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HIN232ACBZ

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HIN232ACBZ

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Part Number HIN232ACBZ
Manufacturer Intersil
Description IC 2DRVR/2RCVR RS232 5V 16-SOIC
Datasheet HIN232ACBZ Datasheet
Package 16-SOIC (0.295", 7.50mm Width)
In Stock 1,302 piece(s)
Unit Price $ 1.4200 *
Lead Time Can Ship Immediately
Estimated Delivery Time Aug 7 - Aug 12 (Choose Expedited Shipping)
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Part Number # HIN232ACBZ (Interface - Drivers, Receivers, Transceivers) is manufactured by Intersil and distributed by Heisener. Being one of the leading electronics distributors, we carry many kinds of electronic components from some of the world’s top class manufacturers. Their quality is guaranteed by its stringent quality control to meet all required standards.

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HIN232ACBZ Specifications

ManufacturerIntersil
CategoryIntegrated Circuits (ICs) - Interface - Drivers, Receivers, Transceivers
Datasheet HIN232ACBZDatasheet
Package16-SOIC (0.295", 7.50mm Width)
Series-
TypeTransceiver
ProtocolRS232
Number of Drivers/Receivers2/2
DuplexFull
Receiver Hysteresis500mV
Data Rate230kbps
Voltage - Supply4.5 V ~ 5.5 V
Operating Temperature0°C ~ 70°C
Mounting TypeSurface Mount
Package / Case16-SOIC (0.295", 7.50mm Width)
Supplier Device Package16-SOIC

HIN232ACBZ Datasheet

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FN4316 Rev 1.00 March 13, 2006 HIN232A High Speed +5V Powered RS-232 Transmitters/Receivers DATASHEETThe HIN232A high-speed RS-232 transmitter/receiver interface circuit meets all ElA high-speed RS-232E and V.28 specifications, and is particularly suited for those applications where 12V is not available. They require a single +5V power supply and feature onboard charge pump voltage converters which generate +10V and -10V supplies from the 5V supply. The drivers feature true TTL/CMOS input compatibility, slew rate-limited output, and 300 power-off source impedance. The receivers can handle up to 30V input, and have a 3k to 7k input impedance. The receivers also feature hysteresis to greatly improve noise rejection. Features • Meets All RS-232E and V.28 Specifications • Requires Only 0.1F or Greater External Capacitors • High Data Rate. . . . . . . . . . . . . . . . . . . . . . . . . . 230kbit/s • Requires Only Single +5V Power Supply • Onboard Voltage Doubler/Inverter • Low Power Consumption (Typ) . . . . . . . . . . . . . . . . . 5mA • Multiple Drivers - 10V Output Swing for +5V lnput - 300 Power-Off Source Impedance - Output Current Limiting - TTL/CMOS Compatible • Multiple Receivers - 30V Input Voltage Range - 3k to 7k Input Impedance - 0.5V Hysteresis to Improve Noise Rejection • Pb-Free Plus Anneal Available (RoHS Compliant) Applications • Any System Requiring High-Speed RS-232 Communication Ports - Computer - Portable, Mainframe, Laptop - Peripheral - Printers and Terminals - Instrumentation, UPS - Modems Ordering Information PART NO. PART MARKING TEMP. RANGE (oC) PACKAGE PKG. DWG. # HIN232ACB 232ACB 0 to 70 16 Ld SOIC M16.3 HIN232ACB-T 232ACB 0 to 70 16 Ld SOIC Tape and Reel M16.3 HIN232ACBZ (See Note) 232ACBZ 0 to 70 16 Ld SOIC (Pb-free) M16.3 HIN232ACBZ-T (See Note) 232ACBZ 0 to 70 16 Ld SOIC Tape and Reel (Pb-free) M16.3 HIN232ACBN 232ACBN 0 to 70 16 Ld SOIC (N) M16.15 HIN232ACBN-T 232ACBN 0 to 70 16 Ld SOIC (N) Tape and Reel M16.15 HIN232ACBNZ (See Note) 232ACBNZ 0 to 70 16 Ld SOIC (N) (Pb-free) M16.15 HIN232ACBNZ-T (See Note) 232ACBNZ 0 to 70 16 Ld SOIC (N) Tape and Reel (Pb-free) M16.15 HIN232ACP HIN232ACP 0 to 70 16 Ld PDIP E16.3 HIN232ACPZ (See Note) 232ACPZ 0 to 70 16 Ld PDIP* (Pb-free) E16.3 *Pb-free PDIPs can be used for through hole wave solder processing only. They are not intended for use in Reflow solder processing applications. NOTE: Intersil Pb-free plus anneal products employ special Pb-free material sets; molding compounds/die attach materials and 100% matte tin plate termination finish, which are RoHS compliant and compatible with both SnPb and Pb-free soldering operations. Intersil Pb-free products are MSL classified at Pb-free peak reflow temperatures that meet or exceed the Pb-free requirements of IPC/JEDEC J STD-020. Selection Table PART NUMBER POWER SUPPLY VOLTAGE NUMBER OF RS-232 DRIVERS NUMBER OF RS-232 RECEIVERS NUMBER OF 0.1F EXTERNAL CAPACITORS LOW POWER SHUTDOWN/TTL THREE- STATE NUMBER OF RECEIVERS ACTIVE IN SHUTDOWN HIN232A +5V 2 2 4 Capacitors No/No 0FN4316 Rev 1.00 Page 1 of 10 March 13, 2006

