DATASHEET CD4098BMS. Description. Features. Applications. Pinout. CMOS Dual Monostable Multivibrator. FN3332 Rev 0.00 Page 1 of 11.

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1 DATASHEET CD9BMS CMOS Dual Monostable Multivibrator Features High Voltage Type (V Rating) Retriggerable/Resettable Capability Trigger and Reset Propagation Delays Independent of RX, CX Triggering from Leading or Trailing Edge Q and Q Buffered Outputs Available Separate Resets Wide Range of Output Pulse Widths % Tested for Quiescent Current at V 5V, V and 15V Parametric Ratings Standardized Symmetrical Output Characteristics Maximum Input Current of 1 A at 1V Over Full Package Temperature Range; na at 1V and +5 o C Noise Margin (Over Full Package/Temperature Range) - 1V at = 5V - V at = V -.5V at = 15V Meets All Requirements of JEDEC Tentative Standard No. 13B, Standard Specifications for Description of B Series CMOS Devices Applications Pulse Delay and Timing Pulse Shaping Astable Multivibrator Pinout CX1 RXCX (1) RESET (1) +TR (1) -TR (1) Q1 Q CD9BMS TOP VIEW CX RXCX () RESET () +TR () -TR () Q Q Description FN333 Rev. CD9BMS dual monostable multivibrator provides stable retriggerable/resettable one shot operation for any fixed voltage timing application. An external resistor (RX) and an external capacitor (CX) control the timing for the circuit. Adjustment of RX and CX provides a wide range of output pulse widths from the Q and Q terminals. The time delay from trigger input to output transition (trigger propagation delay) and the time delay from reset input to output transition (reset propagation delay) are independent of RX and CX. Leading edge triggering (+TR) and trailing edge triggering (-TR) inputs are provided for triggering from either edge of an input pulse. An unused +TR input should be tied to. An unused -TR input should be tied to. A RESET (on low level) is provided for immediate termination of the output pulse or to prevent output pulses when power is turned on. An unused RESET input should be tied to. However, if an entire section of the CD9BMS is not used, its RESET should be tied to. See Table 9. In normal operation the circuit triggers (extends the output pulse one period) on the application of each new trigger pulse. For operation in the non-retriggerable mode, Q is connected to -TR when leading edge triggering (+TR) is used or Q is connected to +TR when trailing edge triggering (-TR) is used. The time period (T) for this multivibrator can be approximated by: TX = 1 / RXCX for CX 3.1 F. Time periods as a function of RX for values of CX and are given in Figure. Values of T vary from unit to unit and as a function of voltage, temperature, and RXCX. The minimum value of external resistance, RX, is 5k. The maximum value of external capacitance, CX, is F. Figure 9 shows time periods as a function of CX for values of RX and. The output pulse width has variations of.5% typically, over the temperature range of to +15 o C for CX = pf and RX = k. For power supply variations of 5%, the output pulse width has variations of.5% typically, for = V and 15V and 1% typically, for = 5V at CX = pf and RX = 5k. The CD9BMS is supplied in these 1-lead outline packages: Braze Seal DIP Frit Seal DIP Ceramic Flatpack HT H1F HW TERMINALS 1,, 15 ARE ELECTRICALLY CONNECTED INTERNALLY FN333 Rev. Page 1 of 11

2 CD9BMS Functional Diagram CX1 RX1 1 RXCX (1) +TR -TR RESET 5 3 MONO 1 7 Q1 Q1 +TR -TR RESET MONO 9 Q Q 15 1 RXCX () = 1 = CX RX FN333 Rev. Page of 11

