74HCT4053D

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74HCT4053D官方元件手册,翻译了嘛?大神
Philips semiconductors 74Hc4053;74HcT4053 Triple 2-channel analog multiplexer/demultiplexer CL output load capacitance in pF Cs= maximum switch capacitance in pF Vcc supply voltage in V. 5. Ordering information Table 2: Ordering information ype number Package Temperature rangeName Description Version 74Hc4053 74HC4053N 40 C t0+125C DiP 16 plastic dual in-line package: 16 leads(300 mil); long SOT38-4 bod 74HC4053D 40rto+125sO16 plastic small outline package: 16 leads, body width SOT109 3.9 74HC4053DB40rC to+125Ic ssoP16 plastic shrink small outline package: 16 leads; body SoT338-1 width 5.3 mm 74HC4053PW 40 C to +125 Ic TSSoP16 plastic thin shrink small outline package: 1 6 leads SOT403-1 body width 4.4 mm 74HC4053BQ-40 C to+125Yc DHVQFN16 plastic dual in-line compatible thermal enhanced very SoT763-1 thin quad flat package; no leads; 16 terminals, body2.5×3.5×0.85mm 74HcT4053 74HCT4053N_40Cto+125D|P16 plastic dual in-line package, 16 leads (300 mil); long SOT38-4 74HCT4053D_40cto+1251SO16 plastic small outline package: 16 leads, body width SOT109-1 3.9mm 74HCT4053DB 40 YC to +125 YC SSOP16 lastic shrink small outline package; 16 leads; body SoT338-1 width 5.3 mm 74HCT4053PW-40 rC to+125 Yc TSSoP16 plastic thin shrink small outline package; 16 leads; SOT403-1 body width 4.4 mm 74HCT4053BQ-40 C to+125 Yc DHVQFN16 plastic dual in-line compatible thermal enhanced very SOT763-1 thin quad flat package, no leads; 16 terminals body2.5×3.5×0.85mm 74HC HCT4 C Koninklijke Philips Electronics N.v. 20 ights reserve Product data sheet Rev. 04-9 May 2006 of 33 Philips semiconductors 74Hc4053;74HcT4053 Triple 2-channel analog multiplexer/demultiplexer 6. Functional diagram 16 131Y1 S111 LOGIC LEVEL DECODER 121Y0 CONVERSION 2Y1 210 212Y 3|3Y1 s319 53Y0 8 GND ig 1. Functional diagram 1Y012 2Y0—2 0!1 2¥1 3Y05 5 E 001aae125 Fig 2. Logic symbol Fig 3. EC logic symbol 74HC HCT4 C Koninklijke Philips electronics N.V. 2006. All rights reserve Product data sheet Rev. 04-9 May 2006 4of33 Philips semiconductors 74Hc4053;74HcT4053 Triple 2-channel analog multiplexer/demultiplexer V V E 001aad544 Fig 4. Schematic diagram( one switch) 7. Pinning information 7.1 Pinning 74Hc4053 74HcT4053 index area 74Hc4053 74HcT4053 2Y02 152z Y13 2Y1 3Y1|3 1412 3Y0[5 (1211Y0 131¥1 GND(1) S1 3Y0|5 121Y0 VEE 7 10s2 E「6 11s GND 8 001aae128 001ae127 ransparent top view (1) The die substrate is attached to th pad using conductive die attach material. It can not be used as supply pin or input Fig 5. Pin configuration DIP16, SO16 and Fig 6. Pin configuration DHVQFN16 (TSSOP16 74HC HCT4 C Koninklijke Philips Electronics N.v. 20 ights reserve Product data sheet Rev. 04-9 May 2006 of 33 Philips semiconductors 74Hc4053;74HcT4053 Triple 2-channel analog multiplexer/demultiplexer 7.2 Pin description Table 3: Pin description Symbol Pin Description 2Y1 2 independent input/output 1 2Y0 2 independent input/output 0 3Y1 23456789 3 independent input/output 1 3Z 3 common input/output 3 independent input/output O E enable input (active LOW) negative supply voltage GND ground(0 V) S3 select input 3 S2 10 select input 2 S1 select input 1 YO 12 1 independent input/output 0 1Y1 13 1 independent input/output 1 1Z 1 common input/output 27 15 2 common input/output 16 supply voltage 8. Functional description 8.1 Function table Table 4: Function table [11 Control Channel on E Sn L L nyo to nz ny1 to nz none [1]H= HIGH voltage level L= LOW voltage level; X= dont care 9. Limiting values Table 5: Limiting values In accordance with the Absolute Maximum Rating System(EC 60134 Voltages are referenced to vE= GND (grour=0v.