AIP74HC4053SA.TR

AIP74HC4053SA.TR

  • 厂商:

    I-CORE(中微爱芯)

  • 封装:

    SOP-16

  • 描述:

    三路二通道模拟多路复用器/解复用器

  • 数据手册
  • 价格&库存
AIP74HC4053SA.TR 数据手册
Wuxi I-CORE Electronics Co., Ltd. Tab: 835-12 rev:B3 Number:AiP74HC/HCT4053-AX-LJ-E009EN or e AiP74HC/HCT4053 Triple 2-channel Analog Multiplexer/Demultiplexer Specification i-c Product Specification Revision History: Version Date 2019-12-A1 2021-10-A2 2019-12 2021-10 Description New Modify Ordering Information Address:Building B4,NO.777,Jianzhu Road,Binhu District,Wuxi City,Jiangsu Province http://www.i-core. cn P.C.:214072 1/ 29 VER:2021-10-A2 Wuxi I-CORE Electronics Co., Ltd. Tab: 835-12 rev:B3 Number:AiP74HC/HCT4053-AX-LJ-E009EN 1、 General Description The AiP74HC/HCT4053 is a triple single-pole double-throw analog switch (3×SPDT) suitable for use in analog or digital 2:1 multiplexer/demultiplexer applications. Each switch features a digital select input (Sn), two independent inputs/outputs (nY0 and nY1) and a common input/output (nZ). A digital enable — — input (E) is common to all switches. When E is HIGH, the switches are turned off. Inputs include clamp diodes. This enables the use of current limiting resistors to interface inputs to voltages in excess of VCC. or e Features:  Wide analog input voltage range from -5 V to +5 V  Wide supply voltage range AiP74HC4053: from 3V to 9V AiP74HCT4053: from 4.5V to 5.5V  Low ON resistance: – 80 Ω (typical) at VCC - VEE = 4.5 V – 70 Ω (typical) at VCC - VEE = 6.0 V – 60 Ω (typical) at VCC - VEE = 9.0 V  Logic level translation: to enable 5 V logic to communicate with ±5 V analog signals  Typical “break before make” built-in  Specified from -40℃ to +85℃  Packaging information: DIP16/SOP16/TSSOP16 i-c Applications:  Analog multiplexing and demultiplexing  Digital multiplexing and demultiplexing  Signal gating Address:Building B4,NO.777,Jianzhu Road,Binhu District,Wuxi City,Jiangsu Province http://www.i-core. cn P.C.:214072 2/ 29 VER:2021-10-A2 Wuxi I-CORE Electronics Co., Ltd. Tab: 835-12 rev:B3 Number:AiP74HC/HCT4053-AX-LJ-E009EN Ordering Information: Tube packing specifications: Packaging form Type number Marking code Tube quantity Boxed tube quantity Boxed quantity Packing box number Packing quantity DIP16 74HC4053 25 PCS/tube 40 tube/box 1000 PCS/box 10 box/pack 10000 PCS/pack AiP74HCT4053DA.TB DIP16 74HCT4053 25 PCS/tube 40 tube/box 1000 PCS/box 10 box/pack 10000 PCS/pack AiP74HC4053SA.TB SOP16 74HC4053 50 PCS/tube 200 tube/box 10000 PCS/box 5 box/pack 50000 PCS/pack AiP74HCT4053SA.TB SOP16 74HCT4053 50 PCS/tube 200 tube/box 10000 PCS/box 5 box/pack 50000 PCS/pack Dimensions of plastic enclosure: 19.0mm×6.4mm Pin spacing: 2.54mm Dimensions of plastic enclosure: 19.0mm×6.4mm Pin spacing: 2.54mm Dimensions of plastic enclosure: 10.0mm×3.9mm Pin spacing: 1.27mm Dimensions of plastic enclosure: 10.0mm×3.9mm Pin spacing: 1.27mm Dimensions of plastic enclosure: 5.0mm×4.4mm Pin spacing: 0.65mm Dimensions of plastic enclosure: 5.0mm×4.4mm Pin spacing: 0.65mm i-c or e AiP74HC4053DA.TB Notes AiP74HC4053TA.TB TSSOP16 74HC4053 96 PCS/tube 200 tube/box 19200 PCS/box 10 box/pack 192000 PCS/pack AiP74HCT4053TA.TB TSSOP16 74HCT4053 96 PCS/tube 200 tube/box 19200 PCS/box 10 box/pack 192000 PCS/pack Address:Building B4,NO.777,Jianzhu Road,Binhu District,Wuxi City,Jiangsu Province http://www.i-core. cn P.C.:214072 3/ 29 VER:2021-10-A2 Wuxi I-CORE Electronics Co., Ltd. Tab: 835-12 rev:B3 Reel packing specifications: Packaging Type number Marking code form Reel quantity Number:AiP74HC/HCT4053-AX-LJ-E009EN Boxed reel quantity