3 CD9BMS Absolute Maximum Ratings DC Supply Voltage Range, () V to +V (Voltage Referenced to Terminals) Input Voltage Range, All Inputs V to +.5V DC Input Current, Any One Input ma Operating Temperature Range to +15 o C Package Types D, F, K, H Storage Temperature Range (TSTG) o C to +15 o C Lead Temperature (During Soldering) o C At Distance 1/1 1/3 Inch (1.59mm.79mm) from case for s Maximum Reliability Information Thermal Resistance ja jc Ceramic DIP and FRIT Package..... o C/W o C/W Flatpack Package o C/W o C/W Maximum Package Power Dissipation (PD) at +15 o C For TA = to + o C (Package Type D, F, K) mW For TA = + o C to +15 o C (Package Type D, F, K)..... Derate Linearity at 1mW/ o C to mw Device Dissipation per Output Transistor mw For TA = Full Package Temperature Range (All Package Types) Junction Temperature o C TABLE 1. DC ELECTRICAL PERFORMANCE CHARACTERISTICS GROUP A PARAMETER SYMBOL CONDITIONS (NOTE 1) SUBGROUPS TEMPERATURE MIN MAX UNITS Supply Current IDD = V, VIN = or GND 1 +5 o C - A +15 o C - A = 1V, VIN = or GND 3 - A Input Leakage Current IIL VIN = or GND = V 1 +5 o C - - na +15 o C - - na = 1V na Input Leakage Current IIH VIN = or GND = V 1 +5 o C - na +15 o C - na = 1V 3 - na Output Voltage VOL15 = 15V, No Load 1,, 3 +5 o C, +15 o C, - 5 mv Output Voltage VOH15 = 15V, No Load (Note 3) 1,, 3 +5 o C, +15 o C, V Output Current (Sink) IOL5 = 5V, VOUT =.V 1 +5 o C.53 - ma Output Current (Sink) IOL = V, VOUT =.5V 1 +5 o C 1. - ma Output Current (Sink) IOL15 = 15V, VOUT = 1.5V 1 +5 o C ma Output Current (Source) IOH5A = 5V, VOUT =.V 1 +5 o C ma Output Current (Source) IOH5B = 5V, VOUT =.5V 1 +5 o C ma Output Current (Source) IOH = V, VOUT = 9.5V 1 +5 o C ma Output Current (Source) IOH15 = 15V, VOUT = 13.5V 1 +5 o C ma N Threshold Voltage VNTH = V, ISS = - A 1 +5 o C V P Threshold Voltage VPTH = V, IDD = A 1 +5 o C.7. V Functional F =.V, VIN = or GND 7 +5 o C VOH > VOL < V = V, VIN = or GND 7 +5 o C / / = 1V, VIN = or GND A +15 o C = 3V, VIN = or GND B Input Voltage Low (Note ) VIL = 5V, VOH >.5V, VOL <.5V 1,, 3 +5 o C, +15 o C, V Input Voltage High (Note ) Input Voltage Low (Note ) Input Voltage High (Note ) VIH = 5V, VOH >.5V, VOL <.5V 1,, 3 +5 o C, +15 o C, V VIL VIH = 15V, VOH > 13.5V, VOL < 1.5V = 15V, VOH > 13.5V, VOL < 1.5V 1. All voltages referenced to device GND, % testing being implemented.. Go/No Go test with limits applied to inputs. 1,, 3 +5 o C, +15 o C, - V 1,, 3 +5 o C, +15 o C, 11 - V 3. For accuracy, voltage is measured differentially to. Limit is.5v max. FN333 Rev. Page 3 of 11

