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TLE4945

TLE4945

  • 厂商:

    INFINEON

  • 封装:

  • 描述:

    TLE4945 - Uni- and Bipolar Hall IC Switches for Magnetic Field Applications - Infineon Technologies ...

  • 详情介绍
  • 数据手册
  • 价格&库存
TLE4945 数据手册
Uni- and Bipolar Hall IC Switches for Magnetic Field Applications TLE 4905 L; TLE 4935 L; TLE 4935-2 L; TLE 4945 L; TLE 4945-2L Bipolar IC Features • • • • • • Temperature compensated magnetic performance Digital output signal For unipolar and alternating magnetic fields Large temperature range Protection against reversed polarity Output protection against electrical disturbances P-SSO-3-2 Type TLE 4905 L TLE 4935 L TLE 4935-2 L TLE 4945 L TLE 4945-2L Marking 05 L 35 L 35 2 45 L 45 2 Ordering Code Q67006-A9120 Q67006-A9112 Q67006-A9143 Q67006-A9163 Q62705-K441 Package P-SSO-3-2 P-SSO-3-2 P-SSO-3-2 P-SSO-3-2 P-SSO-3-2 TLE 4905/35/35-2/45/45-2 L (Unipolar/Bipolar Magnetic Field Switches) have been designed specifically for automotive and industrial applications. Reverse polarity protection is included on-chip as is output protection against negative voltage transients. Typical applications are position/proximity indicators, brushless DC motor commutation, rotational indexing etc. Data Sheet 1 2000-07-01 TLE 4905 L; TLE 4935 L; TLE 4935-2 L; TLE 4945 L; TLE 4945-2L Pin Configuration (view on branded side of component) Center of sensitive area 2.08 ±0.15 1.35 ±0.15 1 2 3 VS GND Q AEP01364 Figure 1 Pin Definitions and Functions Pin No. 1 2 3 Symbol Function Supply voltage Ground Output VS GND Q Data Sheet 2 2000-07-01 TLE 4905 L; TLE 4935 L; TLE 4935-2 L; TLE 4945 L; TLE 4945-2L Circuit Description The circuit includes Hall generator, amplifier and Schmitt-Trigger on one chip. The internal reference provides the supply voltage for the components. A magnetic field perpendicular to the chip surface induces a voltage at the hall probe. This voltage is amplified and switches a Schmitt-trigger with open-collector output. A protection diode against reverse power supply is integrated. The output is protected against electrical disturbances. Threshold Generator VS 1 HallGenerator 3 Q VS VRef Amplifier SchmittTrigger Output Stage AEB01243 2 GND Figure 2 Block Diagram Data Sheet 3 2000-07-01 TLE 4905 L; TLE 4935 L; TLE 4935-2 L; TLE 4945 L; TLE 4945-2L Functional Description Unipolar Type TLE 4905 (Figure 3 and 4) When a positive magnetic field is applied in the indicated direction (Figure 3) and the turn-on magnetic induction BOP is exceeded, the output of the Hall-effect IC will conduct (Operate Point). When the current is reduced, the output of the IC turns off (Release Point; Figure 4). + Branded Side Ι S N VQ + VS - AES01231 Figure 3 