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HIN232APinout HIN232A (PDIP, SOIC) TOP VIEW Pin Descriptions PIN FUNCTION VCC Power Supply Input 5V 10%. V+ Internally generated positive supply (+10V nominal). V- Internally generated negative supply (-10V nominal). GND Ground Lead. Connect to 0V. C1+ External capacitor (+ terminal) is connected to this lead. C1- External capacitor (- terminal) is connected to this lead. C2+ External capacitor (+ terminal) is connected to this lead. C2- External capacitor (- terminal) is connected to this lead. TIN Transmitter Inputs. These leads accept TTL/CMOS levels. An internal 400k pull-up resistor to VCC is connected to each lead. TOUT Transmitter Outputs. These are RS-232 levels (nominally 10V). RIN Receiver Inputs. These inputs accept RS-232 input levels. An internal 5k pull-down resistor to GND is connected to each input. ROUT Receiver Outputs. These are TTL/CMOS levels. 14 15 16 9 13 12 11 10 1 2 3 4 5 7 6 8 C1+ V+ C1- C2+ C2- R2IN T2OUT VCC T1OUT R1IN R1OUT T1IN T2IN R2OUT GND V- VCC +5V 2 V+ 16 T1OUT T2OUT T1IN T2IN T1 T2 11 10 14 7 +5V 400k +5V 400k R1OUT R1IN R1 1312 5k R2OUT R2IN R2 89 5k +10V TO -10V VOLTAGE INVERTER 0.1F 6 V- C2+ C2- + 0.1F 4 5 +5V TO 10V VOLTAGE INVERTER C1+ C1- + 0.1F 1 3 + 0.1F + GND 15FN4316 Rev 1.00 Page 2 of 10 March 13, 2006

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HIN232AAbsolute Maximum Ratings Thermal Information VCC to Ground. . . . . . . . . . . . . . . . . . . . . . (GND -0.3V)

