PS9117 NEC | Alldatasheet

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Technical content

NEC's HIGH CMR, 10Mbps OPEN COLLECTOR OUTPUT TYPE 5-PIN SOP OPTOCOUPLER California Eastern Laboratories

  • PULSE WIDTH DISTORTION: |t PHL - tPLH| = 35 ns MAX.
  • HIGH COMMON MODE TRANSIENT IMMUNITY: CMH, CML = ±15 kV/μs MIN.
  • SMALL PACKAGE: 5-Pin SOP
  • HIGH SPEED:

10 Mbps

  • HIGH ISOLATION VOLTAGE: BV = 2 500 Vr.m.s.
  • OPEN COLLECTOR OUTPUT
  • ORDERING NUMBER OF TAPING PRODUCT: PS9117-F3, F4: 2 500 pcs/reel
  • Pb-Free Product
  • SAFETY STANDARDS: UL approved: File No. E72422 DIN EN60747-5-2 (VDE0884 Part2) approved No. 40008902 (option)

FEATURES

NEC's PS9117 is an optically coupled high-speed, active low type isolator containing a GaAlAs LED on the input side and a photodiode and a signal process- ing circuit on the output side on one chip. The PS9117 is designed specifically for high common mode transient immunity (CMR) and low pulse width distortion. The PS9117 is suitable for high density ap- plication.

DESCRIPTION

  • Measurement Equipment
  • PDP
  • FA Network APPLICATION 5 3 1 2 1. Anode 2. Cathode 3. GND 4. VO 5. VCC PIN CONNECTION (Top View) TRUTH TABLE LED OUTPUT ON L OFF H

PACKAGE DIMENSIONS (UNIT: mm) 1.27 0.1±0.1 2.6±0.2 4.4 7.0±0.3 0.5±0.3 0.15+0.10-0.05 3.4 +0.3 -0.1 5 3 1 2 MARKING EXAMPLE No. 1 pin Mark Initial of NEC (Engraved mark) Rank Code Year Assembled (Last 1 Digit) Week Assembled N 2 34 Assembly Lot 9117 N234 N *1 *1 Bar : Pb-Free

ORDERING INFORMATION

*1 For the application of the Safety Standard, following part number should be used. *2 With regards to terminal solder (the solder contains lead) plated products (conventionally plated), contact your nearby sales office. PART NUMBER ORDER NUMBER SOLDER PLATING SPECIFICATION PACKING STYLE SAFETY STANDARDS APPROVAL APPLICATION PART NUMBER*1 PS9117 PS9117-A Pb-Free*2 Magazine case 100 pcs UL approved PS9117 PS9117-F3 PS9117-F3-A Embossed Tape 2 500 pcs/reel PS9117-F4 PS9117-F4-A PS9117-V PS9117-V-A Magazine case 100 pcs DIN EN60747-5-2 (VDE0884 Part2) Approved (Option) PS9117-V-F3 PS9117-V-F3-A Embossed Tape 2 500 pcs/reel PS9117-V-F4 PS9117-V-F4-A ABSOLUTE MAXIMUM RATINGS (TA = 25ºC, unless otherwise Specified) PARAMETER SYMBOL RATINGS UNIT Diode Forward Current*1 IF 30 mA Reverse Voltage VR 5 V Detector Supply Voltage VCC 7 V Output Voltage VO 7 V Output Current IO 25 mA Power Dissipation*2 PC 40 mW Isolation Voltage*3 BV 2 500 Vr.m.s. Operating Ambient Temperature TA −40 to +85 °C Storage Temperature Tstg −55 to +125 °C *1 Reduced to 0.3 mA/ °C at TA = 25°C or more. *2 Applies to output pin V O (collector pin). Reduced to 1.5 mW/°C at TA = 65°C or more. *3 AC voltage for 1 minute at T A = 25°C, RH = 60% between input and output.

