823XC,NSI6642A-DLAMR,NSD5604N,NSI319X,NSI6642D-DLAR,NSI8100NC,NSI6602B-Q1SWR,NSI6622ND-DSPNR,NSI6601B-DSPR,NSA2860X-QQNR,NSI8210NX,NSI6642D-DSWKR,NSI6602MF-DSWTR,NSD5604E,NIRSP31,NSI6602MNB-DSWTR,NST175,NST1075,NSI6602A-DSPNR,NCA9617A SERIES,NSI68010B-Q1SWAR,NSI1312D,NSI6642B-DSWR,NSI8222NX,NSI6601C-DSPR,NSI6622NB-DLAR,NSIP8841W1-DSWR,NSP1631,NSI8221CX-DSWVR,NSP1632,NSP1630,NSD56008-Q1HTSPR,NSI6622C-DLAR,NSM301X,NSM107X,NSI824XC,NSI6602VA-Q1SPNR,NSI6602ND-DLAR,NSI6801C-DSWFR,NSD3604-Q1,NCA3176,NSI6801MB-DSWVR,NSD3608-Q1QAJR,NSI1312S,NSI6622VB-Q1SWR,NSI6622B-Q1SPNR,NSD5604N-DHTSPR,NSD1624-DLAJR,NSI68011C-Q1SWAR,NSI6602VA-DLAMR,NSI6602NA-DLAMR,NSI6602NB-DSWR,NSD5604E-DHTSTR,NSR35XXX,NSI6622NB-Q1SWR,NSD5604N-Q1HTSPR,NSD1224X,NSI6602C-Q1SPNR,NSI8100W,NSI6622NA-DSPNR,NSIP8844W1-DSWR,NSI6622NB-DSWKR,NSE5702,NSE5701,NSI8100N,NSP183X,NCA1044-Q1DNR,NSI6622NC-DLAR,NCA1021S-Q1DNR,NSI6622VB-Q1SPNR,NCA1044N-Q1DNR,NSD16241-DSPKR,NSI3190,NSI6602VD-DSWR,NPC060N120A-QTOOT,NSI6622NA-Q1SWKR,NSE34050Q,NSD1224LA-DAFR,NSI8241SX,NSI6622NA-Q1SWR,NSI6622NC-Q1SPNR,NSI8231CX-DSWR,NSI1052-DSWR,NSPGL1 SERIES,NSI6622VA-Q1SPOR,NSA2860X_QQNR,NSI6801B-DSWFR,NSI6602B-Q1SPNR,NSI6601WC-DSWVR,NSI6651ASC-Q1SWR,NSC6272,NSI8263CX-DSWR,NSD8310-Q1HTSXR,NSC6273,NSREF31XX,NSI6622ND-DSWR,NSI6622NC-DSPNR,NSI6602NB-DLAR,NSI6602NB-DSPNR,NSA5312,NSI6622VC-Q1SWKR,NSPGL1,NSI6602A-Q1SWR,NSI6622NC-Q1SPOR,NSPGS2 SERIES,NSI6642C-DLAMR,NSR7808,NSI8220WX,NSI8266WX,NSD56008-Q1,NSD5604NE,NSI6622VA-Q1SPNR,NSI6602VB-DSWKR,NSL2161X-Q1,NCA1042BN-Q1SPR,NCA1057-Q1SPR,NCA1043B-Q1,NCA9511,NSI6602A-DSWR,NSC6280,NSI6602NA-Q1SWKR,NSD8308-Q1,NSI6602NC-DSWR,NSI6801TC-DDBR,NSI8242SX,NSI68515AC-DSWR,NSI6602B-DSWKR,NSI6602VD-DLAMR,NPCO60N120A-QTOIT,NSI8220CX-DSWVR,NSI6622NB-DSWR,NST235,NST117,NSI6602VC-DSWKR,NSI6602VC-Q1SWKR,NSI6602MB-DSWDR,NST118,NCA954X SERIES,NSD16242-Q1SPR,NCA9306 SERIES,NCA1044-Q1SPR,NSI6651,NSI6642B-DLAMR,NSI6602C-DSWKR,NSI8240NX,NSE34050 SERIES,NCA1057N-Q1DNR,NSP163X,NSI6602NC-DSPNR,NCA1042BN-Q1,NSI8221WX,NSI66X2,NSI6631ASC-Q1SWR,NSI6602MNC-DSWTR,NCA1042B-Q1DNR,NSI6642,NSI6601C-DSWVR,NIRS2X,NSI6601MB-DSWR,NSI8266SX,NSI6602NB-Q1SPOR,NCA34XX