受益于新能源汽车的蓬勃发展,汽车电子的需求增长迅猛;相较于传统汽车,新能源汽车对于模拟芯片的需求由电动化和智能化所催生。如动力系统、车身域、汽车座舱、自动驾驶、车载娱乐、车身电子及照明等领域。
新能源汽车对模拟芯片等电子元器件的可靠性要求极高;润石全力推进车规级模拟芯片的研发和生产,采用与国际一流车规级芯片原厂相同水准的制程,材料,工艺,选取拥有IATF16949资质,制程通过AEC-Q100认证且有实际车规量产经验的晶圆厂与拥有IATF16949资质,国际Tier1车规级芯片量产经验的封测代工厂如苏州日月新半导体,通富微电合作,开发导入符合AEC-Q100 Grede1的车规级产品【湿敏等级达到MSL1】,由独立的第三方实验室做车规AEC-Q100的认证;与此同时润石正在国际独立第三方检验与认证机构德国TüV莱茵的辅导下,导入ISO26262 ASILD的功能安全流程体系。
| 类型 | 产品 | 特点 | AEC-Q100 | 封装 |
| 运算放大器 | RS8551-Q1 | Zero-Drift, Rail-to-Rail I/O CMOS Operational Amplifiers | √ | SOT23-5 |
| RS8552-Q1 | Zero-Drift, Rail-to-Rail I/O CMOS Operational Amplifiers | √ | SOP8,MSOP8 | |
| RS8557-Q1 | Zero-Drift, Rail-to-Rail /O CMOS Operational Amplifiers | √ | SOT23-5 | |
| RS8558-Q1 | Zero-Drift, Rail-to-Rail l/O CMOS Operational Amplifiers | √ | SOP8,MSOP8 | |
| RS8701-Q1 | 50MHz, Zero-Crossover, Low-Distortion, RRI/O Operational Amplifier | √ | SOP8 | |
| RS8702-Q1 | 50MHz, Zero-Crossover, Low-Distortion, RRI/O Operational Amplifier | √ | SOP8 | |
| RS8762P-Q1 | 250MHz, Rail-to-Rail Input /Output CMOS Operational Amplifier | √ | MSOP8 | |
| RS321BK-Q1 | 1MHz, Precision, Rail-to-Rail I/O CMOS Operational Amplifier | √ | SC70-5 | |
| RS6331-Q1 | 1.4MHz, Rail-to-Rail l/O CMOS Operational Amplifier | √ | SC70-5,SOT23-5 | |
| RS6332-Q1 | 1.4MHz, Rail-to-Rail I/O CMOS Operational Amplifier | √ | SOP8, MSOP8 | |
| RS6334-Q1 | 1.4MHz, Rail-to-Rail l/O CMOS Operational Amplifier | √ | SOP14,TSSOP14 | |
| RS8411-Q1 | 32V, 1.2MHz Rail-to-Rail Output CMOS Operational Amplifier | √ | SOT23-5 | |
| RS8412-Q1 | 32V,1.2MHz Rail-to-Rail Output CMOS Operational Amplifier | √ | SOP8, MSOP8, TSSOP8 | |
| RS8414-Q1 | 26V,1.2MHz Rail-to-Rail Output CMOS Operational Amplifier | √ | SOP14,TSSOP14 | |
| RS8442-Q1 | 32V, 3.8MHz Rail-to-Rail Output CMOS Operational Amplifier | √ | SOP8,MSOP8,TSSOP8 | |
| RS8444-Q1 | 32V, 3.8MHz Rail-to-Rail Output CMOS Operational Amplifier | √ | SOP14,TSSOP14 | |
| RS8452-Q1 | 32V, 8MHz Rail-to-Rail Output CMOS Operational Amplifier | √ | SOP8, MSOP8 | |
| RS8454-Q1 | 26V, 8MHz Rail-to-Rail Output CMOS Operational Amplifier | √ | SOP14 | |
| RS8473-Q1 | Low-Distortion, Dual-Channel OPA with Integrated Protection for Resolver Drive | √ | ETSSOP14 | |