Packing quantity SOP16 74HC4053 4000 PCS/reel 8000 PCS/box 64000 PCS/pack AiP74HCT4053SA.TR SOP16 74HCT4053 4000 PCS/reel 8000 PCS/box 64000 PCS/pack AiP74HC4053TA.TR TSSOP16 74HC4053 5000 PCS/reel 10000 PCS/box 80000 PCS/pack AiP74HCT4053TA.TR TSSOP16 74HCT4053 5000 PCS/reel 10000 PCS/box 80000 PCS/pack Dimensions of plastic enclosure: 10.0mm×3.9mm Pin spacing:1.27mm Dimensions of plastic enclosure: 10.0mm×3.9mm Pin spacing:1.27mm Dimensions of plastic enclosure: 5.0mm×4.4mm Pin spacing:0.65mm Dimensions of plastic enclosure: 5.0mm×4.4mm Pin spacing:0.65mm or e AiP74HC4053SA.TR Notes i-c Note: If the physical information is inconsistent with the ordering information, please refer to the actual product. Address:Building B4,NO.777,Jianzhu Road,Binhu District,Wuxi City,Jiangsu Province http://www.i-core. cn P.C.:214072 4/ 29 VER:2021-10-A2 Wuxi I-CORE Electronics Co., Ltd. Tab: 835-12 rev:B3 Number:AiP74HC/HCT4053-AX-LJ-E009EN 2、Block Diagram And Pin Description 2.1、Block Diagram i-c or e Figure 1. Logic symbol Figure 2. IEC logic symbol Figure 3. Schematic diagram (one switch) Address:Building B4,NO.777,Jianzhu Road,Binhu District,Wuxi City,Jiangsu Province http://www.i-core. cn P.C.:214072 5/ 29 VER:2021-10-A2 Wuxi I-CORE Electronics Co., Ltd. rev:B3 Number:AiP74HC/HCT4053-AX-LJ-E009EN or e Tab: 835-12 i-c Figure 4. Functional diagram 2.2、Pin Configurations Address:Building B4,NO.777,Jianzhu Road,Binhu District,Wuxi City,Jiangsu Province http://www.i-core. cn P.C.:214072 6/ 29 VER:2021-10-A2 Wuxi I-CORE Electronics Co., Ltd. Tab: 835-12 rev:B3 Number:AiP74HC/HCT4053-AX-LJ-E009EN 2.3、Pin Description Pin No. 1 2 3 4 5 Pin Name 2Y1 2Y0 3Y1 3Z 3Y0 Description independent input or output independent input or output independent input or output common output or input independent input or output 6 E enable input (active LOW) 7 8 9 10 11 12 13 14 15 16 VEE GND S3 S2 S1 1Y0 1Y1 1Z 2Z VCC supply voltage ground supply voltage select input select input select input independent input or output independent input or output common output or input common output or input supply voltage or e — 2.4、Function Table Input — E Sn i-c L L L H H X Note: H=HIGH voltage level; L=LOW voltage level; X=don’t care. Address:Building B4,NO.777,Jianzhu Road,Binhu District,Wuxi City,Jiangsu Province http://www.i-core. cn P.C.:214072 Channel ON nY0 to nZ nY1 to nZ switches off 7/ 29 VER:2021-10-A2 Wuxi I-CORE Electronics Co., Ltd. Tab: 835-12 rev:B3 Number:AiP74HC/HCT4053-AX-LJ-E009EN 3、Electrical Parameter 3.1、Absolute Maximum Ratings (Voltages are referenced to GND (ground=0V), unless otherwise specified.) Symbol VCC IIK ISK ISW IEE ICC IGND Tstg Ptot P Soldering temperature TL Conditions - [1] VI < -0.5 V or VI > VCC + 0.5 V VSW < -0.5 V or VSW > VCC + 0.5 V -0.5 V < VSW < VCC + 0.5 V [2] per switch DIP 10s SOP Min. -0.5 -65 - Max. +11.0 ±20 ±20 ±25 ±20 50 -50 +150 500 100 Unit V mA mA mA mA mA mA ℃ mW mW ℃ ℃ e Parameter supply voltage input clamping current switch clamping current switch current supply current supply current ground current storage temperature total power dissipation power dissipation 245 250 i-c or Note: [1] To avoid drawing VCC current out of terminal nZ, when switch current flows into terminals nYn, the voltage drop across the bidirectional switch must not exceed 0.4V. If the switch current flows into terminal nZ, no VCC current will flow out of terminals nYn, and in this case there is no limit for the voltage drop across the switch, but the voltages at nYn and nZ may not exceed VCC or VEE. [2] For DIP16 packages: above 