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HIN232ADetailed Description The HIN232A is a high-speed RS-232 transmitter/receiver that is powered by a single +5V power supply, features low power consumption, and meets all ElA RS232C and V.28 specifications. The circuit is divided into three sections: the charge pump, transmitter, and receiver. Charge Pump An equivalent circuit of the charge pump is illustrated in Figure 3. The charge pump contains two sections: The voltage doubler and the voltage inverter. Each section is driven by a two phase, internally generated clock to generate +10V and - 10V. The nominal clock frequency is 125kHz. During phase one of the clock, capacitor C1 is charged to VCC . During phase two, the voltage on C1 is added to VCC, producing a signal across C3 equal to twice VCC. During phase two, C2 is also charged to 2VCC, and then during phase one, it is inverted with respect to ground to produce a signal across C4 equal to -2VCC. The charge pump accepts input voltages up to 5.5V. The output impedance of the voltage doubler section (V+) is approximately 200, and the output impedance of the voltage inverter section (V-) is approximately 450. A typical application uses 0.1F capacitors for C1-C4, however, the value is not critical. Increasing the values of C1 and C2 will lower the output impedance of the voltage doubler and inverter, increasing the values of the reservoir capacitors, C3 and C4, lowers the ripple on the V+ and V- supplies. Transmitters The transmitters are TTL/CMOS compatible inverters which translate the inputs to RS-232 outputs. The input logic threshold is about 26% of VCC, or 1.3V for VCC = 5V. A logic 1 at the input results in a voltage of between -5V and V- at the output, and a logic 0 results in a voltage between +5V and (V+ -0.6V). Each transmitter input has an internal 400k pullup resistor so any unused input can be left unconnected and its output remains in its low state. The output voltage swing meets the RS-232C specifications of 5V minimum with the worst case conditions of: all transmitters driving 3k minimum load impedance, VCC = 4.5V, and maximum allowable operating temperature. The Test Circuits (HIN232A) FIGURE 1. GENERAL TEST CIRCUIT FIGURE 2. POWER-OFF SOURCE RESISTANCE CONFIGURATION 14 15 16 9 13 12 11 10 1 2 3 4 5 7 6 8 C1+ V+ C1- C2+ C2- V- R2IN T2OUT VCC T1OUT R1IN R1OUT T1IN T2IN R2OUT GND +4.5V TO +5.5V INPUT 3k T1 OUTPUT RS-232 30V INPUT TTL/CMOS OUTPUT TTL/CMOS INPUT TTL/CMOS INPUT TTL/CMOS OUTPUT + -0.1F C3 + - 0.1F C1 + - 0.1F C2 + - 0.1F C4 3k OUTPUT RS-232 30V INPUT T2 14 15 16 9 13 12 11 10 1 2 3 4 5 7 6 8 C1+ V+ C1- C2+ C2- V- R2IN T2OUT VCC T1OUT R1IN R1OUT T1IN T2IN R2OUT GND T2OUT T1OUT VIN = 2V A ROUT = VIN/I + - C1 + - C3 + - C2 + - C4 S1 S2 S5 S6 S3 S4 S7 S8 VCC GND RC OSCILLATOR VCC GND V+ = 2VCC GND V- = - (V+) C1+ C1- C2- C2+ VOLTAGE INVERTERVOLTAGE DOUBLER FIGURE 3. CHARGE PUMPFN4316 Rev 1.00 Page 4 of 10 March 13, 2006

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HIN232Atransmitters have an internally limited output slew rate which is less than 30V/s. The outputs are short circuit protected and can be shorted to ground indefinitely. The powered down output impedance is a minimum of 300 with 2V applied to the outputs and VCC = 0V. Receivers The receiver inputs accept up to 30V while presenting the required 3k to 7k input impedance even if the power is off (VCC = 0V). The receivers have a typical input threshold of 1.3V which is within the 3V limits, known as the transition region, of the RS-232 specifications. The receiver output is 0V to VCC. The output will be low whenever the input is greater than 2.4V and high whenever the input is floating or driven between +0.8V and - 30V. The receivers feature 0.5V hysteresis (except during shutdown) to improve noise rejection. Application Information The HIN232A may be used for all RS-232 data terminal and communication links. It is particularly useful in applications where 12V power supplies are not available for conventional RS-232 interface circuits. The applications presented represent typical interface configurations. A simple duplex RS-232 port with CTS/RTS handshaking is illustrated in Figure 7. Fixed output signals such as DTR (data terminal ready) and DSRS (data signaling rate select) is generated by driving them through a 5k resistor connected to V+. In applications requiring four RS-232 inputs and outputs (Figure 8), note that each circuit requires two charge pump capacitors (C1 and C2) but can share common reservoir capacitors (C3 and C4). The benefit of sharing common reservoir capacitors is the elimination of two capacitors and the reduction of the charge pump source impedance which effectively increases the output swing of the transmitters. TOUT V- < VTOUT < V+ 300400k TXIN GND < TXIN < VCC V- V+ VCC FIGURE 4. TRANSMITTER ROUT GND < VROUT < VCC5k RXIN -30V < RXIN < +30V GND VCC FIGURE 5. RECEIVER TIN VOH VOL tPLHtPHL AVERAGE PROPAGATION DELAY = tPHL + tPLH 2 OR RIN TOUT OR ROUT FIGURE 6. PROPAGATION DELAY DEFINITION - + - + - + CTR (20) DATA TERMINAL READY DSRS (24) DATA SIGNALING RATE RS-232 INPUTS AND OUTPUTS TD (2) TRANSMIT DATA RTS (4) REQUEST TO SEND RD (3) RECEIVE DATA CTS (5) CLEAR TO SEND SIGNAL GROUND (7)15 8 13 7 14 16 - + 6 R2 R1 T2 T1 9 12 10 11 4 5 3 1 HIN232A C1 0.1F C2 0.1F TD RTS RD CTS SELECT +5V INPUTS OUTPUTS TTL/CMOS FIGURE 7. SIMPLE DUPLEX RS-232 PORT WITH CTS/RTS HANDSHAKINGFN4316 Rev 1.00 Page 5 of 10 March 13, 2006