SERIES,NSI6602NC-Q1SPOR,NSD7310A,NSD8306-Q1,NSI6622ND-DLAMR,NSG65N15K,NSD12409-Q1SPR,NSE4250 SERIES,NCA1042CN-DSPR,NSI6602VA-DSWKR,NSI6642D-DLAMR,NCA1051N,NSI6642A-DSWKR,NIRS20N1-DSPR,NIRS21N1-DSPR,NSI6622NA-DLAR,NSC2860X-DQNR,NSI1042-DSWVR,NCA1042C-Q1SPR,NSI6602C-DSWR,NCA1057-Q1DNR,NSI8221CX-DSPR,NPD010N120A-DTOGT,NSI6602VB-Q1SWR,NSI8210CX-DSPR,NSD1026V-QISPR,NSD12416‒Q1,NSI1050-DDBR,NSI8241NX,NSI6602NC-Q1SPNR,NCA1042BN-Q1DNR,NSR10AXX SERIES,NST461,NSD2621X,NCA1042A-Q1,NSI8222WX,NST103,NSI1303D0X,NSI1303E2X,NSI6622A-Q1SWKR,NSI6602VC-DLAR,NSR31 SERIES,NSD16242-DSPR,NCA9555,NSI1052,NSC6360,NSC6362,NSI6622NB-DLAMR,NSI6651ALC-DSWR,NSC6364,NSI6602NA-DSPNR,NSI6622A-DLAR,NSI6622C-Q1SPNR,NCA1042C,NSI8220CX-DSWR,NSI6622C-DSPNR,NSA3166,NCA1042A-Q1SPR,NSIP8941W0-DSWR,NSI6642B-DLAR,NCA1042B-Q1,NSPGD1M,NSPAS3 SERIES,NSD1624-DSPR,NSI6602VA-Q1SWR,NSD1026V-Q1HMSR,NSI8242CX-DSWR,NSI6602MNC-Q1SWTR,NSL2163X-Q1,NST20,NIRS31,NSREF30XX,NCA9545,NSI6622NA-DLAMR,NSI1042,NSI6611,NCA9546,NSI6622B-DSPNR,NCA9306,NCA9548,NSD12416-Q1SPR,NSI6602MC-Q1SWTR,NSI8242NX,NSD8381-Q1QAIR,NSD8308-Q1HTSXR,NCA9617A,NST1001HA,NSI6602VA-DSWR,NSI1303D2X,NSI1050,NSI6601B-DSWVR,NSD7310-DHSPR,NSI6601,NSD731X-Q1,NCA1057N-Q1SPR,NSR7808GXX,NSD7312-Q1HSPR,NSI6602VB-DLAMR,NSI6602MNF-DSWTR,NSD1026V-DHMSR,NSA3300,NSI6602C-Q1SWKR,NSC2860X,NSD11416‒Q1,NSI6622NB-Q1SPNR,NCA1051N-DSPR,NSI6611ASC-DSWR,NSI22C11,NSI8230CX-DSWR,NSI6801B-DSPR,NSI6622A-DSPNR,NSD12409‒Q1,NSD5604NE-DHTSTR,NSPDSX SERI
澜智(ZETTA)闪存、DDR3(L)和电源管理芯片选型指南
型号- ZD24C64A-SSGMT,ZD25WQ80BOIGT,ZD25Q64BSIGT,ZDV4256M16A-14DPH,ZD24C1MA-SSGMB,ZDV4128M16A-13IPH,ZD35Q2GC-IBR,ZD8028IB5TR,ZDSD16GLGEAG,ZDV4256M16A-11IPH,ZD1117ILTR33,ZD25LQ64ASIGT,ZD24C08A-XGMT,ZD25WD20BNIGR,ZD24C256A-SSGMT,ZDV4256M16A-13DPH,ZDV4128M16A-14DPH,ZD25WQ80BTIGR,ZD24C16A-SSGMT,ZD25LQ64AWIGR,ZD24C32A-SSGMT,ZD25WD40BEIGR,ZDSD02GLGEAG,ZDV4256M16A-14IPH,ZD35Q1GC-IBR,ZDV4128M16A-13DPH,ZD25WQ80BUIGR,ZDSD04GLGEAG,ZDSD64GLGEAG,ZD25