| RS621-Q1 | 7MHz, Rail-to-Rail I/O CMOS Operational Amplifier | √ | SOT23-5 | |
| RS622-Q1 | 7MHz, Rail-to-Rail I/O CMOS Operational Amplifier | √ | SOP8, MSOP8, DFN2x2-8 | |
| RS721P-Q1 | 13MHz, Rail-to-Rail I/O CMOS Operational Amplifier | √ | SOT23-5 | |
| RS722P-Q1 | 13MHz, Rail-to-Rail I/O CMOS Operational Amplifier | √ | SOP8, MSOP8 | |
| RS724-Q1 | 13MHz, Rail-to-Rail I/O CMOS Operational Amplifier | √ | SOP14,TSSOP14 | |
| RS199XP-Q1 | Bidirectional, Zero-Drift, High or Low Side, Voltage Output, Current Shunt Monitor | √ | SC70-6 | |
| RSA240-Q1 | Bidirectional, Zero-Drift, High or Low Side, Voltage Output, Current Shunt Monitor | √ | TSSOP8,SOP8 |
| 比较器 | RS331-Q1 | General-Purpose Low-Voltage Open-Drain Output Comparator | √ | SOT23-5 |
| RS393-Q1 | General-Purpose Low-Voltage Open-Drain Output Comparator | √ | SOP8 | |
| LM2903-Q1 | General-Purpose High-Voltage Open-Drain Output Quad Comparator | √ | SOP8, MSOP8, TSSOP8 | |
| LM2903V-Q1 | General-Purpose High-Voltage Open-Drain Output Quad Comparators | √ | SOP8, MSOP8,TSSOP8 | |
| LM2901-Q1 | General-Purpose High-Voltage Open-Drain Output Quad Comparators | √ | SOP14,TSSOP14 | |
| LM2901V-Q1 | MSOPGeneral-Purpose High-Voltage Open-Drain Output Quad Comparators-8 | √ | SOP14,TSSOP14 | |
| RS8904-Q1 | High Speed, RRIO, Push-Pull Output Comparator | √ | SOT23-5 | |
| RS8905-Q1 | Nano-Power, CMOS Input, RRIO, Push-Pull Output Comparator | √ | MSOP8 | |
| RS8907-Q1 | Nano-Power, CMOS Input, RRIO, Push-Pull Output Comparator | √ | SOT23-5 |
| 模拟开关 | RS8944-Q1 | Precision Comparator Family | √ | TSSOP14 |
| RS2057A-Q1 | Wide-Bandwidth 1-Channel SPDT Analog Switch | √ | SC70-6 | |
| RS2166A-Q1 | 4.5Ω Single Bilateral SPST Analog Switch | √ | SC70-5 | |
| RS2058A-Q1 | 4.5Ω Low Voltage Dual SPDT Analog Switch | √ | MSOP10 | |
| RS2233-Q1 | Wide-Bandwidth 4-Channel SPDT Video Analog Switch | √ | TSSOP16 | |
| RS2251-Q1 | CMOS Single 8-Channel Analog Multiplexer/Demultiplexer | √ | TSSOP16 | |
| RS2260-Q1 | CMOS Single 8-Channel Analog Multiplexer/Demultiplexer | √ | TSSOP16, QFN2.5x3.5-16L | |
| RMUX1308-Q1 | 8:1, 1-Channel Multiplexers with Injection Current Control | On going | TSSOP16,QFN2.5x3.5-16 | |
| RMUX1309-Q1 | 4:1, 2-Channel Multiplexers with Injection Current Control | √ | TSSOP16, QFN2.5x3.5-16L |
