VALU-BEAM Sensors. Product Line Specifications. Rugged, self-contained photoelectric sensors for industrial applications

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1 VALU-BAM ensors Product Line pecifications Rugged, self-contained photoelectric sensors for industrial applications conomy, performance, and durability in a family of rugged, self-contained sensors for demanding industrial applications 9 eries sensors have solid-state outputs; models for either -V dc or -5V ac operation (pages to 9) 95 eries sensors have electromechanical relay output; models for -V ac/dc, 9-V ac, or -5V ac (pages to ) 99 eries sensors output to a built-in -digit totalizing counter; operate from both -5V dc and -5V ac (pages to 7) Many models available in opposed, retroreflective, diffuse, convergent beam, and fiber optic sensing modes ighly-visible top-mounted LD output indicator; 9 eries sensors have Banner's exclusive, patented AD indicator system Printed in UA P/ 9

2 VALU-BAM ensors VALU-BAMs are a family of rugged, self-contained photoelectric sensors designed for especially demanding industrial applications where economy, performance, and durability are important. VALU-BAMs are built in a variety of operating voltages (both dc and ac) and output types (solid state and electromechanical relay). M9 and MA9 eries VALU-BAMs have solid state outputs and are available in either -V dc-powered or -5V ac-powered models (see specifications, page ). MW95, MA95, and MB95 eries VALU-BAMs have electromechanical relay output and operate from -V ac/dc, 9-V ac, or to 5V ac respectively. MA99 eries VALU-BAMs have a built-in -digit totalizing counter and operate on to 5V dc or to 5V ac. A fourth VALU-BAM line, M9 eries intrinsically safe sensors (low voltage dc sensors having Factory Mutual approval for use intrinsic-safe barriers in hazardous areas) is covered in data sheet P/ 9 and the Banner catalog. Powerful, modulated LD light sources give VALU-BAM sensors greater sensing range than competitive units and a high degree of immunity to ambient light. All models are totally epoxyencapsulated and housed in molded VALO housings for the ultimate in shock, vibration, moisture, and corrosion resistance. All VALU-BAM sensors conform to MA standards,,,,,,, and. VALU-BAM sensors may be mounted from either the front or the rear using their two through-mounting holes, or by the outside threads of their Mx.5 threaded base (mounting nut supplied), making them ideal for conveyor and other production line applications. A versatile -axis steel accessory mounting bracket (model MB9) simplifies mounting and alignment. Model MBM swivel-mount bracket offers the ultimate in flexibility and convenience. The bases of standard VALU-BAMs have a /" P integral internal conduit thread, and are supplied a -foot PV-covered cable. Models a MA- rated quick-disconnect connector (QD models) are available optionally. All VALU-BAM sensors have an easily-visible top-mounted red LD indicator to assist in alignment and system monitoring. On MA95, MB95, MW95, and MA99 eries VALU- BAMs, this indicator lights whenever the sensor "sees" its modulated light source. On MA9 eries -wire sensors, the LD lights whenever the load is energized. M9 eries sensors have Banner's exclusive, patented "AD" system (Alignment ndicating Device, U patent #59) which lights the indicator LD whenever the sensor "sees" its modulated light source, and also pulses the LD at a rate proportional to the received light signal strength. This feature greatly simplifies alignment: in most situations, alignment becomes simply a matter of positioning the sensor for maximum LD pulse rate. VALU-BAMs offer a choice of light or dark operate in the same sensor. This is done via a rear panel control or, in the relay output units, by offering both /O and / output relay contacts. WAR VALU-BAM photoelectric presence sensors do OT include the self-checking redundant circuitry necessary to allow their use in personnel safety applications. A sensor failure or malfunction can result in either an energized or a de-energized sensor output condition.! ever use these products as sensing devices for personnel protection. Their use as safety devices may create an unsafe condition which could lead to serious injury or death. Only MA-UARD and PRMTR-UARD ystems, and other systems so designated, are designed to meet OA and A machine safety standards for point-of-operation guarding devices. o other Banner sensors or controls are designed to meet these standards, and they must OT be used as sensing devices for personnel protection. WARRATY: Banner ngineering orporation warrants its products to be free from defects for one year. Banner ngineering orporation will repair or replace, free of charge, any product of its manufacture found to be defective at the time it is returned to the factory during the warranty period. This warranty does not cover damage or liability for the improper application of Banner products. This warranty is in lieu of any other warranty either expressed or implied.

3 VALU-BAM ensors *OT: mitter voltage range is -5V ac or dc eries Model ensing Mode Range Operating Voltage* Page 9 eries MA9 & M9R Opposed: long range feet to V dc* p. 5 MA9 & MA9R Opposed: long range feet to 5V ac* p. 5 MA9R & M9RR Opposed: short range feet to V dc* p. 5 MA9R & MA9RR Opposed: short range feet to 5V ac* p. 5 ensors infinite-life solid-state output relay ensors PDT electromechanical output relay M9LV Retroreflective: visible beam feet to V dc p. 5 MA9LV Retroreflective: visible beam feet to 5V ac p. 5 M9LVA Retroreflective: polarized beam 5 feet to V dc p. 5 MA9LVA Retroreflective: polarized beam 5 feet to 5V ac p. 5 M9D Diffuse (proximity): long range inches to V dc p. MA9D Diffuse (proximity): long range inches to 5V ac p. M9DR Diffuse (proximity): short range 5 inches to V dc p. MA9DR Diffuse (proximity): short range 5 inches to 5V ac p. M9V onvergent beam: visible red.5-inch focus to V dc p. MA9V onvergent beam: visible red.5-inch focus to 5V ac p. M9 onvergent beam: infrared.5-inch focus to V dc p. 7 MA9 onvergent beam: infrared.5-inch focus to 5V ac p. 7 MA9F & M9RF Opposed fiber optic: glass see specs to V dc* p. MA9F & MA9RF Opposed fiber optic: glass see specs to 5V ac* p. M9F Fiber optic: glass see specs to V dc p. 7 MA9F Fiber optic: glass see specs to 5V ac p eries MA9 & MW95R Opposed: long range feet to V ac/dc* p. MA9 & MA95R Opposed; long range feet 9 to V ac* p. MA9 & MB95R Opposed: long range feet to 5V ac* p. MA9R & MW95RR Opposed: short range feet to V ac/dc* p. MA9R & MA95RR Opposed: short range feet 9 to V ac* p. MA9R & MB95RR Opposed: short range feet to 5V ac* p. MW95LV Retroreflective: visible beam feet to V ac/dc p. MA95LV Retroreflective: visible beam feet 9 to V ac p. MB95LV Retroreflective: visible beam feet to 5V ac p. MW95LVA Retroreflective: polarized beam 5 feet to V ac/dc p. MA95LVA Retroreflective: polarized beam 5 feet 9 to V ac p. MB95LVA Retroreflective: polarized beam 5 feet to 5V ac p. MW95D Diffuse (proximity): long range inches to V ac/dc p. MA95D Diffuse (proximity): long range inches 9 to V ac p. MB95D Diffuse (proximity): long range inches to 5V ac p. MW95DR Diffuse (proximity): short range 5 inches to V ac/dc p. MA95DR Diffuse (proximity): short range 5 inches 9 to V ac p. MB95DR Diffuse (proximity): short range 5 inches to 5V ac p. MW95V onvergent: visible red.5-inch focus to V ac/dc p. MA95V onvergent: visible red.5-inch focus 9 to V ac p. MB95V onvergent: visible red.5-inch focus to 5V ac p. MW95F Fiber optic: glass see specs to V ac/dc p. MA95F Fiber optic: glass see specs 9 to V ac p. MB95F Fiber optic: glass see specs to 5V ac p. MW95FP Fiber optic: plastic see specs to V ac/dc p. MA95FP Fiber optic: plastic see specs 9 to V ac p. MB95FP Fiber optic: plastic see specs to 5V ac p. 99 eries MA9 & MA99R Opposed: long range feet* p. 5 MA9R & MA99RR Opposed: narrow beam feet* p. 5 ensors All 99 eries built-in -digit MA99LV Retroreflective: visible beam feet sensors operate p. 5 totalizing counter MA99LVA Retroreflective: polarized beam 5 feet from to 5V ac p. 5 MA99LT Retroreflective: infrared beam feet or to 5V dc p. (used for "people counting") MA99V onvergent beam: visible red.5-inch focus p. MA99F Fiber optic: glass see specs p. 7 MA99FP Fiber optic: plastic see specs p.