WD20BUIGR,ZDSD08GLGEAG,ZDV4128M16A-11IPH,ZD25LD40BNIGR,ZD25WQ16BTIGR,ZDSD01GLGEAG,ZD24C512A-SSGMT,ZD25LQ128AVIGR,ZDND1G08U3D-IA,ZDV4256M16A-13IPH,ZD24C64A-XGMT,ZDV4256M16A-11DPH,ZD1117ILTR18,ZDV4128M16A-14IPH,ZD25WD20BTIGR,ZD25Q64BWIGR,ZDV4128M16A-11DPH,ZD25D40BTIGR,ZD25WQ16BUIGR,ZDND2G08U3D-IA,ZD24C128A-XGMB,ZD25WD40BOIGT,ZD24C08A-SSGMT,ZD25LQ128AWIGT,ZD24C128A-SSGMT,ZD24C16A-XGMB,ZD25D40CEIGR,ZD1117ILTR50,ZDSD32GLGEAG
光颉科技(Viking)薄膜精密电阻选型指南
目录- Company Profile and Resistor Product Introduction Thin Film Precision Resistor Tantalum Nitride (TaN) Thin Film Precision Chip Resistor High Reliability Thin Film Chip Resistors High Power,High Temp Thin Film Resistors High Power Thin Film Chip Resistors Thin Film High Frequency Resistor MELF High Frequency/Precision Resistor Automotive Thin Film Resistors Resistor Applications
型号- ART02.A,ARG05,ARG02,ARTP02.A,ARHV.A,ARG03,CSRA0207,AR02.A,TAR,ART06.A,ARP SERIES,ARG06,AR12,AR13,ARHV05.A,AR10,CSRA0204,AR SERIES,AR06.A,ARTP.A,CSRF0102,CSR0204,CSR0207,ARM..A SERIES,AR13.A,ARM06.A,ARN12,CSRV0102,CSR SERIES,ARM02.A,CSRV,ARM06A,ARF SERIES,AR,CSRP,ARM05A,ARHV.A SERIES,ARF,ARG,ARN05,ARN06,ARN03,CSRF,ART.A SERIES,ARN,ARP,ARP06,ARF05,ART03.A,ARF06,ARHV06.A,ARF03,AR03.A,ART05.A,ARTP03.A,ARTP05.A,CSRF SERIES,CSRP0207,CSRA0102,CSRP0204,ARN SERIES,ARF01,AR05.A,ARF02,ARM02A,TAR SERIES,ARM..A,CSRF0204,CSRF0207,AR12.A,ARM05.A,CSR,ARM03.A,AR10.A,ARTP.A SERIES,CSRV SERIES,AR05,AR06,CSRV0204,AR03,CSRP SERIES,AR01,ART.A,AR02,CSRV0207,ARG SERIES,ARHV13.A,ARM03A,TAR05,TAR06,TAR03,TAR02
Resistor Catalog
型号- CSM06FTEUR100□,HVR03FTEX1003,LR12□T□0M50,TAR03ATCM1001,PAM03BTCX1001N,WMB,TCS12FTE□R050□,AR,AS,ART05,ART06,WMK,CN41,ARW62,CSRW0410,WMP,WMK12FTERR001K,CR..AC,ART03,WMR,CR..AC SERIES,ART02,ARF02BTCN0500N,MOF0623FAGU1001MA,SWR05,CSRH SERIES,MOF1765,SWR02,SWR03,LRJ SERIES,CFR,SWR06,CFS,CRP06,WMK SERIES,MOF0623,MFR1550,FA TYPE,TAR SERIES,LRP12FTDSR015A,FMR1550,TCS12,TCS10,CR..A SERIES,CNF..A SERIES,CS SERIES,CR..A,LR12□T□0M75,FMR,ARN06CTCS1000N,CSRP SERIES,CS,MA