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HIN232A- + RS-232 INPUTS AND OUTPUTS DTR (20) DATA TERMINAL READY DSRS (24) DATA SIGNALING RATE SELECT DCD (8) DATA CARRIER DETECT R1 (22) RING INDICATOR SIGNAL GROUND (7)15 8 13 7 14 2 -+ 4 R2 R1 T2 T1 9 12 10 11 3 1 HIN232A C1 0.1F DTR DSRS DCD R1 +5V INPUTS OUTPUTS TTL/CMOS - + - + TD (2) TRANSMIT DATA RTS (4) REQUEST TO SEND RD (3) RECEIVE DATA CTS (5) CLEAR TO SEND 8 13 7 14 15 R2 R1 T2 T1 9 12 10 11 4 53 1 HIN232AC1 0.1F C2 0.1F TD RTS RD CTS INPUTS OUTPUTS TTL/CMOS - + 5 C2 0.1F 16 C3 0.2F 6 26 V- V+ -+ C4 0.2F 16 VCC VCC FIGURE 8. COMBINING TWO HIN232As FOR 4 PAIRS OF RS-232 INPUTS AND OUTPUTS Typical Performance Curves FIGURE 9. V- SUPPLY VOLTAGE vs VCC FIGURE 10. V+, V- OUTPUT VOLTAGE vs LOAD 12 10 8 6 4 2 0 3.5 4.0 4.5 6.0 VCC V - S U P P LY V O LT A G E ( V ) 5.0 5.53.0 0.1F 35 |ILOAD| (mA) V+ (VCC = 4V) V+ (VCC = 5V) V- (VCC = 5V) V- (VCC = 4V) TA = 25 oC TRANSMITTER OUTPUTS OPEN CIRCUIT 302520151050 S U P P LY V O LT A G E ( V ) 0 12 10 8 6 4 2 FN4316 Rev 1.00 Page 6 of 10 March 13, 2006

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HIN232ADie Characteristics DIE DIMENSIONS 160 mils x 140 mils METALLIZATION Type: Al Thickness: 10kÅ 1kÅ SUBSTRATE POTENTIAL V+ PASSIVATION Type: Nitride over Silox Nitride Thickness: 8kÅ Silox Thickness: 7kÅ TRANSISTOR COUNT 238 PROCESS CMOS Metal GateFN4316 Rev 1.00 Page 7 of 10 March 13, 2006

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HIN232A FN4316 Rev 1.00 Page 8 of 10 March 13, 2006 Dual-In-Line Plastic Packages (PDIP) NOTES: 1. Controlling Dimensions: INCH. In case of conflict between English and Metric dimensions, the inch dimensions control. 2. Dimensioning and tolerancing per ANSI Y14.5M-1982. 3. Symbols are defined in the “MO Series Symbol List” in Section 2.2 of Publication No. 95. 4. Dimensions A, A1 and L are measured with the package seated in JE- DEC seating plane gauge GS-3. 5. D, D1, and E1 dimensions do not include mold flash or protrusions. Mold flash or protrusions shall not exceed 0.010 inch (0.25mm). 6. E and are measured with the leads constrained to be perpendic- ular to datum . 7. eB and eC are measured at the lead tips with the leads unconstrained. eC must be zero or greater. 8. B1 maximum dimensions do not include dambar protrusions. Dambar protrusions shall not exceed 0.010 inch (0.25mm). 9. N is the maximum number of terminal positions. 10. Corner leads (1, N, N/2 and N/2 + 1) for E8.3, E16.3, E18.3, E28.3, E42.6 will have a B1 dimension of 0.030 - 0.045 inch (0.76 - 1.14mm). eA -C- CL E eA C eB eC -B- E1 INDEX 1 2 3 N/2 N AREA SEATING BASE PLANE PLANE -C- D1 B1 B e D D1 AA2 L A1 -A- 0.010 (0.25) C AM B S E16.3 (JEDEC MS-001-BB ISSUE D) 16 LEAD DUAL-IN-LINE PLASTIC PACKAGE SYMBOL INCHES MILLIMETERS NOTESMIN MAX MIN MAX A - 0.210 - 5.33 4 A1 0.015 - 0.39 - 4 A2 0.115 0.195 2.93 4.95 - B 0.014 0.022 0.356 0.558 - B1 0.045 0.070 1.15 1.77 8, 10 C 0.008 0.014 0.204 0.355 - D 0.735 0.775 18.66 19.68 5 D1 0.005 - 0.13 - 5 E 0.300 0.325 7.62 8.25 6 E1 0.240 0.280 6.10 7.11 5 e 0.100 BSC 2.54 BSC - eA 0.300 BSC 7.62 BSC 6 eB - 0.430 - 10.92 7 L 0.115 0.150 2.93 3.81 4 N 16 16 9 Rev. 0 12/93