4 CD9BMS TABLE. AC ELECTRICAL PERFORMANCE CHARACTERISTICS PARAMETER SYMBOL CONDITIONS (NOTE 1, ) Propagation Delay +TR, -TR to Q, Q TPHL1 TPLH1 = 5V, VIN = or GND RX = 5K to K, CX 15pF Transition Time TTHL1 = 5V, VIN = or GND RX = 5K to K, CX = 15pF to,pf Transition Time (Note ) TTLH1 = 5V, VIN = or GND RX = 5K to K, CX 15pF 1. CL = 5pF, RL = K, Input TR, TF < ns.. and +15 o C limits guaranteed, % testing being implemented. GROUP A SUBGROUPS TEMPERATURE MIN MAX UNITS 9 +5 o C - 5 ns, o C, - 75 ns 9 +5 o C - ns, o C, - 7 ns 9 +5 o C - ns, o C, - 7 ns TABLE 3. ELECTRICAL PERFORMANCE CHARACTERISTICS PARAMETER SYMBOL CONDITIONS NOTES TEMPERATURE MIN MAX UNITS Supply Current IDD = 5V, VIN = or GND 1,, +5 o C - 1 A +15 o C - 3 A = V, VIN = or GND 1,, +5 o C - A +15 o C - A = 15V, VIN = or GND 1,, +5 o C - A +15 o C - A Output Voltage VOL = 5V, No Load 1, +5 o C, +15 o C, - 5 mv Output Voltage VOL = V, No Load 1, +5 o C, +15 o C, Output Voltage VOH = 5V, No Load 1, +5 o C, +15 o C, Output Voltage VOH = V, No Load 1, +5 o C, +15 o C, - 5 mv.95 - V V Output Current (Sink) IOL5 = 5V, VOUT =.V 1, +15 o C.3 - ma. - ma Output Current (Sink) IOL = V, VOUT =.5V 1, +15 o C.9 - ma 1. - ma Output Current (Sink) IOL15 = 15V, VOUT = 1.5V 1, +15 o C. - ma. - ma Output Current (Source) IOH5A = 5V, VOUT =.V 1, +15 o C ma - -. ma Output Current (Source) IOH5B = 5V, VOUT =.5V 1, +15 o C ma - -. ma Output Current (Source) IOH = V, VOUT = 9.5V 1, +15 o C ma ma Output Current (Source) IOH15 =15V, VOUT = 13.5V 1, +15 o C - -. ma - -. ma Input Voltage Low VIL = V, VOH > 9V, VOL < 1V Input Voltage High VIH = V, VOH > 9V, VOL < 1V 1, +5 o C, +15 o C, 1, +5 o C, +15 o C, - 3 V +7 - V FN333 Rev. Page of 11

5 CD9BMS Propagation Delay +TR, -TR to Q, Q CX 15pF Propagation Delay Reset CX 15pF Transition Time CX = 15pF to,pf Transition Time CX =.1 F to.1 F Transition Time CX =.1 F to 1 F Transition Time CX 15pF Minimum Reset Pulse Width, CX = 15pF Minimum Reset Pulse Width, CX = pf Minimum Reset Pulse Width, CX =.1 F Pulse Width Match Between Circuits in Same Package Trigger Rise or Fall Time TABLE 3. ELECTRICAL PERFORMANCE CHARACTERISTICS (Continued) PARAMETER SYMBOL CONDITIONS NOTES TEMPERATURE TPHL1 TPLH1 TPHL TPLH = V 1,, 3, +5 o C - 5 ns = 15V 1,, 3, +5 o C - ns = 5V 1,, 3 +5 o C - 5 ns = V 1,, 3, +5 o C - 5 ns = 15V 1,, 3, +5 o C - 15 ns TTHL1 = V 1,, 3, +5 o C - ns = 15V 1,, 3, +5 o C - ns TTLH TTHL = 5V 1,, 3 +5 o C - 3 ns = V 1,, 3, 5 +5 o C - 15 ns = 15V 1,, 3, 5 +5 o C - 13 ns TTHL3 = 5V 1,, 3 +5 o C - 5 ns = V 1,, 3, +5 o C - 3 ns = 15V 1,, 3, +5 o C - ns TTLH1 = V 1,, 3, +5 o C - ns = 15V 1,, 3, +5 o C - ns TW = 5V 1,, 3, 5 +5 o C - ns = V 1,, 3, 5 +5 o C - ns = 15V 1,, 3, 5 +5 o C - ns TW = 5V 1,, 3, 5 +5 o C - ns = V 1,, 3, 5 +5 o C - ns = 15V 1,, 3,5 +5 o C - 5 ns TW = 5V 1,, 3, 5 +5 o C - 5 s = V 1,, 3, 5 +5 o C - 3 s = 15V 1,, 3, 5 +5 o C - s TW = 5V 1,, 3, +5 o C - % = V 1,, 3, +5 o C - 15 % = 15V 1,, 3, +5 o C - 15 % TRTR = 5V to 15V 1, +5 o C - s TFTR Input Capacitance CIN Any Inputs 1, +5 o C pf 1. All voltages referenced to device GND.. The parameters listed on Table 3 are controlled via design or process and are not directly tested. These parameters are characterized on initial design release and upon design changes which would affect these characteristics. 3. CL = 5pF, RL = K, inputs tr, tf < ns.. RX = 5K to M. 5. RX = k. RX = k MIN MAX UNITS TABLE. POST IRRADIATION ELECTRICAL PERFORMANCE CHARACTERISTICS PARAMETER SYMBOL CONDITIONS NOTES TEMPERATURE MIN MAX UNITS Supply Current IDD = V, VIN = or GND 1, +5 o C A N Threshold Voltage VNTH = V, ISS = - A 1, +5 o C V FN333 Rev. Page 5 of 11