Sensor/Magnetic-Field Configuration B BOP BRP 0 Induction t VQ VQH Output Voltage VQL t AED01420 Figure 4 Switching Characteristics Unipolar Type Data Sheet 4 2000-07-01 TLE 4905 L; TLE 4935 L; TLE 4935-2 L; TLE 4945 L; TLE 4945-2L Functional Description Bipolar Type TLE 4935/35-2/45 (Figure 5 and 6) When a positive magnetic field is applied in the indicated direction (Figure 5) and the turn-on magnetic induction BOP is exceeded, the output of the Hall-effect IC will conduct (Operate Point). When a reverse magnetic field is generated, the output of the IC turns off (Release Point; Figure 6). + Branded Side Ι S N VQ + VS - AES01231 Figure 5 Sensor/Magnetic-Field Configuration B BOP 0 t BRP Induction VQ VQH Output Voltage VQL t AED01421 Figure 6 Switching Characteristics Bipolar Type Data Sheet 5 2000-07-01 TLE 4905 L; TLE 4935 L; TLE 4935-2 L; TLE 4945 L; TLE 4945-2L Absolute Maximum Ratings Tj = – 40 to 150 °C Parameter Supply voltage Supply voltage Output voltage Output current Output reverse current Junction temperature Junction temperature Junction temperature Storage temperature Thermal resistance Symbol Limit Values Unit Remarks min. max. 32 40 32 100 100 150 170 210 150 190 V V V mA mA °C °C °C °C – – 40 – – – – – 40 – – – 50 – VS VS VQ IQ – IQ Tj Tj Tj Tstg Rth JA t < 400 ms; ν = 0.1 – – – – 1000 h 40 h – K/W – Note: Stresses above those listed here may cause permanent damage to the device. Exposure to absolute maximum rating conditions for extended periods may affect device reliability. Operating Range Parameter Supply voltage Junction temperature Junction temperature Symbol Limit Values Unit Remarks min. max. 24 150 170 V °C °C – – thresholds may exceed the limits 3.8 – 40 – 40 VS Tj Tj Note: In the operating range the functions given in the circuit description are fulfilled. Data Sheet 6 2000-07-01 TLE 4905 L; TLE 4935 L; TLE 4935-2 L; TLE 4945 L; TLE 4945-2L AC/DC Characteristics 3.8 V ≤ VS ≤ 24 V; – 40 °C ≤ Tj ≤ 150 °C Parameter Supply current Symbol – – – – – Limit Values min. typ. 3 4 0.25 – – max. 7 8 0.5 10 1 mA mA V µA µs B < BRP B > BOP Unit Test Condition Test Circuit 1 1 1 1 1 ISHigh ISLow Output saturation VQSat voltage Output leakage current Rise/fall time IQ = 40 mA VQ = 24 V RL = 1.2 kΩ CL ≤ 33 pF IQL tr / tf Note: The listed characteristics are ensured over the operating range of the integrated circuit. Typical characteristics specify mean values expected over the production spread. If not otherwise specified, typical characteristics apply at Tj = 25 °C and the given supply voltage. Data Sheet 7 2000-07-01 TLE 4905 L; TLE 4935 L; TLE 4935-2 L; TLE 4945 L; TLE 4945-2L Magnetic Characteristics 3.8 V ≤ VS ≤ 24 V Parameter Symbol TLE 4905 unipolar TLE 4935 bipolar latch