TYPE,CRP12,TCS06,LR12□T□1M50,TCS05,CFR0318,TR35JDD1001,TCS03,WMB12FTDSR050K,TCS02,CFS SERIES,CS06FTFUR100A,CSRH0309,CSRA0207,TR100JDD1001,ARP SERIES,CSRV0204DTDV1000,STR35,ASG12,ASG10,CSRA0204,TR50JDD1001,TR50-RF,AS03FTE1002A,CSRP0204DTDV1004,ART..A SERIES,CRG03FA7---10R,ASG0A,ARM..A SERIES,ASG05,ASG06,ASG03,MOF1550,LR12□TES□□□□,4T10,ARG03FTC1001N,ASG02,ARP06BTC□1001N,ARW25,CRG..A SERIES,MFR1145,CRW..A,FA,HVR..A SERIES,FB,FC,4T06,FD,ARW20,ARHV..A SERIES,LRSW1050FTWRR005KA,HVR SERIES,PR03DTDX1000N,CFR1550,MGQ1550,STR35JDD1001,CN..A SERIES,LRP12FTDSR015,CSRA0102,AS43JTF□1002,CN-41,WMB SERIES,LRJ03,LRJ02,ARHV05,ARHV06,LRJ05,LRJ06,CSRW0207,CSRW0309,AR03TTBX1001□,LRA1066,LR SERIES,LRP..A,LRJ12,TFAN SERIES,ARHV13,MOF0932,TAR05,CN-42,TAR06,CN-43,LRJ10,TAR03,TAR02,ARG05,ARG02,ARG03,HVR,ARG06,CRTC06FTCV1002A,MFD0727BBCV1001,FMR SERIES,LR12□TD□□□□,ARW62BTCT1001A,MF06JTEUR005,HVRC SERIES,RT-10,WMR SERIES,RT-12,CSRW SERIES,WMP SERIES,CPR12FL4----1K,CR-03FA7---10R,CSW62,CN-21,CRW SERIES,TR50-RF..A SERIES,CNF,CRG SERIES,CFR1145,ARF05,ARF06,FB TYPE,ARF03,HVR..A,TR35,CN-43JA7---10R,CSRW0207JTGV0100,ARF01,ARF02,RS SERIES,LR12□T□R005,LR12□T□R006,CRW62,LR12□T□R003,LR12□T□R004,LR12□T□R007,ARM..A,CRG03FL7---10R,CSMW62,LR12□T□R001,MF10,LR12□T□R002,MF12,PWR12JTEA1001A,MFR0623,TR50JDD1001-H,MF03,MF05,MF06,TR30,LR12□T□R010,MF02,SRV0102,FMR1145,LRSW1050,ARHV13BTC□1213A,RS-10,RS-12,MOF1145,LR,CNF22FTFY1002,MFR0318,CN..A..,FD TYPE,MA,MC,MF,AS43JTF1000A,HVRC12,LR12□TE□□□□,ARTP..A SERIES,HMR SERIES,CSRH0207,MFR SERIES,MOF2485,CNF..A,AS06,RS-03,MOF SERIES,RS-02,CSRF0204FTDV1000,LRP SERIES,AS05,CSW25FTEUR100□,SWR13,AS02,AS03,AS01,CN41JL6---1K,MFD1040,PWR SERIES,HVRC0A,CSW20,RS-0A,SWR12,LR12□TW□□□□,CRTC..A SERIES,SWR10,RS-05,CRG,HVRC06,RS-06,CSW25,TR50,CRP,PR SERIES,RT-03,RT-02,HVRC06FTEO1004,FIR05,CSRP0207,CRW,RT SERIES,MFD,CSRP0204,AS12,AS10,CRW20,AS SERIES,ASG06FTEV1002,RT-0A,TFAN43B0TC0Y1001N,MFR,RT-05,RT-06,AR03ATC□1001A,CSM,AS0A,CRW25,CSN,CRW25FC7---10R,CN..A,CSW,AR05,AR06,SWR SERIES,AR03,AR04,AR01,CS06FTGUR100□,MGQ1145,ARW..A,AR02,CSW