6 CD9BMS TABLE. POST IRRADIATION ELECTRICAL PERFORMANCE CHARACTERISTICS N Threshold Voltage Delta VTN = V, ISS = - A 1, +5 o C - 1 V P Threshold Voltage VTP = V, IDD = A 1, +5 o C.. V P Threshold Voltage VTP = V, IDD = A 1, +5 o C - 1 V Delta Functional F = 1V, VIN = or GND = 3V, VIN = or GND 1 +5 o C VOH > / Propagation Delay Time TPHL TPLH PARAMETER SYMBOL CONDITIONS NOTES TEMPERATURE 1. All voltages referenced to device GND.. CL = 5pF, RL = K, Input TR, TF < ns. VOL < / = 5V 1,, 3, +5 o C x +5 o C Limit 3. See Table for +5 o C limit.. Read and Record MIN MAX UNITS V ns TABLE 5. BURN-IN AND LIFE TEST DELTA PARAMETERS +5 o C PARAMETER SYMBOL DELTA LIMIT Supply Current - MSI-1 IDD. A Output Current (Sink) IOL5 % x Pre-Test Reading Output Current (Source) IOH5A % x Pre-Test Reading TABLE. APPLICABLE SUBGROUPS CONFORMANCE GROUP MIL-STD-3 METHOD GROUP A SUBGROUPS READ AND RECORD Initial Test (Pre Burn-In) % 5 1, 7, 9 IDD, IOL5, IOH5A Interim Test 1 (Post Burn-In) % 5 1, 7, 9 IDD, IOL5, IOH5A Interim Test (Post Burn-In) % 5 1, 7, 9 IDD, IOL5, IOH5A PDA (Note 1) % 5 1, 7, 9, Deltas Interim Test 3 (Post Burn-In) % 5 1, 7, 9 IDD, IOL5, IOH5A PDA (Note 1) % 5 1, 7, 9, Deltas Final Test % 5, 3, A, B,, 11 Group A Sample 55 1,, 3, 7, A, B, 9,, 11 Group B Subgroup B-5 Sample 55 1,, 3, 7, A, B, 9,, 11, Deltas Subgroups 1,, 3, 9,, 11 Subgroup B- Sample 55 1, 7, 9 Group D Sample 55 1,, 3, A, B, 9 Subgroups 1, 3 NOTE: 1. 5% Parameteric, 3% Functional; Cumulative for Static 1 and. TABLE 7. TOTAL DOSE IRRADIATION MIL-STD-3 TEST READ AND RECORD CONFORMANCE GROUPS METHOD PRE-IRRAD POST-IRRAD PRE-IRRAD POST-IRRAD Group E Subgroup 55 1, 7, 9 Table 1, 9 Table FN333 Rev. Page of 11