Limit Values TLE 4935-2 bipolar latch TLE 4945 bipolar switch TLE 4945-2 bipolar switch Unit min. max. min. max. min. max. min. max. min. max. Junction Temperature Tj = – 40 °C Turn-ON induction Turn-OFF induction Hysteresis (BOP-BRP) BOP BRP ∆BHY 7.5 5.5 2 19 17 6.5 10 – 20 20 20 – 10 40 15 – 27 30 27 – 15 54 –6 10 –3 –6 1 6 3 5 mT mT mT – 10 6 2 10 Junction Temperature Tj = 25 °C Turn-ON induction Turn-OFF induction Hysteresis (BOP-BRP) BOP BRP ∆BHY 7 5 2 18 16 6 10 – 20 20 20 – 10 40 14 – 26 28 26 – 14 52 –6 10 –3 –6 1 6 3 5 mT mT mT – 10 6 2 10 Junction Temperature Tj = 85 °C Turn-ON induction Turn-OFF induction Hysteresis (BOP-BRP) BOP BRP ∆BHY 6.5 4.5 2 17.5 15 5.5 10 – 20 20 20 – 10 40 13 – 26 26 26 – 13 52 –6 10 –3 –6 1 6 3 5 mT mT mT – 10 6 2 10 Data Sheet 8 2000-07-01 TLE 4905 L; TLE 4935 L; TLE 4935-2 L; TLE 4945 L; TLE 4945-2L Magnetic Characteristics (cont’d) 3.8 V ≤ VS ≤ 24 V Parameter Symbol TLE 4905 unipolar TLE 4935 bipolar latch Limit Values TLE 4935-2 bipolar latch TLE 4945 bipolar switch TLE 4945-2 bipolar switch Unit min. max. min. max. min. max. min. max. min. max. Junction Temperature Tj = 150 °C Turn-ON induction Turn-OFF induction Hysteresis (BOP-BRP) BOP BRP ∆BHY 6 4 2 17 14 5 10 – 20 20 20 – 10 40 12 – 25 24 25 – 12 50 –6 10 –3 –6 1 6 3 5 mT mT mT – 10 6 2 10 Note: The listed characteristics are ensured over the operating range of the integrated circuit. Typical characteristics specify mean values expected over the production spread. If not otherwise specified, typical characteristics apply at Tj = 25 °C and the given supply voltage. Data Sheet 9 2000-07-01 TLE 4905 L; TLE 4935 L; TLE 4935-2 L; TLE 4945 L; TLE 4945-2L VS ΙS 1 + 4.7 nF 2 VS RL CL GND TLE 4905/35/35-2/45-2 3 ΙQ Q AES01244 Unipolar Type TLE 4905 VQ VQH VQH Bipolar Type TLE 4935 VQ VQL 0 VQL B RP B HY B OP B B RP 0 B HY B OP B AED01422 VQ VQH 0.9 VQH 0.1VQH t tr tf AED01246 Figure 7 Test Circuit 1 Data Sheet 10 2000-07-01 TLE 4905 L; TLE 4935 L; TLE 4935-2 L; TLE 4945 L; TLE 4945-2L Mainframe Line 1 4.7 nF 1.2 k Ω 4.7 nF 2 Sensor VS VS GND TLE 4905/35/35-2/45-2 Signal 3 Q AES01247 Figure 8 Application Circuit Data Sheet 11 2000-07-01 TLE 4905 L; TLE 4935 L; TLE 4935-2 L; TLE 4945 L; TLE 4945-2L Quiescent Current versus Supply Voltage ΙS 8 mA 6 AED01248 Quiescent Current versus Junction Temperature ΙS 8 mA AED01249 VQ = High VQ = High 6 4 T j = -40 ˚C T j = 150 ˚C 4 VS = 24 V VS = 4.0 V 2 2 0 0 5 10 15 V 25 0 -50 0 50 100 C Tj 200 VS Quiescent Current Difference versus Temperature 1.0 AED01459 Saturation Voltage versus Output Current 1.2 AED01461 ∆Ι S mA ∆ Ι S = Ι SLow - Ι SHigh 0.75 VQ V 1.0 __ 3.8 V < VS < 24 V Ι Q = 40 mA 0.8 0.5 0.6 T j = 125 ˚C 0.4 0.25 0.2 T j = -40 ˚C 0 -40 0 50 100 150 ˚C 200 