70℃ the value of Ptot derates linearly with 12mW/K. For SOP16 packages: above 70℃ the value of Ptot derates linearly with 8mW/K. For (T)SSOP16 packages: above 60℃ the value of Ptot derates linearly with 5.5mW/K. Address:Building B4,NO.777,Jianzhu Road,Binhu District,Wuxi City,Jiangsu Province http://www.i-core. cn P.C.:214072 8/ 29 VER:2021-10-A2 Wuxi I-CORE Electronics Co., Ltd. Tab: 835-12 rev:B3 Number:AiP74HC/HCT4053-AX-LJ-E009EN 3.2、Recommended Operating Conditions Symbol supply voltage VCC input voltage VI switch voltage Min. Typ. Max. Unit 3.0 3.0 5.0 5.0 9.0 9.0 V V - 0 - VCC VSW - VEE - VCC V V ambient temperature Tamb input transition rise and fall rate Δt/ΔV in free air VCC = 4.5 V VCC = 6.0 V VCC = 9.0 V -40 - 1.67 - +85 139 83 31 ℃ ns/V ns/V ns/V AiP74HCT4053 VCC - GND VCC - VEE 4.5 3.0 5.0 5.0 5.5 9.0 V V supply voltage VCC input voltage switch voltage VI - 0 - VCC VSW - VEE - VCC V V Tamb in free air VCC = 4.5 V VCC = 6.0 V VCC = 9.0 V -40 - 1.67 - +85 139 - ℃ ns/V ns/V ns/V or ambient temperature Conditions AiP74HC4053 VCC - GND VCC - VEE e Parameter input transition rise and fall rate Δt/ΔV 3.3、Electrical Characteristics 3.3.1、DC Characteristics 1 i-c (Tamb=25℃, voltages are referenced to GND (ground=0V), unless otherwise specified.) Parameter ON resistance (peak) ON resistance (rail) Symbol RON(peak) RON(rail) Conditions VCC = 4.5 V; VEE = 0 V Vis = VCC to VEE; VCC = 6.0 V; ISW = 1000 uA VEE = 0 V VCC = 4.5 V; VEE = -4.5 V VCC = 4.5 V; VEE = 0 V Vis = VEE; VCC = 6.0 V; ISW = 1000 uA VEE = 0 V VCC = 4.5 V; VEE = -4.5 V VCC = 4.5 V; VEE = 0 V Vis = VCC; ISW = 1000 uA VCC = 6.0 V; VEE = 0 V Min. Typ. Max. Unit - 100 180 Ω - 90 160 Ω - 70 130 Ω - 80 140 Ω - 70 120 Ω - 60 105 Ω - 90 160 Ω - 80 140 Ω Address:Building B4,NO.777,Jianzhu Road,Binhu District,Wuxi City,Jiangsu Province http://www.i-core. cn P.C.:214072 9/ 29 VER:2021-10-A2 Wuxi I-CORE Electronics Co., Ltd. ON resistance mismatch between channels rev:B3 ΔRON HIGH-level input voltage VIH LOW-level input voltage VIL II Vis = VCC to VEE VCC = 4.5 V; VEE = -4.5 V VCC = 4.5 V; VEE = 0 V VCC = 6.0 V; VEE = 0 V VCC = 4.5 V; VEE = -4.5 V AiP74HC4053 VCC = 4.5 V VCC = 6.0 V VCC = 9.0 V VCC = 4.5 V VCC = 6.0 V VCC = 9.0 V - 65 120 Ω - 9 - Ω - 8 - Ω - 6 - Ω 3.15 4.2 6.3 - 2.4 3.2 4.7 2.1 2.8 4.3 1.35 1.8 2.7 V V V V V V VEE = 0 V; VI = VCC or GND - - ±0.1 uA VCC = 6.0 V or input leakage current Number:AiP74HC/HCT4053-AX-LJ-E009EN e Tab: 835-12 OFF-state leakage current IS(ON) - - ±0.2 uA - - ±0.1 uA - - ±0.1 uA - - ±0.1 uA - - 8.0 uA - - 16.0 uA - - 3.5 - pF independent pins nYn - 5 - pF common pins nZ - 8 - pF VCC= 9.0 V; per channel VEE= 0 V; VI= VIH or VIL; |VSW| = VCC - VEE; all channels see Figure 7 VI= VIH or VIL; |VSW| = VCC-VEE;VCC= 9.0 V; VEE= 0 V; see Figure 8 VEE = 0 V; VCC = 6.0 V VI = VCC or GND; Vis = VEE or VCC; VCC = 9.0 V Vos = VCC or VEE i-c ON-state leakage current IS(OFF) VCC = 9.0 V supply current ICC input capacitance CI switch capacitance CSW AiP74HCT4053 HIGH-level input voltage LOW-level input voltage input leakage current VIH VCC = 4.5 V to 5.5 V 2.0 1.6 - V VIL VCC = 4.5 V to 5.5 V - 1.2 0.8 V II VI = VCC or GND; VCC = 5.5 V; VEE= 0 V - - ±0.1 uA Address:Building B4,NO.777,Jianzhu Road,Binhu District,Wuxi City,Jiangsu Province http://www.i-core. cn P.C.:214072 10/ 29 VER:2021-10-A2 Wuxi I-CORE Electronics Co., Ltd. OFF-state leakage current ON-state leakage current supply current rev:B3 IS(OFF) IS(ON) ICC ΔICC input capacitance CI VCC= 9.0 V; per channel VEE= 0 V; VI= VIH or VIL; |VSW| = VCC - VEE; all channels see Figure 