| 电平转换器 | RS0102-Q1 | 2-Bit Bidirectional Voltage-Level Translator for OpenDrain and Push-Pull Applications | √ | UQFN2x1.7-12, TSSOP14, QFN3.5x3.5-14 |
| RS0104-Q1 | 4-Bit Bidirectional Voltage-Level Translator for OpenDrain and Push-Pull Applications | √ | TSSOP-14,QFN2x1.7-12L | |
| RS0108-Q1 | 8-Bit Bidirectional Voltage-Level Translator for OpenDrain and Push-Pull Applications | √ | TSSOP-20 | |
| RS0204A-Q1 | 4-Bit Bidirectional Voltage-Level Translator with Automatic Direction Sensing | √ | UQFN2x1.7-12, TSSOP14 | |
| RS0208A-Q1 | 8-Bit Bidirectional Voltage-Level Translator withAutomatic Direction Sensing | √ | UQFN2x1.7-12, TSSOP14 | |
| RS0302-Q1 | Dual Bidirectional I2C-Bus and SMBus Voltage-Level Translator | √ | VSSOP-8 | |
| RS1T45-Q1 | 1-Bit Dual-Supply Bus Transceiver with Configurable Voltage Translation and 3-State Outputs | √ | SC70-6 | |
| RS2T45-Q1 | 2-Bit Dual-Supply Bus Transceiver with Configurable Voltage Translation and 3-State Outputs | √ | VSSOP-8 | |
| RS4T245-Q1 | 4-Bit Dual-Supply Bus Transceiver with Configurable Voltage Translation and 3-State Output | √ | QFN2.5x3.5-16 | |
| RS4T774-Q1 | 4-Bit Dual-Supply Bus Transceiver with Independent Direction Control | On going | QFN2.6x1.8-16 | |
| RS8T245-Q1 | 8-Bit Dual-Supply Bus Transceiver with Configurable Voltage Translation and 3-State Output | √ | TSSOP24 | |
| RS8T245A-Q1 | 8-Bit Dual-Supply Bus Transceiver with ConfigurableVoltage \ Translation and 3-State Output | √ | TSSOP24, QFN3.5X5.5-24 | |
| RS74AVCH4T245-Q1 | 4-Bit Dual-Supply Bus Transceiver With ConfigurableLevel-Shifting,Voltage Translation | √ | DHVQFN16 |
| 逻辑 | RS1G00-Q1 | Single Channel 2-Input NAND Gate | √ | SC70-5 |
| RS2G00-Q1 | Dual Channel 2-Input NAND Gate | √ | VSSOP8, TSSOP8 | |
| RS4G00-Q1 | Quad Channel 2-Input NAND Gate | √ | SOP14, TSSOP14 | |
| RS1G04-Q1 | Single Channel Inverter | √ | SC70-5 | |
| RS2G04-Q1 | Dual Channel Inverter | √ | SC70-6 | |
| RS1G07-Q1 | Single Channel Non-inverting Buffer, Open-drain Output | √ | SC70-5 | |
| RS1G09-Q1 | Single 2-Input AND Gate with Open-DrainOutput | √ | SC70-5 | |
| RS1G08-Q1 | Single 2-Input Positive-AND Gate | √ | SOT23-5,SC70-5 | |
