Data Sheet ACPL-217. DC Input, Half-Pitch Phototransistor Optocoupler. Description. Features. ACPL-217 pin layout. Applications

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1 ACPL-27 DC Input, Half-Pitch Phototransistor Optocoupler Data Sheet Lead (Pb) Free RoHS 6 fully compliant RoHS 6 fully compliant options available; -xxxe denotes a lead-free product Description The ACPL-27 is a DC-input single channel half-pitch phototransistor optocoupler which contains a light emitting diode optically coupled to a phototransistor. It is packaged in a 4-pin SO package. The input-output isolation voltage is rated at 3 Vrms. Response time, tr, is 2μs typically, while minimum CTR is 5% at input current of 5 ma ACPL-27 pin layout 4 3 Pin Description Anode 2 Cathode 3 Emitter 2 4 Collector Features Current transfer ratio (CTR: 5% (min) at I F = 5mA, V CC = 5V) High input-output isolation voltage (V ISO = 3,V RMS ) Non-saturated Response time (tr: 2μs (typ) at V CC = V, I C = 2mA, R L = Ω) SO package CMR kv/μs (typical) Safety and regulatory approvals - cul - IEC/EN/DIN EN Options available: CTR Ranks, A, B, C & D Applications I/O Interface for Programmable controllers, computers. Sequence controllers System appliances, measuring instruments Signal transmission between circuits of different potentials and impedances.

2 Ordering Information ACPL-27-xxxx is UL Recognized with 3 Vrms for minute per UL577 and Canadian Component Acceptance Notice #5. Part number ACPL -27 Rank 5% 6% RoHS Compliant Option Rank A 8% <CTR <6% Rank B 3% 26% Rank C 2% 4% Rank D 3% 6% I F =5mA Package Surface Mount Tape & Reel IC Orientation IEC/EN/DIN EN Quantity -5E -5AE -5BE -5CE -5DE SO-4 x x 3 pcs per reel -56E -56AE -56BE -56CE -56DE SO-4 x x X 3 pcs per reel -7E -7AE -7BE -7CE -7DE SO-4 x X 8 3 pcs per reel -76E -76AE -76BE -76CE -76DE SO-4 x x 8 X 3 pcs per reel To order, choose a part number from the part number column and combine with the desired option from the option column to form an order entry. Example : ACPL-27-56E to order product of SO-4 Surface Mount package in Tape & Reel packaging with IEC/EN/DIN EN Safety Approval, 5%6% and RoHS compliant. Example 2 ACPL-27-5BE to order product of SO-4 Surface Mount package in Tape & Reel packaging with 3%26% and RoHS compliant. Option datasheets are available. Contact your Avago sales representative or authorized distributor for information. Package Outline Drawings 2

3 Solder Reflow Temperature Profile Recommended reflow condition as per JEDEC Standard, J-STD-2 (latest revision). Non-Halide Flux should be used. Absolute Maximum Ratings Parameter Symbol ACPL-27 Units Note Storage Temperature T S -55~25 C Operating Temperature T A -55~ C Average Forward Current I F(AVG) 5 ma Pulse Forward Current I FSM A Reverse Voltage V R 6 V LED Power Dissipation P I 65 mw Collector Current I C 5 ma Collector-Emitter Voltage V CEO 8 V Emitter-Collector Voltage V ECO 7 V Isolation Voltage (AC for min, R.H. V ISO 3 V RMS min 4~6%) Collector Power Dissipation P C 5 mw Total Power Dissipation P TOT 2 mw Lead Solder Temperature 26 C for seconds 3

4 Electrical Specifications (DC) Over recommended ambient temperature at 25ºC unless otherwise specified. Parameter Symbol Min. Typ. Max. Units Test Conditions Note Forward Voltage V F V I F = 2mA Fig.6 Reverse Current I R - - μa V R = 5V Terminal Capacitance C t pf V =, f = MHz Collector Dark Current I CEO - - na V CE = 48V, I F = ma Fig.2 Collector-Emitter Breakdown Voltage BV CEO V I C =.5 ma, I F = ma Emitter-Collector Breakdown Voltage BV ECO V I E = μa, I F = ma Current Transfer Ratio CTR 5-6 % I F = 5 ma, V CE = 5V CTR=(I C /IF )* % Saturated CTR CTR(sat) - - % I F =ma, V CE =.4V Collector-Emitter Saturation Voltage V CE (sat) V I F = 8mA, I C = 2.4mA Fig.4 Isolation Resistance R ISO 5x x - Ω DC5V, R.H. 4~6% Floating Capacitance C F -.6 pf V =, f = MHz Cut-off Frequency (-3dB) F C khz V CC = 5V, I C = 2 ma, Fig. 2,9 R L = Ω Response Time (Rise) t r μs V CC = V, I C = 2 ma, Fig. Response Time (Fall) t f μs R L = Ω Turn-on Time t on μs Turn-off Time t off μs Turn-ON Time t ON μs V CC = 5V, I F = 6 ma, Fig., 7 Storage Time T S μs R L =.9kΩ Turn-OFF Time t OFF μs Common Mode Rejection Voltage CMR - - kv/μs Ta=25ºC, R L =47Ω, V CM =.5kV(peak), I F =ma, V CC =9V, V np =mv Fig.2 I F R L V CC I F V CE V CE t r t f t s 9% % t on t off Figure. Switching Time Test Circuit R L V CC Output R D Figure 2. Frequency Response Test Circuit 4