4 VALU-BAM 9 eries ensors dc sensor specifications UPPLY VOLTA: to V dc at ma, exclusive of load (except for MA9, R, and F emitters, which operate from to 5V ac or dc, ma max.). OUTPUT OFURATO: one current sourcing (PP) and one current sinking (P) open-collector transistor. OUTPUT RAT: 5mA continuous, each output. Off-state leakage current less than microamps. Output saturation voltage: for PP output, < volt at ma and < volts at 5mA; for P output, < millivolts at ma and <volt at 5mA. OUTPUT PROTTO: protected against false pulse on powerup, inductive load transients, power supply polarity reversal, and continuous overload or short circuit of outputs. RPO TM: milliseconds O, milliseconds OFF (except reciever-only units, which are ms O and ms OFF). ndependent of signal strength. millisecond delay on power-up (outputs nonconducting during this time). RPATABLTY OF RPO: see individual sensor specs. ndependent of signal strength. OTRUTO: reinforced VALO housing, totally encapsulated, molded acrylic lenses, stainless steel hardware. Meets MA standards,,,,,,, and. ABL: ' of PV-jacketed cable standard; -conductor (emitters) or -conductor. Quick-disconnect (QD) models are available optionally. Model MB- -conductor cable for dc "QD" models must be purchased separately. D "QD" emitters use cable model MB-. "QD" cable is purchased separately; see pages and 9. ADJUTMT: LT/DARK OPRAT select switch and TVTY control potentiometer, both located on rear of sensor. DATOR LD: exclusive, patented Alignment ndicating Device system (AD, U patent #59) lights a top-mounted red LD indicator whenever the sensor sees a "light" condition, a superimposed pulse rate proportional to the light signal strength (the stronger the signal, the faster the pulse rate). OPRAT TMPRATUR RA: - to +7 degrees (- to +5 degrees F). Functional chematic: M9 eries D ensors ac sensor specifications UPPLY VOLTA: to 5V ac (5/z), except for MA9, R, and F emitters, which operate from to 5V ac or dc. OUTPUT OFURATO: solid-state switching element. OUTPUT RAT: min. load current ma; max. steady-state load capability 75mA to 5 ambient ( F), 5mA to 7 ambient (5 F). nrush capability amps for sec. (non-repetitive). Off-state leakage current less than.7ma rms. On-state voltage drop 5 volts rms at 75mA load, volts rms at 5mA load. OUTPUT PROTTO: protected against false pulse on powerup and inductive load transients. RPO TM: milliseconds O, milliseconds OFF (except receiver-only units, which are ms O and ms OFF). OFF time does not include load response of up to / ac cycle (. milliseconds). ndependent of signal strength. Response time specification of the load should be considered when important. -millisecond delay on power-up (outputs are non-conducting during this time). RPATABLTY OF RPO: see individual sensor specs. Does not take into consideration "off" response time variation of up to / ac cycle (.ms) and load response time. ndependent of signal strength. OTRUTO: reinforced VALO housing, totally encapsulated, molded acrylic lenses, stainless steel hardware. Meets MA standards,,,,,,, and. ABL: ' of PV-jacketed -conductor cable standard. Three-pin quick-disconnect (QD) models are available optionally (one connector pin goes unused). Model MB- -conductor cable for "QD" models must be purchased separately (see pages and 9). ADJUTMT: LT/DARK OPRAT select switch and TVTY control potentiometer, both located on rear of sensor. DATOR LD: top-mounted red LD indicator lights when output is conducting. Model MA9 emitter has a visible-red "tracer beam" which indicates "power on" and enables easy "line-of-sight" alignment. OPRAT TMPRATUR RA: - to +7 degrees (- to +5 degrees F). Functional chematic: MA9 eries A ensors Dimension Drawing, Front View Rear View

5 VALU-BAM 9 eries ensors ensing Mode Models xcess ain Beam Pattern MA9 & M9R Voltage: to V dc, ("": -5V ac/dc) Range: feet ( m) Response: ms on/ off Beam: infrared, nm; visible red tracer beam ffective beam:.5" dia. A MA9 & M9R, MA9 & MA9R MA9/M9R, MA9/MA9R OPPOD Mode MTTR RVR OBJT Repeatability:.ms (all models) MA9 &MA9R Voltage: to 5V ac, ("": -5V ac/dc) Range: feet ( m) Response: ms on/ off Beam: infrared, nm ffective beam:.5" dia. MA9R & M9RR Voltage: to V dc, ("R": -5V ac/dc) Range: feet ( m) Response: ms on/ off Beam: infrared, nm ffective beam:." dia. MA9R & MA9RR Voltage: to 5V ac Range: feet ( m) Response: ms on/ off Beam: infrared, nm ffective beam:." dia. FT FT FT FT DTA Opposed mode sensors have higher excess gain than other models, and therefore should be used whenever possible. The small size of these sensors makes them ideal for many conveyor applications, and their small effective beam size (particularly of the R/RR models) enables them to reliably detect relatively small objects. VALU-BAM opposed mode sensors have a visible red "tracer beam" which greatly simplifies sensor alignment. R/RR models have a wide beam angle for very forgiving alignment in the foot range. /R models have a narrow beam spread and should be used when it is important to minimize optical "crosstalk" between adjacent emitter-receiver pairs at close range in multiple sensor arrays. A MA9R & M9RR, MA9R & MA9RR. FT FT FT FT DTA OPPOD DTA--FT MA9R/M9RR, MA9R/MA9RR OPPOD DTA--FT RTRORFLTV RTRORFLTV TART OBJT Repeatability:.ms (dc models);.ms (ac models) M9LV Voltage: to V dc Range: inches to feet (9 m) Response: ms on/off Beam: visible red, 5nm MA9LV Voltage: to 5V ac Range: inches to feet (9 m) Response: ms on/off Beam: visible red, 5nm M9LVA (anti-glare filter) Voltage: to V dc Range: to 5 feet (,5 m) Response: ms on/off Beam: visible red, 5nm ( polarizing filter) MA9LVA (anti-glare filter) Voltage: to 5V ac Range: to 5 feet (,5 m) Response: ms on/off Beam: visible red, 5nm ( polarizing filter) A " reflector (BRT-) M9LV, MA9LV " reflector (BRT-) BRT-T tape. FT FT FT FT DTA A visible-red light beam reduces the potential for false signals from highly reflective objects ("proxing") and simplifies alignment. A (anti-glare) models polarize the emitted light and filter out unwanted reflections, making their use possible in applications otherwise unsuited to retroreflective sensing (when reduced excess gain is acceptable). Maximum range "LV" units is attained when using the model BRT- " corner cube reflector. For details on retroreflective target materials, see the Banner product catalog. A M9LVA, MA9LVA one BRT- " retroreflector. FT FT FT FT DTA M9LV MA9LV BRT- RFLTOR DTA TO RFLTOR--FT M9LVA MA9LVA BRT- RFLTOR 9 5 DTA TO RFLTOR--FT 5