0 0 20 40 60 mA 100 Tj ΙQ Data Sheet 12 2000-07-01 TLE 4905 L; TLE 4935 L; TLE 4935-2 L; TLE 4945 L; TLE 4945-2L TLE 4905 Operate-and Release-Point versus Junction Temperature 25 AED01424 TLE 4905 Hysteresis versus Junction Temperature 8 AED01426 B mT 20 __ 3.8 V < VS < 24 V B mT 6 __ 3.8 V < VS < 24 V B OPmax 15 B HYmax B RPmax 4 B OPtyp 10 B RPtyp B OPmin B RPmin 2 B HYtyp 5 B HYmin 0 -40 0 50 100 ˚C Tj 200 0 -40 0 50 100 ˚C Tj 200 TLE 4935 Operate-and Release-Point versus Junction Temperature 30 AED01423 TLE 4935-2 Operate-and Release-Point versus Junction Temperature 30 AED01640 B mT 20 __ 3.8 V < VS < 24 V B mT 20 __ 3.8 V < VS < 24 V B OPmax B OPmax B OPtyp B OPtyp B OPmin 10 B OPmin 10 0 0 -10 B RPmax -10 B RPmax -20 B RPtyp B RPmin B RPtyp -20 -40 0 50 100 B RPmin 200 ˚C Tj -30 -40 0 50 100 ˚C Tj 200 Data Sheet 13 2000-07-01 TLE 4905 L; TLE 4935 L; TLE 4935-2 L; TLE 4945 L; TLE 4945-2L TLE 4945 Operate-and Release-Point versus Junction Temperature 30 AED01425 TLE 4945-2 Operate-and Release-Point versus Junction Temperature 18 AED02353 B mT 20 __ 3.8 V < VS < 24 V B mT 12 __ 3.8 V < VS < 24 V 10 B OPmax B RPmax 6 B OPmax B RPmax B OPtyp B RPtyp B OPmin 0 B OPtyp B RPtyp B OPmin 0 -10 B RPmin -6 B RPmin -20 -12 -30 -40 0 50 100 ˚C Tj 200 -18 -40 0 50 100 ˚C Tj 200 Data Sheet 14 2000-07-01 TLE 4905 L; TLE 4935 L; TLE 4935-2 L; TLE 4945 L; TLE 4945-2L Package Outline P-SSO-3-2 (Plastic Single Small Outline Package) 4.06 +0.13 3 +0.13 1.9max 0.15max 12.7 ±1 1.52 ±0.05 0.35x45˚ 0.79 0.2 +0.1 23.8 ±0.5 0.4 ±0.05 1 1.27 ±0.25 3 9 +0.75 -0.5 38 max. 18 ±0.5 6 ±0.5 0.25 -0.15 Tape 6.35 ±0.4 12.7 ±0.3 4 ±0.3 0.5 ±0.1 GPO05358 d Branded Side Hall-Probe d : Distance chip to upper side of IC P-SSO-3-2 : 0.57 ±0.08 mm AEA02510 Sorts of Packing Package outlines for tubes, trays etc. are contained in our Data Book “Package Information”. Data Sheet 15 Dimensions in mm 2000-07-01 1 -1 Adhesive Tape
TLE4945
### 物料型号 - TLE 4905 L:型号标记为05L,订购代码为Q67006-A9120,封装为P-SSO-3-2。 - TLE 4935 L:型号标记为35L,订购代码为Q67006-A9112,封装为P-SSO-3-2。 - TLE 4935-2 L:型号标记为352,订购代码为Q67006-A9143,封装为P-SSO-3-2。 - TLE 4945 L:型号标记为45L,订购代码为Q67006-A9163,封装为P-SSO-3-2。 - TLE 4945-2L:型号标记为45 2,订购代码为Q62705-K441,封装为P-SSO-3-2。

### 器件简介 TLE 4905/35/35-2/45/45-2 L系列是专为汽车和工业应用设计的单极/双极霍尔IC开关。这些器件集成了霍尔发生器、放大器和施密特触发器,并提供数字输出信号。它们适用于单极和交流磁场,具有温度补偿的磁性能,并能保护反极性和输出免受电气干扰。

### 引脚分配 - 1号引脚(Vs):供电电压。 - 2号引脚(GND):地线。 - 3号引脚(Q):输出。

### 参数特性 - 温度补偿的磁性能:确保在不同温度下磁性能的稳定性。 - 数字输出信号:提供清晰的开关信号。 - 适用于单极和交流磁场:能够处理不同类型的磁场。 - 大温度范围:在广泛的温度范围内工作。 - 反极性保护:防止电源极性接反造成的损害。 - 输出保护:保护输出免受电气干扰。

### 功能详解应用信息 TLE 4905 L系列在正向磁场作用下,当磁场强度超过开启阈值时,输出导通;当磁场强度降低时,输出关闭。典型应用包括位置/接近指示器、无刷直流电机换向和旋转索引等。

### 封装信息 所有型号均采用P-SSO-3-2封装。
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