SERIES,AS21,MGQ,CSW08,MF06JTEUR005A,CRG10,PR,RAM13,LR12,PWR..A,CSMW,CRW08,ASG..A SERIES,4T10FTFQR010N,HVR0A,AR12,AR13,AR10,CRG12,FMR0623BTNV1001□,FIR SERIES,WR27JTER1001,HVR06,MF..A,CSRF0102,HVR05,HVR02,HVR03,PWR10,PWR12,PWR13,CRW..A SERIES,CRG0A,QR,RAM05,RAM02,RAM03,RAM06,LR12□TKS□□□□,AS42,AS43,AS41,ARF,ARG,TFAN,HVR12,ARN,RAM12,ARP,CR..A..,RAM10,RS,TCS SERIES,RT,MFD SERIES,LRA0340,CRTC..A,MFD0727,ASG,QR300WR5000JB,LR12□T□6M50,CSRF0204,WMP12FTDRR003F,LR12□TDS□□□□,CSRF0207,ARW..A SERIES,CRP SERIES,RT-03NL7---1R2,CRG06,CS06,CS05,CSM SERIES,CRG05,MGQ0932,CS03,CRG02,CS02,CRG03,CS01,SWR,CRG01,TR100,LRSW1575,CSRA,ARN SERIES,MFR0318BTNW1001□,ARM02,ARM03,HMR05JL7---200M,SWR12JTEA1001□,CS13,CS12,CS10,ARM06FTC□1001A,4T,MGQ0623JA4V1004,ARN12,TR50-RF..A,ARTP03,ARTP05,HMR05,CSMW08,HMR06,CSMW SERIES,CSRW,CSRV,MF SERIES,CS25,CSRP,ARF SERIES,CFR0318JT-W1001MA,AS..A,ASG SERIES,ARN05,CSRH,ARN06,CFR0932,KNQ0932JAGU1000,ARN03,ARTP02,CSRF,LR12□TDR□□□□,TR50JDD1001-RF,CSRF SERIES,PWR12JTEA1001□,CSRH0207FTEU1003,AR SERIES,CSRA SERIES,ART..A,CS37,MFR0932,AS..A SERIES,CSMW20,LRSW..A,LR12□TER□□□□,LR12□TKR□□□□,WR,MC TYPE,PWR05,LR12□TWR□□□□,PWR06,MOF,TR50-H,CSRV SERIES,LR12□TK□□□□,SWR..A SERIES,LRA0766,CSMW36,ARM06,LRSW..A SERIES,ARM05,CS..A SERIES,PWR02,PWR03,HVR03FTEX1003A,AR..A,CN.A..,WMP17,WMP27,LR12□TWS□□□□,MGQ1760,CSRV0102,CNF22FTFY1000A,PWR,CSN SERIES,CNF42,CNF43,CRG..A,AR..A SERIES,CS62,WMP12,RAM SERIES,TR30JDD1001,LRP..A SERIES,ARP06,FMR0623,LRP06,CSM02,FIR05KTF□0020,ART03FTC□1001A,KNQ,CS75,LRSW0630,CSN13,LRP05,RS-03FL7-0R047,CRTC06,CSRA0204DTDV1000,CRTC05,CRTC03,CRTC02,KNQ SERIES,ARTP05FTC□1001A,CFS0204GT-V1000,LRA..A SERIES,CR-03FL7---10RAC,CSM12,CSRV0204,CSM10,WMR28,ASG06FTEX1022A,CSRV0207,WMR27,CNF22,LRA..A,CSM06,CSM05,CSM03,LRP10,LRP12,TAR,PR10,LRJ,CFS0207,PR12,CRW25FL4---10R,TR50JDD1001-RFA,CFS0204,LRP,TFAN43,ASG..A,WMR25,HVRC,MGQ SERIES,PR03,LRJ\LRA..A,PR02,ARHV..A,PR05,LR12JTESR002□,CSN12,CSN10,WMR06,PR06,CSN06,WMR12,CSN05,WMR10,CFR SERIES,AS03FTE□1003,MF..A SERIES,CFS0309,SWR..A,TCS,CS..A,CR-01,MGQ0623,LR12□T□2M50,ARTP..A,CSMW36FTDUR100□,LRA0340FTEDR001MIA,CSN06FTFVR100,CFR0623,4T SERIES,FMR0932,LRJ10-T-□R0R0,CR-12,PWR..A SERIES,CR-10,HMR,SWR12JTEA1001A,FIR,FC TYPE,ARG SERIES,CR-06,CN21,CR-05,CR-02,CR-03,CRW..A..,CR-0A,WMR12FTDRR005K,RAM