6 VALU-BAM 9 eries ensors ensing Mode Models xcess ain Beam Pattern DFFU Mode OBJT M9D Voltage: to V dc Range: inches (7 cm) Response: ms on/off Beam: infrared, nm MA9D Voltage: to 5V ac Range: inches (7 cm) Response: ms on/off Beam: infrared, nm Repeatability:.ms (dc models);.ms (ac models) M9DR Voltage: to V dc Range: 5 inches (cm) Response: ms on/off Beam: infrared, nm MA9DR Voltage: to 5V ac Range: 5 inches (cm) Response: ms on/off Beam: infrared, nm A M9D, MA9D (Range based on 9% reflectance white test card). DTA These sensors operate by detecting the reflection of their own light from the object being sensed, and therefore require no special reflectors. "DR" models have better response than "D" models to objects in inches of the sensor. "DR" models should be used when it is necessary to minimize sensor response to background objects. A M9DR, MA9DR (Range base on 9% reflectance white test card). DTA DTA TO 9% WT TT ARD-- M9DR MA9DR M9D MA9D 9 5 DTA TO 9% WT TT ARD-- M9V Voltage: to V dc Focus at.5" ( mm) Response: ms on/off Beam: visible red, 5nm MA9V Voltage: to 5V ac Focus at.5" ( mm) Response: ms on/off Beam: visible red, 5nm A M9V, MA9V (Range based on 9% reflectance white test card). DTA M9V MA9V DTA TO 9% WT TT ARD-- OVRT Mode OBJT Repeatability:.ms (dc models);.ms (ac models) M9 Voltage: to V dc Focus at.5" ( mm) Response: ms on/off Beam: infrared, nm MA9 Voltage: to 5V ac Focus at.5" ( mm) Response: ms on/off Beam: infrared, nm VALU-BAM M9V and MA9V visible red convergent sensors (above) produce a precise." diameter sensing spot at a focus point.5" in front of the sensor lens. Due to their very narrow depth of field, they excel at detecting small objects only a fraction of an inch away from backgrounds. They are also ideal for some high-contrast color-registration applications. Their visible red sensing beam simplifies alignment. Models M9 and MA9 (below) are infrared convergent beam sensors. Operating voltages, response times, repeatability, and focus distance are the same as for the M9V and MA9V. The M9 and MA9, however, have much higher excess gain and an infrared sensing beam for highly reliable sensing of objects of low reflectivity. A M9, MA9 (Range based on 9% reflectance white test card). DTA M9 MA DTA TO 9% WT TT ARD--

7 VALU-BAM 9 eries ensors ensing Mode Models xcess ain Beam Pattern MA9F & M9RF Voltage: to V dc ("F": -5V ac/dc) Range: see.. curves Response: ms on/ off Beam: infrared, nm Repeatability:.ms (all models) A T and L9 lenses T MA9F & M9RF, MA9F & MA9RF T & LF lenses T. FT FT FT FT DTA MA9F/M9RF, MA9F/MA9RF T LF lenses T L9 lenses OPPOD DTA--FT OPPOD FBR OPT MOD (glass ) MTTR OBJT RVR MA9F & MA9RF Voltage: to 5V ac ("F": -5V ac/dc) Range: see.. curves Response: ms on/ off Beam: infrared, nm These opposed mode fiber optic emitter-receiver pairs are used where the separation between emitting and receiving is greater than a few feet, or where it is inconvenient to run both from a single VALU-BAM sensor. These models have a watertight o-ring sealed sensor/fiber interface, and are compatible all Banner glass fiber optic assemblies (see product catalog). M9F Voltage: to V dc Range: see.. curves Response: ms on/off Beam: infrared, nm MA9F Voltage: to 5V ac Range: see.. curves Response: ms on/off Beam: infrared, nm A M9F, MA9F T Opposed mode, glass T. DTA T opposed mode M9F, MA9F T OPPOD DTA -- FBR OPT Mode OPPOD RTRO DFFU OBJT OBJT RTRORFLTV TART OBJT Repeatability:.ms (dc models);.ms (ac models) Fiber optic sensing is often the answer when, due to space or environmental limitations, the sensor itself cannot be placed at the actual sensing position. These sensors' powerful modulated infrared beam is compatible all Banner glass fiber optics in the opposed, retroreflective, and diffuse sensing modes (see Banner product catalog). ensor/fiber interface is waterproof to maintain complete sensing system moisture rejection. A A M9F, MA9F Retroreflective mode, w/brt- " target L9 lens and BT. FT FT FT FT DTA M9F, MA9F Diffuse mode Range based on 9% reflectance white test card BT LF lens and BT BT. DTA L9 lens M9F, MA9F LF lens Retroreflective mode, BT fiber, BRT- reflector DTA TO RFLTOR--FT M9F, MA9F BT Diffuse mode BT DTA TO 9% WT TT ARD-- 7