5 6 6 Forward Current, I F (ma) ACPL-27 Collector Power Dissipation, Pc(mW) ACPL Ambient Temperature, Ta(º C) Figure 3. Forward Current vs. Ambient Temperature Ambient Temperature, Ta(º C) Figure 4. Collector Power Dissipation vs. Ambient Temperature Peak Forward Current, I FP (ma) Pulse width μs Ta = 25 º C Forward Current, I F (ma) 5º C 75º C Ta = ºC -3º C ºC 25º C..... Duty Ratio Figure 5. Pulse Forward Current vs. Duty Cycle Ratio Forward Voltage, V F (V) Figure 6. Forward Current vs. Forward Voltage -3.2 Forward Voltage Temperature Coefficient ΔVF /ΔTa (mv/ º C) Forward current, I F (ma) Pulse Forward Current, I FP (ma) Pulse Width μs Repetitive Frequency=Hz Ta=25ºC Pulse Forward Voltage, V FP (V) Figure 7. Forward Voltage Temperature Coefficient vs. Forward Current Figure 8. Pulse Forward Current vs. Pulse Forward Voltage 5

6 Collector Current, Ic(mA) Ta = 25ºC 5mA 3mA 2mA P C(max)=5mW ma I F =5mA 5 Collector-Emitter Voltage, Vce(V) Figure 9. Collector Current vs. Collector-Emitter Voltage Collector Currrent, Ic( ma) mA 3mA 2mA ma I F = 2mA.5 Collector-Emitter Voltage, V CE (V) Figure. Collector Current vs. Small Collector-Emitter Voltage 5mA. Collector Current, I C (A).. V 5V VCE =.4V Collector Dark Current, I CEO (A).E-6.E-8 VCE = 48V 24V V 5V..... Forward Current, I F (A) Figure. Collector Current vs. Forward Current.E Ambient Temperature, Ta( o C) Figure 2. Collector Dark Current vs. Ambient Temperature Current Transfer Ratio, CTR (%).... Forward Current, I F (A) Figure 3. Current Transfer Ratio vs. Forward Current V 5V VCE =.4V Collector-Emitter Saturation Voltage, VCE (sat) (V) I F = 8mA, I C = 2.4mA I F = 2mA, I C = ma I F = ma, I C =.2mA Ambient Temperature, Ta(º C) Figure 4. Collector-Emitter Saturation Voltage vs. Ambient Temperature 6

7 Collector Current, IC (ma) 25mA ma 5mA ma I F =.5mA Switching Time, t (μs) I F =6mA V CC =5V Ta=25 C T OFF T S T ON Ambient Temperature, Ta ( o C) 5 5 Load Resistance, RL (k Figure 5. Collector Current vs. Ambient Temperature Figure 6. Switching Time vs. Load Resistance Switching Time, t (μs) IF = 6mA VCC = 5V RL =.9kΩ Ambient Temperature, Ta ( ºC) Figure 7. Switching Time vs. Ambient Temperature t OFF t S t ON Collector-Emitter Saturation Voltage, VCE(sat) (V) mA ma 3mA 5mA 7mA IC = ma Ta = 25ºC Forward Current, I F(mA) Figure 8. Collector-Emitter Saturation Voltage vs. Forward Current -2 RL = Ω kω Vo, (db) -4 dv/dt -6-8 Vcc = 5V IC = 2mA Ta = 25ºC Frequency, f (khz) R L 47 Ω V CM (High Voltage Pulse) Vo Vcc 9V V CM V Vo cp V cp» (dv/dt)xc f xr L V cp : Voltage that is generated by the displacement current in floating capacitance between primary and secondary sides. V np Figure 9. Frequency Response Figure 2. CMR Test Circuit For product information and a complete list of distributors, please go to our web site: Avago, Avago Technologies, and the A logo are trademarks of Avago Technologies in the United States and other countries. Data subject to change. Copyright 25-2 Avago Technologies. All rights reserved. AV2-47EN - August 3, 2

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