润石科技(RUNIC)信号链和电源管理芯片产品选型指南(英文)
描述- Runic Technology‘s product portfolio includes op-amps, comparators, analog switches, data converters, level shifters, little logic ICs, voltage references, LDOs, DC/DCs, load switches, reset ICs. These products are widely used in various industries, such as consumer electronics, computing, communications, industrial, and automotive markets.
型号- RS1G11,RS2G139,RS2259B,RS7266,RS822S,RS393,RS151,RS1G17,RS50XX,RS1G14,RS8471,RS1G332,RS1G09,RS3112-Q1,RS381,RS1GT32,RS1GT34,RS07,RS266,RS8411-Q1,RS2G00,RS1G32,RS175,RS2G08,RS1G38,RS2G07,RS8491,RS2G04,RS1G34,RS8461P,RS0108-Q1,RS6332-Q1,RS299,RS2G241,RS2G125,RS2G126,RS8021,RS164,RS2587A,RS165,RS2587B,RS2G17,RS724-Q1,RS2G14,RS8462P,RS1507,RS622-Q1,RS1506,RS624P,RS8552,RS8551,RS721P,RS8554,LM2903H,RS6334-Q1,RS721S,RS1G373,RSA240,RS2117H,RS595,RS621-Q1,RS238,RS358,RS8561,RS8442,RS722P,RS8562,RS8441,RS1G240,RS8444,RS8564,RS1G125,RS1G126,RS1920,RS8558,RS2T245,RS8557,RS224,RS221,RS8559,RS222,RS8452,RS3G11-Q1,RS1G157,RS1430B,RS138,RS724P,RS1G00,LM331,RS821S,RS121,RS240,RS1G07,RS1G08,RS1G06,RS1G04,RS8581,RS1G386,RS1G02,RS1G139,RS124,RS245,RS2118H,RS122,RS0302-Q1,RS4T245-Q1,RS4G02,RS3G34,RS4G00,RS1G97,RS432AE,RS4G08,RS1G175,RS0102,RS1G125-Q1,RS1434,RS0104,RS6GT17,RS0101,RS6GT14,RS1438,RS0108,RS240T,RS1T34,RS6GT04,LM393,RS2G86,RS1T45-Q1,RS4G08-Q1,RS1461,RS8905-Q1,RS1T45,RS3750,RS6903,RS4G32,RS1472,RS8T245,RS8557-Q1,RS121P,RS2T45-Q1,RS8422P,RS721P-Q1,RS8032,RS8034,LM2904,RS8907-Q1,RS1G58,LM2901,RS8031,LM2903,RS1G57,RS2601,RS34XX-Q1,RS0302,RS199,RS432-Q1,RS2604,RS2G34,RS181,RS2G32,RS186,RS3G04,RS8452P,RS8464P,RS8488P,RS431AE,RS8054,RS3G11,RS1G74,RS393-Q1,RS8051,RS8052,RS3G14,RS1G79,RS0202,RS0204,RS0208,RS1G86,RS722P-Q1,RS1G08-Q1,RS2233-Q1,RS244-Q1,RS8454P,RS431-Q1,RS8T245-Q1,RS4G86,RS541