8 VALU-BAM 9 eries ensors ookup Diagrams for dc M9 eries ensors ookup to dc Relay or olenoid (using sinking output) The diagram below shows hookup of a dc VALU- BAM to a dc load using the sensor's sinking output, which is rated at 5mA maximum. The BLAK wire is not - V dc used. ookup to dc Relay or olenoid (using sourcing output) The diagram below shows hookup of a dc VALU- BAM to a dc load using the sensor's sourcing output, which is rated at 5mA maximum. The WT wire is not - V dc used. For emitter hookup, see below. OT: each output has a maximum load capacity of 5mA. ookup to a Logic ate The diagram below shows hookup of a dc VALU- BAM to a logic gate. A logic zero ( volts dc) is applied to the gate input when the VALU- BAM output is energized. When de-energized, a logic one is applied. The logic supply negative must be common to the VALU-BAM supply negative. * Use pullup resistor to logic supply BROW WT LOAD BLU BLAK BROW WT BLU BLAK LOAD BLAK BLAK wire is not used BROW + -V dc WT (sinking) output, 5mA max. BLU (common) +5V to V dc logic supply * (-) dc ookup to Programmable ontroller (sinking output) This diagram shows hookup of a dc VALU-BAM to a programmable controller requiring a current sink, using the sensor's sinking output. The BLAK wire is not used. ookup shown is typical for all inputs. BLAK BLAK wire is not used ookup shown is typical for all inputs WT (sinking output) P r o g. BROW + - V dc 5 P U 7 T t r dc+ BLU dc com l. (common) ookup to Programmable ontroller (sourcing output) This diagram shows hookup of a dc VALU-BAM to a programmable controller requiring a current source, using the sensor's sourcing output. The WT wire is not used. ookup shown is typical for all inputs. WT White wire is not used BLAK (sourcing output) BROW + - V dc BLU (common) ookup shown is typical for all inputs 5 7 dc+ P U T P r o g. t r l. dc com ookup to B eries Logic (MRB chassis) V dc 7 B eries 5 Module Vac MRB WT BROW BLU BLAK BLAK wire is not used The current sinking output (white wire) of the VALU-BAM is shown connected to the input (pin 5) of a B eries module. t may be connected to the auxiliary input (pin ) if desired. (ee description of module for function of aux. input). Any B eries module may be used. Banner PLU LO modules may also be used (contact the factory for further information). ookup to MRO-AMP Logic (MP-5 chassis) The current sinking (white) output of the VALU-BAM is shown connected to the primary input (pin 7) of a MRO-AMP logic module. t may be connected, instead, to the other inputs (see logic module descriptions in the Banner product catalog). The following logic modules may be used: 7 Micro- Amp Logic 5 MODL MP-5 Relay O WT BROW BLU BLAK BLAK wire is not used MA- MA5 MA MAL One-shot On/off delay -input "AD" Latch ookup to MA-AMP Logic Module The current sinking output(s) of VALU-BAM sensors may be connected directly to the input of L eries MA-AMP modules. A MA-AMP which is powered by ac voltage offers a dc supply the capacity to power one VALU- BAM sensor (see hookup diagram). LRA When emitter/receiver LRB pairs are used, the L5RA L5RB emitter should be powered from a separate power source BROW WT BLU BLAK wire is not used BLAK Vac O mitter ookup (ac or dc power) L MA9 MA9F MA9R to 5V ac or V dc + Brown Blue L

9 VALU-BAM 9 eries ensors ookup Diagrams for ac MA9 eries ensors OT: maximum load capacity of output is 5mA. Basic ac ookup For emitter hookup, see preceding page. VALU-BAM -wire ac sensors wire in series an appropriate load. This combination, in turn, wires across the ac line. L to 5V ac off = <.7mA LOAD These sensors operate in the range of to 5V ac, and may be programmed for either normally open (.O.) or normally closed (..) operation by way of the light-dark operate switch on the back of the sensor. A -wire ac sensor may be connected exactly like a mechanical limit switch. The sensor remains powered when the load is "off" by a residual current which flows through the load. The off-state leakage current ( off ) is always less than.7ma. The effect of this leakage current depends on the characteristics of the load. The voltage which appears across the load in the off-state is equal to the leakage current of the sensor multiplied by the resistance of the load: V off =.7mA x R load f this resultant off-state voltage is less than the guaranteed turn-off voltage of the load, then the interface is direct. f the off-state voltage causes the load to stay "on", then an artificial load resistor must be connected in parallel the load to lower the effective resistance. Most loads, including most programmable controller inputs, will interface to -wire sensors.7ma leakage current out an artificial load resistor. These sensors are not polarity sensitive: all hookups are out regard to wire color. WAR: VALU-BAM -wire ac sensors will be destroyed if the load becomes a short circuit!! onnection to Programmable ontrollers ookup shown is typical for all inputs. L A ensors in eries Multiple -wire ac VALU-BAMs may be wired together in series for "AD" or "OR" logic functions. The maximum number of sensors which may be wired in series to a load depends upon the level of the line voltage and the switching characteristics of the load. ach sensor connected in series adds an amount of voltage drop across the load. The amount of voltage drop that each sensor adds depends upon the current demand of the load. ach sensor in series adds approximately 5 volts drop across a 5mA load. A 5mA load will see about a volt drop from each sensor added in series. To determine compatibility, compare the resultant onstate voltage across the load against the load's guaranteed turn-on voltage level (from the manufacturer's specifications). A ensors in Parallel Multiple -wire ac VALU-BAMs may be wired in parallel to a load for "OR" or "AD" logic functions. With sensors wired in parallel, the offstate leakage current through the load is equal to the sum of the leakage currents required by the individual sensors. onsequently, loads high resistance like small relays and solid state inputs may require artificial load resistors. A VALU-BAMs wired together in parallel will not cause momentary drop-out of the load, as is experienced when wiring in parallel contacts (see below). owever, it is likely that the powerup delay feature will cause a momentary drop-out of the load if an ac VALU-BAM is wired in parallel a different brand or model of -wire sensor. ontact the Banner applications group to verify compatibility. A ensors in eries ontacts When -wire ac sensors are connected in series mechanical limit switch or relay contacts, the sensor will receive power to operate only when all of the contacts are closed. The false-pulse protection circuit of the sensor will cause a. second delay between the time the contacts close and the time that the load can energize. L to 5V ac L L to 5V ac LOAD Most non-compatibility of series-connected sensors loads occurs in low-voltage applications (e.g.,, or V ac circuits) where the on-state voltage drop across the load is a significant percentage of the supply voltage. The power-up inhibit time (up to milliseconds per sensor) is also additive. L <.7mA <.7mA L to 5V ac to 5V ac LOAD A ensors in Parallel ontacts L L off = <.ma L When -wire ac sensors are connected in parallel mechanical switch or relay contacts, the sensor loses the current it needs to operate while any contact is closed. When all of the contacts open, the sensor's. second power-up delay may cause a momentary drop-out of the load. ac "hot" L Vac ac neutral L ookup shown is typical for all inputs P r o P g. 5 U T 7 r t neutral l.. second delay when contact closes LOAD LOAD. second delay when contact opens 9