血 Symbol Parameter Conditions Min Max Unit Vcc supply voltage 0.5+11.0V input clamping current Vi<0.5v or V>Vcc +0.5V switch clamping current Vs <-0.5vor Vs>vcc+0.5V ±20 mA 74HC HCT4 C Koninklijke Philips Electronics N.v. 20 ights reserve Product data sheet Rev. 04-9 May 2006 6of33 Philips semiconductors 74Hc4053;74HcT4053 Triple 2-channel analog multiplexer/demultiplexer Table 5: Limiting values. continued In accordance with the Absolute Maximum Rating System(EC 60134 voltages are referenced to VEE=GND(ground=0 Symbol Parameter Conditions Min Max Unit switch curren -0.5V<Vs<Vcc +0.5V ±25 A negative supply current quiescent supply current 50 ground current mA T stg storage temperature 65 +150YC P total power dissipation Tamb=-40 C to 125 YC DIP16 package 750 mW So16 package [3] SSOP 16 package 4 TSSOP 16 package 500 mw DHVQFN16 package 500 power dissipation per 100 switch To avoid drawing Vcc current out of terminals nZ when switch current flows in terminals nYn, the voltage drop across the bidirectional switch must not exceed 0. 4V. If the switch current flows into terminals nZ, no Vcc current will flow out of terminals nYn. In this case there is no limit for the voltage drap across the switch but the voltages at nYn and nz may not exceed vcc or Vee [2] For DIP 16 package: Ptot derates linearly with 12 mW/K above 70 C [3] For So16 package: Ptot derates linearly with 8 mW/K above 70 YC [4] For SSOP16 and TSSOP16 packages: Ptot derates linearly with 5.5 mW/K above 60 C [5] For DHVQFN16 packages: Ptot derates linearly with 4.5 mW/K above 60 IC 10. Recommended operating conditions Table 6: Recommended operating conditions Symbol Parameter Conditions Typ Max Unit 74HC4053 Wcc supply voltage difference see Figure 7 VCc-GND 2.05.0 10.0V VCC-VE 2.0 5.0 10.0V input voltage GND CC switch voltage ami ambient temperature 40+25+125YC tr, tr input rise and fall times Vcc =2.0V 6.0 1000 Vcc =4.5V 6.05 ns 60V 6.0 cc=10.0V 6.0 250 74HGT4053 supply voltage difference see Figure 7 VCc-GND 4.55.0 2.0 50 10.0V 74HC HCT4 C Koninklijke Philips Electronics N.v. 20 ights reserve Product data sheet Rev. 04-9 May 2006 of 33 Philips semiconductors 74Hc4053;74HcT4053 Triple 2-channel analog multiplexer/demultiplexer Table 6: Recommended operating conditions. continued Symbol Parameter Conditions Typ ax Unit input voltage GND CC switch voltage ambient temperature 40 +2 +125YC tr, tf input rise and fall times Vcc=4.5V 6.0 500 001aad545 001aad546 VCc-GND Vcc-GND 8 operating area operating area 4 4 2 0 a. Type 74HC4053 b. Type 74HCT4053 Fig 7. Guaranteed operating area as a function of the supply voltages 11. Static characteristics Table 7: RoN resistance per switch 74HC4053 and 74HCT4053 For test circuit see Figure 8 Vis is the input voltage at a nYn or nz terminal, whichever is assigned as an input Vos is the output voltage at a nyn or nz terminal, whichever is assigned as an output. 