7 VCC= 9.0 V; VEE= 0 V; VI= VIH or VIL; |VSW| = VCC-VEE; see Figure 8 VI = VCC or GND; Vis = VEE or VCC; Vos = VCC or VEE; - - ±0.1 uA - - ±0.1 uA - - ±0.1 uA VCC = 5.5V; VEE = 0 V - - 8.0 uA VCC = 4.5V; VEE = -4.5V - - 16.0 uA per input; VI = VCC-2.1V; other inputs at VCC or GND; VCC = 4.5 V to 5.5 V; VEE = 0 V - 50 180 uA - - 3.5 - pF independent pins nYn - 5 - pF common pins nZ - 8 - pF or additional supply current Number:AiP74HC/HCT4053-AX-LJ-E009EN e Tab: 835-12 switch capacitance CSW Note: [1] VI= VIH or VIL; for test circuit see Figure 5. [2] Vis is the input voltage at a nYn or nZ terminal, whichever is assigned as an input. [3] Vos is the output voltage at a nYn or nZ terminal, whichever is assigned as an output. i-c 3.3.2、DC Characteristics 2 (Tamb = -40℃~85℃, voltages are reference to GND (ground=0V), unless otherwise specified, unless otherwise specified.) Parameter Symbol Conditions Min. Typ. Max. VCC = 4.5 V; 225 VEE = 0 V Vis = VCC to VEE; VCC = 6.0 V; ON resistance (peak) RON(peak) 200 ISW = 1000 uA VEE = 0 V VCC = 4.5 V; 165 VEE = -4.5 V VCC = 4.5 V; 175 VEE = 0 V Vis = VEE; VCC = 6.0 V; 150 ISW = 1000 uA VEE = 0 V ON resistance (rail) RON(rail) VCC = 4.5 V; 130 VEE = -4.5 V Vis = VCC; VCC = 4.5 V; 200 ISW = 1000 uA VEE = 0 V Address:Building B4,NO.777,Jianzhu Road,Binhu District,Wuxi City,Jiangsu Province http://www.i-core. cn P.C.:214072 Unit Ω Ω Ω Ω Ω Ω Ω 11/ 29 VER:2021-10-A2 Wuxi I-CORE Electronics Co., Ltd. ON resistance mismatch between channels rev:B3 ΔRON VIH LOW-level input voltage VIL VCC = 6.0 V; VEE = 0 V VCC = 4.5 V; VEE = -4.5 V VCC = 4.5 V; VEE = 0 V VCC = 6.0 V; Vis = VCC to VEE VEE = 0 V VCC = 4.5 V; VEE = -4.5 V AiP74HC4053 VCC = 4.5 V VCC = 6.0 V VCC = 9.0 V VCC = 4.5 V VCC = 6.0 V VCC = 9.0 V - - 175 Ω - - 150 Ω - - - Ω - - - Ω - - - Ω 3.15 4.2 6.3 - - 1.35 1.8 2.7 V V V V V V or HIGH-level input voltage Number:AiP74HC/HCT4053-AX-LJ-E009EN e Tab: 835-12 input leakage current IS(OFF) - - ±1.0 uA VCC = 9.0 V - - ±2.0 uA - - ±1.0 uA - - ±1.0 uA - - ±1.0 uA - - 80.0 uA - - 160.0 uA - - - - pF independent pins nYn - - - pF common pins nZ - - - pF VCC= 9.0 V; per channel VEE= 0 V; VI= VIH or VIL; |VSW| = VCC - VEE; all channels see Figure 7 VI= VIH or VIL; |VSW| = VCC-VEE;VCC= 9.0 V; VEE= 0 V; see Figure 8 VEE = 0 V; VCC = 6.0 V VI = VCC or GND; Vis = VEE or VCC; VCC = 9.0 V Vos = VCC or VEE i-c OFF-state leakage current II VCC = 6.0 V VEE = 0 V; VI = VCC or GND ON-state leakage current supply current IS(ON) ICC input capacitance CI switch capacitance CSW AiP74HCT4053 HIGH-level input voltage LOW-level input voltage VIH VCC = 4.5 V to 5.5 V 2.0 - - V VIL VCC = 4.5 V to 5.5 V - - 0.8 V Address:Building B4,NO.777,Jianzhu Road,Binhu District,Wuxi City,Jiangsu Province http://www.i-core. cn P.C.:214072 12/ 29 VER:2021-10-A2 Wuxi I-CORE Electronics Co., Ltd. input leakage current OFF-state leakage current ON-state leakage current supply current II IS(OFF) IS(ON) ICC ΔICC Number:AiP74HC/HCT4053-AX-LJ-E009EN VI = VCC or GND; VCC = 5.5 V; VEE = 0 V VCC= 9.0 V; per channel VEE= 0 V; VI= VIH or VIL; |VSW| = VCC - VEE; all channels see Figure 7 VCC= 9.0 V; VEE= 0 V; VI= VIH or VIL; |VSW| = VCC-VEE; see Figure 8 - - ±1.0 uA - - ±1.0 uA - - ±1.0 uA - - ±1.0 uA VCC = 5.5V; VEE = 0 V - - 80.0 uA VCC = 4.5V; VEE = -4.5V - - 160 uA per input; VI = VCC - 2.1V; other inputs at VCC or GND; VCC = 4.5 V to 5.5 V; VEE = 0 V - - 225 uA - - - - pF independent pins nYn - - - pF common pins nZ - - - pF Typ. Max. Unit 5 12 ns 4 10 ns 4 8 ns 20 44 ns 17 - ns 16 37 ns VI = VCC or GND; Vis = VEE or VCC; Vos = VCC or VEE or additional supply current rev:B3 e Tab: 835-12 input capacitance CI switch capacitance CSW i-c Note: [1] VI= VIH or VIL; for test circuit see Figure 5. [2] Vis is the input voltage at a nYn or nZ terminal, whichever is assigned as an input. [3] Vos is the output voltage at a nYn or nZ terminal, whichever is assigned as an output. 