10 VALU-BAM 95 eries ensors lectromechanical Relay Output VALU-BAM 95 eries sensors have all of the ruggedness and versatility of VALU-BAM sensors, but an internal single-pole, double-throw electromechanical output relay. MW95 eries sensors operate from -V ac or dc. MA- 95 eries sensors operate from 9 to V ac; MB95 eries sensors from to 5V ac. Remaining specifications (below) are identical for all three series. pecifications: MW95, MA95, and MB95 eries VALU-BAM ensors UPPLY VOLTA (MW95 series): to V ac or dc at 5mA maximum, exclusive of load, except for MA9 and R emitters, which operate from -5V ac (5-z) or dc (ma max.). UPPLY VOLTA (MA95 series): 9 to V ac (5-z), ma maximum, exclusive of load, except for MA9 and R emitters, which operate from -5V ac (5-z) or dc (ma max.). UPPLY VOLTA (MB95 series): to 5V ac (5-z), ma maximum, exclusive of load, except for MA9 and R emitters, which operate from -5V ac (5-z) or dc (ma max.). OUTPUT OFURATO: one internal "form " (single- pole double-throw) electromechanical relay. OUTPUT RAT: max. switching power (resistive load) = 5W, VA. Max. switching voltage (resistive load) = 5V ac or V dc (V ac max. per UL & A). Max. switching current (resistive load) = 5A. Minimum voltage and current = amp at 5V dc,. amp at V dc. Peak switching voltage = 75Vac (transient suppression recommended). Mechanical life of relay =,, operations. RPO TM: milliseconds O and OFF. -millisecond delay on power-up (relay de-energized during this period). OTRUTO: reinforced black VALO housing, totally encapsulated, molded acrylic lenses, stainless steel hardware. Meets MA standards,,,,,,, and. ABL: feet of PV-jacketed cable standard; -conductor for emitters, 5-conductor for all other models. Quick-disconnect (QD) models are available optionally. Model MB-5 5-conductor cable for "QD" models must be purchased separately. mitters use -conductor model MB- cable (purchase separately). ee pages and 9 for "QD" cable information. ADJUTMT: TVTY control on rear of sensor allows precise gain setting (turn clockwise to increase gain). DATOR LD: top-mounted red LD indicator lights whenever the sensor sees a "light" condition. Models MA9 and MA9R emitters have a visible-red "tracer beam" which indicates "power on" and enables easy "line-of-sight" alignment. OPRAT TMPRATUR RA: - to +5 degrees (- to + degrees F). Functional chematic * MA units: 9-V ac MB units: -5V ac MW units: -V ac or dc Dimension Drawing ookup Diagram MW95 or 95 models: - V ac/dc MA95 or 95 models: 9- V ac MB95 or 95 models: - 5V ac BROW BLAK (.O. ontact) BLU WT (.. ontact) YLLOW (Relay ommon) OT: relay contacts are rated at 5 amps maximum (resistive load). ee specifications. For emitter hookup, see page.

11 VALU-BAM 95 eries ensors ensing Mode Models xcess ain Beam Pattern OPPOD Mode MTTR RVR OBJT MA9 & MW95R Voltage: to V ac/dc, ("": -5V ac/dc) Range: feet (m) ffective beam:.5" dia. MA9 & MA95R or MB95R Voltage: MA95R 9 to V ac, MB95R to 5V ac, ("": -5V ac/dc) Range: feet (m) ffective beam:.5" dia. All emitter/receiver pairs: Response: ms on/off Beam: infrared, nm Visible red "tracer beam" MA9R & MW95RR Voltage: to V ac/dc, ("R": -5V ac/dc) Range: feet (m) ffective beam:." dia. MA9R & MA95RR or MB95RR Voltage: MA95RR 9 to V ac, MB95RR to 5V ac, ("R": to 5V ac/dc) Range: feet (m) ffective beam:." dia. A MA9 & MW95R or MA95R or MB95R FT FT FT FT DTA Opposed mode sensors have higher excess gain than other models, and therefore should be used whenever possible. The small size of these sensors makes them ideal for many conveyor applications, and their small effective beam size (particularly of the R/RR models) enables them to reliably detect relatively small objects. R and RR models also have a wide beam angle for very forgiving alignment in the -foot range. VALU-BAM opposed mode sensors have a visible red "tracer beam" which greatly simplifies sensor alignment. and R models have a narrow beam angle which allows receivers to be placed on relatively close centers (at close range) in multiple sensor arrays. A MA9R & MW95R or MA95R or MB95R. FT FT FT FT DTA MA9 MW95R or MA95R or MB95R OPPOD DTA--FT MA9R MW95RR or MA95RR or MB95RR OPPOD DTA--FT RTRORFLTV MOD RTRORFLTV TART OBJT MW95LV Voltage: to V ac/dc MA95LV Voltage: 9 to V ac MB95LV Voltage: to 5V ac Range: inches to feet (9m) Response: ms on/off Beam: visible red, 5nm MW95LVA (anti-glare filter) Voltage: to V ac/dc MA95LVA (anti-glare filter) Voltage: 9 to V ac MB95LVA (anti-glare filter) Voltage: to 5V ac Range: to 5 feet (,5m) Response: ms on/off Beam: visible red, 5nm ( polarizing filter) A " reflector (BRT-) MW95LV, MA95LV, MB95LV " reflector (BRT-) BRT-T tape. FT FT FT FT DTA A visible-red light beam reduces the potential for false signals from highly reflective objects ("proxing") and simplifies alignment. A (anti-glare) models polarize the emitted light and filter out unwanted reflections, making their use possible in applications otherwise unsuited to retroreflective sensing (and where reduced excess gain is acceptable). Maximum range all units is attained when using the model BRT- " corner cube reflector. ee the Banner product catalog for details about available retroreflective materials. A MW95LVA, MA95LVA, MB95LVA one BRT- " retroreflector. FT FT FT FT DTA MW95LV, MA95LV, MB95LV BRT- RFLTOR DTA TO RFLTOR--FT MW95LVA, MA95LVA, MB95LVA BRT- RFLTOR 9 5 DTA TO RFLTOR--FT

12 VALU-BAM 95 eries ensors ensing Mode Models xcess ain Beam Pattern MW95D Voltage: to V ac/dc MA95D Voltage: 9 to V ac MB95D Voltage: to 5V ac A MW95D, MA95D, MB95D (Range based on 9% reflectance white test card) MW95D, MA95D, MB95D DFFU Mode OBJT Range: inches (7cm) Response: ms on/off Beam: infrared, nm. DTA These sensors operate by detecting the reflection of their own light from the object being sensed, and therefore require no special reflectors. They are ideal for use when the reflectivity and profile of the object are sufficient to return a large amount of emitted light back to the sensor. hoose "DR" models for best response to objects at close range. DTA TO 9% WT TT ARD-- MW95DR Voltage: to V ac/dc MA95DR Voltage: 9 to V ac MB95DR Voltage: to 5V ac Range: 5 inches (cm) Response: ms on/off Beam: infrared, nm A MW95DR, MA95DR, MB95DR Range base on 9% reflectance white test card. DTA MW95DR, MA95DR, MB95DR 9 5 DTA TO 9% WT TT ARD-- OVRT Mode OBJT MW95V Voltage: to V ac/dc MA95V Voltage: 9 to V ac MB95V Voltage: to 5V ac Focus at.5" (mm) Response: ms on/off Beam: visible red, 5nm A MW95V, MA95V, MB95V (Range based on 9% reflectance white test card). DTA DTA TO 9% WT TT ARD-- VALU-BAM convergent sensors produce a precise." diameter sensing spot at a focus point.5" in front of the sensor lens. Due to their very narrow depth of field, they excel at detecting small objects only a fraction of an inch away from backgrounds. A visible red sensing beam simplifies alignment..9 MW95V, MA95V, MB95V Application ote: Relative Reflectivity of Materials The amount of light that is returned to reflective mode sensors (diffuse, convergent, and divergent types) is dramatically influenced by the reflectivity of the surface being sensed. xcess gain curves are plotted using a white test card, rated at 9% reflectance. Any other material surface may be ranked for its reflectivity as compared against this 9% reflectance white test card: MATRAL RFLTVTY A RQURD Kodak white test card White paper ewspaper print Tissue paper: ply ply Kraft paper cardboard Beer foam 9% % 55% 7% 5% 7% 7% MATRAL RFLTVTY A RQURD Dimension lumber (pine, clean, dry) Rough wood pallet (clean) *lear plastic *Opaque white plastic *Opaque black plastic Black neoprene Black rubber tire wall *Aluminum, unfinished *Aluminum, black anodized *tainless steel, microfinish 75% % % 7% % %.5% % 5% % *OT: for materials shiny or glossy surfaces, the reflectivity figure represents the maximum light return, the sensor beam exactly perpendicular to the material surface