74HC4053 supply voltages: Vcc- GND or VcC- VEE=2.0 V, 4.5V,6.0 V and 9.0 V 74HCT4053 supply voltages: Vcc GND=4.5V or 5.5V, Vcc VEE =2.0 V, 4.5V,6.0 V and 9.0 V. Symbol Parameter Conditions Min Typ Max Ur 250 RoN(peak) on resistance (peak) Vis =Vcc to VEE; VI=VIH or VIL Vcc=2.0V;vEE=0∨;ls=100∞A Vcc=4.5V: VEE=0V; Is =1000 oA Vcc =6.0V: VEE=0V; Is =1000 oA 4.5V, VEE=4.5V; Is 70 130 74HC HCT4 C Koninklijke Philips Electronics N.v. 20 ights reserve Product data sheet Rev. 04-9 May 2006 8of33 Philips semiconductors 74Hc4053;74HcT4053 Triple 2-channel analog multiplexer/demultiplexer Table 7: RoN resistance per switch 74HC4053 and 74HCT4053.continued For test circuit see Figure 8 Vis is the input voltage at a nyn or nZ terminal, whichever is assigned as an input los is the output voltage at a nyn or nZ terminal, whichever is assigned as an output. 74HC4053 supply voltages: Vcc-GND or Vcc-VEE=2.0V,4.5V,6.0V and 9.0 V. 74HCT4053 supply voltages: VCc-GND=4.5Vor 5.5 V, VCc- VEE=2.0 V, 4.5V,6.0V and 9.0 V. Symbol Parameter Conditions Mir Typ Max Unit ON resistance(rail) Vis=VEE; VI=VIh or VIu Vcc=2.0 V: Vee=0V;Is=100 aA Vcc=4.5V; VEE=0 V; Is=1000 oA 80 140 60V;vEE=0V;ls=1000∝ 70 Vcc =4.5V, VEE =4.5V; Is =1000 OA 60 105 Vis Vcc: VI= VIH or VI Vcc=2.0V; VEE=0V; Is =100 oA [11 150 4.5V;V EE =0 V;ls=1000A 90 160 ′cc=6.0V;VEE=0v;ls=1000∝A 140 CC=4.5V;VEE=-45V;Is=1000 CA 65 120 oN resistance Vis=vcc to VEE; VI= VIh or VIL mismatch betweer Vcc =2.0V; VEE=0V channels Vcc =4.5V; VEE=0V Vcc=6.0V, VEE=0V VcC =4.5V, VEE=-45V Tamb =-40 YC to +85 YC RoN(peak) ON resistance(peak) Vis= Vcc to VEE VI=VIH Or VIL Vcc=2.0V; VEE=0V; Is=100 oA Vcc=4.5V; Vee=0V; Is=1000 oA 225 Vcc =6.0V, VEE =0V; Is=1000 aA 200 VcC =4.5V; VEE=4.5V: Is=1000 aA 165 RON(rail) ON resistance (rail) Vis= VEE;V=VIH Or VIL VCC=2.0V, VEE=0V; Is=100 oA Vcc=4.5V; Vee=0v, Is =1000 oA 175 =6.0V;VEE=0V;ls=100 Vcc=4.5V,VEE=4.5V; Is =1000(A 130 Vis=Vcc: Vi= Vih or Vu VcC=2.0V; VEE=0V; Is= 100 oA 1 Vcc=4.5V; VEE=0V; s=1000 oA 200 Vcc=6.0V; VEE=0V; Is=1000 oA 175 Vcc =4.5 V;V 4.5V;ls=1000aA 150 Tamb=-40 YC to +125 YC RON(peak) ON resistance (peak) Vis=Vcc to VEE VI= VIH or Vi Vcc =2.0V: VEE=0V; Is=100 oA Vcc=4.5V: Vee=0V;Is=1000 oA 270 6.0VVEE=0v;ls=1000 240 Vcc=4.5V, VEE=-45V; Is=1000 (A 74HC HCT4 C Koninklijke Philips Electronics N.v. 20 ights reserve Product data sheet Rev. 04-9 May 2006 of 33 Philips semiconductors 74Hc4053;74HcT4053 Triple 2-channel analog multiplexer/demultiplexer Table 7: RoN resistance per switch 74HC4053 and 74HCT4053.continued For test circuit see Figure 8 Vis is the input voltage at a nyn or nZ terminal, whichever is assigned as an input los is the output voltage at a nyn or nZ terminal, whichever is assigned as an output. 74HC4053 supply voltages: Vcc-GND or Vcc-VEE=2.0V,4.5V,6.0V and 9.0 V. 74HCT4053 supply voltages: VCc-GND=4.5Vor 5.5 V, VCc- VEE=2.0 V, 4.5V,6.0V and 9.0 V. Symbol Parameter Conditions Mir Typ Max Unit RoN(rail) ON resistance (rail) Vis=VEE: VI=VIH Or VIL Vcc=2.0 V: Vee=0V;Is=100 aA Vcc=4.5V; VEE=0 V; Is=1000 oA 210 VCc=6.0V, VEE=0V; s=1000 aA Vcc =4.5V, VEE =4.5V; Is =1000 OA 160 Vis Vcc: VI= VIH or VIl Vcc=2.0V; VEE=0V; Is =100 oA [11 4.5V;V EE =0 V;ls=1000A 240 CC=6.0V; VEE=0V; Is =1000 oA 210 VcC=4.5V,VEE=4.5V;Is =1000 CA 180 At supply voltages(VCc-VEe approaching 2.0 v the analog switch on resistance becomes extremely non-linear. Therefore, it is recommended that these devices be used to transmit digital signals only, when using these supply voltages mnb047 110 (1) HIGH (from select input nYn (3) oVtoVCC-VEE) VEE C01aae129 0 1.8 3.6 54 7.2 90 Vis ( v ls 0V tO VCc-VEE 4.5V (2)Vcc=6V (3)Vc=9V Fig 8. Test circuit for measuring RoN Fig 9. Typical RoN as a function of input voltage Vis 74HC HCT4 C Koninklijke Philips Electronics N.v. 20 ights reserve Product data sheet Rev. 04-9 May 2006 10of33

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