7 CD9BMS TABLE. BURN-IN AND IRRADIATION TEST CONNECTIONS FUNCTION OPEN GROUND 9V -.5V Static Burn-In 1, 7, 9, 1-5,, Note 1 Static Burn-In Note 1 Dynamic Burn- In Note 1 Irradiation Note, 7, 9, 1,, 15-5, 11-1, 1 OSCILLATOR 5kHz 5kHz - 1,,, 1, 15, 1, 1, 7, 9, 5, 11 3, 13,, 7, 9,, 1 1,, , 11-13, 1 NOTE: 1. Each pin except and GND will have a series resistor of K 5%, = 1V.5V. Each pin except and GND will have a series resistor of 7K 5%; Group E, Subgroup, sample size is dice/wafer, failures, = V.5V FUNCTION Leading Edge Trigger/ Retriggerable Leading Edge Trigger/ Non-Retriggerable Trailing Edge Trigger/ Retriggerable Trailing Edge Trigger/ Non-Retriggerable TABLE 9. FUNCTIONAL TERMINAL CONNECTIONS TO TERM. NO. TO TERM. NO. INPUT PULSE TO TERM. NO. OTHER CONNECTIONS MONO 1 MONO MONO 1 MONO MONO 1 MONO MONO 1 MONO 3, 5 11, Unused Section , 1, A retriggerable one-shot multivibrator has an output pulse width which is extended one full time period (TX) after application of the last trigger pulse. The minimum time between retriggering edges (or trigger and retrigger edges) is % of (TX).. A non-retriggerable one-shot multivibrator has a time period TX referenced from the application of the first trigger pulse. INPUT PULSE TRAIN RETRIGGERABLE MODE PULSE WIDTH (+TR MODE) TX NON-RETRIGGERABLE MODE PULSE WIDTH (-TR MODE) TX Copyright Intersil Americas LLC All Rights Reserved. All trademarks and registered trademarks are the property of their respective owners. For additional products, see Intersil products are manufactured, assembled and tested utilizing ISO91 quality systems as noted in the quality certifications found at Intersil products are sold by description only. Intersil may modify the circuit design and/or specifications of products at any time without notice, provided that such modification does not, in Intersil's sole judgment, affect the form, fit or function of the product. Accordingly, the reader is cautioned to verify that datasheets are current before placing orders. Information furnished by Intersil is believed to be accurate and reliable. However, no responsibility is assumed by Intersil or its subsidiaries for its use; nor for any infringements of patents or other rights of third parties which may result from its use. No license is granted by implication or otherwise under any patent or patent rights of Intersil or its subsidiaries. For information regarding Intersil Corporation and its products, see FN333 Rev. Page 7 of 11

8 CD9BMS Logic Diagram (1) * D Q +TR C 5 (11) * -TR R1 R 3 (13) * RESET * (1) 1 (15) RXCX 1 Q () NOTE: 7 (9) Q SCHEMATIC SHOWN IS 1 / OF TOTAL PACKAGE. TWO SETS OF TERMINAL NUMBERS ARE SHOWN. TERMINALS 1,, AND 15 ARE ELECTRICALLY CONNECTED INTERNALLY. *ALL INPUTS ARE PROTECTED BY CMOS PROTECTION NETWORK FIGURE 1. LOGIC DIAGRAM Typical Performance Characteristics OUTPUT LOW (SINK) CURRENT (IOL) (ma) AMBIENT TEMPERATURE (T A ) = +5 o C GATE-TO-SOURCE VOLTAGE (VGS) = 15V V 5V OUTPUT LOW (SINK) CURRENT (IOL) (ma) AMBIENT TEMPERATURE (T A ) = +5 o C GATE-TO-SOURCE VOLTAGE (VGS) = 15V V 5V 5 15 DRAIN-TO-SOURCE VOLTAGE (VDS) (V) 5 15 DRAIN-TO-SOURCE VOLTAGE (VDS) (V) FIGURE. TYPICAL OUTPUT LOW (SINK) CURRENT CHARACTERISTICS FIGURE 3. MINIMUM OUTPUT LOW (SINK) CURRENT CHARACTERISTICS FN333 Rev. Page of 11