13 VALU-BAM 95 eries ensors ensing Mode Models MW95F Voltage: to V ac/dc MA95F Voltage: 9 to V ac MB95F Voltage: to 5V ac Range: see.. curves Response: ms on/off Beam: infrared, nm A xcess ain T MW95F, MA95F, MB95F Opposed mode, glass T. DTA Beam Pattern MW95F, MA95F, MB95F T T opposed mode OPPOD DTA -- FBR OPT Mode (glass ) OPPOD RTRO DFFU OBJT OBJT RTRORFLTV TART OBJT Fiber optic sensing is often the answer when, due to space or environmental limitations, the sensor itself cannot be placed at the actual sensing position. These sensors' powerful modulated infrared beam is compatible all Banner glass fiber optics in the opposed, retroreflective, and diffuse sensing modes. Banner glass fiber optic selection information may be found in the product catalog. ensor/fiber interface is waterproof to maintain complete sensing system moisture rejection. A MW95F, MA95F, MB95F Retroreflective mode, w/brt- " target LF lens and BT L9 lens and BT. FT FT FT FT DTA A MW95F, MA95F, MB95F Diffuse mode Range based on 9% reflectance white test card BT BT. DTA MW95F, MA95F, MB95F w/l9 lens w/lf lens BT fiber, retroreflective mode, BRT- reflector DTA TO RFLTOR--FT MW95F, MA95F, MB95F BT BT Diffuse mode DTA TO 9% WT TT ARD-- MW95FP Voltage: to V ac/dc MA95FP Voltage: 9 to V ac MB95FP Voltage: to 5V ac Range: see.. curves Response: ms on/off Beam: visible red, 5nm PTU, no lenses MW95FP, MA95FP, MB95FP Opposed mode, plastic PTU L lenses A PTU, no lens. DTA MW95FP, MA95FP, MB95FP PTU PTU Opposed mode OPPOD DTA-- 5 FBR OPT Mode (plastic ) OPPOD DFFU OBJT OBJT The powerful modulated visible beam of these sensors makes them compatible all Banner plastic fiber optic assemblies, and their fiber fittings will accomodate both terminated and unterminated type assemblies. Plastic are ideal for short-range sensing where the environment is not severe. Plastic fiber optic model information may be found in the Banner product catalog These sensors will also interface Banner glass fiber optic assemblies. A MW95FP, MA95FP, MB95FP Diffuse mode, plastic Range based on 9% reflectance white test card PBTU fiber PBTU fiber.. DTA.5 MW95FP, MA95FP, MB95FP..5 PBTU PBTU.5..5 Diffuse mode DTA TO 9% WT TT ARD-- nvironmental Factors for Plastic Fiber Optics OPRAT TMPRATUR OF FBR OPT AMBL: - to +7 degrees (- to +5 degrees F). MAL RTA OF FBR OPT AMBL: the acrylic core of the monofilament optical fiber will be damaged by contact acids, strong bases (alkalis), and solvents. The polyethylene jacket will protect the optical fiber from most chemical environments; however, materials may migrate throught the jacket long-term exposure. amples of plastic fiber optic material are available from Banner for testing and evaluation.

14 VALU-BAM 99 eries ensors Built-in Totalizing ounter VALU-BAM 99 eries sensors boast the same high optical performance offered by the front-line 9 eries, and also contain a built-in -digit totalizing counter. ensor models are available for opposed, retroreflective, and convergent beam sensing modes. n addition, there are models for use both glass and plastic fiberoptics. A special infrared retroreflective version is available, which is designed for counting people passing through entry ways. t has built-in on/off time delays to minimize the chance of multiple counts. The 99 eries VALU-BAM's -digit LD counter is reset simply by touching the area of the housing shown the permanent magnet supplied the sensor (see dimension drawing, below). tandard models automatically reset to zero upon power-up. Memory backup option: MA99 eries sensors internal memory backup for maintaining "count memory" while power is removed are available by special order. These models will "hold" a count for over hours, and are indicated by the model number suffix MB (i.e., "MA99LVMB" is the memory backup version of sensor model MA99LV). ontact the factory for availibility and pricing of these models. MA99 eries sensors wire directly to either to 5V ac (5/z) or to 5V dc. PFATO, MA99 R VALU-BAM OR UPPLY VOLTA: to 5V ac, 5/z or to 5V dc at less than milliamps. OR RPO: 5 milliseconds LT, 5 milliseconds DARK (except MA99LT, page ). millisecond delay on power up (no counts are entered during this time). Models memory backup have no power-up delay. ote: ome models memory backup may increment count upon reapplication of power. OUT TRY: counts are entered on DARK-to-LT transition. OUT RT: in standard models, counter is reset to zero automatically upon applying power to the sensor. All models may be reset by touching the housing on top of the sensor (see below) a permanent magnet (supplied sensor). OTRUTO: reinforced black VALO housing, totally encapsulated circuitry, molded o-ring sealed lenses or fiber fittings, stainless steel hardware. Meets MA standards,,,,,,, and. ABL: feet (m) of PV-jacketed -conductor cable is standard. Three-pin quick-disconnect ("QD") models are available optionally (one conductor goes unused). Order model MB- -conductor cable for "QD" models (page ). DATOR LD: top-mounted red LD indicator lights whenever the sensor "sees" its modulated light source. OPRAT TMPRATUR RA: to 5 degrees ( to degrees F). Dimensions, MA99 eries VALU-BAMs ookup Diagram L L + Brown Blue to 5V ac, 5/z or to 5V dc Observe proper polarity for D hookups. A hookups have no polarity.