| RS1GT08-Q1 | Single Channel 2-Input AND Gate,TTL Input | √ | SC70-5 | |
| RS2G08-Q1 | Dual Channel 2-Input Positive-AND Gate | √ | VSSOP8, TSSOP8 | |
| RS4G08-Q1 | Quadruple 2-Input Positive-AND Gate | √ | SOP14, TSSOP14, QFN2.5X3 | |
| RS4GT08-Q1 | Quadruple 2-Input Positive-AND Gate | √ | TSSOP14 | |
| RS1G11-Q1 | Single 3-Input Positive-AND Gate | √ | SC70-6 | |
| RS3G11-Q1 | Triple 3-Input Positive-AND Gate | √ | TSSOP14 | |
| RS1G14-Q1 | Single Schmitt-Trigger Inverter | √ | SC70-5 | |
| RS2G14-Q1 | Dual Schmitt-Trigger Inverter | √ | SC70-6 | |
| RS6G14-Q1 | Six Channel Schmitt-Trigger Inverter | √ | TSSOP14 | |
| RS1G17-Q1 | Single Schmitt-Trigger buffer | √ | SC70-5 | |
| RS2G17-Q1 | Dual Schmitt-Trigger Buffer | √ | SC70-6 | |
| RS1G32-Q1 | Single 2-Input Positive-OR Gate | √ | SOT23-5, SC70-5 | |
| RS4G32-Q1 | Quad Channel 2-input OR Gate | √ | SOP14,TSSOP14 | |
| RS4GT32-Q1 | Quad Channel 2-input OR Gate,TTL Input | √ | TSSOP14, QFN2.5*3 | |
| RS2G34-Q1 | Dual Channel Buffer Gate | √ | UDFN1.45X1-6 | |
| RS1G125-Q1 | Single Bus Buffer Gate With 3-State Output | √ | SC70-5 | |
| RS4G125-Q1 | Quad Active-Low Bus Buffer Gate, 3-State Output | √ | SOP14,TSSOP14 | |
| RS1G126-Q1 | Single Active-High Bus Buffer Gate, 3-State Output | √ | SC70-5 | |
| RS4G126-Q1 | Quad Active-High Bus Buffer Gate, 3-State Output | √ | SOP14, TSSOP14 | |
| RS1G74-Q1 | Single Positive-Edge-Triggered D-Type Flip-Flop | √ | VSSOP-8 | |
| RS1G79-Q1 | Single D-type flip-flop; positive-edge trigger | √ | SC70-5 | |
| RS1G175-Q1 | Single D-Type Flip-Flop with Asynchronous Clear | √ | SC70-6 | |
| RS1G373-Q1 | Single D-type transparent latch; 3-state | √ | SC70-6 | |
| RS244-Q1 | Octal Buffer/Driver With 3-State Outputs | √ | TSSOP20 | |
| RS244S-Q1 | Octal Buffer/Driver With 3-State Outputs | √ | TSSOP20 | |
| RS245S-Q1 | Octal Bus Transceiver with 3-State Outputs | √ | TSSOP20 | |
| RS244T-Q1 | TTL input, Octal Buffer/Driver ,3-State Outputs | √ | TSSOP20 | |
| RS4538-Q1 | Dual retriggerable precision monostable multivibrator | √ | TSSOP16 | |
| RS541T-Q1 | TTL input ,Octal Buffers and Line Drivers ,3-State Outputs | √ | TSSOP20 | |
| RS573-Q1 | Octal D-type transparent Latch,3-State Outputs | √ | TSSOP20 | |