9 CD9BMS Typical Performance Characteristics (Continued) DRAIN-TO-SOURCE VOLTAGE (VDS) (V) AMBIENT TEMPERATURE (T A ) = +5 o C GATE-TO-SOURCE VOLTAGE (VGS) = -5V -V -15V OUTPUT HIGH (SOURCE) CURRENT (IOH) (ma) DRAIN-TO-SOURCE VOLTAGE (VDS) (V) AMBIENT TEMPERATURE (T A ) = +5 o C GATE-TO-SOURCE VOLTAGE (VGS) = -5V -V -15V OUTPUT HIGH (SOURCE) CURRENT (IOH) (ma) FIGURE. TYPICAL OUTPUT HIGH (SOURCE) CURRENT CHARACTERISTICS FIGURE 5. MINIMUM OUTPUT HIGH (SOURCE) CURRENT CHARACTERISTICS PROPAGATION DELAY TIME (tphl, tplh) (ns) AMBIENT TEMPERATURE (T A ) = +5 o C 3 AMBIENT TEMPERATURE (T A ) = +5 o C V 15V SUPPLY VOLTAGE () = 15V LOAD CAPACITANCE (CL) (pf) FIGURE. TYPICAL PROPAGATION DELAY TIME vs LOAD CA- PACITANCE, TRIGGER INTO Q OUT (ALL VALUES OF CX AND RX). TRANSITION TIME (tthl, ttlh) (ns) 15 5 SUPPLY VOLTAGE () = 5V LOAD CAPACITANCE (CL) (pf) V 5V FIGURE 7. TRANSITION TIME vs LOAD CAPACITANCE FOR RX = 5k -k AND CX = 15pF-pF EXTERNAL RESISTANCE (RX) ( ) AMBIENT TEMPERATURE (T A ) = +5 o C -1 1 CX = 15pF CX = pf CX = pf = 3V, 5V 3 5 PULSE WIDTH (PW) ( s) CX =.1 F CX =.1 F = 3V = 5V = V, 15V, 1V = 5V, V, 15V, 1V EXTERNAL CAPACITANCE (CX) (pf) 3 AMBIENT TEMPERATURE (T A ) = +5 o C 7 = 3V RX = K = 5V = V, 15V, 1V 5 RX = 5K PULSE WIDTH (PW) ( s) RX = K RX =1M RX = M FIGURE. TYPICAL EXTERNAL RESISTANCE vs PULSE WIDTH FIGURE 9. TYPICAL EXTERNAL CAPACITANCE vs PULSE WIDTH FN333 Rev. Page 9 of 11

10 CD9BMS Typical Performance Characteristics (Continued) MINIMUM RESET PULSE WIDTH (twr) (ns) 5 3 AMBIENT TEMPERATURE (T A ) = +5 o C CL = 5pF RX = K FREQUENCY = KHz RISE TIME (tr), FALL (tf) = ns SUPPLY VOLTAGE () = 5V V 15V 3 5 EXTERNAL CAPACITANCE (CX) (pf) FIGURE. TYPICAL MINIMUM RESET PULSE WIDTH vs EXTERNAL CAPACITANCE AVERAGE POWER - DISSIPATION FOR % DUTY CYCLE (P) ( W) AMBIENT TEMPERATURE (T A ) = +5 o C RX = 5K TO 1M CL = 5pF CX = pf pf.1 F.1 F = 5V = V = 15V 3 5 ONE-SHOT PULSE WIDTH ( m) ( s) 1 F To calculate average power dissipation(p) for less than % duty cycle: P = average power for % duty cycle: P =( tm T P where m = one shot pulse ) width T = trigger pulse period e.g. For m = s, tt = s. CX =.1mF = 5V P1 =( ) 3 W = W (see dotted line on graph) m T Applications FIGURE 11. AVERAGE POWER DISSIPATION vs ONE-SHOT PULSE WIDTH CX1 RX1 CX RX +TR MONO 1 Q -TR MONO 13 Q OUTPUT INPUT PULSE OUTPUT PULSE T1 T T1 T RX1 CX1 RX CX CX.1 F FIGURE 1. PULSE DELAY FN333 Rev. Page of 11

11 CD9BMS Applications (Continued) SUPPLY IDD CX1 RX1 CX RX IDD, TX vs RX +TR 1 Q1 5 MONO 1 R Q1 3 RUN RESET * TO ENSURE RESTART, APPLY RESET (NEGATIVE PULSE) AFTER SUPPLY VOLTAGE HAS REACHED ITS LEVEL SUPPLY RESET* -TR R Q Q 1 MONO 13 Q OUTPUT T T1 T TX RX k M IDD (AVG.) 1mA.5mA.5mA.5mA 5mA 1mA TX (T1 + T) 3. s.5s 3. s.5s 3 s.5s 5V V V 1. All values are typical.. CX range:.1 F to.1 F IDD FIGURE 13. ASTABLE MULTIVIBRATOR WITH RESTART AFTER RESET CAPABILITY Chip Dimensions and Pad Layout Dimensions in parenthesis are in millimeters and are derived from the basic inch dimensions as indicated. Grid graduations are in mils ( -3 inch). METALLIZATION: Thickness: 11kÅ 1kÅ, AL. PASSIVATION:.kÅ - 15.kÅ, Silane BOND PADS:. inches X. inches MIN DIE THICKNESS:.19 inches -.1 inches FN333 Rev. Page 11 of 11

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