15 VALU-BAM 99 eries ensors ensing Mode Models xcess ain Beam Pattern OPPOD Mode MA9 & MA99R Voltage: to 5V ac or to 5V dc; ("": -5V ac/dc) Range: feet (m) Beam: infrared, nm; visible red tracer beam ffective beam:.5" dia. MA9R & MA99RR Voltage: to 5V ac or to 5V dc; ("R": -5V ac/dc) Range: feet (m) Beam: infrared, nm; visible red tracer beam ffective beam:." dia. A MA9 & MA99R FT FT FT FT DTA Opposed mode sensors have higher excess gain than other models, and therefore should be used whenever possible. Opposed mode is the most reliable sensing mode for counting opaque materials. The small size of these sensors makes them ideal for many conveyor applications, and their small effective beam size (particularly of the R/RR models) enables them to reliably count relatively small objects. R and RR models also have a wide beam angle for very forgiving alignment in the -foot range. VALU-BAM opposed mode sensors have a visible red "tracer beam" which greatly simplifies sensor alignment. A MA9R & MA99RR. FT FT FT FT DTA MA9 & MA99R OPPOD DTA--FT MA9R & MA99RR OPPOD DTA--FT RTRORFLTV MA99LV Voltage: to 5V ac or to 5V dc Range: inches to feet (9m) Beam: visible red, 5nm A " reflector (BRT-) MA99LV " reflector (BRT-) BRT-T tape. FT FT FT FT DTA DTA TO RFLTOR--FT A visible-red light beam reduces the potential for false signals from highly reflective objects ("proxing") and simplifies alignment. The A (anti-glare) model polarizes the emitted light and filters out unwanted reflections, making its use possible in applications otherwise unsuited to retroreflective sensing (and where reduced excess gain is acceptable). Maximum range all units is attained when using the model BRT- " corner cube retroreflector. ee the Banner product catalog for details about available retroreflective materials. MA99LV BRT- RFLTOR MA99LVA Voltage: to 5V ac or to 5V dc Range: to 5 feet (,5m) Beam: visible red, 5nm ( polarizing filter) A MA99LVA one BRT- " retroreflector MA99LVA BRT- RFLTOR. FT FT FT FT DTA 9 5 DTA TO RFLTOR--FT 5

16 VALU-BAM 99 eries ensors ensing Mode Models xcess ain Beam Pattern MA99LT Voltage: to 5V ac or to 5V dc Range: feet (9m) Beam: infrared, 9nm MA99LT BRT- " reflector BRT- " reflector A BRT-T tape. FT FT FT FT DTA MA99LT BRT- reflector DTA TO RFLTOR--FT RTRORFLTV VALU-BAM model MA99LT is designed specifically for "people counting". ts strong ( foot range) infrared beam is invisible to the eye, and a built-in / second on/off delay helps prevent multiple counts. Maximum retroreflective signal strength is attained when using the model BRT- corner-cube retroreflector. Other retroreflective materials may also be used (see Banner product catalog for descriptive information). MA99V Voltage: to 5V ac or to 5V dc Focus at.5" (mm) Beam: visible red, 5nm A MA99V (Range based on 9% reflectance white test card) M99V OVRT Mode OBJT. DTA DTA TO 9% WT TT ARD-- VALU-BAM convergent sensors produce a precise." diameter visible red sensing spot at a focus point.5" in front of the sensor lens. Due to its very narrow depth of field, this model excels at counting small objects only a fraction of an inch away from backgrounds. This convergent sensor may be used for reliable counting of some radiused products which flow past at a fixed distance from the sensor lens. FBR OPT Mode (plastic fiber optics) OPPOD OBJT MA99FP Voltage: to 5V ac or to 5V dc Range: see.. curves Beam: visible red, 5nm The powerful modulated visible beam of this sensor makes it compatible all Banner plastic fiber optic assemblies. Banner plastic are an economical alternative to glass when environmental conditions allow (see below). Banner plastic fiber optics are available in two core diameters and various sensing tip styles. tandard length is feet. ee the Banner product catalog for more fiber optic information. A A PTU, no lenses MA99FP Opposed mode, plastic PTU L lenses PTU, no lens. DTA MA99FP Diffuse mode, plastic (Range based on 9% reflectance white test card) PBTU fiber PBTU fiber.. DTA. MA99FP. Opposed mode. PTU PTU OPPOD DTA--.5 MA99FP PBTU PBTU Diffuse mode DTA TO 9% WT TT ARD-- 5 DFFU nvironmental Factors for Plastic Fiber Optics OPRAT TMPRATUR OF FBR OPT AMBL: - to +7 (- to +5 F). MAL RTA OF FBR OPT AMBL: the acrylic core of the monofilament optical fiber will be damaged by contact acids, strong bases (alkalis), and solvents. The polyethylene jacket will protect the optical fiber from most chemical environments; however, materials may migrate through the jacket long-term exposure. amples of plastic fiber optic material are available from Banner for testing and evaluation.

17 VALU-BAM 99 eries ensors ensing Mode Models xcess ain Beam Pattern FBR OPT Mode (glass fiber optics) OPPOD OBJT RTRO OBJT RTRORFLTV TART DFFU MA99F Voltage: to 5V ac or to 5V dc Range: see.. curves Beam: infrared, nm Fiberoptic sensing is often the answer when, due to space or environmental limitations, the sensor itself cannot be placed at the actual sensing position. This sensor's powerful modulated infrared beam is compatible all Banner glass fiber optics in the opposed, retroreflective, and diffuse sensing modes. lass fiber optic selection information may be found in the Banner catalog. The sensor/fiber interface is waterproof to maintain complete sensing system moisture rejection. Opposed mode fiber optic sensing is often employed in parts counting applications. Fiber optics can be built sensing ends having windows that conform to the size and profile of the part. This allows most efficient use of the sensor's emitted light energy. Refer to the Banner product catalog for more information. A A T MA99F Opposed mode, glass T. DTA MA99F Retroreflective mode, w/brt- " target L9 lens and BT LF lens and BT. FT FT FT FT DTA A MA99F Diffuse mode (Range based on 9% reflectance white test card) BT BT. DTA BT fiber, retroreflective mode, BRT- reflector L9 lens LF lens MA99F MA99F T Opposed mode T OPPOD DTA -- DTA TO RFLTOR--FT Diffuse mode.5 BT BT.5.5 MA99F DTA TO 9% WT TT ARD-- Options and Accesories for MA99 eries ensors Memory Backup ("MB") option: MA99 eries sensors internal memory backup for maintaining "count memory" are available by special order. These models, which will "hold" a count for over hours, are indicated by the model suffix "MB" (example: the memory backup version of model MA99LV is "MA99LVMB"). ontact the factory for availability and pricing on these models. Quick Disconnect ("QD") option: The VALU-BAM QD option allows quick and easy removal or replacement of VALU-BAM sensors in the field. QD option VALU-BAM 99 eries sensors have a -pin male connector, built into the sensor's base, which mates the model MB- -conductor female O-type quick-disconnect cable (one wire goes unused). To specify the QD option on a sensor, simply add the letters "QD" to the end of the sensor's model number. (xample: the QD version of the MA99FMB is "MA99FMBQD".) Model MB- JT-type cable (' length) must be ordered separately. ee drawings, page. -foot cable option: tandard VALU-BAM sensor models (non-qd types, which are normally supplied a -foot long PV-covered cable), may optionally be supplied a -foot PV-covered cable. Thirty feet is the most readily-available length; lengths longer than feet may also be quoted. Accessory Mounting Bracket model MB9: Accessory mounting bracket model MB9 has curved mounting slots for versatility in mounting and orientation. The sensor mounts to the bracket by its threaded base, using a jam nut and lockwasher (both included). The bracket accommodates both standard and "QD" sensor models. Bracket material is -gauge zincplated steel. The curved mounting slots have clearance for /" screws. ee drawings, page. Accessory Mounting Bracket model MBM: This is a swivel mounting bracket. The base of the VALU-BAM sensor threads into the bracket's captive swivel ball, which is then held firmly in the desired position when the bracket's two mounting bolts are tightened. 7