3.3.3、AC Characteristics 1 (Tamb=25℃, GND = 0 V; tr= tf= 6 ns; CL= 50 pF; unless otherwise specified.) Parameter Symbol Conditions Min. AiP74HC4053 VCC = 4.5 V; VEE = 0 V Vis to Vos; propagation VCC = 6.0 V; tpd RL = ∞ Ω; delay VEE = 0 V [1] see Figure 9 VCC = 4.5 V; VEE = -4.5 V VCC = 4.5 V; VEE = 0 V — VCC = 5.0 V; E to Vos; turn-on time ton VEE = 0 V; RL = ∞ Ω; [2] C = 15 pF L see Figure 10 VCC = 6.0 V; VEE = 0 V Address:Building B4,NO.777,Jianzhu Road,Binhu District,Wuxi City,Jiangsu Province http://www.i-core. cn P.C.:214072 13/ 29 VER:2021-10-A2 Wuxi I-CORE Electronics Co., Ltd. Tab: 835-12 rev:B3 VCC = 4.5 V; VEE = -4.5 V VCC = 4.5 V; VEE = 0 V VCC = 5.0 V; VEE = 0 V; CL = 15 pF VCC = 6.0 V; VEE = 0 V VCC = 4.5 V; VEE = -4.5 V VCC = 4.5 V; VEE = 0 V VCC = 5.0 V; VEE = 0 V; CL = 15 pF VCC = 6.0 V; VEE = 0 V VCC = 4.5 V; VEE = -4.5 V VCC = 4.5 V; VEE = 0 V VCC = 5.0 V; VEE = 0 V; CL = 15 pF VCC = 6.0 V; VEE = 0 V VCC = 4.5 V; VEE = -4.5 V - 15 31 ns - 25 44 ns - 21 - ns - 20 37 ns - 15 31 ns - 21 42 ns e Sn to Vos; RL = ∞ Ω; see Figure 10[2] Number:AiP74HC/HCT4053-AX-LJ-E009EN — E to Vos; 18 - ns - 17 36 ns - 15 29 ns - 20 42 ns - 17 - ns - 16 36 ns - 15 29 ns - 36 - pF - 5 12 ns - 4 8 ns - 27 48 ns - 23 - ns - 16 34 ns or RL= 1 kΩ; see Figure 10[3] - turn-off time toff i-c Sn to Vos; RL = 1 kΩ; see Figure 10[3] power dissipation capacitance propagation delay turn-on time CPD tpd ton per switch;VI = GND to VCC[4] AiP74HCT4053 VCC = 4.5 V; Vis to Vos; VEE = 0 V RL = ∞ Ω; VCC = 4.5 V; see Figure 9[1] VEE = -4.5 V VCC = 4.5 V; VEE = 0 V — E to Vos; VCC = 5.0 V; RL = ∞ Ω; VEE = 0 V; see Figure 10[2] CL = 15 pF VCC = 4.5 V; Address:Building B4,NO.777,Jianzhu Road,Binhu District,Wuxi City,Jiangsu Province http://www.i-core. cn P.C.:214072 14/ 29 VER:2021-10-A2 Wuxi I-CORE Electronics Co., Ltd. Tab: 835-12 rev:B3 Sn to Vos; RL = ∞ Ω; see Figure 10[2] — E to Vos; toff - 25 48 ns - 21 - ns - 16 34 ns - 24 44 ns - 20 - ns - 15 31 ns - 22 44 ns or turn-off time VEE = -4.5 V VCC = 4.5 V; VEE = 0 V VCC = 5.0 V; VEE = 0 V; CL = 15 pF VCC = 4.5 V; VEE = -4.5 V VCC = 4.5 V; VEE = 0 V VCC = 5.0 V; VEE = 0 V; CL = 15 pF VCC = 4.5 V; VEE = -4.5 V VCC = 4.5 V; VEE = 0 V VCC = 5.0 V; VEE = 0 V; CL = 15 pF VCC = 4.5 V; VEE = -4.5 V e RL = 1 kΩ; see Figure 10[3] Number:AiP74HC/HCT4053-AX-LJ-E009EN Sn to Vos; RL = 1 kΩ; see Figure 10[3] - 19 - ns - 15 31 ns - pF i-c power dissipation CPD per switch;VI = GND to VCC-1.5V[4] 36 capacitance Note: [1] tpd is the same as tPHL and tPLH. [2] ton is the same as tPZH and tPZL. [3] toff is the same as tPHZ and tPLZ. [4] CPD is used to determine the dynamic power dissipation (PD in uW). PD = CPD × VCC2 × fi × N + Σ{(CL+ CSW) × VCC2× fO} where: fi = input frequency in MHz; fO = output frequency in MHz; N = number of inputs switching; Σ{(CL+ CSW) × VCC2 ×fO} = sum of outputs; CL = output load capacitance in pF; CSW = switch capacitance in pF; VCC = supply voltage in V. [5] For test circuit see Figure 11. [6] Vis is the input voltage at a nYn or nZ terminal, whichever is assigned as an input. [7] Vos is the output voltage at a nYn or nZ terminal, whichever is assigned as an output. Address:Building B4,NO.777,Jianzhu Road,Binhu District,Wuxi