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HIN232A FN4316 Rev 1.00 Page 9 of 10 March 13, 2006 Small Outline Plastic Packages (SOIC) NOTES: 1. Symbols are defined in the “MO Series Symbol List” in Section 2.2 of Publication Number 95. 2. Dimensioning and tolerancing per ANSI Y14.5M-1982. 3. Dimension “D” does not include mold flash, protrusions or gate burrs. Mold flash, protrusion and gate burrs shall not exceed 0.15mm (0.006 inch) per side. 4. Dimension “E” does not include interlead flash or protrusions. Interlead flash and protrusions shall not exceed 0.25mm (0.010 inch) per side. 5. The chamfer on the body is optional. If it is not present, a visual index feature must be located within the crosshatched area. 6. “L” is the length of terminal for soldering to a substrate. 7. “N” is the number of terminal positions. 8. Terminal numbers are shown for reference only. 9. The lead width “B”, as measured 0.36mm (0.014 inch) or greater above the seating plane, shall not exceed a maximum value of 0.61mm (0.024 inch) 10. Controlling dimension: MILLIMETER. Converted inch dimensions are not necessarily exact. INDEX AREA E D N 1 2 3 -B- 0.25(0.010) C AM B S e -A- L B M -C- A1 A SEATING PLANE 0.10(0.004) h x 45° C H 0.25(0.010) BM M  M16.3 (JEDEC MS-013-AA ISSUE C) 16 LEAD WIDE BODY SMALL OUTLINE PLASTIC PACKAGE SYMBOL INCHES MILLIMETERS NOTESMIN MAX MIN MAX A 0.0926 0.1043 2.35 2.65 - A1 0.0040 0.0118 0.10 0.30 - B 0.013 0.0200 0.33 0.51 9 C 0.0091 0.0125 0.23 0.32 - D 0.3977 0.4133 10.10 10.50 3 E 0.2914 0.2992 7.40 7.60 4 e 0.050 BSC 1.27 BSC - H 0.394 0.419 10.00 10.65 - h 0.010 0.029 0.25 0.75 5 L 0.016 0.050 0.40 1.27 6 N 16 16 7  0° 8° 0° 8° - Rev. 1 6/05

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Sai*****Haley

July 9, 2020

Very easy to co-operate with; they take care of orders promptly.

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July 2, 2020

Very professional sellers, they have adopted MSL packaging for different parts.

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July 1, 2020

I've had no issues. Good product, would buy again.

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June 26, 2020

Excellent sales and service. Thank you. Buy with confidence.

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June 21, 2020

The parts as described and fast shipping. Thanks for the great service

Vinc***** Meka

June 16, 2020

Does what it says. As with this this type of device it is important to have it mounted so that heat can dissipate. The higher the amperage the hotter the device.

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June 14, 2020

Heisener parametric search for specific components is by far better than their competitors.

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June 12, 2020

I can count on your provision for BOM of my design in near future

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June 12, 2020

Website and order clear, concise and user friendly. Thanks!

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June 7, 2020

Great item at a great price. Quick shipping. Nice seller. Rad transaction!

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