T-Q1,RS8T245A,RS2251-Q1,RS2252,RS2253,RS3221,RS2251,RS8907,RS3217,RS8906,RS3215,RS8908,RS4GT08,RS8901,RS8905,RS3219,RS8904,RS6332P,RS6332S,RS3231,RS3232,RS2260,RS824,RS2259,RS2257,RS2254,RS706,RS2255,RS8910,RS8912,RS8911,RS821,RS822,RS6331S,RS6331P,RS8702-Q1,RS331-Q1,RS540T,RS3235,RS2268,RS3236,RS3112,RS2266,RS8920,RS8802,RS8452-Q1,RS1G32-Q1,RS8801,RS1GT125,RS4GT125,RS1GT126,RS724,RS3007,RS541T,RS3005,RS3002,RS8931,RS722,RS721,RS16T245A,RS1120,RS2323,RS1473,RS1118,RS73XX-1,RS2582,RS2583,RS2580,RS2099H,RS2T45,RS595T,RS244S,RS595S,RS244T,RS8412P,RS4GT32,RS6G07,RS1G17-Q1,LM2901-Q1,RS809,RS6G04,RS595-Q1,RS2227,RS2228,RS2588,RS2105,RS2102,RS245T,RS2103,RS0104-Q1,RS2101,RS810,RS8414-Q1,RS811,RS6G17,RS6334P,RS138T,RS6G14,RS4538,RS803,RS804,RS2599,RS802,RS2233,RS806,RS8414P,RS90LV011,RS8631,RS8752,RS6331,RS8751,RS6332,RS550,RS2GT08,RS8512,RS8754,RS8511,RS8632,RS6334,RS2099,RS90LV011B,RS2260-Q1,RS90LV047A,RS8454-Q1,RS553,RS432,RS8502,RS8504,RS431,RS555,RS4G157,RS8761,RS8521,RS621P,RS8762,RS8402,RS8522,RS8764,RS8401,RS90LV048A,RS4538-Q1,RS4040,RS8551-Q1,RS90LV012A,RS8514,RS421,RS8634,RS422,RS540,RS6331BP,RS541,RS321BK-Q1,RS8651,RS622P,RS8411,RS8652,RS8654,RS8412,RS8552-Q1,RS2252F,RS339,RS622A,RS8404,RS8524,RS331,RS573,RS574,RS8541,RS8662,RS8661,RS8664,RS8422,RS8542,RS8424,RS74HC74,RS2251F,RS4T774,RS1905,RS8414,RS8538,RS321,RS8539,RS324,RS4G126,RS4G125,RS8412-Q1,LM2903-Q1,RS6651,RS421V,RS2166,RS4T245,RS8701,RS0102-Q1,RS8702,RS8704,RS633,RS8411BP,RS2058,RS422V,RS2057,RS2299,RS6658,RS8837,RS624,RS621,RS622,RS75XX-1,RS1GT14,RS1GT17,RS1G14-Q1,RS8501,RS8622,RS8621,RS1GT08,RS1GT04,RS631B,RS521,RS524,RS522
思瑞浦(3PEAK)车规芯片选型指南(英文)
描述- Established in 2012, 3PEAK was listed on the Shanghai Science and Technolog y Innovation Board on September 21, 2020. The company is committed to the research and de velopment of high-performance, high-quality, and highly reliable integrated circuit products, including signal chains, power analog chips, mixed-signal front-ends, and embedded processors to provide customers with all-around solutions