| RS595-Q1 | 8-Bit Shift Registers With 3-State Output | √ | SOP16,TSSOP16 | |
| RS595T-Q1 | 8-Bit Shift Registers, 3-State Output, TTL Input | √ | TSSOP16 | |
| RS74HC74-Q1 | Dual Positive-Edge-Triggered D-Type Flip-Flop with set and reset | √ | SOP14,TSSOP14 |
| 电压基准源 | RS431-Q1 | Precision Programmable Reference | √ | SOT23 |
| RS432-Q1 | Precision Programmable Reference | √ | SOT23 | |
| RS3112-Q1 | Low-Noise, Very Low Drift (10ppm/°C) Precision Voltage Reference | √ | SOT23 | |
| RS34xx-Q1 | Low-Noise, Very Low Drift (10ppm/°C) Precision Voltage Reference | √ | SOT23-6 |
| 线性稳压器 | RS3009-Q1 | 60V / 100mA Output Current LDO | On going | SOT23-3,SOT23-5, SOT223 |
| RS3010-Q1 | 40V/150mA Low-Dropout Voltage-Tracking LDO | On going | ESOP8 | |
| RS3011-Q1 | 40V / 300mA Low-Dropout Voltage-Tracking LDO | √ | ESOP8 | |
| RS3012-Q1 | 40V/400mA Low-Dropout Voltage-Tracking LDO | On going | TO252-4,TO263-5 | |
| RS3014-Q1 | 45V/150mA Ultra-Low IQ LDO | On going | SOT23-3,SOT23-5,SOT223 | |
| RS3015-Q1 | 45V / 300mA, Low Quiescent Current, High PSRR LDO | √ | SOT23-5, SOT89-5, SOT223, DNF2x2-6, ESOP8 | |
| RS3017-Q1 | 40V / 300mA, Low-Quiescent CurrentAdjustable Output Linear Regulator | On going | ESOP8 | |
| RS3027-Q1 | 40V / 300mA, Low-Quiescent CurrentAdjustable Output Linear Regulator | On going | ESOP8 | |
| RS3215-Q1 | 6.5V / 500mA, Low Quiescent Current, Low Noise High PSRR LDO | √ | SOT23-5,DFN2x2-6, DFN3x3-8 |
| 电压检测和复位 | RS706-Q1 | Supply Voltage Supervisor with Watchdog and Manual Reset | √ | SOP8 |
| RS806-Q1 | Supply Voltage Supervisor with Watchdog and Manual Reset | √ | SOT23-5 |
| 时钟和计时器 | RS555-Q1 | Precision Timers | √ | SOP8 |
| LED驱动 | RS3700-Q1 | Single-Channel Linear LED Driver | √ | HMSOP-8 |
| RS3702-Q1 | Three-Channel, High-Side LED Driver with Thermal Sharing Control | √ | ETSSOP16 | |
| RS3703-Q1 | Three-Channel, High-Side LED Driver with Thermal Sharing and Off-Board Binning | √ | ESSSOP20 |
AEC-Q100是美国汽车电子协会(automotive electronics council, AEC)针对车载应用、汽车零部件、汽车车载电子制定实施的可靠性测试标准规范,目的是建立质量管理控制标准,提高车载电子的稳定性和标准化。AEC-Q100认证是集成电路厂商进入汽车领域的入场券,对芯片的质量和可靠性有极高的要求。与消费类半导体相比,汽车电子元器件与芯片的可靠性要求更高,需在更为苛刻的环境下保持正常运行。目前,汽车电子领域常用的认证标准是AEC-Q100,此标准是由汽车电子协会发布的一套集成电路质量测试标准,虽并不是强制认证制度,但现已成为汽车电子领域的通用测试标准。
| 序号 | 测试项目 | 缩写 | 检测方法 |