RECOMMENDED OPERATING CONDITIONS PARAMETER SYMBOL MIN. TYP. MAX. UNIT Low Level Input Voltage VFL 0 0.8 V High Level Input Current IFH 6.3 10 12.5 mA Supply Voltage VCC 4.5 5.0 5.5 V TTL (RL = 1 kΩ, loads) N 5 Pull-up Resistor RL 330 4 k Ω ELECTRICAL CHARACTERISTICS (TA = -40 to 85ºC, unless otherwise specified) PARAMETER SYMBOL CONDITIONS MIN. TYP.*1 MAX. UNIT Diode Forward Voltage VF IF = 10 mA, TA = 25°C 1.4 1.65 1.8 V Reverse Current IR VR = 3 V, TA = 25°C 10 μA Terminal Capacitance Ct V = 0 V, f = 1 MHz, TA = 25°C 30 pF Detector High Level Output Current IOH VCC = VO = 5.5 V, VF = 0.8 V 1 100 μA Low Level Output Voltage*2 VOL VCC = 5.5 V, IF = 5 mA, IOL = 13 mA 0.2 0.6 V High Level Supply Current ICCH VCC = 5.5 V, IF = 0 mA 5 8 mA Low Level Supply Current ICCL VCC = 5.5 V, IF = 10 mA 9 11 Coupled Threshold Input Current (H → L) IFHL VCC = 5 V, VO = 0.8 V, RL = 350 Ω 2 5 Isolation Resistance RI-O VI-O = 1 kVDC, RH = 40 to 60%, TA = 25°C 1011 Ω Isolation Capacitance CI-O V = 0 V, f = 1 MHz, TA = 25°C 0.6 pF Propagation Delay Time (H → L)*3 tPHL TA = 25°C 35 75 ns VCC = 5 V, RL = 350 Ω, IF = 7.5 mA 100 Propagation Delay Time (L → H)*3 tPLH TA = 25°C 40 75 VCC = 5 V, RL = 350 Ω, IF = 7.5 mA 100 Rise Time tr VCC = 5 V, RL = 350 Ω, IF = 7.5 mA 20 Fall Time tf 5 Pulse Width Distortion (PWD)*3 |tPHL-tPLH| 5 35 Propagation Delay Skew tPSK 40 Common Mode Transient Immunity at High Level Output*4 CMH VCC = 5 V, RL = 350 Ω, TA = 25°C, IF = 0 mA, VO > 2 V, VCM = 1 kV 15 20 kV/μs Common Mode Transient Immunity at Low Level Output*4 CML VCC = 5 V, RL = 350 Ω, TA = 25°C, IF = 7.5 mA, VO < 0.8 V, VCM = 1 kV 15 20 kV/μs

*1 Typical values at TA = 25°C *2 Because V OL of 2 V or more may be output when LED current input and when output supply of VCC = 2.6 V or less, it is important to confirm the characteristics (operation with the power supply on and off) during design, before using this device. *3 Test circuit for propagation delay time Input Output 1.5 V VOL tPHL tPLH (IF = 7.5 mA) 50% 47 Ω Pulse input (IF) VO (monitor) VCC = 5 V Input (monitor) 0.1 Fµ CL = 15 pF RL = 350 Ω(PW = 1 s, Duty cycle = 1/10) µ Remark C L includes probe and stray wiring capacitance. *4 Test circuit for common mode transient immunity 90% 10% 1 kV 0 V VOH 2 V 0.8 V VOL VCM VO (IF = 0 mA) VO (IF = 7.5 mA) tr tfVO (monitor) VCC = 5 V 0.1 Fµ CL = 15 pF SW VCM IF RL = 350 Ω Remark C L includes probe and stray wiring capacitance. USAGE CAUTIONS 1. This product is weak for static electricity by designed with high-speed integrated circuit so protect against static electricity when handling. 2. By-pass capacitor of 0.1 μF is used between VCC and GND near device. Also, ensure that the distance between the leads of the photocoupler and capacitor is no more than 10 mm.

Remark The graphs indicate nominal characteristics. TYPICAL CHARACTERISTICS (TA = 25ºC, unless otherwise specified) 20 40 60 80 1000 85 20 40 60 80 85 1000 1.0 0.01 0.1 100 TA = +85ºC +50ºC +25ºC 0ºC -25ºC -50 -25 0 25 50 7 5 1000 ICCL (IF = 10 mA) ICCH (IF = 0 mA) 1 2 3 4 5 6 -50 -25 0 25 50 7 5 100 IF = 5.0 mA, VCC = 5.5 V 0.6 0.5 0.4 0.3 0.2 0.1 RL = 350 Ω VCC = 5.0 V, TA = 25ºC 1.0 kΩ 4.0 kΩ, 4.7 kΩ IOL = 16.0 mA 13.0 mA 10.0 mA 6.0 mA Ambient Temperature TA (ºC) Maximum Forward Current IF (mA) MAXIMUM FORWARD CURRENT vs. AMBIENT TEMPERATURE Ambient Temperature TA (ºC) Detector Power Dissipation PC (mW) DETECTOR POWER DISSIPATION vs. AMBIENT TEMPERATURE Forward Voltage VF (V) Forward Current IF (mA) FORWARD CURRENT vs. FORWARD VOLTAGE Ambient Temperature TA (ºC) High Level Supply Current ICCH (mA) Low Level Supply Current ICCL (mA) SUPPLY CURRENT vs. AMBIENT TEMPERATURE Input Current IF (mA) Output Voltage VO (V) OUTPUT VOLTAGE vs. INPUT CURRENT Ambient Temperature TA (ºC) Low Level Output Voltage VOL (V) LOW LEVEL OUTPUT VOLTAGE vs. AMBIENT TEMPERATURE