型号- LM2904A-VS1R-S,TPL8032ADQ,TP1562AL1-SO1R-S,TPM27524Q-SO1R-S,TPA2031Q,TPT1042V-SO1R-S,TPL803133Q-DF6R-S,TPT7742-SOBR-S,TPH2861-DF4R-S,TPR6040F30-S3TR-S,TPM2025Q-FC1R-S,TPT1042Q-SO1R-S,TPA1881Q-S5TR-S,TPR6040F33-S3TR-S,LM2902A-TS2R-S,TPR33XX,TPA8001-SOAR-S,TPA8003-SOAR-S,TP1564AL1-SO2R-S,TPL905236-S5TR-S,TP2262L1-SO1R-S,TPT1043Q-SO2R-S,TPT1051VQ-DF6R-S,TPR6040FXX,TPT1051Q-SO1R-S,TPT774X,TPL803133Q-EV1R-S,LM2903DQ-SO1R-S,TPT1051Q-DF6R-S,TPL8652FQ-ES1R-S,LM2903A-SO1R-S,TPT1051VQ-SO1R-S,TPR3330-S3TR-S,TPT7741F-SO3R-S,TPL803133Q-ST4R-S,TPT7741F-SOBR-S,TPL803450Q,TPL803450Q-EV1R-S,TPR3312-S3TR-S,TPL803150Q-ST4R-S,TPL905218-S5TR-S,TPL905233-S5TR-S,TPT7720-SO1R-S,TPR6040F25-S3TR-S,TPT1043Q-DFKR-S,TPL905215-S5TR-S,TPR6040F20-S3TR-S,TPL8651Q-ES1R-S,LM2901A-SO2R-S,TPT1145NQ-SO2R-S,TPL9052XX,TPL8031XXQ,TPA2644-SO2R-S,LM2904A-TS1R-S,TPM650XAQ,TPL8151ADQ-ES1R-S,TPL865XQ,TPT772X,TPT1042Q-DF6R-S,TPT7721-SOBR-S,TPT1044V-SO1R-S,TPT1145Q-SO2R-S,TPR3325-S3TR-S,TPR431B-S3TR-S,TPR6040F50-S3TR-S,TPW3188Q,TPT7742F-SOBR-S,TPA1882Q-VR-S,TPR3320-S3TR-S,TPL910ADJQ,TPT7740F-SO3R-S,TPC5120Q-TS7R-S,TPL803150Q-DF6R-S,TPL910ADJQ-DF6R-S,TPV8368SAQ,TPA1882Q-SO1R-S,TP1561AL1-S5TR-S,TPA5561Q-S5TR-S,TPL905225-S5TR-S,TPL905228-S5TR-S,TPT7741-SSAR-S,TPL8151ADQ,LM2902A-SO2R-S,TP2261L1-S5TR-S,TPA2031Q-S5TR-S,TPM2025Q,TPL803150Q-EV1R-S,TPM27524Q-DF4R-S,LM2903A-TS1R-S,TPV8368SAQ-S6TR-S,TPT1145NQ,TP1562AL1-VS1R-S,TPL803133-ST4R-S,TPT104XQ,TPR3333-S3TR-S,TPT1042VQ-SO1R-S,TPL905230-S5TR-S,LM2903A-VS1R-S,TPM27524Q-EV1R-S,TPR6040F40-S3TR-S,TPM27524Q,TPT7721-SO1R-S,LM2901A-TS2R-S,TPM6501AQ-S5TR-S,TPL905212-S5TR-S,TPT7720F-SO1R-S,TPA188XQ,TPT1145NQ-DFKR-S,TPR431B,TPM6505AQ-S6TR-S,TPT7741-SOBR-S,TPA5561Q,TPT1051VQ,TPT1042VQ-DF6R-S,TPL8032ADQ-ES1R-S,LM2904A-SO1R-S,TPW3188Q-TS3R-S,TPC5120Q,LM2903DQ,TPR3340-S3TR-S
电子商城
服务
可定制电感最大电流100A,尺寸最小7 x 7 x 3.0mm到最大35 x 34 x 15.5 mm,工作频率100KHZ ~ 2MHZ,感值范围:0.15 ~ 100uh;支持大功率电感,扁平线电感,大电流电感,高频电感,汽车电感器,车规电感,一体成型电感等定制。
最小起订量: 5000 提交需求>
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