| A组 加速环境应力测试 | |||
| A1 | 预处理 | PC |
J-STD-020 JESD22-A113 |
| A2 | 有偏温湿度或有偏高加速应力测试 | THB/HAST |
JESD22-A01 JESD22-A110 |
| A3 | 高压或无偏高加速应力测试或无偏温湿度测试 | AC/UHST/TH |
JESD22-A102 JESD22-A118 JESD22-A101 |
| A4 | 温度循环 | TC | JESD22-A104 |
| A5 | 高温存储寿命测试 | HTSL | JESD22-A103 |
| B组 加速寿命模拟测试 | |||
| B1 | 高温工作寿命 | HTOL | JEDEC JESD22-A108 |
| B2 | 早期寿命失效率 | ELFR | AEC-Q100-008 |
| C组 封装组合完整性测试 | |||
| C1 | 绑线剪切 | WBS | AEC-Q100-001 |
| C2 | 绑线拉力 | WBP | MIL-STD883 Method 2011 |
| C3 | 可焊性 | SD | JESD22-B102 |
| C4 | 物理尺寸 | PD |
JESD22-B100 JESD22-B108 |
| C5 | 锡球剪切 | SBS | AEC-Q100-010 |
| C6 | 引脚完整性 | LI | JESD22-B105 |
| D组 芯片晶圆可靠性测试 | |||
| D1 | 电迁移 | EM | / |
| D2 | 经时介质击穿 | TDDB | / |
| D3 | 热载流子注入 | HCI | / |
| D4 | 负温压温度不稳定性 | NBTI | / |
| D5 | 应力迁移 | SM | / |
| E组 电气特性确认测试 | |||
| E1 | 应力测试前后功能参数测试 | TEST | 规格书 |
| E2 | 静电放电(HBM) | HBM | AEC-Q100-002 |
| E3 | 静电放电(CDM) | CDM | AEC-Q100-011 |
| E4 | 闩锁效应 | LU | AEC-Q100-004 |
| E5 | 电分配 | ED | AEC-Q100-009 |
| E6 | 故障等级 | FG | AEC-Q100-007 |
| E7 | 特性描述 | CHAR | AEC-Q003 |
| E8 | 电磁兼容 | EMC | SAE JI752/3 |
| F组 缺陷筛选测试 | |||
| F1 | 过程平均测试 | PAT | AEC-Q001 |
| F2 | 统计良率分析 | SBA | AEC-Q002 |


选取与国际一流车规级汽车电子原厂相同且是行业最顶尖的Cohu三温测试设备,同时开创性地在晶圆级测试中使用低温测试方案,使用行业内最高水准,最通用的 TSK 三温Prober,使测试芯片能够更准确降温到指定温度;润石已经分批次购买数十台Cohu三温测试设备,首批已经投入使用。



| 电机控制系统 |
| 运算放大器 |
| RS721-Q1 / RS722P-Q1 / RS8411-Q1 / RS8412-Q1 / RS8414-Q1 / RS8452-Q1 / RS8454-Q1 / RS8557-Q1 |
| 比较器 |
| RS331-Q1 / RS393-Q1 / LM2901-Q1 / LM2903-Q1 / 2903V-Q1 |
| 电平转换器 |
| RS8T245-Q1 / RS4T245-Q1 / RS2T45-Q1 |
| 逻辑 |
| RS4G00-Q1 / RS1G08-Q1 / RS1G14-Q1 / RS6G14-Q1 / RS1G17-Q1 |
| 电压基准源 |
| RS431-Q1 / RS432-Q1 |
| 电机控制系统 |
| 运算放大器 |
| RS721-Q1 / RS722P-Q1 / RS8411-Q1 / RS8412-Q1 / RS8414-Q1 / RS8452-Q1 / RS8454-Q1 / RS8557-Q1 |
| 比较器 |
| RS331-Q1 / RS393-Q1 / LM2901-Q1 / LM2903-Q1 / 2903V-Q1 |
| 电平转换器 |
| RS8T245-Q1 / RS4T245-Q1 / RS2T45-Q1 |
| 逻辑 |
| RS4G00-Q1 / RS1G08-Q1 / RS1G14-Q1 / RS6G14-Q1 / RS1G17-Q1 |
| 电压基准源 |
| RS431-Q1 / RS432-Q1 |
| 板载充电器 |
| 运算放大器 |
| RS721P-Q1 / RS722P-Q1 / RS724-Q1 / RS8412-Q1 / RS8414-Q1 / RS8557-Q1 |
| 比较器 |
| RS331-Q1 / RS393-Q1 / LM2901-Q1 / LM2903-Q1 / 2903V-Q1 |
| 模拟开关 |
| RS2251-Q1 |
| 电压基准源 |
| RS431-Q1 |
| 车辆控制单元 |
| 运算放大器 |
| RS721-Q1 / RS722P-Q1 / RS8411-Q1 / RS8412-Q1 / RS8414-Q1 |