City,Jiangsu Province http://www.i-core. cn P.C.:214072 15/ 29 VER:2021-10-A2 Wuxi I-CORE Electronics Co., Ltd. Tab: 835-12 rev:B3 Number:AiP74HC/HCT4053-AX-LJ-E009EN 3.3.4、AC Characteristics 2 (Tamb= -40℃~+85℃; GND = 0 V; tr = tf = 6 ns; CL = 50 pF; unless otherwise specified.) Conditions AiP74HC4053 VCC = 4.5 V; VEE = 0 V Vis to Vos; VCC = 6.0 V; RL= ∞ Ω; VEE = 0 V see Figure 9[1] VCC = 4.5 V; VEE = -4.5 V VCC = 4.5 V; VEE = 0 V — E to Vos; VCC = 6.0 V; RL= ∞ Ω; VEE = 0 V see Figure 10[2] VCC = 4.5 V; VEE = -4.5 V VCC = 4.5 V; VEE = 0 V Sn to Vos; VCC = 6.0 V; RL= ∞ Ω; VEE = 0 V see Figure 10[2] VCC = 4.5 V; VEE = -4.5 V VCC = 4.5 V; VEE = 0 V — E to Vos; VCC = 6.0 V; RL = 1 kΩ; VEE = 0 V see Figure 10[3] VCC = 4.5 V; VEE = -4.5 V VCC = 4.5 V; VEE = 0 V Sn to Vos; VCC = 6.0 V; RL = 1 kΩ; VEE = 0 V see Figure 10[3] VCC = 4.5 V; VEE = -4.5 V Min. Typ. Max. Unit - - 15 ns - - 13 ns - - 10 ns - - 55 ns CPD per switch;VI = GND to VCC[4] propagation delay tpd turn-on time ton AiP74HCT4053 VCC = 4.5 V; Vis to Vos; VEE = 0 V RL = ∞ Ω; VCC = 4.5 V; see Figure 9[1] VEE = -4.5 V — VCC = 4.5 V; E to V ; propagation delay tpd ton - - 47 ns - - 39 ns - - 55 ns - - 47 ns - - 39 ns - - 53 ns - - 45 ns - - 36 ns - - 53 ns - - 45 ns - - 36 ns - - - pF - - 15 ns - - 10 ns - - 60 ns i-c or turn-on time Symbol e Parameter turn-off time power dissipation capacitance toff os Address:Building B4,NO.777,Jianzhu Road,Binhu District,Wuxi City,Jiangsu Province http://www.i-core. cn P.C.:214072 16/ 29 VER:2021-10-A2 Wuxi I-CORE Electronics Co., Ltd. Tab: 835-12 rev:B3 RL = ∞ Ω; see Figure 10[2] Sn to Vos; RL = ∞ Ω; see Figure 10[2] — E to Vos; RL = 1 kΩ; see Figure 10[3] turn-off time toff VEE = 0 V VCC = 4.5 V; VEE = -4.5 V VCC = 4.5 V; VEE = 0 V VCC = 4.5 V; VEE = -4.5 V VCC = 4.5 V; VEE = 0 V VCC = 4.5 V; VEE = -4.5 V VCC = 4.5 V; VEE = 0 V VCC = 4.5 V; VEE = -4.5 V - - 43 ns - - 60 ns - - 43 ns - - 55 ns - - 39 ns - - 55 ns e Sn to Vos; RL = 1 kΩ; see Figure 10[3] Number:AiP74HC/HCT4053-AX-LJ-E009EN - - ns - pF i-c or power dissipation CPD per switch;VI = GND to VCC-1.5V[4] capacitance Note: [1] tpd is the same as tPHL and tPLH. [2] ton is the same as tPZH and tPZL. [3] toff is the same as tPHZ and tPLZ. [4] CPD is used to determine the dynamic power dissipation (PD in uW). PD = CPD × VCC2× fi × N + Σ{(CL+ CSW) × VCC2× fO} where: fi = input frequency in MHz; fO = output frequency in MHz; N = number of inputs switching; Σ{(CL+ CSW) × VCC2 ×fO} = sum of outputs; CL = output load capacitance in pF; CSW = switch capacitance in pF; VCC = supply voltage in V. [5] For test circuit see Figure 11. [6] Vis is the input voltage at a nYn or nZ terminal, whichever is assigned as an input. [7] Vos is the output voltage at a nYn or nZ terminal, whichever is assigned as an output. 39 Address:Building B4,NO.777,Jianzhu Road,Binhu District,Wuxi City,Jiangsu Province http://www.i-core. cn P.C.:214072 17/ 29 VER:2021-10-A2 Wuxi I-CORE Electronics Co., Ltd. Tab: 835-12 rev:B3 Number:AiP74HC/HCT4053-AX-LJ-E009EN 3.3.5、AC Characteristics 3 (Tamb= 25℃; GND = 0V; CL=50pF; recommended conditions and typical values.) sine-wave distortion Symbol dsin αiso crosstalk Xtalk Min. Typ. Max. Unit - 0.04 - % - 0.02 - % - 0.12 - % - 0.06 - % - -50 - dB i-c or isolation (OFF-state) Conditions Vis = 4.0 V (p-p); VCC = 2.25 V; fi = 1 kHz; VEE = -2.25 V RL = 10 kΩ; Vis = 8.0 V (p-p); see Figure 12 VCC = 4.5 V; VEE = -4.5 V Vis = 4.0 V (p-p); VCC = 2.25 V; fi = 10 kHz; VEE = -2.25 V RL = 10 kΩ; Vis = 8.0 V (p-p); see Figure 12 VCC = 4.5 V; VEE = -4.5 V VCC = 2.25 V; [1] RL= 