18 VALU-BAM Modifications and Accessories Quick-Disconnect ("QD") able Option All Banner VALU-BAM sensors are available the "QD" (Quick-Disconnect) option (below). A,, or 5-pin connector Dimensions, "QD" ensors (depending upon the VALU-BAM model), built into the sensor's base, mates the JT-type quick disconnect cable described below. able must be ordered separately. The diagrams below show pin configurations for,, and 5 pin "QD" connectors, which are located at the base of VALU-BAM sensors having the "QD" option. Mirror-image pin numbering is used for the connectors of the mating cables, as shown below. Male contact pins are used in the sensor connectors. The cable connectors have female receptacles for wiring safety. tandard VALU-BAM sensors (non-"qd" models, which are normally supplied an attached -foot long PV-covered cable) may instead be supplied optionally an attached -foot PVcovered cable. Thirty feet is the most readily available length, but lengths longer than feet may also be quoted. Pin onfigurations for -, -, and 5-pin "QD" onnectors ide View, MB QD able onnector Quick Disconnect ables for VALU-BAM ensors "QD" Option (cables must be purchased separately) QD cable model and end view MB- 9 eries sensors solid-state relay output All A sensors: model prefixes MA9, MA9R, MA9, MA9R All emitters: model prefix MA9 95 eries sensors e/m relay output All emitters: model prefix MA9 99 eries sensors built-in totalizing counters All sensors: model prefixes MA99, MA9 MB- All D sensors: model prefix M9 (not used) (not used) MB-5 (not used) All sensors (except emitters): model prefixes MA95, MA9R, MB95, MB9R MW95, MW9R (not used)

19 VALU-BAM Accessories Armored Jacket ompression Fitting PV able Tubing Model A- armored cable jacket for VALU- BAM sensors (not for "QD" models). ix-foot length. ize:.d. = 5/"; O.D. = 7/". RF-P ompression Fitting for attaching armored cable or PV tubing to VALU-BAM sensors (not for "QD" models). Model PV- flexible PV tubing for VALU- BAM sensors (not for "QD" models). ix-foot length. ize:.d. = /"; O.D. = /". xtension able xtension cable in -foot lengths: Model - -wire cable for M9 eries dc sensors. Wire colors: brown, blue, black, white. Model A- -wire cable for emitters and MA9 eries -wire ac sensors and MA99 series. Wire colors: brown, blue. Model 9A- -wire cable for MA9 eries ac sensors. Wire colors: brown, blue, black. Model 95-5-wire cable for MA95, MB95, and MW95 eries ac/dc sensors. Wire colors: brown, blue, black, white, yellow. OT: extension cable may be ordered in lengths greater than feet on a quote basis. Upper overs (lens assemblies) VALU-BAM "upper covers" consist of a bezel, a lens, and mounting hardware. Depending upon the model of VALU-BAM in use, they allow sensing mode and/or sensing range changes in the field. Table below lists the various VALU-BAM sensor types and the upper cover models they are supplied. t tells you which upper cover to order for strictly replacement purposes. VALU-BAMs are identified by their model number suffixes, which designate their sensing mode. For example, an M9LVA or MA9LVA sensor uses a model U-9A upper cover. VALU-BAM upper covers (above). Upper cover model U- 9J (on the right in the photo) is a flat, clear Lexan window which acts as a dust cover for the lens area when the sensor is mounted facing up. The U-9J may be attached to the following VALU- BAMs:, R, R, RR, LV, and D. Table lists the sensing mode and range changes that may be accomplished by substituting a different upper cover. For example, if you want to convert an F (fiberoptic) type VALU-BAM to a D (diffuse) type, order and install upper cover model U-9L. The conversions listed are direct model conversions which may be made simply by changing VALU-BAM upper cover assemblies. Other conversions are possible: contact the Banner applications staff any questions. Table : Replacement overs VALU-BAM Type: LVA V, DR, R, RR F FP, R, LV, D Uses upper cover model: U-9A U-9 U-9DR U-9F U-9FP U-9L Table : Mode/Range hange ross-reference To change: LV to LVA LV to V D to DR D to F DR to F F to R RF to RR Use UPPR OVR: U-9A U-9 U-9DR U-9F U-9F U-9DR U-9DR To change: LVA to LV V to LV DR to D F to D F to DR Use UPPR OVR: U-9L U-9L U-9L U-9L U-9DR 9

20 VALU-BAM Accessories MB9 Mounting Bracket Accessory mounting bracket model MB9 has curved mounting slots for versatility in mounting and orientation. The sensor mounts to the bracket by its threaded base, using a jam nut and lockwasher (both included). The bracket material is -gauge zincplated steel. The curved mounting slots have clearance for /" screws. MB Mounting Bracket wivel mounting bracket model MB offers the ultimate in flexibility and convenience. The MB bracket mounts by its base. The base of the VALU- BAM sensor threads into the captive "ball" of the bracket, which is locked snugly in position when the two clamping/mounting bolts are tightened. Bracket material is black VALO. ardware is stainless steel, and bolts are included. F-P Flexible able Protector This black neoprene assembly easily slips over the prewired cable and threads into the base of a VALU- BAM sensor. The flexible extender prevents sharp cable bends and extends the life of cable that is subject to repeated flexing. The F-P includes a neoprene gland that compresses around the VALU-BAM cable to provide an additional seal against moisture. This flexible conduit protector is resistant to gasoline, alcohol, oil, grease, solvents, and weak acids. t has a working temperature range of - to + (- to + F). t is UL recognized and A certified. The F-P also threads into the base of OM-BAM, MULT-BAM, MA-BAM, and M eries sensors. t is sold in packages of pieces. WAR VALU-BAM photoelectric presence sensors do OT include the self-checking redundant circuitry necessary to allow their use in personnel safety applications. A sensor failure or malfunction can result in either an energized or a de-energized sensor output condition.! ever use these products as sensing devices for personnel protection. Their use as safety devices may create an unsafe condition which could lead to serious injury or death. Only MA-UARD and PRMTR-UARD ystems, and other systems so designated, are designed to meet OA and A machine safety standards for point-of-operation guarding devices. o other Banner sensors or controls are designed to meet these standards, and they must OT be used as sensing devices for personnel protection. Banner ngineering orp. 97 Tenth Ave. o. Minneapolis, M 55 Telephone: ()5- FA (applications): ()5-57

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