| 电平转换器 |
| RS0104-Q1 / RS0204-Q1 / RS0108-Q1 / RS8T245-Q1 |
| 电压基准源 |
| RS431-Q1 |
| 电动汽车减速器 |
| 运算放大器 |
| RS721P-Q1 / RS8412-Q1 |
| 比较器 |
| RS331-Q1 / LM2903-Q1 / 2903V-Q1 |
| 逻辑 |
| RS1G17-Q1 |
| 电压基准源 |
| RS431-Q1 |
| DC/DC转换器 |
| 运算放大器 |
| RS721P-Q1 / RS722P-Q1 / RS724-Q1 / RS8412-Q1 / RS8414-Q1 |
| 比较器 |
| RS331-Q1 / RS393-Q1 / LM2901-Q1 / LM2903-Q1 / 2903V-Q1 |
| 电压基准源 |
| RS431-Q1 |
| 虚拟引擎声浪系统 |
| 运算放大器 |
| RS721P-Q1 / RS722P-Q1 / RS724-Q1 / RS321B-Q1 / RS6332-Q1 / RS8411-Q1 / RS8412-Q1 / RS8414-Q1 |
| 比较器 |
| RS2903-Q1 |
| 电平转换器 |
| RS0102-Q1 / RS2T45-Q1 |
| 电动助力转向 |
| 运算放大器 |
| RS721P-Q1 / RS722P-Q1 / RS724-Q1 / RS6332-Q1 / RS8412-Q1 / RS8414-Q1 |
| 比较器 |
| RS331-Q1 / RS393-Q1 / LM2901-Q1 / LM2903-Q1 / 2903V-Q1 |
| 逻辑 |
| RS1G08-Q1 / RS1G125-Q1 |

| 车身控制模块 |
| 运算放大器 |
| RS8411-Q1 / RS8412-Q1 / RS8414-Q1 / RS6332-Q1 |
| 比较器 |
| RS331-Q1 / LM2901-Q1 / LM2903-Q1 / 2903V-Q1 |
| 模拟开关 |
| RS2251-Q1 / RS2260-Q1 |
| 电平转换器 |
| RS0108-Q1 / RS0204-Q1 |
| 逻辑 |
| RS1G17-Q1 / RS1G125-Q1 |
| 暖通空调系统 |
| 运算放大器 |
| RS721P-Q1 / RS722P-Q1 / RS724-Q1 / RS8412-Q1 |
| 比较器 |
| RS393-Q1 / LM2901-Q1 / LM2903-Q1 / 2903V-Q1 |
| 电压基准源 |
| RS431-Q1 |
| 车门模块 |
| 运算放大器 |
| RS8412-Q1 / RS6332-Q1 |
| 比较器 |
| RS331-Q1 / LM2903-Q1 / RS2903V-Q1 |
| 线性稳压器 |
| RS3015-Q1 / RS3009-Q1 |
| PTC 控制器 |
| 运算放大器 |
| RS8557-Q1 / RS722P-Q1 / RS199-Q1 |
| 比较器 |
| RS393-Q1 / LM2903-Q1 / 2903V-Q1 |
| 逻辑 |
| RS1G32-Q1 |
| 线性稳压器 |
| RS3015-Q1 / RS3009-Q1 |
| 新能源尾灯驱动 |
| 运算放大器 |
| RS8442-Q1 |
| 比较器 |
| LM2901-Q1 / LM2903-Q1 / 2903V-Q1 |
| 线性稳压器 |
| RS3015-Q1 |
| LED驱动 |
| RS3700-Q1 / RS3702-Q1 / RS3703-Q1 |
| 智能座舱 |
| 运算放大器 |
| RS621-Q1 / RS622-Q1 |
| 模拟开关 |
| RS2227 / RS2228 |
| 电平转换器 |
| RS010X-Q1 / RS2T45-Q1 / RS4T245-Q1 |
| 线性稳压器 |
| RS3215-Q1 / RS3015-Q1 |
| 负载开关 |
| RS2588 |
| GPS跟踪器 |
| 运算放大器 |
| RS8557-Q1 |
| 比较器 |
| RS8907-Q1 |
| 线性稳压器 |
| RS3215-Q1 |
| 行车记录仪 |
| 运算放大器 |
| RS621-Q1 / RS622-Q1 |
| 模拟开关 |
| RS2227 / RS2228 |
| 电平转换器 |
| RS010X-Q1 / RS2T45-Q1 / RS4T245-Q1 |
| 线性稳压器 |
| RS3215-Q1 / RS3015-Q1 |
| 负载开关 |
| RS2588 |

在质量管理方面从DQE到SQE、CQE、QS建立质量规范、实施及保持质量管理体系,通过质量管理提升产品的制造设计、测试设计、可靠性验证从而提升产品质量。无论是进行AEC-Q100车规级认证还是导入ISO26262功能安全流程认证体系,不仅仅是满足汽车市场的应用,而是借此搭建起更严格的润石品控体系;是润石不断追求更高品质和质量管理水平,迈上质量管理新台阶的品质之路。