600 Ω; VEE = -2.25 V fi= 1 MHz; VCC = 4.5 V; [1] see Figure 13 VEE = -4.5 V VCC = 2.25 V; [1] between two switches/multiplexers; VEE = -2.25 V RL= 600 Ω;fi= 1 MHz; VCC = 4.5 V; [1] see Figure 14 VEE = -4.5 V peak-to-peak value; VCC = 4.5 V; between control and VEE = 0 V any switch; RL= 600 Ω; fi= 1MHz; e Parameter crosstalk voltage Vct f(-3dB) -50 - dB - -60 - dB - -60 - dB - 110 - mV - 220 - mV - 160 - MHz - 170 - MHz — E or Sn square wave between VCC and GND; tr= tf= 6 ns; see Figure 15 -3dB frequency response - RL = 50 Ω; see Figure 16 VCC = 4.5 V; VEE = -4.5 V VCC = 2.25 V; VEE = -2.25 V VCC = 4.5 V; VEE = -4.5 V [2] [2] Note: [1] Adjust input voltage Vis to 0 dBm level (0 dBm = 1 mW into 600 Ω). [2] Adjust input voltage Vis to 0 dBm level at Vos for 1 MHz (0 dBm = 1 mW into 50 Ω). [3] Vis is the input voltage at a nYn or nZ terminal, whichever is assigned as an input. [4] Vos is the output voltage at a nYn or nZ terminal, whichever is assigned as an output. Address:Building B4,NO.777,Jianzhu Road,Binhu District,Wuxi City,Jiangsu Province http://www.i-core. cn P.C.:214072 18/ 29 VER:2021-10-A2 Wuxi I-CORE Electronics Co., Ltd. Tab: 835-12 rev:B3 Number:AiP74HC/HCT4053-AX-LJ-E009EN 4、Testing Circuit e 4.1、DC Testing Circuit 1 i-c or Vis = 0V to (VCC -VEE) RON = VSW/ISW Figure 5. Test circuit for measuring RON Vis = 0V to (VCC -VEE) (1)VCC = 4.5V (2)VCC = 6V (3)VCC = 9V Figure 6. Typical RON as a function of input voltage Vis Address:Building B4,NO.777,Jianzhu Road,Binhu District,Wuxi City,Jiangsu Province http://www.i-core. cn P.C.:214072 19/ 29 VER:2021-10-A2 Wuxi I-CORE Electronics Co., Ltd. Tab: 835-12 rev:B3 Number:AiP74HC/HCT4053-AX-LJ-E009EN 4.2、DC Testing Circuit 2 or e Vis= VCC and Vos= VEE. Vis= VEE and Vos= VCC. Figure 7. Test circuit for measuring OFF-state current i-c Vis= VCC and Vos= open-circuit. Vis= VEE and Vos= open-circuit. Figure 8. Test circuit for measuring ON-state current 4.3、AC Testing Waveforms Figure 9. Input (Vis) to output (Vos) propagation delays Address:Building B4,NO.777,Jianzhu Road,Binhu District,Wuxi City,Jiangsu Province http://www.i-core. cn P.C.:214072 20/ 29 VER:2021-10-A2 Wuxi I-CORE Electronics Co., Ltd. rev:B3 Number:AiP74HC/HCT4053-AX-LJ-E009EN e Tab: 835-12 or For AiP74HC4053: VM = 0.5 ×VCC. For AiP74HCT4053: VM = 1.3 V. Figure 10. Turn-on and turn-off times i-c 4.4、AC Testing Circuit 1 Figure 11.  Test circuit for measuring switching times Address:Building B4,NO.777,Jianzhu Road,Binhu District,Wuxi City,Jiangsu Province http://www.i-core. cn P.C.:214072 21/ 29 VER:2021-10-A2 Wuxi I-CORE Electronics Co., Ltd. Tab: 835-12 rev:B3 Number:AiP74HC/HCT4053-AX-LJ-E009EN Definitions for test circuit: RT = termination resistance should be equal to the output impedance ZO of the pulse generator. CL = load capacitance including jig and probe capacitance. RL = load resistance. S1 = Test selection switch. 4.5、Test Data Input VI Vis tPHL,tPLH [2] tPZH, tPHZ [2] tPZL, tPLZ [2] tr, tf [1] CL RL S1 position at fmax other pulse < 2ns 6ns 50pF 1kΩ open VCC < 2ns 6ns 50pF 1kΩ VEE < 2ns 6ns 50pF 1kΩ VCC VEE Note: e Test Load [1] tr = tf= 6 ns; when measuring fmax, there is no constraint to tr and tf with 50 % duty factor. or [2] VI values: For AiP74HC4053: VI = VCC. For AiP74HCT4053: VI = 3V. i-c 4.6、AC Testing Circuit 2 Figure 12. Test circuit for measuring sine-wave distortion Address:Building B4,NO.777,Jianzhu Road,Binhu District,Wuxi City,Jiangsu Province http://www.i-core. cn P.C.:214072 22/ 29 VER:2021-10-A2 Wuxi I-CORE Electronics Co., Ltd. Tab: 835-12 rev:B3 