VCC = 5.0 V, VO = 0.6 V 100 0-50 -25 0 25 50 7 5 100-50 -25 0 25 50 7 5 100 1.0 kΩ RL = 350 Ω IF = 7.5 mA, VCC = 5.0 V tPHL: RL = 350 Ω, 1.0 kΩ, 4.0 kΩ 4.0 kΩ tPLH: RL = 4.7 kΩ tPLH: RL = 1.0 kΩ tPLH: RL = 350 Ω -50 -25 0 25 50 7 5 100 IF = 7.5 mA, VCC = 5.0 V 300 250 200 150 100 tr: RL = 4.7 kΩ tr: RL = 350 Ω tf: RL = 350 Ω, 1.0 kΩ, 4.0 kΩ tr: RL = 1.0 kΩ Ambient Temperature TA (ºC) Threshold Input Current IFHL (mA) THRESHOLD INPUT CURRENT vs. AMBIENT TEMPERATURE Ambient Temperature TA (ºC) Propagation Delay Time tPHL, tPLH (ns) PROPAGATION DELAY TIME vs. AMBIENT TEMPERATURE Ambient Temperature TA (ºC) Pulse Width Distortion tPHLñtPLH (ns) PULSE WIDTH DISTORTION vs. AMBIENT TEMPERATURE Ambient Temperature TA (ºC) Switching Time tr, tf (ns) SWITCHING TIME vs. AMBIENT TEMPERATURE Input Current IF (mA) Propagation Delay Time tPHL, tPLH (ns) PROPAGATION DELAY TIME vs. INPUT CURRENT -50 -25 0 25 50 7 5 100 IF = 7.5 mA, VCC = 5.0 V RL = 4.7 kΩ RL = 350 Ω 1.0 kΩ 151311975 120 100 tPLH: RL = 4.7 kΩ tPLH: RL = 1.0 kΩ tPHL: RL = 350 Ω, 1.0 kΩ, 4.7 kΩtPLH: RL = 350 Ω

TAPING SPECIFICATIONS (UNIT:mm) Outline and Dimensions (Tape) Tape Direction PS9117-F3 PS9117-F4 Outline and Dimensions (Reel) Packing: 2 500 pcs/reel 100±1.0φ 13.0±0.2φ 330±2.0φ 2.0±0.5 11.9 to 15.4 Outer edge of flange 17.5±1.0 13.5±1.0 2.0±0.5 13.0±0.2 R 1.0 21.0±0.8 1.55±0.1 2.0±0.05 4.0±0.1 1.75±0.1 3.9±0.1 3.45 MAX. 7.4±0.1 0.3±0.058.0±0.1 1.5+0.1 5.5±0.1 12.0±0.2 3.0±0.1

  1. Recommended soldering conditions (1) Infrared reflow soldering
  • Peak reflow temperature 260 °C or below (package surface temperature)
  • Time of peak reflow temperature 10 seconds or less
  • Time of temperature higher than 220°C 60 seconds or less
  • Time to preheat temperature from 120 to 180°C 120 ±30 s
  • Number of reflows Three
  • Flux Rosin flux containing small amount of chlorine (The flux with a maximum chlorine content of 0.2 Wt% is recommended.) (2) Wave soldering
  • Temperature 260°C or below (molten solder temperature)
  • Time 10 seconds or less
  • Preheating conditions 120 °C or below (package surface temperature)
  • Number of times One (Allowed to be dipped in solder including plastic mold portion.)
  • Flux Rosin flux containing small amount of chlorine (The flux with a maximum chlorine content of 0.2 Wt% is recommended.) (3) Soldering by Soldering Iron
  • Peak Temperature (lead part temperature) 350 °C or below
  • Time (each pins) 3 seconds or less
  • Flux Rosin flux containing small amount of chlorine (The flux with a maximum chlorine content of 0.2 Wt% is recommended.) (a) Soldering of leads should be made at the point 1.5 to 2.0 mm from the root of the lead (b) Please be sure that the temperature of the package would not be heated over 100°C 120±30 s (preheating) 220•C 180ºC Package Surface Temperature T (ºC) Time (s) Recommended Temperature Profile of Infrared Reflow (heating) to 10 s to 60 s 260ºC MAX. 120ºC

These NEC products are not intended for use in life support devices, appliances, or systems where the malfunction of these products can reasonably be expected to result in personal injury. The customers of CEL using or selling these products for use in such applications do so at their own risk and agree to fully indemnify CEL for all damages resulting from such improper use or sale. A Business Partner of NEC Compound Semiconductor Devices, Ltd. 04/04/2005 (4) Cautions

  • Fluxes Avoid removing the residual flux with freon-based and chlorine-based cleaning solvent. 2. Cautions regarding noise Be aware that when voltage is applied suddenly between the photocoupler’s input and output or between collector-emitters at startup, the output transistor may enter the on state, even if the voltage is within the absolute maximum ratings. USAGE CAUTIONS 1. Protect against static electricity when handling. 2. Avoid storage at a high temperature and high humidity.