Number:AiP74HC/HCT4053-AX-LJ-E009EN e VCC = 4.5 V; GND = 0 V; VEE = -4.5 V; RL = 600 Ω; RS = 1 kΩ. i-c or a. Test circuit b. Isolation (OFF-state) as a function of frequency Figure 13. Test circuit for measuring isolation (OFF-state) Address:Building B4,NO.777,Jianzhu Road,Binhu District,Wuxi City,Jiangsu Province http://www.i-core. cn P.C.:214072 23/ 29 VER:2021-10-A2 Wuxi I-CORE Electronics Co., Ltd. rev:B3 Number:AiP74HC/HCT4053-AX-LJ-E009EN or e Tab: 835-12 i-c Figure 14. Test circuit for measuring crosstalk between control input and any switch Figure 15. Test circuit for measuring crosstalk between control input and any switch Address:Building B4,NO.777,Jianzhu Road,Binhu District,Wuxi City,Jiangsu Province http://www.i-core. cn P.C.:214072 24/ 29 VER:2021-10-A2 Wuxi I-CORE Electronics Co., Ltd. Tab: 835-12 rev:B3 Number:AiP74HC/HCT4053-AX-LJ-E009EN e VCC = 4.5 V; GND = 0 V; VEE = -4.5 V; RL = 50 Ω; RS = 1 kΩ i-c or a. Test circuit b. Typical frequency response Figure 16. Test circuit for frequency response Address:Building B4,NO.777,Jianzhu Road,Binhu District,Wuxi City,Jiangsu Province http://www.i-core. cn P.C.:214072 25/ 29 VER:2021-10-A2 Wuxi I-CORE Electronics Co., Ltd. Tab: 835-12 rev:B3 Number:AiP74HC/HCT4053-AX-LJ-E009EN 5、Package Information i-c or e 5.1、DIP16 Address:Building B4,NO.777,Jianzhu Road,Binhu District,Wuxi City,Jiangsu Province http://www.i-core. cn P.C.:214072 26/ 29 VER:2021-10-A2 Wuxi I-CORE Electronics Co., Ltd. Tab: 835-12 rev:B3 Number:AiP74HC/HCT4053-AX-LJ-E009EN i-c or e 5.2、SOP16 Address:Building B4,NO.777,Jianzhu Road,Binhu District,Wuxi City,Jiangsu Province http://www.i-core. cn P.C.:214072 27/ 29 VER:2021-10-A2 Wuxi I-CORE Electronics Co., Ltd. Tab: 835-12 rev:B3 Number:AiP74HC/HCT4053-AX-LJ-E009EN i-c or e 5.3、TSSOP16 Address:Building B4,NO.777,Jianzhu Road,Binhu District,Wuxi City,Jiangsu Province http://www.i-core. cn P.C.:214072 28/ 29 VER:2021-10-A2 Wuxi I-CORE Electronics Co., Ltd. Tab: 835-12 rev:B3 Number:AiP74HC/HCT4053-AX-LJ-E009EN 6、Statements And Notes 6.1、The name and content of Hazardous substances or Elements in the product Hazardous substances or Elements Part name Mercur y and mercur lead y compo compo unds unds Lead and Cadm ium and cadmi um comp ounds Hexaval ent chromiu m compoun ds Polybro minated biphenyl s Polybro minate d biphen yl ethers Dibutyl phthala te Butylbe nzyl phthala te Di-2-et hylhex yl phthala te Diisobu tyl phthala te ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ Plastic resin ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ Chip ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ The lead ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ Plastic sheet installed ○ ○ ○ ○ ○ ○ ○ ○ ○ ○ e Lead frame or ○:Indicates that the content of hazardous substances or elements in the detection limit explanation of the following the SJ/T11363-2006 standard. ×:Indicates that the content of hazardous substances or elements exceeding the SJ/T11363-2006 Standard limit requirements. 6.2、Notion Recommended carefully reading this information before the use of this product; i-c The information in this document are subject to change without notice; This information is using to the reference only, the company is not responsible for any loss; The company is not responsible for the any infringement of the third party patents or other rights of the responsibility. Address:Building B4,NO.777,Jianzhu Road,Binhu District,Wuxi City,Jiangsu Province http://www.i-core. cn P.C.:214072 29/ 29 VER:2021-10-A2
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